BPG is committed to discovery and dissemination of knowledge
Cited by in CrossRef
For: Zhu WQ, Wang J, Guo XF, Liu Z, Dong WG. Thymoquinone inhibits proliferation in gastric cancer via the STAT3 pathway in vivo and in vitroWorld J Gastroenterol 2016; 22(16): 4149-4159 [PMID: 27122665 DOI: 10.3748/wjg.v22.i16.4149]
URL: https://www.wjgnet.com/1007-9327/full/v22/i16/4149.htm
Number Citing Articles
1
Yasmina K. Mahmoud, Heba M.A. Abdelrazek. Cancer: Thymoquinone antioxidant/pro-oxidant effect as potential anticancer remedyBiomedicine & Pharmacotherapy 2019; 115: 108783 doi: 10.1016/j.biopha.2019.108783
2
Mohammed M Mehanna, Rana Sarieddine, Jana K Alwattar, Racha Chouaib, Hala Gali-Muhtasib. <p>Anticancer Activity of Thymoquinone Cubic Phase Nanoparticles Against Human Breast Cancer: Formulation, Cytotoxicity and Subcellular Localization</p>International Journal of Nanomedicine 2020; : 9557 doi: 10.2147/IJN.S263797
3
Saleh A. Almatroodi, Ahmad Almatroudi, Mohammed A. Alsahli, Amjad A. Khan, Arshad H. Rahmani. Thymoquinone, an Active Compound of Nigella sativa: Role in Prevention and Treatment of CancerCurrent Pharmaceutical Biotechnology 2020; 21(11): 1028 doi: 10.2174/1389201021666200416092743
4
Shahid Karim, Abdulhadi S. Burzangi, Aftab Ahmad, Nasir Ali Siddiqui, Ibrahim M. Ibrahim, Priyanka Sharma, Walaa A. Abualsunun, Gamal A. Gabr. PI3K-AKT Pathway Modulation by Thymoquinone Limits Tumor Growth and Glycolytic Metabolism in Colorectal CancerInternational Journal of Molecular Sciences 2022; 23(4): 2305 doi: 10.3390/ijms23042305
5
Ammad Ahmad Farooqi, Rukset Attar, Baojun Xu. Anticancer and Anti-Metastatic Role of Thymoquinone: Regulation of Oncogenic Signaling Cascades by ThymoquinoneInternational Journal of Molecular Sciences 2022; 23(11): 6311 doi: 10.3390/ijms23116311
6
Belal Almajali, Hamid Ali Nagi Al-Jamal, Wan Rohani Wan Taib, Imilia Ismail, Muhammad Farid Johan, Abd Almonem Doolaanea, Wisam Nabeel Ibrahim. Thymoquinone, as a Novel Therapeutic Candidate of CancersPharmaceuticals 2021; 14(4): 369 doi: 10.3390/ph14040369
7
Opeyemi Oluwafemi Ojueromi, Ganiyu Oboh, Ayokunle Olubode Ademosun. Black Seed (Nigella sativa): A Favourable Alternative Therapy for Inflammatory and Immune System DisordersInflammopharmacology 2022; 30(5): 1623 doi: 10.1007/s10787-022-01035-6
8
Sankhadip Bose, Sabyasachi Banerjee, Arijit Mondal, Utsab Chakraborty, Joshua Pumarol, Courtney R. Croley, Anupam Bishayee. Targeting the JAK/STAT Signaling Pathway Using Phytocompounds for Cancer Prevention and TherapyCells 2020; 9(6): 1451 doi: 10.3390/cells9061451
9
Reem Ali Hamed, Wamidh H. Talib. Targeting cisplatin resistance in breast cancer using a combination of Thymoquinone and Silymarin: an in vitro and in vivo studyPharmacia 2024; 71: 1 doi: 10.3897/pharmacia.71.e117997
10
Wamidh H. Talib, Safa Daoud, Asma Ismail Mahmod, Reem Ali Hamed, Dima Awajan, Sara Feras Abuarab, Lena Hisham Odeh, Samar Khater, Lina T. Al Kury. Plants as a Source of Anticancer Agents: From Bench to BedsideMolecules 2022; 27(15): 4818 doi: 10.3390/molecules27154818
11
