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For: Zhang AP, Sun YP. Photocatalytic killing effect of TiO2 nanoparticles on Ls-174-t human colon carcinoma cells. World J Gastroenterol 2004; 10(21): 3191-3193 [PMID: 15457572 DOI: 10.3748/wjg.v10.i21.3191]
URL: https://www.wjgnet.com/1007-9327/full/v10/i21/3191.htm
Number Citing Articles
1
Sambhavna Singh Dangi, Kavya Shrivastava, Mustri Bano, Mansi Rai, Ankita Nema, Farid Khan. Fabrication of silver monoliths using Brij 52 surfactant and TiO2 nanoparticles and their applications to reduce Fast Sulphon Black F dye and sensor against Pb2+Journal of Materials Science: Materials in Electronics 2022; 33(27): 21444 doi: 10.1007/s10854-022-08935-x
2
Zehao Li, Jianchao Li, Dazhuang Wang, Cong Li, Kexin Zhang, Lihong Wang, Chao Shen, Zhihang Li, Yating Ji, Lijiang Chen. Construction and antitumor effect of yeast microencapsulated nano-zinc oxide drug delivery systemJournal of Drug Delivery Science and Technology 2024; 93: 105341 doi: 10.1016/j.jddst.2024.105341
3
Angelica Sette, Jolanda Spadavecchia, Jessem Landoulsi, Sandra Casale, Bernard Haye, Olivia Crociani, Annarosa Arcangeli. Development of novel anti-Kv 11.1 antibody-conjugated PEG–TiO2 nanoparticles for targeting pancreatic ductal adenocarcinoma cellsJournal of Nanoparticle Research 2013; 15(12) doi: 10.1007/s11051-013-2111-6
4
Jun Wang, Na Ding, Zhaohong Zhang, Shixian Wang, Ying Guo, Bin Liu, Yuanyuan Zhang, Xiangdong Zhang. Sonocatalytic damage of bovine serum albumin (BSA) under ultrasonic irradiation by mixed TiO2/SiO2 powderJournal of Chemical Technology & Biotechnology 2009; 84(4): 538 doi: 10.1002/jctb.2076
5
Agata Markowska-Szczupak, Zhishun Wei, Ewa Kowalska. The Influence of The Light-Activated Titania P25 on Human Breast Cancer CellsCatalysts 2020; 10(2): 238 doi: 10.3390/catal10020238
6
Melda Altikatoglu Yapaoz, Azade Attar. Salvia officinalis-derived rutile TiO2NPs: production, characterization, antibacterial evaluation and its effect on decolorizationMaterials Research Express 2019; 6(5): 055039 doi: 10.1088/2053-1591/ab0690
7
R.M. Mohamed, D.L. McKinney, W.M. Sigmund. Enhanced nanocatalystsMaterials Science and Engineering: R: Reports 2012; 73(1): 1 doi: 10.1016/j.mser.2011.09.001
8
Elsa Friehs, Yamen AlSalka, Rebecca Jonczyk, Antonina Lavrentieva, André Jochums, Johanna-Gabriela Walter, Frank Stahl, Thomas Scheper, Detlef Bahnemann. Toxicity, phototoxicity and biocidal activity of nanoparticles employed in photocatalysisJournal of Photochemistry and Photobiology C: Photochemistry Reviews 2016; 29: 1 doi: 10.1016/j.jphotochemrev.2016.09.001
9
Katarzyna Pierzchała, Małgorzata Lekka, Arnaud Magrez, Andrzej J. Kulik, László Forró, Andrzej Sienkiewicz. Photocatalytic and phototoxic properties of TiO2-based nanofilaments: ESR and AFM assaysNanotoxicology 2012; 6(8): 813 doi: 10.3109/17435390.2011.625129
10
Osamu YAMAMOTO, Koji ADACHI. Biologocal Effects of Industrial Nanomaterials (the last part)Nishi Nihon Hifuka 2011; 73(6): 601 doi: 10.2336/nishinihonhifu.73.601
11
Chang Liu, Yanhua Guo, Qiliang Hong, Chao Rao, Haijuan Zhang, Yihui Dong, Liangliang Huang, Xiaohua Lu, Ningzhong Bao. Bovine Serum Albumin Adsorption in Mesoporous Titanium Dioxide: Pore Size and Pore Chemistry EffectLangmuir 2016; 32(16): 3995 doi: 10.1021/acs.langmuir.5b04496
12
Vilas S. Desai, Meenal Kowshik. Antimicrobial Activity of Titanium Dioxide Nanoparticles Synthesized by Sol-Gel TechniqueResearch Journal of Microbiology 2009; 4(3): 97 doi: 10.3923/jm.2009.97.103
13
A. Markowska-Szczupak, K. Ulfig, A.W. Morawski. The application of titanium dioxide for deactivation of bioparticulates: An overviewCatalysis Today 2011; 169(1): 249 doi: 10.1016/j.cattod.2010.11.055
14
Dadong Guo, Chunhui Wu, Hui Jiang, Qingning Li, Xuemei Wang, Baoan Chen. Synergistic cytotoxic effect of different sized ZnO nanoparticles and daunorubicin against leukemia cancer cells under UV irradiationJournal of Photochemistry and Photobiology B: Biology 2008; 93(3): 119 doi: 10.1016/j.jphotobiol.2008.07.009
15
Traian Popescu, Andreea R. Lupu, Valentin Raditoiu, Violeta Purcar, Valentin S. Teodorescu. On the photocatalytic reduction of MTT tetrazolium salt on the surface of TiO2 nanoparticles: Formazan production kinetics and mechanismJournal of Colloid and Interface Science 2015; 457: 108 doi: 10.1016/j.jcis.2015.07.005
16
Luis-Alejandro Galeano, Milena Guerrero-Flórez, Claudia-Andrea Sánchez, Antonio Gil, Miguel-Ángel Vicente. Applications of Advanced Oxidation Processes (AOPs) in Drinking Water TreatmentThe Handbook of Environmental Chemistry 2017; 67: 257 doi: 10.1007/698_2017_179
17
Zhen Hu, Yudong Huang, Shaofan Sun, Wenchao Guan, Yuhuan Yao, Peiyi Tang, Cuiyun Li. Visible light driven photodynamic anticancer activity of graphene oxide/TiO2 hybridCarbon 2012; 50(3): 994 doi: 10.1016/j.carbon.2011.10.002
18
Paul Thevenot, Jai Cho, Dattatray Wavhal, Richard B. Timmons, Liping Tang. Surface chemistry influences cancer killing effect of TiO2 nanoparticlesNanomedicine: Nanotechnology, Biology and Medicine 2008; 4(3): 226 doi: 10.1016/j.nano.2008.04.001
19
Eric Y. T. Chen, Maria Garnica, Yung-Chen Wang, Chi-Shuo Chen, Wei-Chun Chin, Meni Wanunu. Mucin Secretion Induced by Titanium Dioxide NanoparticlesPLoS ONE 2011; 6(1): e16198 doi: 10.1371/journal.pone.0016198
20
Sh. Nadzirah, Subash C.B Gopinath, N.A. Parmin, Azrul Azlan Hamzah, Mohd Ambri Mohamed, Edward Yi Chang, Chang Fu Dee. State-of-the-Art on Functional Titanium Dioxide-Integrated Nano-Hybrids in Electrical BiosensorsCritical Reviews in Analytical Chemistry 2022; 52(3): 637 doi: 10.1080/10408347.2020.1816447
21
Ozan Akdogan, Canan Bagci, Nilay Gunduz Akdogan, Sedef Ozunlu. Nanoparticles as Sustainable Environmental Remediation Agents2023; : 193 doi: 10.1039/BK9781837670215-00193
22
Guang’an He, Rui Chen, Shushen Lu, Chengchun Jiang, Hong Liu, Chuan Wang. Dominating Role of Ionic Strength in the Sedimentation of Nano-TiO2in Aquatic EnvironmentsJournal of Nanomaterials 2015; 2015: 1 doi: 10.1155/2015/851928
23
Hairong Du, Xiaoling Zhu, Chuangang Fan, Song Xu, Youjie Wang, Yikai Zhou. Oxidative damage and OGG1 expression induced by a combined effect of titanium dioxide nanoparticles and lead acetate in human hepatocytesEnvironmental Toxicology 2012; 27(10): 590 doi: 10.1002/tox.20682
