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For: Yoon JJ, Ismail S, Sherwin T. Limbal stem cells: Central concepts of corneal epithelial homeostasis. World J Stem Cells 2014; 6(4): 391-403 [PMID: 25258661 DOI: 10.4252/wjsc.v6.i4.391]
URL: https://www.wjgnet.com/1948-0210/full/v6/i4/391.htm
Number Citing Articles
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Sif G. Kaad, Tess C. Lengyell, Seyedeh Zeinab Mirjalili Mohanna, Diana Djaksigulova, Andrea J. Korecki, Elizabeth M. Simpson. First pilot study of intrastromal rAAV-PAX6 gene therapy suggests improved corneal thickness and transcription correction in aniridic mouseMolecular Therapy Advances 2026; 34(3) doi: 10.1016/j.omta.2026.201786
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Balu Venugopal, Bernadette K. Madathil, Anil Kumar P.R.. Biointegration of Medical Implant Materials2020;  doi: 10.1016/B978-0-08-102680-9.00011-1
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Noriaki Nagai, Yoshie Iwai, Saori Deguchi, Hiroko Otake, Kazutaka Kanai, Norio Okamoto, Yoshikazu Shimomura. Therapeutic Potential of a Combination of Magnesium Hydroxide Nanoparticles and Sericin for Epithelial Corneal Wound HealingNanomaterials 2019; 9(5) doi: 10.3390/nano9050768
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Yijian Li, Lingling Ge, Xia Chen, Yumei Mao, Xianliang Gu, Bangqi Ren, Yuxiao Zeng, Min Chen, Siyu Chen, Jinhua Liu, Yuli Yang, Haiwei Xu. The common YAP activation mediates corneal epithelial regeneration and repair with different-sized woundsnpj Regenerative Medicine 2021; 6(1) doi: 10.1038/s41536-021-00126-2
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John D. West. Commentary: Lineage Tracing Supports Maintenance of the Corneal Epithelium by Limbal Epithelial Stem CellsStem Cells 2015; 33(1) doi: 10.1002/stem.1892
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Quentin M. Perrin, Ali Miserez. Living Organs as Micro‐Factories: Material‐Producing OrganoidsWIREs Nanomedicine and Nanobiotechnology 2026; 18(1) doi: 10.1002/wnan.70049
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Asim V. Farooq, Simona Degli Esposti, Rakesh Popat, Praneetha Thulasi, Sagar Lonial, Ajay K. Nooka, Andrzej Jakubowiak, Douglas Sborov, Brian E. Zaugg, Ashraf Z. Badros, Bennie H. Jeng, Natalie S. Callander, Joanna Opalinska, January Baron, Trisha Piontek, Julie Byrne, Ira Gupta, Kathryn Colby. Corneal Epithelial Findings in Patients with Multiple Myeloma Treated with Antibody–Drug Conjugate Belantamab Mafodotin in the Pivotal, Randomized, DREAMM-2 StudyOphthalmology and Therapy 2020; 9(4) doi: 10.1007/s40123-020-00280-8
8
Yuzuru Sasamoto, Catherine A.A. Lee, Brian J. Wilson, Florian Buerger, Gabrielle Martin, Ananda Mishra, Shoko Kiritoshi, Johnathan Tran, Gabriel Gonzalez, Friedhelm Hildebrandt, Vickie Y. Jo, Christine G. Lian, George F. Murphy, Bruce R. Ksander, Markus H. Frank, Natasha Y. Frank. Limbal BCAM expression identifies a proliferative progenitor population capable of holoclone formation and corneal differentiationCell Reports 2022; 40(6) doi: 10.1016/j.celrep.2022.111166
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Sophia Masterton, Mark Ahearne. Influence of polydimethylsiloxane substrate stiffness on corneal epithelial cellsRoyal Society Open Science 2019; 6(12) doi: 10.1098/rsos.191796
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Rachel Herndon Klein, William Hu, Ghaidaa Kashgari, Ziguang Lin, Tuyen Nguyen, Michael Doan, Bogi Andersen. Characterization of enhancers and the role of the transcription factor KLF7 in regulating corneal epithelial differentiationJournal of Biological Chemistry 2017; 292(46) doi: 10.1074/jbc.M117.793117
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Yihui Wang, Huanhuan Ge, Peng Chen, Ye Wang. Wnt/β-catenin signaling in corneal epithelium development, homeostasis, and pathobiologyExperimental Eye Research 2024; 246 doi: 10.1016/j.exer.2024.110022
