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Cited by in CrossRef
For: Lietman SA. Induced pluripotent stem cells in cartilage repair. World J Orthop 2016; 7(3): 149-155 [PMID: 27004161 DOI: 10.5312/wjo.v7.i3.149]
URL: https://www.wjgnet.com/2218-5836/full/v7/i3/149.htm
Number Citing Articles
1
Arno Germond, Yulia Panina, Mikio Shiga, Hirohiko Niioka, Tomonobu M. Watanabe. Following Embryonic Stem Cells, Their Differentiated Progeny, and Cell-State Changes During iPS Reprogramming by Raman SpectroscopyAnalytical Chemistry 2020; 92(22): 14915 doi: 10.1021/acs.analchem.0c01800
2
Ganesh Narayanan, Maumita Bhattacharjee, Lakshmi S. Nair, Cato T. Laurencin. Musculoskeletal Tissue Regeneration: the Role of the Stem CellsRegenerative Engineering and Translational Medicine 2017; 3(3): 133 doi: 10.1007/s40883-017-0036-9
3
Gun-Il Im. Orthobiologics2022; : 371 doi: 10.1007/978-3-030-84744-9_30
4
Ewelina Augustyniak, Katarzyna Kulcenty, Michał Lach, Igor Piotrowski, Wiktoria Maria Suchorska. Actual strategies in human induced pluripotent stem cells (hiPSCs) differentiation – perspectives and challengesDiagnostyka Laboratoryjna 2016; 52(2): 123 doi: 10.5604/01.3001.0009.3643
5
AV Eremeev, AS Pikina, ES Ruchko, VS Sidorov, AO Ragozin. Fabrication of cartilage tissue substitutes from cells with induced pluripotencyMedicine of Extreme Situations 2022; (2022(4)) doi: 10.47183/mes.2022.037
6
Vikrant Rai, Matthew F. Dilisio, Nicholas E. Dietz, Devendra K. Agrawal. Recent strategies in cartilage repair: A systemic review of the scaffold development and tissue engineeringJournal of Biomedical Materials Research Part A 2017; 105(8): 2343 doi: 10.1002/jbm.a.36087
7
Caitlin Priester, Amber MacDonald, Madhu Dhar, Austin Bow. Examining the Characteristics and Applications of Mesenchymal, Induced Pluripotent, and Embryonic Stem Cells for Tissue Engineering Approaches across the Germ LayersPharmaceuticals 2020; 13(11): 344 doi: 10.3390/ph13110344
8
Cormac Murphy, Ali Mobasheri, Zsuzsanna Táncos, Julianna Kobolák, András Dinnyés. Cell Biology and Translational Medicine, Volume 1Advances in Experimental Medicine and Biology 2017; 1079: 55 doi: 10.1007/5584_2017_141
9
Jorge Chahla, Bert R. Mandelbaum. Biological Treatment for Osteoarthritis of the Knee: Moving from Bench to Bedside—Current Practical ConceptsArthroscopy: The Journal of Arthroscopic & Related Surgery 2018; 34(5): 1719 doi: 10.1016/j.arthro.2018.01.048
10
Matthew J. Kraeutler, Jorge Chahla, Robert F. LaPrade, Cecilia Pascual-Garrido. Biologic Options for Articular Cartilage Wear (Platelet-Rich Plasma, Stem Cells, Bone Marrow Aspirate Concentrate)Clinics in Sports Medicine 2017; 36(3): 457 doi: 10.1016/j.csm.2017.02.004
11
Cecilia Pascual‐Garrido, Francisco Rodriguez‐Fontan, Elizabeth A. Aisenbrey, Karin A. Payne, Jorge Chahla, Laurie R. Goodrich, Stephanie J. Bryant. Current and novel injectable hydrogels to treat focal chondral lesions: Properties and applicabilityJournal of Orthopaedic Research 2018; 36(1): 64 doi: 10.1002/jor.23760
12
Sunhee Jang, Kijun Lee, Ji Hyeon Ju. Recent Updates of Diagnosis, Pathophysiology, and Treatment on Osteoarthritis of the KneeInternational Journal of Molecular Sciences 2021; 22(5): 2619 doi: 10.3390/ijms22052619
13
Marta A. Szychlinska, Martin J. Stoddart, Ugo D'Amora, Luigi Ambrosio, Mauro Alini, Giuseppe Musumeci. Mesenchymal Stem Cell-Based Cartilage Regeneration Approach and Cell Senescence: Can We Manipulate Cell Aging and Function?Tissue Engineering Part B: Reviews 2017; 23(6): 529 doi: 10.1089/ten.teb.2017.0083
14
Yaqian Hu, Lei Chen, Yi Gao, Pengzhen Cheng, Liu Yang, Chengtie Wu, Qiang Jie. A lithium-containing biomaterial promotes chondrogenic differentiation of induced pluripotent stem cells with reducing hypertrophyStem Cell Research & Therapy 2020; 11(1) doi: 10.1186/s13287-020-01606-w
15
Hanatsu Nagano, William Sparrow, Rezaul Begg. Developments in Smart Multi-Function Gait Assistive Devices for the Prevention and Treatment of Knee Osteoarthritis—A Literature ReviewApplied Sciences 2021; 11(22): 10947 doi: 10.3390/app112210947
16