24
Sasidharan Swarnalatha Lucky, Khee Chee Soo, Yong Zhang. Nanoparticles in Photodynamic TherapyChemical Reviews 2015; 115(4): 1990 doi: 10.1021/cr5004198
25
Petras Juzenas, Andrius Kleinauskas, Pengju George Luo, Ya-Ping Sun. Photoactivatable carbon nanodots for cancer therapyApplied Physics Letters 2013; 103(6) doi: 10.1063/1.4817787
26
Jooran Lee, Young Hwa Lee, Joon Sig Choi, Kwan Seob Park, Ki Soo Chang, Minjoong Yoon. Hydrothermal synthesis of defective TiO2nanoparticles for long-wavelength visible light-photocatalytic killing of cancer cellsRSC Advances 2015; 5(121): 99789 doi: 10.1039/C5RA19045B
27
Stephan T. Stern, Scott E. McNeil. Nanotechnology Safety Concerns RevisitedToxicological Sciences 2008; 101(1): 4 doi: 10.1093/toxsci/kfm169
28
Thomas Gehrke, Agmal Scherzad, Pascal Ickrath, Philipp Schendzielorz, Rudolf Hagen, Norbert Kleinsasser, Stephan Hackenberg. Zinc oxide nanoparticles antagonize the effect of Cetuximab on head and neck squamous cell carcinoma in vitroCancer Biology & Therapy 2017; 18(7): 513 doi: 10.1080/15384047.2017.1323598
29
Rong R. Zhu, Shi L. Wang, Jun Chao, Dong Lu Shi, Rui Zhang, Xiao Y. Sun, Si D. Yao. Bio-effects of Nano-TiO2 on DNA and cellular ultrastructure with different polymorph and sizeMaterials Science and Engineering: C 2009; 29(3): 691 doi: 10.1016/j.msec.2008.12.023
30
Zhangjian Chen, Shuo Han, Shupei Zhou, Huimin Feng, Ying Liu, Guang Jia. Review of health safety aspects of titanium dioxide nanoparticles in food applicationNanoImpact 2020; 18: 100224 doi: 10.1016/j.impact.2020.100224
31
Luma M. Ahmed, Irina Ivanova, Falah H. Hussein, Detlef W. Bahnemann. Role of Platinum Deposited on TiO2in Photocatalytic Methanol Oxidation and Dehydrogenation ReactionsInternational Journal of Photoenergy 2014; 2014: 1 doi: 10.1155/2014/503516
32
Yosuke SATO, Ken MIYAZAWA, Natsu SATO, Kenjiro NAKANO, Yukiko TAKEI, Tatsushi KAWAI, Shigemi GOTO. Study on fabrication of orthodontic brackets with the photocatalytic function of titanium dioxideDental Materials Journal 2009; 28(4): 388 doi: 10.4012/dmj.28.388
33
Yongbin Zhang, Wei Chen, Shaopeng Wang, Yuanfang Liu, Carey Pope. Phototoxicity of Zinc Oxide Nanoparticle Conjugatesin Human Ovarian Cancer NIH: OVCAR-3 CellsJournal of Biomedical Nanotechnology 2008; 4(4): 432 doi: 10.1166/jbn.2008.006
34
Ilya A. Shkrob, Timothy W. Marin, Sergey D. Chemerisov, Michael D. Sevilla. Mechanistic Aspects of Photooxidation of Polyhydroxylated Molecules on Metal OxidesThe Journal of Physical Chemistry C 2011; 115(11): 4642 doi: 10.1021/jp110612s
35
Andreea-Roxana Lupu, Traian Popescu, Marko Stojanović. Environmental Nanotechnology Volume 3Environmental Chemistry for a Sustainable World 2020; 27: 47 doi: 10.1007/978-3-030-26672-1_2
36
Jan Gojznikar, Bogdan Zdravković, Marko Vidak, Brane Leskošek, Polonca Ferk. TiO2 Nanoparticles and Their Effects on Eukaryotic Cells: A Double-Edged SwordInternational Journal of Molecular Sciences 2022; 23(20): 12353 doi: 10.3390/ijms232012353
37
Tatsiana Mironava, Michael Hadjiargyrou, Marcia Simon, Miriam H. Rafailovich. The Effects of UV Emission from Compact Fluorescent Light Exposure on Human Dermal Fibroblasts and Keratinocytes In VitroPhotochemistry and Photobiology 2012; 88(6): 1497 doi: 10.1111/j.1751-1097.2012.01192.x
38
A. Rajini, M. Nookaraju, I.A.K. Reddy, N. Venkatathri. Synthesis, characterization, antimicrobial and cytotoxicity studies of a novel titanium dodecylamino phosphateJournal of Saudi Chemical Society 2017; 21: S77 doi: 10.1016/j.jscs.2013.10.005
39
Juan Xu, Yi Sun, Yaomin Zhao, Junjie Huang, Chunmei Chen, Zhiyu Jiang. Photocatalytic Inactivation Effect of Gold-DopedTiO2(Au/TiO2) Nanocomposites on Human Colon Carcinoma LoVo CellsInternational Journal of Photoenergy 2007; 2007: 1 doi: 10.1155/2007/97308
40
Virender K. Sharma. Aggregation and toxicity of titanium dioxide nanoparticles in aquatic environment—A ReviewJournal of Environmental Science and Health, Part A 2009; 44(14): 1485 doi: 10.1080/10934520903263231
41
Kazuaki Ninomiya, Aya Fukuda, Chiaki Ogino, Nobuaki Shimizu. Targeted sonocatalytic cancer cell injury using avidin-conjugated titanium dioxide nanoparticlesUltrasonics Sonochemistry 2014; 21(5): 1624 doi: 10.1016/j.ultsonch.2014.03.010
42
Frans M. Christensen, Helinor J. Johnston, Vicki Stone, Robert J. Aitken, Steve Hankin, Sheona Peters, Karin Aschberger. Nano-TiO2– feasibility and challenges for human health risk assessment based on open literatureNanotoxicology 2011; 5(2): 110 doi: 10.3109/17435390.2010.504899
43
Krisztián Kordás, Jarmo Kukkola, Géza Tóth, Heli Jantunen, Mária Szabó, András Sápi, Ákos Kukovecz, Zoltán Kónya, Jyri-Pekka Mikkola. Springer Handbook of Nanomaterials2013; : 729 doi: 10.1007/978-3-642-20595-8_20
44
Nataša Kuburović, Aleksandar Golubović, Ljiljana Babinčev. Development of new smart metal nanomaterials based on titanium-dioxide for photocatalytic and antimicrobial activitiesVojnotehnicki glasnik 2018; 66(4): 771 doi: 10.5937/vojtehg66-17261
45
Raiane R. Diniz, Juliana P. Paiva, Renan M. Aquino, Tula C.W. Gonçalves, Alvaro C. Leitão, Bianca Aloise M.C. Santos, Alicia V. Pinto, Katia C. Leandro, Marcelo de Pádula. Saccharomyces cerevisiae strains as bioindicators for titanium dioxide sunscreen photoprotective and photomutagenic assessmentJournal of Photochemistry and Photobiology B: Biology 2019; 198: 111584 doi: 10.1016/j.jphotobiol.2019.111584
46
S. P. Chebotaryova, O. V. Zakharova, P. A. Baranchikov, E. A. Kolesnikov, A. A. Gusev. Assessment of the Potential of Using Microalgae from the Genus Desmodesmus for the Bioremediation of Water Polluted with TiO2 NanoparticlesNanobiotechnology Reports 2023; 18(3): 352 doi: 10.1134/S2635167623700234
47
Stephan Hackenberg, Agmal Scherzed, Wilma Harnisch, Katrin Froelich, Christian Ginzkey, Christian Koehler, Rudolf Hagen, Norbert Kleinsasser. Antitumor activity of photo-stimulated zinc oxide nanoparticles combined with paclitaxel or cisplatin in HNSCC cell linesJournal of Photochemistry and Photobiology B: Biology 2012; 114: 87 doi: 10.1016/j.jphotobiol.2012.05.014
48
Andrius Kleinauskas, Sandra Rocha, Sushant Sahu, Ya-Ping Sun, Petras Juzenas. Carbon-core silver-shell nanodots as sensitizers for phototherapy and radiotherapyNanotechnology 2013; 24(32): 325103 doi: 10.1088/0957-4484/24/32/325103