Belal Almajali, Muhammad Farid Johan, Abdullah Saleh Al-Wajeeh, Wan Rohani Wan Taib, Imilia Ismail, Maysa Alhawamdeh, Nafe M. Al-Tawarah, Wisam Nabeel Ibrahim, Futoon Abedrabbu Al-Rawashde, Hamid Ali Nagi Al-Jamal. Gene Expression Profiling and Protein Analysis Reveal Suppression of the C-Myc Oncogene and Inhibition JAK/STAT and PI3K/AKT/mTOR Signaling by Thymoquinone in Acute Myeloid Leukemia CellsPharmaceuticals 2022; 15(3): 307 doi: 10.3390/ph15030307
12
Xue Hu, Jingjing Ma, Vikash Vikash, Jiao Li, Dandan Wu, Ya Liu, Jixiang Zhang, Weiguo Dong. Thymoquinone Augments Cisplatin-Induced Apoptosis on Esophageal Carcinoma Through Mitigating the Activation of JAK2/STAT3 PathwayDigestive Diseases and Sciences 2018; 63(1): 126 doi: 10.1007/s10620-017-4856-8
13
Jia‐Ru Wang, Gui‐Nan Shen, Ying‐Hua Luo, Xian‐Ji Piao, Meng Shen, Chang Liu, Yue Wang, Ling‐Qi Meng, Yi Zhang, Hao Wang, Jin‐Qian Li, Wan‐Ting Xu, Yang Liu, Hu‐Nan Sun, Ying‐Hao Han, Mei‐Hua Jin, Long‐Kui Cao, Cheng‐Hao Jin. The compound 2‐(naphthalene‐2‐thio)‐5,8‐dimethoxy‐1,4‐naphthoquinone induces apoptosis via reactive oxygen species‐regulated mitogen‐activated protein kinase, protein kinase B, and signal transducer and activator of transcription 3 signaling in human gastric cancer cellsDrug Development Research 2018; 79(6): 295 doi: 10.1002/ddr.21442
14
Marta Ribeiro, Manuel Simões. Health Consequences of Microbial Interactions with Hydrocarbons, Oils, and Lipids2020; : 335 doi: 10.1007/978-3-030-15147-8_28
15
Shailaja Dombe, Pramodkumar Shirote. Nanosponges Encapsulated Phytochemicals for Targeting Cancer: A ReviewCurrent Drug Targets 2021; 22(4): 443 doi: 10.2174/1389450121999201012201455
16
Aya O. Bashir, Mohamed E. El-Mesery, Rokiah Anwer, Laila A. Eissa. Thymoquinone potentiates miR-16 and miR-375 expressions in hepatocellular carcinomaLife Sciences 2020; 254: 117794 doi: 10.1016/j.lfs.2020.117794
17
Md. Yousuf Ali, Zakia Akter, Zhiqiang Mei, Meiling Zheng, Mousumi Tania, Md. Asaduzzaman Khan. Thymoquinone in autoimmune diseases: Therapeutic potential and molecular mechanismsBiomedicine & Pharmacotherapy 2021; 134: 111157 doi: 10.1016/j.biopha.2020.111157
18
Qing Lv, Jin-Xia Hu, You-Jie Li, Ning Xie, Dan Dan Song, Wei Zhao, Yun-Fei Yan, Bao-Sheng Li, Ping-Yu Wang, Shu-Yang Xie. MiR-320a effectively suppresses lung adenocarcinoma cell proliferation and metastasis by regulating STAT3 signalsCancer Biology & Therapy 2017; 18(3): 142 doi: 10.1080/15384047.2017.1281497
19
Mina Homayoonfal, Zatollah Asemi, Bahman Yousefi. Targeting microRNAs with thymoquinone: a new approach for cancer therapyCellular & Molecular Biology Letters 2021; 26(1) doi: 10.1186/s11658-021-00286-5
20
Md. Asaduzzaman Khan, Mousumi Tania, Shangyi Fu, Junjiang Fu. Thymoquinone, as an anticancer molecule: from basic research to clinical investigationOncotarget 2017; 8(31): 51907 doi: 10.18632/oncotarget.17206
21
Getinet M. Adinew, Equar Taka, Bereket Mochona, Ramesh B. Badisa, Elizabeth A. Mazzio, Rashid Elhag, Karam F. A. Soliman. Therapeutic Potential of Thymoquinone in Triple-Negative Breast Cancer Prevention and Progression through the Modulation of the Tumor MicroenvironmentNutrients 2021; 14(1): 79 doi: 10.3390/nu14010079
22