Michela Bruschi, Pranay Agarwal, Nidhi Bhutani. iPSC Derived Progenitors2022; : 159 doi: 10.1016/B978-0-323-85545-7.00012-0
17
Elizabeth A. Aisenbrey, Ganna Bilousova, Karin Payne, Stephanie J. Bryant. Dynamic mechanical loading and growth factors influence chondrogenesis of induced pluripotent mesenchymal progenitor cells in a cartilage-mimetic hydrogelBiomaterials Science 2019; 7(12): 5388 doi: 10.1039/C9BM01081E
18
Zihao Li, Ziyu Huang, Lunhao Bai. Cell Interplay in OsteoarthritisFrontiers in Cell and Developmental Biology 2021; 9 doi: 10.3389/fcell.2021.720477
19
Michał Lach, Wiktoria M. Suchorska. The effect of the combination of TGF-β1 and BMP2 with high-density pellet cell culture during chondrogenic differentiation of pluripotent stem cells.Letters in Oncology Science 2020; 17(1): 37 doi: 10.21641/los.2020.17.1.169
20
Zaamin B. Hussain, Jorge Chahla, Robert F. LaPrade, Bert R. Mandelbaum. Cartilage Restoration2018; : 131 doi: 10.1007/978-3-319-77152-6_11
21
Forough Mahdavi-Jouibari, Benyamin Parseh, Ezatolah Kazeminejad, Ayyoob Khosravi. Hopes and opportunities of stem cells from human exfoliated deciduous teeth (SHED) in cartilage tissue regenerationFrontiers in Bioengineering and Biotechnology 2023; 11 doi: 10.3389/fbioe.2023.1021024
22
Mina Shahnazari, Sara Malih, Reza Naeimi, Marzieh Savari, Niloofar Shokrollah, Parisa Samadi, Mohsen Sheykhhasan. Cartilage: From Biology to Biofabrication2023; : 453 doi: 10.1007/978-981-99-2452-3_17
23
Yu Liu, Guangdong Zhou, Yilin Cao. Recent Progress in Cartilage Tissue Engineering—Our Experience and Future DirectionsEngineering 2017; 3(1): 28 doi: 10.1016/J.ENG.2017.01.010
24
Artem Eremeev, Arina Pikina, Yevgeny Ruchko, Alexandra Bogomazova. Clinical Potential of Cellular Material Sources in the Generation of iPSC-Based Products for the Regeneration of Articular CartilageInternational Journal of Molecular Sciences 2023; 24(19): 14408 doi: 10.3390/ijms241914408
25
Nazir M Khan, Martha Elena Diaz-Hernandez, Samir Chihab, Priyanka Priyadarshani, Pallavi Bhattaram, Luke J Mortensen, Rosa M Guzzo, Hicham Drissi. Differential chondrogenic differentiation between iPSC derived from healthy and OA cartilage is associated with changes in epigenetic regulation and metabolic transcriptomic signatureseLife 2023; 12 doi: 10.7554/eLife.83138
26
Melanie Fisher, Tyler Ackley, Kelsey Richard, Bridget Oei, Caroline N. Dealy. Encyclopedia of Biomedical Engineering2019; : 660 doi: 10.1016/B978-0-12-801238-3.64119-3
27
Zhen Zhang, Yulei Mu, Huiqun Zhou, Hang Yao, Dong-An Wang. Cartilage Tissue Engineering in Practice: Preclinical Trials, Clinical Applications, and ProspectsTissue Engineering Part B: Reviews 2023; 29(5): 473 doi: 10.1089/ten.teb.2022.0190
28
Maryam Farokhi, Farinaz Jonidi Shariatzadeh, Atefeh Solouk, Hamid Mirzadeh. Alginate Based Scaffolds for Cartilage Tissue Engineering: A ReviewInternational Journal of Polymeric Materials and Polymeric Biomaterials 2020; 69(4): 230 doi: 10.1080/00914037.2018.1562924
29
Polina A. Golubinskaya, Arina S. Pikina, Eugene S. Ruchko, Tatyana V. Vladimirova, Alexandra N. Bogomazova, Artem V. Eremeev. Application of hydrogel scaffolds as a cell substrate for cartilage tissue regenerationGenes & Cells 2024; 19(1): 43 doi: 10.17816/gc606639
30
Shuangpeng Jiang, Weimin Guo, Guangzhao Tian, Xujiang Luo, Liqing Peng, Shuyun Liu, Xiang Sui, Quanyi Guo, Xu Li. Clinical Application Status of Articular Cartilage Regeneration Techniques: Tissue-Engineered Cartilage Brings New HopeStem Cells International 2020; 2020: 1 doi: 10.1155/2020/5690252
31
Lior Laver, Yosef Sourugeon, Yaniv Yonai, Baris Kocaoglu, Peter Angele, Philipp Niemeyer, Laura DeGirolamo. Surgical Techniques of the Shoulder, Elbow, and Knee in Sports Medicine2022; : 645 doi: 10.1016/B978-0-323-76300-4.00084-9
32
A.R. Raleigh, W.J. McCarty, A.C. Chen, C. Meinert, T.J. Klein, R.L. Sah. Comprehensive Biomaterials II2017; : 107 doi: 10.1016/B978-0-12-803581-8.09304-8
33
Maria Csobonyeiova, Stefan Polak, Andreas Nicodemou, Radoslav Zamborsky, Lubos Danisovic. iPSCs in Modeling and Therapy of OsteoarthritisBiomedicines 2021; 9(2): 186 doi: 10.3390/biomedicines9020186