49
S. Subhapriya, P. Gomathipriya. Green synthesis of titanium dioxide (TiO2) nanoparticles by Trigonella foenum-graecum extract and its antimicrobial propertiesMicrobial Pathogenesis 2018; 116: 215 doi: 10.1016/j.micpath.2018.01.027
50
Stephan Hackenberg, Agmal Scherzed, Antje Gohla, Antje Technau, Katrin Froelich, Christian Ginzkey, Christian Koehler, Marc Burghartz, Rudolf Hagen, Norbert Kleinsasser. Nanoparticle-induced photocatalytic head and neck squamous cell carcinoma cell death is associated with autophagyNanomedicine 2014; 9(1): 21 doi: 10.2217/nnm.13.41
51
MS Acar, ZB Bulut, A Ateş, B Nami, N Koçak, B Yıldız. Titanium dioxide nanoparticles induce cytotoxicity and reduce mitotic index in human amniotic fluid-derived cellsHuman & Experimental Toxicology 2015; 34(1): 74 doi: 10.1177/0960327114530742
52
Juan Xu, Yi Sun, Junjie Huang, Chunmei Chen, Guoyuan Liu, Yan Jiang, Yaomin Zhao, Zhiyu Jiang. Photokilling cancer cells using highly cell-specific antibody–TiO2 bioconjugates and electroporationBioelectrochemistry 2007; 71(2): 217 doi: 10.1016/j.bioelechem.2007.06.001
53
Jin-wei Ai, Bin Liu, Wei-dong Liu. Folic acid-tagged titanium dioxide nanoparticles for enhanced anticancer effect in osteosarcoma cellsMaterials Science and Engineering: C 2017; 76: 1181 doi: 10.1016/j.msec.2017.03.027
54
N. Lagopati, P.V. Kitsiou, A.I. Kontos, P. Venieratos, E. Kotsopoulou, A.G. Kontos, D.D. Dionysiou, S. Pispas, E.C. Tsilibary, P. Falaras. Photo-induced treatment of breast epithelial cancer cells using nanostructured titanium dioxide solutionJournal of Photochemistry and Photobiology A: Chemistry 2010; 214(2-3): 215 doi: 10.1016/j.jphotochem.2010.06.031
55
Jichao Zhang, Xiaoqing Cai, Yi Zhang, Xiaoming Li, Wenxin Li, Yangchao Tian, Aiguo Li, Xiaohan Yu, Chunhai Fan, Qing Huang. Imaging cellular uptake and intracellular distribution of TiO2 nanoparticlesAnalytical Methods 2013; 5(23): 6611 doi: 10.1039/c3ay41121d
56
Koshonna Brown, Ted Thurn, Lun Xin, William Liu, Remon Bazak, Si Chen, Barry Lai, Stefan Vogt, Chris Jacobsen, Tatjana Paunesku, Gayle E. Woloschak. Intracellular in situ labeling of TiO2 nanoparticles for fluorescence microscopy detectionNano Research 2018; 11(1): 464 doi: 10.1007/s12274-017-1654-8
57
Sarita Kango, Susheel Kalia, Pankaj Thakur, Bandna Kumari, Deepak Pathania. Organic-Inorganic Hybrid NanomaterialsAdvances in Polymer Science 2014; 267: 283 doi: 10.1007/12_2014_295
58
Clayton Wright, Anand Krishnan V. Iyer, Liying Wang, Nianqiang Wu, Juan S. Yakisich, Yon Rojanasakul, Neelam Azad. Effects of titanium dioxide nanoparticles on human keratinocytesDrug and Chemical Toxicology 2017; 40(1): 90 doi: 10.1080/01480545.2016.1185111
59
Joyce S. Tsuji, Andrew D. Maynard, Paul C. Howard, John T. James, Chiu-wing Lam, David B. Warheit, Annette B. Santamaria. Research Strategies for Safety Evaluation of Nanomaterials, Part IV: Risk Assessment of NanoparticlesToxicological Sciences 2006; 89(1): 42 doi: 10.1093/toxsci/kfi339
60
A. Viviana Pinto, Elder L. Deodato, Janine S. Cardoso, Eliza F. Oliveira, Sérgio L. Machado, Helena K. Toma, Alvaro C. Leitão, Marcelo de Pádula. Enzymatic recognition of DNA damage induced by UVB-photosensitized titanium dioxide and biological consequences in Saccharomyces cerevisiae: Evidence for oxidatively DNA damage generationMutation Research/Fundamental and Molecular Mechanisms of Mutagenesis 2010; 688(1-2): 3 doi: 10.1016/j.mrfmmm.2010.02.003
61
Seung-Hoon Bahng, Nan Hyun Kwon, Hyung Cheol Kim, Abu Bakkar Siddique, Ho-Jung Kang, Jae Yeol Lee, Joohoon Kim, Sehoon Kim, Jungahn Kim. Simple synthesis of water-dispersible and photoactive titanium dioxide nanoparticles using functionalized poly(ethylene oxide)sMacromolecular Research 2014; 22(4): 445 doi: 10.1007/s13233-014-2062-5
62
Roman Generalov, Woo Boon Kuan, Wei Chen, Solveig Kristensen, Petras Juzenas. Radiosensitizing effect of zinc oxide and silica nanocomposites on cancer cellsColloids and Surfaces B: Biointerfaces 2015; 129: 79 doi: 10.1016/j.colsurfb.2015.03.026
63
Andrea Zijno, Isabella De Angelis, Barbara De Berardis, Cristina Andreoli, Maria Teresa Russo, Donatella Pietraforte, Giuseppe Scorza, Paolo Degan, Jessica Ponti, Francois Rossi, Flavia Barone. Different mechanisms are involved in oxidative DNA damage and genotoxicity induction by ZnO and TiO2 nanoparticles in human colon carcinoma cellsToxicology in Vitro 2015; 29(7): 1503 doi: 10.1016/j.tiv.2015.06.009
64
Z. R. Ismagilov, N. V. Shikina, N. A. Mazurkova, L. T. Tsikoza, F. V. Tuzikov, V. A. Ushakov, A. V. Ishchenko, N. A. Rudina, D. V. Korneev, E. I. Ryabchikova. Synthesis of NanoscaleTiO2and Study of the Effect of Their Crystal Structure on Single Cell ResponseThe Scientific World Journal 2012; 2012: 1 doi: 10.1100/2012/498345
65
G. Rajakumar, A. Abdul Rahuman, S. Mohana Roopan, V. Gopiesh Khanna, G. Elango, C. Kamaraj, A. Abduz Zahir, K. Velayutham. Fungus-mediated biosynthesis and characterization of TiO2 nanoparticles and their activity against pathogenic bacteriaSpectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 2012; 91: 23 doi: 10.1016/j.saa.2012.01.011
66
Isabella De Angelis, Flavia Barone, Andrea Zijno, Loreline Bizzarri, Maria Teresa Russo, Roberta Pozzi, Fabio Franchini, Guido Giudetti, Chiara Uboldi, Jessica Ponti, Francois Rossi, Barbara De Berardis. Comparative study of ZnO and TiO2nanoparticles: physicochemical characterisation and toxicological effects on human colon carcinoma cellsNanotoxicology 2013; 7(8): 1361 doi: 10.3109/17435390.2012.741724
67
E. N. Kabachkov, E. N. Kurkin, V. A. Nadtochenko, A. A. Terent’ev. Fourier transform infrared spectroscopic study of the photocatalytic degradation of cancerous cells on titanium dioxideHigh Energy Chemistry 2010; 44(5): 426 doi: 10.1134/S0018143910050139
68
Birgit J. Teubl, Christa Schimpel, Gerd Leitinger, Bettina Bauer, Eleonore Fröhlich, Andreas Zimmer, Eva Roblegg. Interactions between nano-TiO2 and the oral cavity: Impact of nanomaterial surface hydrophilicity/hydrophobicityJournal of Hazardous Materials 2015; 286: 298 doi: 10.1016/j.jhazmat.2014.12.064
69