Li-Min Feng, Xue-Feng Wang, Qing-Xian Huang. Thymoquinone induces cytotoxicity and reprogramming of EMT in gastric cancer cells by targeting PI3K/Akt/mTOR pathwayJournal of Biosciences 2017; 42(4): 547 doi: 10.1007/s12038-017-9708-3
23
Pengzhan He, Yang He, Jingjing Ma, Yinghui Liu, Chuan Liu, Yu Baoping, Weiguo Dong. Thymoquinone induces apoptosis and protective autophagy in gastric cancer cells by inhibiting the PI3K/Akt/mTOR pathwayPhytotherapy Research 2023; 37(8): 3467 doi: 10.1002/ptr.7820
24
Sawsan Elgohary, Aya A. Elkhodiry, Nada S. Amin, Ulrike Stein, Hend M. El Tayebi. Thymoquinone: A Tie-Breaker in SARS-CoV2-Infected Cancer Patients?Cells 2021; 10(2): 302 doi: 10.3390/cells10020302
25
Elham Razmpoosh, Sara Safi, Mahta Mazaheri, Amin Salehi-Abargouei, Nooshin Abdollahi, Majid Nazari, Hossein Fallahzadeh, Azadeh Nadjarzadeh. Effects of oral Nigella sativa oil on the expression levels and serum concentrations of adiponectin, PPAR-γ, and TNF-α in overweight and obese women: a study protocol for a crossover-designed, double-blind, placebo-controlled randomized clinical trialTrials 2019; 20(1) doi: 10.1186/s13063-019-3568-0
26
Muhammad Imran, Abdur Rauf, Imtiaz Ali Khan, Muhammad Shahbaz, Tahira Batool Qaisrani, Sri Fatmawati, Tareq Abu-Izneid, Ali Imran, Khaliq Ur Rahman, Tanweer Aslam Gondal. Thymoquinone: A novel strategy to combat cancer: A reviewBiomedicine & Pharmacotherapy 2018; 106: 390 doi: 10.1016/j.biopha.2018.06.159
27
Morteza Akhzari, Shiva Mohammadi, Sajad Jalili, Mahdi Barazesh, Karim Noorizadeh. Nigella sativa, a Jack of All Trades Plant in Medicine: Pharmacological Aspects in Diseases Treatment and PreventionThe Natural Products Journal 2023; 13(6) doi: 10.2174/2210315513666221005093047
28
Patrycja Kłos, Magdalena Perużyńska, Magdalena Baśkiewicz-Hałasa, Paulina Skupin-Mrugalska, Małgorzata Majcher, Magdalena Sawczuk, Bartosz Szostak, Marek Droździk, Bogusław Machaliński, Dariusz Chlubek. Response of Skin-Derived and Metastatic Human Malignant Melanoma Cell Lines to Thymoquinone and Thymoquinone-Loaded LiposomesPharmaceutics 2022; 14(11): 2309 doi: 10.3390/pharmaceutics14112309
29
Mishari Alshyarba, Hassan Otifi, Majed Al Fayi, Ayed A Dera, Prasanna Rajagopalan. Thymoquinone inhibits IL‐7‐induced tumor progression and metastatic invasion in prostate cancer cells by attenuating matrix metalloproteinase activity and Akt/NF‐κB signalingBiotechnology and Applied Biochemistry 2020;  doi: 10.1002/bab.2062
30
Saurav Bhattacharya, Avijit Ghosh, Santanu Maiti, Manisha Ahir, Gouranga H. Debnath, Payal Gupta, Mousumi Bhattacharjee, Swatilekha Ghosh, Sreya Chattopadhyay, Prasun Mukherjee, Arghya Adhikary. Delivery of thymoquinone through hyaluronic acid-decorated mixed Pluronic® nanoparticles to attenuate angiogenesis and metastasis of triple-negative breast cancerJournal of Controlled Release 2020; 322: 357 doi: 10.1016/j.jconrel.2020.03.033
31
Mahmoud Alhosin. Thymoquinone is a novel potential inhibitor of SIRT1 in cancers with p53 mutation: Role in the reactivation of tumor suppressor p73World Academy of Sciences Journal 2020;  doi: 10.3892/wasj.2020.49
32