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Natalie J. Dorà, Robert E. Hill, J. Martin Collinson, John D. West. Lineage tracing in the adult mouse corneal epithelium supports the limbal epithelial stem cell hypothesis with intermittent periods of stem cell quiescenceStem Cell Research 2015; 15(3) doi: 10.1016/j.scr.2015.10.016
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O. I. Alexandrova, Y. I. Khorolskaya, D. Y. Maychuk, M. I. Blinova, O. I. Alexandrova, Y. I. Khorolskaya, D. Y. Maychuk, M. I. Blinova. Study of common cytotoxicity of aminoglycoside and fluoroquinolone antibiotics in cell culturesVestnik oftal'mologii 2015; 131(5) doi: 10.17116/oftalma2015131543-53
14
Hideyuki Miyashita, Hiroko Niwano, Satoru Yoshida, Shin Hatou, Emi Inagaki, Kazuo Tsubota, Shigeto Shimmura. Long-term homeostasis and wound healing in an in vitro epithelial stem cell niche modelScientific Reports 2017; 7(1) doi: 10.1038/srep43557
15
Bartosz Sikora, Aleksandra Skubis-Sikora, Małgorzata Kimsa-Furdzik, Wojciech Ciszek, Marek Kostrzewski, Jerzy Stojko, Urszula Mazurek, Joanna Gola. Adipose-derived stem cells undergo differentiation after co-culture with porcine limbal epithelial stem cellsStem Cell Research 2019; 41 doi: 10.1016/j.scr.2019.101609
16
Di Sun, Wei-Yun Shi, Sheng-Qian Dou. Single-cell RNA sequencing in cornea research: Insights into limbal stem cells and their niche regulationWorld Journal of Stem Cells 2023; 15(5): 466-475 doi: 10.4252/wjsc.v15.i5.466
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Yixin Luan, Aytan Musayeva, Jina Kim, Debbie Le Blon, Bert van den Bogerd, Mor M. Dickman, Vanessa L. S. LaPointe, Sorcha Ni Dhubhghaill, Silke Oellerich. Clinical Applications of Corneal Cells Derived from Induced Pluripotent Stem CellsBiomolecules 2025; 15(8) doi: 10.3390/biom15081139
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Joanna Klećkowska-Nawrot, Aleksander Chrószcz, Abit Aktaş, Wojciech Paszta, Karolina Goździewska-Harłajczuk, Dominik Poradowski. Comparative Histology of the Cornea and Palisades of Vogt in Various Non-Human PrimatesVeterinary Sciences 2026; 13(1) doi: 10.3390/vetsci13010109
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Swati Sood, Anil Tiwari, Jyoti Sangwan, Mehak Vohra, Nishant R. Sinha, Ratnakar Tripathi, Virender S. Sangwan, Rajiv R. Mohan. Role of epigenetics in corneal health and diseaseProgress in Retinal and Eye Research 2025; 104 doi: 10.1016/j.preteyeres.2024.101318
20
Shengwei Li, Haozhe Yu, Pu Wang, Yun Feng. Evaluation of the Effects of Pterygium and Aging on Limbal Structure Using Optical Coherence TomographyJournal of Clinical Medicine 2022; 11(19) doi: 10.3390/jcm11195879
21
C. Maya Tong, Bonnie He, Alfonso Iovieno, Sonia N. Yeung. Diagnosis and management of limbal stem cell deficiency, challenges, and future prospectsExpert Review of Ophthalmology 2021; 16(4) doi: 10.1080/17469899.2021.1933441
22
Eva Kammergruber, Carolin Rahn, Barbara Nell, Simone Gabner, Monika Egerbacher. Morphological and immunohistochemical characteristics of the equine corneal epitheliumVeterinary Ophthalmology 2019; 22(6) doi: 10.1111/vop.12651
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Dennis E. Brooks, Andrew Matthews, Alison B. Clode. Equine Ophthalmology2016;  doi: 10.1002/9781119047919.ch7
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Yuzuru Sasamoto, Yoshinori Oie, Kohji Nishida. Corneal RegenerationEssentials in Ophthalmology 2019;  doi: 10.1007/978-3-030-01304-2_11
25
Tsung‐Han Lu, Szu‐Yu Kuo, Jui‐Hsia Hsu, Yen‐Lien Chen, Han‐Hsin Chang, Chin‐Chu Chen, David Pei‐Cheng Lin. Utilizing Cordyceps cicadae Mycelium as a Potential Supplement for Alleviating UVB‐Induced Photokeratitis Symptoms In VivoeFood 2025; 6(4) doi: 10.1002/efd2.70083
26
Inrava Khasnabish. Complex Cases in Clinical Ophthalmology Practice2024;  doi: 10.1007/978-3-031-73467-0_6
27
Sudhir Verma, Xiao Lin, Vivien J. Coulson-Thomas. The Potential Reversible Transition between Stem Cells and Transient-Amplifying Cells: The Limbal Epithelial Stem Cell PerspectiveCells 2024; 13(9) doi: 10.3390/cells13090748