Kenneth T. Thurn, Tatjana Paunesku, Aiguo Wu, Eric M. B. Brown, Barry Lai, Stefan Vogt, Jörg Maser, Mohammed Aslam, Vinayak Dravid, Raymond Bergan, Gayle E. Woloschak. Labeling TiO2 Nanoparticles with Dyes for Optical Fluorescence Microscopy and Determination of TiO2–DNA Nanoconjugate StabilitySmall 2009; 5(11): 1318 doi: 10.1002/smll.200801458
70
Neenu Singh, Bella Manshian, Gareth J.S. Jenkins, Sioned M. Griffiths, Paul M. Williams, Thierry G.G. Maffeis, Chris J. Wright, Shareen H. Doak. NanoGenotoxicology: The DNA damaging potential of engineered nanomaterialsBiomaterials 2009; 30(23-24): 3891 doi: 10.1016/j.biomaterials.2009.04.009
71
Régis Vanderesse, Céline Frochot, Muriel Barberi-Heyob, Sébastien Richeter, Laurence Raehm, Jean-Olivier Durand. Intracellular DeliveryFundamental Biomedical Technologies 2011; 5: 511 doi: 10.1007/978-94-007-1248-5_19
72
E. Carazo, A. Borrego‐Sánchez, F. García‐Villén, R. Sánchez‐Espejo, P. Cerezo, C. Aguzzi, C. Viseras. Advanced Inorganic Nanosystems for Skin Drug DeliveryThe Chemical Record 2018; 18(7-8): 891 doi: 10.1002/tcr.201700061
73
Min Song, Renyun Zhang, Xuemei Wang. Nano-titanium dioxide enhanced biosensing of the interaction of dacarbazine with DNA and DNA basesMaterials Letters 2006; 60(17-18): 2143 doi: 10.1016/j.matlet.2005.12.100
74
Maria Vinardell, Montserrat Mitjans. Antitumor Activities of Metal Oxide NanoparticlesNanomaterials 2015; 5(2): 1004 doi: 10.3390/nano5021004
75
Xui-Fang Chuah, Kuan-Ting Lee, Yu-Chieh Cheng, Poh-Foong Lee, Shih-Yuan Lu. Ag/AgFeO2: An Outstanding Magnetically Responsive Photocatalyst for HeLa Cell EradicationACS Omega 2017; 2(8): 4261 doi: 10.1021/acsomega.7b00698
76
Timothy R. Nurkiewicz, Dale W. Porter, Ann F. Hubbs, Samuel Stone, Bean T. Chen, David G. Frazer, Matthew A. Boegehold, Vincent Castranova. Pulmonary Nanoparticle Exposure Disrupts Systemic Microvascular Nitric Oxide SignalingToxicological Sciences 2009; 110(1): 191 doi: 10.1093/toxsci/kfp051
77
Niagara Muhammad Idris, Sasidharan Swarnalatha Lucky, Zhengquan Li, Kai Huang, Yong Zhang. Photoactivation of core–shell titania coated upconversion nanoparticles and their effect on cell deathJ. Mater. Chem. B 2014; 2(40): 7017 doi: 10.1039/C4TB01169D
78
Chaojun Yuan, Bing Jiang, Xiaocui Xu, Yunjie Wan, Li Wang, Jia Chen. Anti-human ovarian cancer and cytotoxicity effects of nickel nanoparticles green-synthesized by Alhagi maurorum leaf aqueous extractJournal of Experimental Nanoscience 2022; 17(1): 113 doi: 10.1080/17458080.2021.2011860
79
Frédéric Loosli, Letícia Vitorazi, Jean-François Berret, Serge Stoll. Towards a better understanding on agglomeration mechanisms and thermodynamic properties of TiO2 nanoparticles interacting with natural organic matterWater Research 2015; 80: 139 doi: 10.1016/j.watres.2015.05.009
80
Haitao Zong, Suyun Zhang, Mohammad Mahdi Zangeneh, Saba Hemmati, Akram Zangeneh, Shokoufeh Ghahri Saremi, Sheida Ahany Kamangar, Mozhgan Pirhayati. Synthesis of Fe3O4nanoparticles encapsulated with orange pectin for the treatment of gastrointestinal cancersMaterials Express 2022; 12(12): 1455 doi: 10.1166/mex.2022.2314
81
Nehal Salahuddin, Mohamed Gaber, Sahar Elneanaey, Michael R. Snowdon, Mohamed A. Abdelwahab. Co-delivery of norfloxacin and tenoxicam in Ag-TiO2/poly(lactic acid) nanohybridInternational Journal of Biological Macromolecules 2021; 180: 771 doi: 10.1016/j.ijbiomac.2021.03.033
82
Oladipupo Moyinoluwa David, Kim Leigh Lategan, Maria Fidalgo de Cortalezzi, Edmund John Pool. The Stability and Anti-Angiogenic Properties of Titanium Dioxide Nanoparticles (TiO2NPs) Using Caco-2 CellsBiomolecules 2022; 12(10): 1334 doi: 10.3390/biom12101334
83
Jingyi Chen, Hongjun Zhou, Alexander C. Santulli, Stanislaus S. Wong. Evaluating Cytotoxicity and Cellular Uptake from the Presence of Variously Processed TiO2 Nanostructured MorphologiesChemical Research in Toxicology 2010; 23(5): 871 doi: 10.1021/tx900418b
84
Fanny Knorr, Alexa Patzelt, Martina Claudia Meinke, Anika Vogt, Ulrike Blume-Peytavi, Eckart Rühl, Jürgen Lademann. Biological Responses to Nanoscale ParticlesNanoScience and Technology 2019; : 329 doi: 10.1007/978-3-030-12461-8_13
85
Lina Zhang, Pengfeng Zhu, Ting Wan, Huaiyan Wang, Zhilei Mao. Glutamine coated titanium for synergistic sonodynamic and photothermal on tumor therapy upon targeted deliveryFrontiers in Bioengineering and Biotechnology 2023; 11 doi: 10.3389/fbioe.2023.1139426
86
Caroline P. Vignardi, Fabio M. Hasue, Priscila V. Sartório, Caroline M. Cardoso, Alex S.D. Machado, Maria J.A.C.R. Passos, Thais C.A. Santos, Juliana M. Nucci, Thiago L.R. Hewer, Ii-Sei Watanabe, Vicente Gomes, Ngan V. Phan. Genotoxicity, potential cytotoxicity and cell uptake of titanium dioxide nanoparticles in the marine fish Trachinotus carolinus (Linnaeus, 1766)Aquatic Toxicology 2015; 158: 218 doi: 10.1016/j.aquatox.2014.11.008
87
Min Song, Renyun Zhang, Yongyuan Dai, Feng Gao, Huimei Chi, Gang Lv, Baoan Chen, Xuemei Wang. The in vitro inhibition of multidrug resistance by combined nanoparticulate titanium dioxide and UV irraditionBiomaterials 2006; 27(23): 4230 doi: 10.1016/j.biomaterials.2006.03.021
88
Munir Ahmad, Muhammad Khalil Ahmad Khan, Khurram Shahzad, Naveed Ahmad, Munazza Parveen, Muhammad Saleem Khan. Teratological effects of titanium dioxide nanoparticles in mice embryoEnvironmental Science and Pollution Research 2022; 29(27): 40724 doi: 10.1007/s11356-021-18237-0
89
Wenlan Wang, Qingkun Shang, Wei Zheng, Hui Yu, Xuejiao Feng, Zhidan Wang, Yabin Zhang, Guoqiang Li. A Novel Near-Infrared Antibacterial Material Depending on the Upconverting Property of Er3+-Yb3+-Fe3+ Tridoped TiO2 NanopowderThe Journal of Physical Chemistry C 2010; 114(32): 13663 doi: 10.1021/jp102320x
90
John J. Doyle, J. Evan Ward, Gary H. Wikfors. Acute exposure to TiO2 nanoparticles produces minimal apparent effects on oyster, Crassostrea virginica (Gmelin), hemocytesMarine Pollution Bulletin 2018; 127: 512 doi: 10.1016/j.marpolbul.2017.12.039
91
Mi-Rae Jo, Jin Yu, Hyoung-Jun Kim, Jae Song, Kyoung-Min Kim, Jae-Min Oh, Soo-Jin Choi. Titanium Dioxide Nanoparticle-Biomolecule Interactions Influence Oral AbsorptionNanomaterials 2016; 6(12): 225 doi: 10.3390/nano6120225
92