Eray Metin Guler, Behice Hande Sisman, Abdurrahim Kocyigit, Mustafa Aziz Hatiboglu. Investigation of cellular effects of thymoquinone on glioma cellToxicology Reports 2021; 8: 162 doi: 10.1016/j.toxrep.2020.12.026
33
Yumei Pu, Shiqi Hu, Yongfeng Chen, Qian Zhang, Chengwan Xia, Han Deng, Yuxin Wang, Qingang Hu. Thymoquinone loaded calcium alginate and polyvinyl alcohol carrier inhibits the 7,12‐dimethylbenz[a]anthracene‐induced hamster oral cancer via the down‐regulation of PI3K/AKT/mTOR signaling pathwaysEnvironmental Toxicology 2021; 36(3): 339 doi: 10.1002/tox.23040
34
Futoon Abedrabbu Al-Rawashde, Muhammad Farid Johan, Wan Rohani Wan Taib, Imilia Ismail, Syed Ahmad Tajudin Tuan Johari, Belal Almajali, Abdullah Saleh Al-wajeeh, Mansoureh Nazari Vishkaei, Hamid Ali Nagi Al-Jamal. Thymoquinone Inhibits Growth of Acute Myeloid Leukemia Cells through Reversal SHP-1 and SOCS-3 Hypermethylation: In Vitro and In Silico EvaluationPharmaceuticals 2021; 14(12): 1287 doi: 10.3390/ph14121287
35
Muthu K. Shanmugam, Frank Arfuso, Alan Prem Kumar, Lingzhi Wang, Boon Cher Goh, Kwang Seok Ahn, Anupam Bishayee, Gautam Sethi. Modulation of diverse oncogenic transcription factors by thymoquinone, an essential oil compound isolated from the seeds of Nigella sativa LinnPharmacological Research 2018; 129: 357 doi: 10.1016/j.phrs.2017.11.023
36
Lehe Yang, Shichong Lin, Lingyuan Xu, Jiayuh Lin, Chengguang Zhao, Xiaoying Huang. Novel activators and small-molecule inhibitors of STAT3 in cancerCytokine & Growth Factor Reviews 2019; 49: 10 doi: 10.1016/j.cytogfr.2019.10.005
37
Arshad H. Rahmani. Molecular and Therapeutic actions of Thymoquinone2018; : 19 doi: 10.1007/978-981-10-8800-1_3
38
Wamidh H. Talib, Izzeddin Alsalahat, Safa Daoud, Reem Fawaz Abutayeh, Asma Ismail Mahmod. Plant-Derived Natural Products in Cancer Research: Extraction, Mechanism of Action, and Drug FormulationMolecules 2020; 25(22): 5319 doi: 10.3390/molecules25225319
39
Fahadul Islam, Saikat Mitra, Talha Bin Emran, Zidan Khan, Nikhil Nath, Rajib Das, Rohit Sharma, Ahmed Abdullah Al Awadh, Moon Nyeo Park, Bonglee Kim. Natural Small Molecules in Gastrointestinal Tract and Associated Cancers: Molecular Insights and Targeted TherapiesMolecules 2022; 27(17): 5686 doi: 10.3390/molecules27175686
40
Prince Ahad Mir, Roohi Mohi-ud-din, Nazia Banday, Mudasir Maqbool, Syed Naeim Raza, Saeema Farooq, Suhaib Afzal, Reyaz Hassan Mir. Anticancer Potential of Thymoquinone: A Novel Bioactive Natural Compound from Nigella sativa L.Anti-Cancer Agents in Medicinal Chemistry 2022; 22(20): 3401 doi: 10.2174/1871520622666220511233314
41
Amin F. Majdalawieh, Muneera W. Fayyad, Gheyath K. Nasrallah. Anti-cancer properties and mechanisms of action of thymoquinone, the major active ingredient ofNigella sativaCritical Reviews in Food Science and Nutrition 2017; 57(18): 3911 doi: 10.1080/10408398.2016.1277971
42
Sylwia Nakonieczna, Aneta Grabarska, Wirginia Kukula-Koch. The Potential Anticancer Activity of Phytoconstituents against Gastric Cancer—A Review on In Vitro, In Vivo, and Clinical StudiesInternational Journal of Molecular Sciences 2020; 21(21): 8307 doi: 10.3390/ijms21218307
43