28
Yixue Yin, Luguang Jiao, Jiarui Wang, Jike Song, Zaifu Yang, Hongsheng Bi. Single-cell RNA sequencing of mouse cornea during wound healing after infrared laser irradiationExperimental Eye Research 2025; 260 doi: 10.1016/j.exer.2025.110615
29
Belinda J. Hernandez, Danielle M. Robertson. Exosomes in Corneal Homeostasis and Wound HealingCurrent Eye Research 2025; 50(12) doi: 10.1080/02713683.2025.2459335
30
Yongyi Zhang, Gege Tang, Jingjie Zhang, Yao Fu, Xinghao Zhang, Yanhua Qi, Nan Zhou. Clinical Features of Corneal Adverse Events Associated With Trastuzumab Botidotin: Payload-Driven Epitheliopathy and NeuropathyAmerican Journal of Ophthalmology 2026; 289 doi: 10.1016/j.ajo.2026.05.028
31
Shadi Moshayedi, Ashley Vazquez, Alexander J. Choi, Dimitrios Karamichos, Jayoung Kim. 3D‐Printed Corneal Substitutes: Materials, Fabrication, and Preclinical ProgressAdvanced Materials Technologies 2026;  doi: 10.1002/admt.71162
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Yasemi Masoud, Salouti Ramin, Razmkhah Mahboobeh, Maalhagh Mehrnoosh, Javidi Fahimeh, Kariminejad Parastoo. Effect of Lithium and Valproate on Proliferation and Migration of Limbal Epithelial Stem/Progenitor CellsCurrent Eye Research 2019; 44(2) doi: 10.1080/02713683.2018.1521978
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Nyemkuna Fortingo, Samuel Melnyk, Sarah H. Sutton, Mitchell A. Watsky, Wendy B. Bollag. Innate Immune System Activation, Inflammation and Corneal Wound HealingInternational Journal of Molecular Sciences 2022; 23(23) doi: 10.3390/ijms232314933
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Andres Serrano, Kwaku A. Osei, Marcela Huertas-Bello, Alfonso L. Sabater. The Potential of Stem Cells as Treatment for Ocular Surface DiseasesCurrent Ophthalmology Reports 2022; 10(4) doi: 10.1007/s40135-022-00303-6
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Kosei Suzuki, Shinri Sato, Markus H. Frank, Natasha Y. Frank, Yuzuru Sasamoto. YAP1-dependent regulation of cell size in BCAM-positive limbal corneal progenitor cellsExperimental Eye Research 2026; 269 doi: 10.1016/j.exer.2026.111059
36
Tiago Ramos, Deborah Scott, Sajjad Ahmad. An Update on Ocular Surface Epithelial Stem Cells: Cornea and ConjunctivaStem Cells International 2015; 2015 doi: 10.1155/2015/601731
37
Cestmir Cejka, Vladimir Holan, Peter Trosan, Alena Zajicova, Eliska Javorkova, Jitka Cejkova, Janusz Gebicki. [Retracted] The Favorable Effect of Mesenchymal Stem Cell Treatment on the Antioxidant Protective Mechanism in the Corneal Epithelium and Renewal of Corneal Optical Properties Changed after Alkali BurnsOxidative Medicine and Cellular Longevity 2016; 2016(1) doi: 10.1155/2016/5843809
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Salim Ismail, Jennifer J. McGhee, Ye Li, Jeremy John Mathan, Jinny Jung Yoon, Himanshu Wadhwa, Stephanie U-Shane Huang, Trevor Sherwin. Corneal RegenerationEssentials in Ophthalmology 2019;  doi: 10.1007/978-3-030-01304-2_21
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Noriaki Nagai, Yuya Fukuoka, Miyu Ishii, Hiroko Otake, Tetsushi Yamamoto, Atsushi Taga, Norio Okamoto, Yoshikazu Shimomura. Instillation of Sericin Enhances Corneal Wound Healing through the ERK Pathway in Rat Debrided Corneal EpitheliumInternational Journal of Molecular Sciences 2018; 19(4) doi: 10.3390/ijms19041123
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E. Yu Zakirova, A.N. Valeeva, A.M. Aimaletdinov, L.V. Nefedovskaya, R.F. Akhmetshin, C.S. Rutland, A.A. Rizvanov. Potential therapeutic application of mesenchymal stem cells in ophthalmologyExperimental Eye Research 2019; 189 doi: 10.1016/j.exer.2019.107863
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S.V. Trufanov, A.M. Subbot, N.P. Shakhbazyan. Modern biotechnological treatment methods of persistent corneal epithelial defectsVestnik oftal'mologii 2020; 136(5) doi: 10.17116/oftalma2020136052277