Chao Zhai, Cheng Shi, Yanli Hu, Zhongxin Xu, Ruiying Wang. Anti-breast carcinoma effects of green synthesized tin nanoparticles from Calendula officinalis leaf aqueous extract inhibits MCF7, Hs 319.T, and MCF10 cells proliferationJournal of Experimental Nanoscience 2022; 17(1): 351 doi: 10.1080/17458080.2022.2076836
93
Kenneth T. Thurn, Hans Arora, Tatjana Paunesku, Aiguo Wu, Eric M.B. Brown, Caroline Doty, Jeff Kremer, Gayle Woloschak. Endocytosis of titanium dioxide nanoparticles in prostate cancer PC-3M cellsNanomedicine: Nanotechnology, Biology and Medicine 2011; 7(2): 123 doi: 10.1016/j.nano.2010.09.004
94
Brian C. Schanen, Soumen Das, Christopher M. Reilly, William L. Warren, William T. Self, Sudipta Seal, Donald R. Drake, Neeraj Vij. Immunomodulation and T Helper TH1/TH2 Response Polarization by CeO2 and TiO2 NanoparticlesPLoS ONE 2013; 8(5): e62816 doi: 10.1371/journal.pone.0062816
95
Gunjan Bisht, Sagar Rayamajhi. ZnO Nanoparticles: A Promising Anticancer AgentNanobiomedicine 2016; 3: 9 doi: 10.5772/63437
96
V. F. Zarytova, V. V. Zinov’ev, Z. R. Ismagilov, A. S. Levina, M. N. Repkova, N. V. Shikina, A. A. Evdokimov, E. F. Belanov, S. M. Balakhnin, O. A. Serova, S. I. Baiborodin, E. G. Malygin, S. N. Zagrebel’nyi. An examination of the ability of titanium dioxide nanoparticles and its conjugates with oligonucleotides to penetrate into eucariotis cellsNanotechnologies in Russia 2009; 4(9-10) doi: 10.1134/S1995078009090158
97
Adil M Allahverdiyev, Emrah Sefik Abamor, Malahat Bagirova, Miriam Rafailovich. Antimicrobial effects of TiO2 and Ag2O nanoparticles against drug-resistant bacteria and leishmania parasitesFuture Microbiology 2011; 6(8): 933 doi: 10.2217/fmb.11.78
98
Chengbin Xue, Wei Liu, Jianhong Wu, Xiangliang Yang, Huibi Xu. Chemoprotective effect of N-acetylcysteine (NAC) on cellular oxidative damages and apoptosis induced by nano titanium dioxide under UVA irradiationToxicology in Vitro 2011; 25(1): 110 doi: 10.1016/j.tiv.2010.09.014
99
Eric Chen, Miguel Ruvalcaba, Lindsey Araujo, Ryan Chapman, Wei-Chun Chin. Ultrafine titanium dioxide nanoparticles induce cell death in human bronchial epithelial cellsJournal of Experimental Nanoscience 2008; 3(3): 171 doi: 10.1080/17458080802412430
100
Qiao Zhang, Wenyu Cui, Honglin Guo, Baoqing Wang, He Wang, Jimei Zhang, Wenlan Li. One-pot preparation of nano-scaled magnetic-pectin particles (Fe3O4@pectin NPs): cytotoxicity, antioxidant, and anti-liver cancer propertiesJournal of Experimental Nanoscience 2022; 17(1): 326 doi: 10.1080/17458080.2022.2063279
101
Critical Review on Titania-Based Nanoparticles: Synthesis, Characterization, and Application as a PhotocatalystChemistry Africa 2024; 7(4): 1749 doi: 10.1007/s42250-023-00875-1
102
Milica Matijević, Jelena Žakula, Lela Korićanac, Marija Radoičić, Xinyue Liang, Lan Mi, Jelena Filipović Tričković, Ana Valenta Šobot, Maja N. Stanković, Đura Nakarada, Miloš Mojović, Marijana Petković, Milutin Stepić, Maja D. Nešić. Controlled killing of human cervical cancer cells by combined action of blue light and C-doped TiO2 nanoparticlesPhotochemical & Photobiological Sciences 2021; 20(8): 1087 doi: 10.1007/s43630-021-00082-2
103
Thomas C. Long, Julianne Tajuba, Preethi Sama, Navid Saleh, Carol Swartz, Joel Parker, Susan Hester, Gregory V. Lowry, Bellina Veronesi. Nanosize Titanium Dioxide Stimulates Reactive Oxygen Species in Brain Microglia and Damages Neurons in Vitro Environmental Health Perspectives 2007; 115(11): 1631 doi: 10.1289/ehp.10216
104
Chan Jin, Ying Tang, F. Guang Yang, X. Lin Li, Shan Xu, X. Yan Fan, Y. Ying Huang, Y. Ji Yang. Cellular Toxicity of TiO2 Nanoparticles in Anatase and Rutile Crystal PhaseBiological Trace Element Research 2011; 141(1-3): 3 doi: 10.1007/s12011-010-8707-0
105
Chengzheng Wang, Guonian Li, Bikash Karmakar, Huda S. AlSalem, Ali A. Shati, Attalla F. El-kott, Fahmy G. Elsaid, Mutasem Z. Bani-Fwaz, Abdulrahman A. Alsayegh, Shadi Salem Alkhayyat, Gaber El-Saber Batiha. Pectin mediated green synthesis of Fe3O4/Pectin nanoparticles under ultrasound condition as an anti-human colorectal carcinoma bionanocompositeArabian Journal of Chemistry 2022; 15(6): 103867 doi: 10.1016/j.arabjc.2022.103867
106
Luisa Racca, Giada Rosso, Marco Carofiglio, Sharmila Fagoonee, Giulia Mesiano, Fiorella Altruda, Valentina Cauda. Effective combination of biocompatible zinc oxide nanocrystals and high-energy shock waves for the treatment of colorectal cancerCancer Nanotechnology 2023; 14(1) doi: 10.1186/s12645-023-00195-6
107
Gema Elvira, Berta Moreno, Ignacio del Valle, Jose A. Garcia-Sanz, María Canillas, Eva Chinarro, José R. Jurado, Augusto Silva. Targeting Neural Stem Cells with Titanium Dioxide Nanoparticles Coupled to Specific Monoclonal AntibodiesJournal of Biomaterials Applications 2012; 26(8): 1069 doi: 10.1177/0885328210393294
108
Fanny Caputo, Milena De Nicola, Lina Ghibelli. Pharmacological potential of bioactive engineered nanomaterialsBiochemical Pharmacology 2014; 92(1): 112 doi: 10.1016/j.bcp.2014.08.015
109
Helena Moratin, Agmal Scherzad, Thomas Gehrke, Pascal Ickrath, Katrin Radeloff, Norbert Kleinsasser, Stephan Hackenberg. Toxicological characterization of ZnO nanoparticles in malignant and non‐malignant cellsEnvironmental and Molecular Mutagenesis 2018; 59(3): 247 doi: 10.1002/em.22156
110
Thilo Papp, Dietmar Schiffmann, Dieter Weiss, Vince Castranova, Val Vallyathan, Qamar Rahman. Human health implications of nanomaterial exposureNanotoxicology 2008; 2(1): 9 doi: 10.1080/17435390701847935
111
Liang Cai, Han Su, Fang Wang, Jingyuan Huang, Kai Lu. Silver nanoparticles (Ag NPs) adorned starch-functionalized magnetite nanocomposite: Investigation of cytotoxicity, analgesic and anaesthetic activitiesMaterials Express 2023; 13(8): 1360 doi: 10.1166/mex.2023.2446
112
Guoqing Wang, Hideyuki Mitomo, Yasutaka Matsuo, Naonobu Shimamoto, Kenichi Niikura, Kuniharu Ijiro. DNA-templated plasmonic Ag/AgCl nanostructures for molecular selective photocatalysis and photocatalytic inactivation of cancer cellsJournal of Materials Chemistry B 2013; 1(43): 5899 doi: 10.1039/c3tb20954g
113
Shigeru Yamaguchi, Hiroyuki Kobayashi, Takuhito Narita, Koki Kanehira, Shuji Sonezaki, Yoshinobu Kubota, Shunsuke Terasaka, Yoshinobu Iwasaki. Novel Photodynamic Therapy Using Water‐dispersed TiO2–Polyethylene Glycol Compound: Evaluation of Antitumor Effect on Glioma Cells and Spheroids In VitroPhotochemistry and Photobiology 2010; 86(4): 964 doi: 10.1111/j.1751-1097.2010.00742.x