Chandan Sarkar, Sarmin Jamaddar, Tawhida Islam, Milon Mondal, Muhammad Torequl Islam, Mohammad S. Mubarak. Therapeutic perspectives of the black cumin component thymoquinone: A reviewFood & Function 2021; 12(14): 6167 doi: 10.1039/D1FO00401H
44
Md. Rezaul Islam, Abdur Rauf, Shopnil Akash, Ajoy Kumer, Md Sadique Hussain, Smrity Akter, Jeetendra Kumar Gupta, L.H. Thameemul Ansari, Mir Md. Mahfoj Islam Raj, Talha Bin Emran, Abdullah S.M. Aljohani, Waleed Al Abdulmonem, Rekha Thiruvengadam, Muthu Thiruvengadam. Recent perspective on the potential role of phytocompounds in the prevention of gastric cancerProcess Biochemistry 2023; 135: 83 doi: 10.1016/j.procbio.2023.11.006
45
Zakia Akter, Faiza Rafa Ahmed, Mousumi Tania, Md. Asaduzzaman Khan. Targeting Inflammatory Mediators: An Anticancer Mechanism of Thymoquinone ActionCurrent Medicinal Chemistry 2020; 28(1): 80 doi: 10.2174/0929867326666191011143642
46
Amit S. Choudhari, Pallavi C. Mandave, Manasi Deshpande, Prabhakar Ranjekar, Om Prakash. Phytochemicals in Cancer Treatment: From Preclinical Studies to Clinical PracticeFrontiers in Pharmacology 2020; 10 doi: 10.3389/fphar.2019.01614
47
Mahmoud Balbaa, Marwa El-Zeftawy, Shaymaa A. Abdulmalek, Yasmin R. Shahin. Black cumin (Nigella sativa) seeds: Chemistry, Technology, Functionality, and ApplicationsFood Bioactive Ingredients 2021; : 361 doi: 10.1007/978-3-030-48798-0_23
48
Marta Ribeiro, Manuel Simões. Health Consequences of Microbial Interactions with Hydrocarbons, Oils, and Lipids2019; : 1 doi: 10.1007/978-3-319-72473-7_28-1
49
Peng Gao, Na Niu, Tianshu Wei, Hideto Tozawa, Xiaocui Chen, Caiqing Zhang, Jiandong Zhang, Youichiro Wada, Carolyn M. Kapron, Ju Liu. The roles of signal transducer and activator of transcription factor 3 in tumor angiogenesisOncotarget 2017; 8(40): 69139 doi: 10.18632/oncotarget.19932
50
Saber Imani, Chunli Wei, Jingliang Cheng, Md. Asaduzzaman Khan, Shangyi Fu, Luquan Yang, Mousumi Tania, Xianqin Zhang, Xiuli Xiao, Xianning Zhang, Junjiang Fu. MicroRNA-34a targets epithelial to mesenchymal transition-inducing transcription factors (EMT-TFs) and inhibits breast cancer cell migration and invasionOncotarget 2017; 8(13): 21362 doi: 10.18632/oncotarget.15214
51
Niraj Kumar Jha, Saniya Arfin, Saurabh Kumar Jha, Rohan Kar, Abhijit Dey, Rohit Gundamaraju, Ghulam Md. Ashraf, Piyush Kumar Gupta, Sugapriya Dhanasekaran, Mosleh Mohammad Abomughaid, Sabya Sachi Das, Sachin Kumar Singh, Kamal Dua, Shubhadeep Roychoudhury, Dhruv Kumar, Janne Ruokolainen, Shreesh Ojha, Kavindra Kumar Kesari. Re-establishing the comprehension of phytomedicine and nanomedicine in inflammation-mediated cancer signalingSeminars in Cancer Biology 2022; 86: 1086 doi: 10.1016/j.semcancer.2022.02.022
52
Abdul Waheed Khan, Mariya Farooq, Muhammad Haseeb, Sangdun Choi. Role of Plant-Derived Active Constituents in Cancer Treatment and Their Mechanisms of ActionCells 2022; 11(8): 1326 doi: 10.3390/cells11081326
53
Aqsa Khan, Asifa Khan, Mohammad Aasif Khan, Zoya Malik, Sheersh Massey, Rabea Parveen, Saad Mustafa, Anas Shamsi, Syed A. Husain. Phytocompounds targeting epigenetic modulations: an assessment in cancerFrontiers in Pharmacology 2024; 14 doi: 10.3389/fphar.2023.1273993
54