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Joel Vanin, Michael Getz, Catherine Mahony, Thomas B. Knudsen, James A. Glazier, David Basanta Gutierrez. V-Cornea: A computational model of corneal epithelium homeostasis, injury, and recoveryPLOS Computational Biology 2025; 21(12) doi: 10.1371/journal.pcbi.1013410
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Peter Bedard, Ching Yuan, Sung Lee, Heidi Roehrich, Joshua H. Hou. Descemet Membrane Versus Amniotic Membrane for Limbal Stem Cell TherapyCornea 2026; 45(5) doi: 10.1097/ICO.0000000000004073
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Mohamed Salih, Bakiah Shaharuddin, Samar Abdelrazeg. A Concise Review on Mesenchymal Stem Cells for Tissue Engineering with a Perspective on Ocular Surface RegenerationCurrent Stem Cell Research & Therapy 2020; 15(3) doi: 10.2174/1574888X15666200129145251
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Alice Rocha Teixeira Netto, Marc Dieter Hrusa, Karl-Ulrich Bartz-Schmidt, Sven Schnichels, José Hurst. Two Methods for the Isolation and Cultivation of Porcine Primary Corneal CellsMethods and Protocols 2023; 6(3) doi: 10.3390/mps6030050
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Zhi Hou Guo, Wei Zhang, Yang Yan Sheng Jia, Qing Xiu Liu, Zhao Fa Li, Jun Sheng Lin. An Insight into the Difficulties in the Discovery of Specific Biomarkers of Limbal Stem CellsInternational Journal of Molecular Sciences 2018; 19(7) doi: 10.3390/ijms19071982
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Jaysukh P. Singh. The Limbal Niche and Its Role in Maintaining Corneal RegenerationOpen Journal of Ophthalmology 2024; 14(01) doi: 10.4236/ojoph.2024.141008
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Wentao Liang, Li Huang, Xiang Ma, Lijie Dong, Rui Cheng, Marcus Dehdarani, Dimitrios Karamichos, Jian-xing Ma. Pathogenic Role of Diabetes-Induced Overexpression of Kallistatin in Corneal Wound Healing Deficiency Through Inhibition of Canonical Wnt SignalingDiabetes 2022; 71(4) doi: 10.2337/db21-0740
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Fatemeh Sanie-Jahromi, Masoomeh Eghtedari, Mahmood Nejabat, Ramin Salouti, Hossein Jamali, Shahram Bamdad, Mohammad Hassan Jalalpour, Amir Khosravi. Limbal stem cell sheet bandage for short-term treatment of corneal regenerationBMC Ophthalmology 2025; 25(1) doi: 10.1186/s12886-025-04417-w
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Narayanasamy Angayarkanni, Karunakaran Coral, Subramaniam Rajesh Bharathi Devi, Aluru Venkata Saijyothi. Pharmacology of Ocular Therapeutics2016;  doi: 10.1007/978-3-319-25498-2_5
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Mehmet Gürdal, Özlem Barut Selver, Kemal Baysal, İsmet Durak. Comparison of culture media indicates a role for autologous serum in enhancing phenotypic preservation of rabbit limbal stem cells in explant cultureCytotechnology 2018; 70(2) doi: 10.1007/s10616-017-0171-7
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Yijian Li, Lingling Ge, Bangqi Ren, Xue Zhang, Zhiyuan Yin, Hongling Liu, Yuli Yang, Yong Liu, Haiwei Xu. De-Differentiation of Corneal Epithelial Cells Into Functional Limbal Epithelial Stem Cells After the Ablation of Innate Stem CellsInvestigative Ophthalmology & Visual Science 2024; 65(13) doi: 10.1167/iovs.65.13.32
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Maria Mirotsou, Masashi Abe, Robert Lanza. Principles of Tissue Engineering2020;  doi: 10.1016/B978-0-12-818422-6.00063-0
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Joan Oliva, Arjie Florentino, Fawzia Bardag‐Gorce, Yutaka Niihara. Vitrification and storage of oral mucosa epithelial cell sheetsJournal of Tissue Engineering and Regenerative Medicine 2019; 13(7) doi: 10.1002/term.2864
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Pei Zhang, Xi-ya Ma, Dian-tong Huang, Xue-yi Yang. The capacity of goat epidermal adult stem cells to reconstruct the damaged ocular surface of total LSCD and activate corneal genetic programsJournal of Molecular Histology 2020; 51(3) doi: 10.1007/s10735-020-09879-4