114
Kangqiang Huang, Li Chen, Jianwen Xiong, Meixiang Liao. Preparation and Characterization of Visible-Light-Activated Fe-N Co-Doped TiO2and Its Photocatalytic Inactivation Effect on Leukemia TumorsInternational Journal of Photoenergy 2012; 2012: 1 doi: 10.1155/2012/631435
115
Dan Huang, Jiuchong Wang, Sufang Zhou, Taiwei Zhang, Jin Cai, Yuhua Liu. Ag nanoparticles green-mediated by Scrophularia striata aqueous extract induce apoptosis via P53 and signal transducer and activator of transcription 3 signaling pathways in gastric cancer cellsInorganic Chemistry Communications 2023; 155: 110942 doi: 10.1016/j.inoche.2023.110942
116
Yanling Huang, Yan Qian, Di Yin, Mian Huang, Hassan Morovvati, Samaneh Goorani. Silver nanoparticles green-formulated by Scrophulariastriata: A novel chemotherapeutic drug for the treatment of nerve cancerMaterials Express 2024; 14(4): 590 doi: 10.1166/mex.2024.2639
117
T. Sree Latha, Madhava C. Reddy, Shankar V. Muthukonda, Vadali V.S.S. Srikanth, Dakshayani Lomada. In vitro and in vivo evaluation of anti-cancer activity: Shape-dependent properties of TiO 2 nanostructuresMaterials Science and Engineering: C 2017; 78: 969 doi: 10.1016/j.msec.2017.04.011
118
Kézia Aguiar Delmond, Taynah Vicari, Izonete Cristina Guiloski, Ana Carolina Dagostim, Carmen Lúcia Voigt, Helena Cristina Silva de Assis, Wanessa Algarte Ramsdorf, Marta Margarete Cestari. Antioxidant imbalance and genotoxicity detected in fish induced by titanium dioxide nanoparticles (NpTiO2) and inorganic lead (PbII)Environmental Toxicology and Pharmacology 2019; 67: 42 doi: 10.1016/j.etap.2019.01.009
119
Su Jin Kang, Byeong Mo Kim, Young Joon Lee, Hai Won Chung. Titanium dioxide nanoparticles trigger p53‐mediated damage response in peripheral blood lymphocytesEnvironmental and Molecular Mutagenesis 2008; 49(5): 399 doi: 10.1002/em.20399
120
S. Ghosh, A.P. Das. Modified titanium oxide (TiO2) nanocomposites and its array of applications: a reviewToxicological & Environmental Chemistry 2015; 97(5): 491 doi: 10.1080/02772248.2015.1052204
121
In Young Kim, Tae Geol Lee, Vytas Reipa, Min Beom Heo. Titanium Dioxide Induces Apoptosis under UVA Irradiation via the Generation of Lysosomal Membrane Permeabilization-Dependent Reactive Oxygen Species in HaCat CellsNanomaterials 2021; 11(8): 1943 doi: 10.3390/nano11081943
122
Hee-Ok Park, Miri Yu, Sung Kyu Kang, Sung Ik Yang, Youn-Jung Kim. Comparison of cellular effects of titanium dioxide nanoparticles with different photocatalytic potential in human keratinocyte, HaCaT cellsMolecular & Cellular Toxicology 2011; 7(1): 67 doi: 10.1007/s13273-011-0010-4
123
Zhilong Yu, Wei Wang, Lin Sun, Fanbin Kong, Mengshi Lin, Azlin Mustapha. Preparation of cellulose nanofibril/titanium dioxide nanoparticle nanocomposites as fillers for PVA-based packaging and investigation into their intestinal toxicityInternational Journal of Biological Macromolecules 2020; 156: 1174 doi: 10.1016/j.ijbiomac.2019.11.153
124
Antonio Tovar-Sánchez, David Sánchez-Quiles, Araceli Rodríguez-Romero. Sunscreens in Coastal EcosystemsThe Handbook of Environmental Chemistry 2020; 94: 131 doi: 10.1007/698_2019_443
125
Yoshie Yamagata, Yoshiaki Sugawara. Sensory Evaluation Spectrum Method as a Descriptive Sensory AnalysisPsychology 2014; 5(14): 1591 doi: 10.4236/psych.2014.514170
126
Mustafa Tuğfan Bilkan, Zehra Çiçek, Ayşe Gülnihal Canseven Kurşun, Mehmet Özler, Meriç Arda Eşmekaya. Investigations on effects of titanium dioxide (TiO2) nanoparticle in combination with UV radiation on breast and skin cancer cellsMedical Oncology 2022; 40(1) doi: 10.1007/s12032-022-01931-5
127
Tzu-Ying Lai, Wen-Chien Lee. Killing of cancer cell line by photoexcitation of folic acid-modified titanium dioxide nanoparticlesJournal of Photochemistry and Photobiology A: Chemistry 2009; 204(2-3): 148 doi: 10.1016/j.jphotochem.2009.03.009
128
James F. Reeves, Simon J. Davies, Nicholas J.F. Dodd, Awadhesh N. Jha. Hydroxyl radicals (OH) are associated with titanium dioxide (TiO2) nanoparticle-induced cytotoxicity and oxidative DNA damage in fish cellsMutation Research/Fundamental and Molecular Mechanisms of Mutagenesis 2008; 640(1-2): 113 doi: 10.1016/j.mrfmmm.2007.12.010
129
Luke J. Mortensen, Gunter Oberdörster, Alice P. Pentland, Lisa A. DeLouise. In Vivo Skin Penetration of Quantum Dot Nanoparticles in the Murine Model: The Effect of UVRNano Letters 2008; 8(9): 2779 doi: 10.1021/nl801323y
130
A. S. Levina, Z. R. Ismagilov, M. N. Repkova, N. V. Shikina, S. I. Baiborodin, N. V. Shatskaya, S. N. Zagrebelnyi, V. F. Zarytova. Design of TiO2~DNA nanocomposites for penetration into cellsRussian Journal of Bioorganic Chemistry 2013; 39(1): 77 doi: 10.1134/S1068162013010068
131
R.K. Kunkalekar, Umesh B. Gawas. Advances in Biological Science Research2019; : 347 doi: 10.1016/B978-0-12-817497-5.00021-5
132
Xiaobo Chen, Samuel S. Mao. Titanium Dioxide Nanomaterials:  Synthesis, Properties, Modifications, and ApplicationsChemical Reviews 2007; 107(7): 2891 doi: 10.1021/cr0500535
133
Mohammad Mamunur Rashid, Petra Forte Tavčer, Brigita Tomšič. Influence of Titanium Dioxide Nanoparticles on Human Health and the EnvironmentNanomaterials 2021; 11(9): 2354 doi: 10.3390/nano11092354
134
Sankar Jagadeeshan, Rajesh Parsanathan. Metal, Metal Oxides and Metal Sulphides for Biomedical ApplicationsEnvironmental Chemistry for a Sustainable World 2021; 58: 281 doi: 10.1007/978-3-030-56413-1_10
135
Shweta Sharma, Rohit K. Sharma, Kavita Gaur, José F. Cátala Torres, Sergio A. Loza-Rosas, Anamaris Torres, Manoj Saxena, Mara Julin, Arthur D. Tinoco. Fueling a Hot Debate on the Application of TiO2 Nanoparticles in SunscreenMaterials 2019; 12(14): 2317 doi: 10.3390/ma12142317
136
Ankush Sharma, Amit K. Goyal, Goutam Rath. Recent advances in metal nanoparticles in cancer therapyJournal of Drug Targeting 2018; 26(8): 617 doi: 10.1080/1061186X.2017.1400553
137
Meifang Wang, Zhiyao Hou, Abdulaziz A. Al Kheraif, Bengang Xing, Jun Lin. Mini Review of TiO2‐Based Multifunctional Nanocomposites for Near‐Infrared Light–Responsive PhototherapyAdvanced Healthcare Materials 2018; 7(20) doi: 10.1002/adhm.201800351
138