Milad Ashrafizadeh, Ali Zarrabi, Sima Orouei, Vahideh Zarrin, Ebrahim Rahmani Moghadam, Amirhossein Zabolian, Shima Mohammadi, Kiavash Hushmandi, Yashar Gharehaghajlou, Pooyan Makvandi, Masoud Najafi, Reza Mohammadinejad. STAT3 Pathway in Gastric Cancer: Signaling, Therapeutic Targeting and Future ProspectsBiology 2020; 9(6): 126 doi: 10.3390/biology9060126
55
Mina Homayoonfal, Zatollah Asemi, Bahman Yousefi. Potential anticancer properties and mechanisms of thymoquinone in osteosarcoma and bone metastasisCellular & Molecular Biology Letters 2022; 27(1) doi: 10.1186/s11658-022-00320-0
56
Katarzyna Kostelecka, Łukasz Bryliński, Olga Komar, Justyna Michalczyk, Agata Miłosz, Jan Biłogras, Filip Woliński, Alicja Forma, Jacek Baj. An Overview of the Spices Used for the Prevention and Potential Treatment of Gastric CancerCancers 2024; 16(8): 1611 doi: 10.3390/cancers16081611
57
Xue Hu, Fangzhou Jiao, Lan Zhang, Yingan Jiang. Dihydrotanshinone Inhibits Hepatocellular Carcinoma by Suppressing the JAK2/STAT3 PathwayFrontiers in Pharmacology 2021; 12 doi: 10.3389/fphar.2021.654986
58
Vildan Betul Yenigun, Hasan Acar, Ebru Kanimdan, Alper Yenigun, Abdurrahim Kocyigit, Tulin Cora. KRAS Mutation Reduces Thymoquinone Anticancer Effects on Viability of Cells and ApoptosisAnti-Cancer Agents in Medicinal Chemistry 2023; 23(15): 1747 doi: 10.2174/1871520623666230517123807
59
Manzar Alam, Gulam Mustafa Hasan, Md Meraj Ansari, Rishi Sharma, Dharmendra Kumar Yadav, Md Imtaiyaz Hassan. Therapeutic implications and clinical manifestations of thymoquinonePhytochemistry 2022; 200: 113213 doi: 10.1016/j.phytochem.2022.113213
60
Amr Mohamed, Asfar S. Azmi, Sylvia L. Asa, Sree Harsha Tirumani, Amit Mahipal, Sakti Cjakrabarti, David Bajor, J. Eva Selfridge, Ahmed O. Kaseb. Thymoquinone Plus Immunotherapy in Extra-Pulmonary Neuroendocrine Carcinoma: Case Series for a Novel CombinationCurrent Oncology 2022; 29(11): 9018 doi: 10.3390/curroncol29110707
61
Shabana Tabassum, Norhayati Rosli, Solachuddin Jauhari Arief Ichwan, Puranjan Mishra. Thymoquinone and its pharmacological perspective: A reviewPharmacological Research - Modern Chinese Medicine 2021; 1: 100020 doi: 10.1016/j.prmcm.2021.100020
62
Flama Monteiro, Shilpa S. Shetty, Suchetha Kumari N. Natural antioxidants as inhibitors of pyruvate kinase M2 in Warburg phenotypesJournal of Herbal Medicine 2023; 42: 100750 doi: 10.1016/j.hermed.2023.100750
63
Ochbayasakh Dashdondov, Junaid Wazir, Ganbolor Sukhbaatar, Reyaj Mikrani, Buyankhishig Dorjsuren, Nasrin Aktar, Xiaohui Zhou. Herbal nutraceutical treatment of chronic prostatitis–chronic pelvic pain syndrome: a literature reviewInternational Urology and Nephrology 2021; 53(8): 1515 doi: 10.1007/s11255-021-02868-w
64
Fabliha Ahmed Chowdhury, Md Kamal Hossain, A. G. M. Mostofa, Maruf Mohammad Akbor, Muhammad Shahdaat Bin Sayeed. Therapeutic Potential of Thymoquinone in Glioblastoma Treatment: Targeting Major Gliomagenesis Signaling PathwaysBioMed Research International 2018; 2018: 1 doi: 10.1155/2018/4010629
65