Danail R. Hristozov, Alex Zabeo, Christy Foran, Panagiotis Isigonis, Andrea Critto, Antonio Marcomini, Igor Linkov. A weight of evidence approach for hazard screening of engineered nanomaterialsNanotoxicology 2014; 8(1): 72 doi: 10.3109/17435390.2012.750695
139
Meng Yang, Bin Zhu, Yupei Zhang, Qinhe Yang, Sara Amirpour Amraii. Protective properties of AgNPs green-synthesized by Camellia sinensis on ovalbumin-induced allergic conjunctivitisJournal of Engineering Research 2023;  doi: 10.1016/j.jer.2023.07.013
140
Kenneth T. Thurn, Hans Arora, Tatjana Paunesku, Aiguo Wu, Eric M. B. Brown, Caroline Doty, Jeff Kremer, Gayle Woloschak. Nanomedicine in Cancer2017; : 441 doi: 10.1201/9781315114361-18
141
Xiaoya Gao, Dong Han, Juan Wang, Sha Li, Ling Wang, Aiping Zhang. Synthesis, characterization and in vitro photodynamic study of FA-TiO2 nanocompositeMaterials Science in Semiconductor Processing 2015; 40: 351 doi: 10.1016/j.mssp.2015.06.038
142
Guo Zhou, Yijuan You, Binghua Wang, Simin Wang, Jun Liu. Green synthesis of magnetic Fe3O4/Ag nanocomposite using Pomegranate peel extract for the treatment of ovarian cancerArabian Journal of Chemistry 2024; 17(1): 105394 doi: 10.1016/j.arabjc.2023.105394
143
Karan Chaudhary, Dhanraj T. Masram. Model Organisms to Study Biological Activities and Toxicity of Nanoparticles2020; : 19 doi: 10.1007/978-981-15-1702-0_2
144
R. Shwetharani, R. Geetha Balakrishna. Photo-active float for field water disinfectionPhotochemical & Photobiological Sciences 2016; 15(3): 447 doi: 10.1039/c5pp00369e
145
Yoshinobu Oka, Wook‐Cheol Kim, Takashi Yoshida, Toshiko Hirashima, Hisashi Mouri, Hidenori Urade, Yoshihisa Itoh, Toshikazu Kubo. Efficacy of titanium dioxide photocatalyst for inhibition of bacterial colonization on percutaneous implantsJournal of Biomedical Materials Research Part B: Applied Biomaterials 2008; (2): 530 doi: 10.1002/jbm.b.31053
146
E. Kabachkov, E. Kurkin, V. Nadtochenko, A. Terentyev. Research of photocatalytic degradation of HeLa cells at the TiO2 interface by ATR-FTIR and fluorescence microscopyJournal of Photochemistry and Photobiology A: Chemistry 2011; 217(2-3): 425 doi: 10.1016/j.jphotochem.2010.11.019
147
Akhil R. Chakravarty, Mithun Roy. Progress in Inorganic ChemistryProgress in Inorganic Chemistry 2011; 57: 119 doi: 10.1002/9781118148235.ch3
148
Atif Abdulwahab B. Oyouni, Gaber Saber, Lei Zhang, Haiguan Lin, Longfei Ren, Xun Li. WITHDRAWN: Nettle-root extract mediated green synthesis of silver nanoparticles: Characterization and evaluation of its gastric carcinoma propertiesArabian Journal of Chemistry 2022; : 104197 doi: 10.1016/j.arabjc.2022.104197
149
A. I. Zakabunin, V. G. Pugachev, V. V. Zinov’ev, L. G. Ovechkina, B. N. Zaitsev, A. A. Evdokimov, E. G. Malygin. Sodium titanate nanotube interaction with biomoleculesNanotechnologies in Russia 2008; 3(9-10): 639 doi: 10.1134/S1995078008090140
150
L.L.R. de Miranda, K.E. Harvey, A. Ahmed, S.C. Harvey. UV-filter pollution: current concerns and future prospectsEnvironmental Monitoring and Assessment 2021; 193(12) doi: 10.1007/s10661-021-09626-6
151
Amanda M. Fond, Gerald J. Meyer. Nanotechnologies for the Life Sciences2003;  doi: 10.1002/9783527610419.ntls0048
152
Nurhidayatullaili Muhd Jukapli, Samira Bagheri. Recent developments on titania nanoparticle as photocatalytic cancer cells treatmentJournal of Photochemistry and Photobiology B: Biology 2016; 163: 421 doi: 10.1016/j.jphotobiol.2016.08.046
153
Zhihong Liu, Zhuohong Zhang, Xiaomei Du, Ying Liu, Zhiguo Zhang. Formulation of a novel anti-lung cancer drug: Vanadium nanoparticles containing Salvia officinalisInorganic Chemistry Communications 2023; 150: 110520 doi: 10.1016/j.inoche.2023.110520
154
Ping Hou, Hongyi Kuang, Wei Deng, Yan Lei. Immobilized copper nanoparticles on biodegradable magnetic starch composite: investigation of its ovarian cancer, cytotoxicity, and antioxidant effectsJournal of Experimental Nanoscience 2022; 17(1): 496 doi: 10.1080/17458080.2022.2110241
155
Magdiel Inggrid Setyawati, Pheng Kian Stella Khoo, Bao Hui Eng, Sijing Xiong, Xinxin Zhao, Gautom Kumar Das, Timothy Thatt‐Yang Tan, Joachim Say Chye Loo, David Tai Leong, Kee Woei Ng. Cytotoxic and genotoxic characterization of titanium dioxide, gadolinium oxide, and poly(lactic‐co‐glycolic acid) nanoparticles in human fibroblastsJournal of Biomedical Materials Research Part A 2013; (3): 633 doi: 10.1002/jbm.a.34363
156
Chun-Hui Xia, Wen-Xue Yu, Bai-Qi Wang, Yu Wang, Lu Wang. The Primary Mechanism of Photoexcited TiO2 Nanoparticles-induced Apoptosis in Human Hepatoma Bel-7402 Cells2008 International Conference on BioMedical Engineering and Informatics 2008; : 698 doi: 10.1109/BMEI.2008.158
157
Kazuaki Ninomiya, Chiaki Ogino, Shuhei Oshima, Shiro Sonoke, Shun-ichi Kuroda, Nobuaki Shimizu. Targeted sonodynamic therapy using protein-modified TiO2 nanoparticlesUltrasonics Sonochemistry 2012; 19(3): 607 doi: 10.1016/j.ultsonch.2011.09.009
158
Mónica C. García, Jazmín Torres, Antonella V. Dan Córdoba, Marcela Longhi, Paula M. Uberman. Metal Oxides for Biomedical and Biosensor Applications2022; : 35 doi: 10.1016/B978-0-12-823033-6.00029-6
159
Na Ji, Chunyan Dong, Jingjing Jiang. Evaluation of antioxidant, cytotoxicity, and anti-ovarian cancer properties of the Fe3O4@CS-Starch/Cu bio-nanocompositeInorganic Chemistry Communications 2022; 140: 109452 doi: 10.1016/j.inoche.2022.109452
160
Yoshiaki Sugawara, Chie Sugimoto, Sachiko Minabe, Yoshie Iura, Mai Okazaki, Natuki Nakagawa, Miwa Seto, Saki Maruyama, Miki Hirano, Ichiro Kitayama. Use of Human Senses as SensorsSensors 2009; 9(5): 3184 doi: 10.3390/s90503184
161
Ramovatar Meena, Kavindra Kumar Kesari, Madhu Rani, R. Paulraj. Effects of hydroxyapatite nanoparticles on proliferation and apoptosis of human breast cancer cells (MCF-7)Journal of Nanoparticle Research 2012; 14(2) doi: 10.1007/s11051-011-0712-5
162
Chengbin Xue, Wen Luo, Xiang liang Yang. A mechanism for nano-titanium dioxide-induced cytotoxicity in HaCaT cells under UVA irradiationBioscience, Biotechnology, and Biochemistry 2015; 79(8): 1384 doi: 10.1080/09168451.2015.1023248
163
A.R. Lupu, T. Popescu. The noncellular reduction of MTT tetrazolium salt by TiO2 nanoparticles and its implications for cytotoxicity assaysToxicology in Vitro 2013; 27(5): 1445 doi: 10.1016/j.tiv.2013.03.006
164
A. Kathiravan, M. Asha Jhonsi, R. Renganathan. Photoinduced interaction of colloidal TiO2 nanoparticles with lysozyme: Evidences from spectroscopic studiesJournal of Luminescence 2011; 131(9): 1975 doi: 10.1016/j.jlumin.2011.04.004
165
A. Kathiravan, R. Renganathan. Photoinduced interactions between colloidal TiO2 nanoparticles and calf thymus-DNAPolyhedron 2009; 28(7): 1374 doi: 10.1016/j.poly.2009.02.040
166
Janusz Bogdan, Joanna Pławińska-Czarnak, Joanna Zarzyńska. Nanoparticles of Titanium and Zinc Oxides as Novel Agents in Tumor Treatment: a ReviewNanoscale Research Letters 2017; 12(1) doi: 10.1186/s11671-017-2007-y
167
Jana PetkoviĆ, Bojana Žegura, Magdalena StevanoviĆ, Nataša Drnovšek, Dragan UskokoviĆ, Saša Novak, Metka FilipiČ. DNA damage and alterations in expression of DNA damage responsive genes induced by TiO2nanoparticles in human hepatoma HepG2 cellsNanotoxicology 2011; 5(3): 341 doi: 10.3109/17435390.2010.507316
168
Imran Ali, Mohd Suhail, Zied A. Alothman, Abdulrahman Alwarthan. Recent advances in syntheses, properties and applications of TiO2nanostructuresRSC Advances 2018; 8(53): 30125 doi: 10.1039/C8RA06517A
169
N Niño-Martínez, G A Martínez-Castañón, A Aragón-Piña, F Martínez-Gutierrez, J R Martínez-Mendoza, Facundo Ruiz. Characterization of silver nanoparticles synthesized on titanium dioxide fine particlesNanotechnology 2008; 19(6): 065711 doi: 10.1088/0957-4484/19/6/065711
170
Lyudmila V. Zhukova. Evidence for Compression ofEscherichia coliK12 Cells under the Effect of TiO2NanoparticlesACS Applied Materials & Interfaces 2015; 7(49): 27197 doi: 10.1021/acsami.5b08042
171
Meng Meng, Dongyun Xue. Green immobilized Ag NPs over magnetic Fe3O4 NPs using Pomegranate juice induces apoptosis via P53 and signal transducer and activator of transcription 3 signaling pathways in human gastric cancer cellsInorganic Chemistry Communications 2022; 146: 110159 doi: 10.1016/j.inoche.2022.110159
172
Hisamitsu Shinohara, Mitsuo Shimada, Tetsuya Ikemoto, Yuji Morine, Satoru Imura, Masahiko Fujii, Takahumi Imaizumi, Michio Murayama, Yoshiro Aiba. New Type of Artificial Liver Support System (ALSS) Using the Photocatalytic Effect of Titanium OxideDigestive Diseases and Sciences 2007; 52(9): 2271 doi: 10.1007/s10620-006-9701-4
173
Mingchao Liu, Yanhan Liu, Ziqiang Cheng, Jianzhu Liu, Tongjie Chai. Effects of chromic chloride on chick embryo fibroblast viabilityToxicology Reports 2015; 2: 555 doi: 10.1016/j.toxrep.2015.03.007
174
M. Pérez-González, S.A. Tomás, M. Morales-Luna, M.A. Arvizu, M.M. Tellez-Cruz. Optical, structural, and morphological properties of photocatalytic TiO2–ZnO thin films synthesized by the sol–gel processThin Solid Films 2015; 594: 304 doi: 10.1016/j.tsf.2015.04.073
175
María Tomás‐Gamasa, José Luis Mascareñas. TiO2‐Based Photocatalysis at the Interface with Biology and BiomedicineChemBioChem 2020; 21(3): 294 doi: 10.1002/cbic.201900229
176
Paul Thevenot, Jai Cho, Dattatray Wavhal, Ashwin Nair, Richard B. Timmons, Liping Tang. Nanomedicine in Cancer2017; : 411 doi: 10.1201/9781315114361-17
177
Binbin Tan, Jun Chen, Wensheng Wang. Evaluation of the analgesic and anesthetic properties of silver nanoparticles supported over biodegradable acacia gum-modified magnetic nanoparticlesOpen Chemistry 2023; 21(1) doi: 10.1515/chem-2023-0180
178
Zahra Naghdi Gheshlaghi, Gholam Hossein Riazi, Shahin Ahmadian, Mahmoud Ghafari, Roya Mahinpour. Toxicity and interaction of titanium dioxide nanoparticles with microtubule proteinActa Biochimica et Biophysica Sinica 2008; 40(9): 777 doi: 10.1093/abbs/40.9.777
179
Zi Fei Yin, Long Wu, Hua Gui Yang, Yong Hua Su. Recent progress in biomedical applications of titanium dioxidePhysical Chemistry Chemical Physics 2013; 15(14): 4844 doi: 10.1039/c3cp43938k
180
Arghya Narayan Banerjee, Sang Woo Joo, Bong-Ki Min. Photocatalytic Degradation of Organic Dye by Sol-Gel-Derived Gallium-Doped Anatase Titanium Oxide Nanoparticles for Environmental RemediationJournal of Nanomaterials 2012; 2012: 1 doi: 10.1155/2012/201492
181
Preeyaporn Koedrith, Rattana Boonprasert, Jee Young Kwon, Im-Soon Kim, Young Rok Seo. Recent toxicological investigations of metal or metal oxide nanoparticles in mammalian models in vitro and in vivo: DNA damaging potential, and relevant physicochemical characteristicsMolecular & Cellular Toxicology 2014; 10(2): 107 doi: 10.1007/s13273-014-0013-z
182
Priyatosh Nath, Abhijit Datta, Tanushree Sen, Suman Adhikari. Biomarkers in Cancer Detection and Monitoring of Therapeutics2024; : 411 doi: 10.1016/B978-0-323-95114-2.00012-1
183
Sasidharan Swarnalatha Lucky, Niagara Muhammad Idris, Zhengquan Li, Kai Huang, Khee Chee Soo, Yong Zhang. Titania Coated Upconversion Nanoparticles for Near-Infrared Light Triggered Photodynamic TherapyACS Nano 2015; 9(1): 191 doi: 10.1021/nn503450t
184
Nikolay E. Polyakov, Tatyana V. Leshina, Elizaveta S. Meteleva, Alexander V. Dushkin, Tatyana A. Konovalova, Lowell D. Kispert. Enhancement of the Photocatalytic Activity of TiO2 Nanoparticles by Water-Soluble Complexes of CarotenoidsThe Journal of Physical Chemistry B 2010; 114(45): 14200 doi: 10.1021/jp908578j
185
Min Ma, Lu Cheng, Ling Wang, Xingxing Liang, Linjiao Yang, Aiping Zhang. Enhanced photodynamic therapy of TiO2/N-succinyl-chitosan composite for killing cancer cellsBrazilian Journal of Pharmaceutical Sciences 2022; 58 doi: 10.1590/s2175-97902022e181116
186
Balmiki Kumar, Aparna Murali, Irshad Mattan, Supratim Giri. Near-Infrared-Triggered Photodynamic, Photothermal, and on Demand Chemotherapy by Multifunctional Upconversion NanocompositeThe Journal of Physical Chemistry B 2019; 123(17): 3738 doi: 10.1021/acs.jpcb.9b01870
187
Mukesh Lavkush Bhaisare, M. Shahnawaz Khan, Sunil Pandey, Gangaraju Gedda, Hui-Fen Wu. Shape-oriented photodynamic therapy of cuprous oxide (Cu2O) nanocrystals for cancer treatmentRSC Advances 2017; 7(38): 23607 doi: 10.1039/C6RA28705K
188
Shubhro Chakrabartty, Md. Iqbal Alam, Saumya Bhagat, Aftab Alam, Neha Dhyani, Gausal A. Khan, M. Sarwar Alam. Inhibition of snake venom induced sterile inflammation and PLA2 activity by Titanium dioxide Nanoparticles in experimental animalsScientific Reports 2019; 9(1) doi: 10.1038/s41598-019-47557-y