Mimoune Berehab, Redouane Rouas, Haidar Akl, Hugues Duvillier, Fabrice Journe, Hussein Fayyad-Kazan, Ghanem Ghanem, Dominique Bron, Philippe Lewalle, Makram Merimi. Apoptotic and Non-Apoptotic Modalities of Thymoquinone-Induced Lymphoma Cell Death: Highlight of the Role of Cytosolic Calcium and NecroptosisCancers 2021; 13(14): 3579 doi: 10.3390/cancers13143579
66
Syeda Samira Afrose, Md. Junaid, Yeasmin Akter, Mousumi Tania, Meiling Zheng, Md. Asaduzzaman Khan. Targeting kinases with thymoquinone: a molecular approach to cancer therapeuticsDrug Discovery Today 2020; 25(12): 2294 doi: 10.1016/j.drudis.2020.07.019
67
Jingjing Ma, Xue Hu, Jiao Li, Dandan Wu, Qingzhi Lan, Qian Wang, Shan Tian, Weiguo Dong. Enhancing conventional chemotherapy drug cisplatin-induced anti-tumor effects on human gastric cancer cells both in vitro and in vivo by Thymoquinone targeting PTEN geneOncotarget 2017; 8(49): 85926 doi: 10.18632/oncotarget.20721
68
Futoon Abedrabbu Al-Rawashde, Abdullah Saleh Al-wajeeh, Mansoureh Nazari Vishkaei, Hanan Kamel M. Saad, Muhammad Farid Johan, Wan Rohani Wan Taib, Imilia Ismail, Hamid Ali Nagi Al-Jamal. Thymoquinone Inhibits JAK/STAT and PI3K/Akt/ mTOR Signaling Pathways in MV4-11 and K562 Myeloid Leukemia CellsPharmaceuticals 2022; 15(9): 1123 doi: 10.3390/ph15091123
69
Fahad Khan, Pratibha Pandey, Meenakshi Verma, Tarun Kumar Upadhyay. Terpenoid-Mediated Targeting of STAT3 Signaling in Cancer: An Overview of Preclinical StudiesBiomolecules 2024; 14(2): 200 doi: 10.3390/biom14020200
70
Taghreed A. Majrashi, Saad Ali Alshehri, Abdulrhman Alsayari, Abdullatif Bin Muhsinah, Mohammad Alrouji, Asma M. Alshahrani, Anas Shamsi, Akhtar Atiya. Insight into the Biological Roles and Mechanisms of Phytochemicals in Different Types of Cancer: Targeting Cancer TherapeuticsNutrients 2023; 15(7): 1704 doi: 10.3390/nu15071704
71
Pawan Kumar Raghav, Zoya Mann, Vishnu Krishnakumar, Sujata Mohanty. Handbook of Oxidative Stress in Cancer: Mechanistic Aspects2021; : 1 doi: 10.1007/978-981-15-4501-6_116-1
72
Ajaikumar B. Kunnumakkara, Bethsebie L. Sailo, Kishore Banik, Choudhary Harsha, Sahdeo Prasad, Subash Chandra Gupta, Alok Chandra Bharti, Bharat B. Aggarwal. Chronic diseases, inflammation, and spices: how are they linked?Journal of Translational Medicine 2018; 16(1) doi: 10.1186/s12967-018-1381-2
73
Alexander Chota, Blassan P. George, Heidi Abrahamse. Potential Treatment of Breast and Lung Cancer Using Dicoma anomala, an African Medicinal PlantMolecules 2020; 25(19): 4435 doi: 10.3390/molecules25194435
74
Milad Ashrafizadeh, Hossein Rafiei, Reza Mohammadinejad, Elham G. Afshar, Tahereh Farkhondeh, Saeed Samarghandian. Potential therapeutic effects of curcumin mediated by JAK/STAT signaling pathway: A reviewPhytotherapy Research 2020; 34(8): 1745 doi: 10.1002/ptr.6642
75
Pawan Kumar Raghav, Zoya Mann, Vishnu Krishnakumar, Sujata Mohanty. Handbook of Oxidative Stress in Cancer: Mechanistic Aspects2022; : 1717 doi: 10.1007/978-981-15-9411-3_116
76
Farah Ballout, Alissar Monzer, Maamoun Fatfat, Hala El Ouweini, Miran A. Jaffa, Rana Abdel-Samad, Nadine Darwiche, Wassim Abou-Kheir, Hala Gali-Muhtasib. Thymoquinone induces apoptosis and DNA damage in 5-Fluorouracil-resistant colorectal cancer stem/progenitor cellsOncotarget 2020; 11(31): 2959 doi: 10.18632/oncotarget.27426