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Eman E. Taher, Mohamed Elalfy, Kareem Elsawah. Mesenchymal Stem Cells in Human Health and Diseases2020;  doi: 10.1016/B978-0-12-819713-4.00004-9
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Bartosz Sikora, Aleksandra Skubis, Lech Sedlak, Małgorzata Kimsa-Furdzik, Marek Kostrzewski, Urszula Mazurek, Roman Aleksiewicz. Limbal epithelial stem cells in regeneration of corneal epithelium – clinical and molecular aspectsAnnales Academiae Medicae Silesiensis 2018; 72 doi: 10.18794/aams/76254
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Brian G. Ballios, Allan R. Slomovic. Regenerative Medicine and Stem Cell Therapy for the EyeFundamental Biomedical Technologies 2018;  doi: 10.1007/978-3-319-98080-5_7
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Thomas Volatier, Björn Schumacher, Claus Cursiefen, Maria Notara. UV Protection in the Cornea: Failure and RescueBiology 2022; 11(2) doi: 10.3390/biology11020278
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Hasan Mahmud Reza, Hajime Ogino, Chio Oka, Yasumasa Bessho, Kunio Yasuda. Differential Expression of Sox2 in Human Ocular Surface and Its Implication in Pterygium PathogenesisSage Open Pathology 2026; 19 doi: 10.1177/30502098261477393
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Zahra Bibak-Bejandi, Ali R. Djalilian. Encyclopedia of the Eye2025;  doi: 10.1016/B978-0-443-13820-1.00212-7
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Ye Li, Salim Ismail, Jennifer Jane McGhee, Himanshu Wadhwa, Nikita Noord, Bert van der Werf, Trevor Sherwin. Differences in sphere-forming cells from keratoconic and normal corneal tissue: Implications for keratoconus pathogenesisExperimental Eye Research 2021; 202 doi: 10.1016/j.exer.2020.108301
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Pei-Xi Ying, Min Fu, Chang Huang, Zhi-Hong Li, Qing-Yi Mao, Sheng Fu, Xu-Hui Jia, Yu-Chen Cao, Li-Bing Hong, Li-Yang Cai, Xi Guo, Ru-Bing Liu, Fan-ke Meng, Guo-Guo Yi. Profile of biological characterizations and clinical application of corneal stem/progenitor cellsWorld Journal of Stem Cells 2022; 14(11): 777-797 doi: 10.4252/wjsc.v14.i11.777
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Jung Woo Park, Juan Yang, Ren-He Xu. PAX6 Alternative Splicing and Corneal DevelopmentStem Cells and Development 2018; 27(6) doi: 10.1089/scd.2017.0283
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Teruo Nishida, Makoto Inui, Motoyoshi Nomizu. Peptide therapies for ocular surface disturbances based on fibronectin–integrin interactionsProgress in Retinal and Eye Research 2015; 47 doi: 10.1016/j.preteyeres.2015.01.004
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Paul W. Hamilton, Jonathan J. Henry. The lens regenerative competency of limbal vs. central regions of mature Xenopus cornea epitheliumExperimental Eye Research 2016; 152 doi: 10.1016/j.exer.2016.08.013
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Kasem Theerakittayakorn, Hong Thi Nguyen, Jidapa Musika, Hataiwan Kunkanjanawan, Sumeth Imsoonthornruksa, Sirilak Somredngan, Mariena Ketudat-Cairns, Rangsun Parnpai. Differentiation Induction of Human Stem Cells for Corneal Epithelial RegenerationInternational Journal of Molecular Sciences 2020; 21(21) doi: 10.3390/ijms21217834
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Huanhuan Liu, Zhengbing Zhou, Hui Lin, Juan Wu, Brian Ginn, Ji Suk Choi, Xuesong Jiang, Liam Chung, Jennifer H. Elisseeff, Samuel Yiu, Hai-Quan Mao. Synthetic Nanofiber-Reinforced Amniotic Membrane via Interfacial BondingACS Applied Materials & Interfaces 2018; 10(17) doi: 10.1021/acsami.8b03087
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Qingjian Li, Yankun Shen, Shinan Wu, Hong Wei, Jie Zou, Sanhua Xu, Qian Ling, Min Kang, Hui Huang, Xu Chen, Yi Shao. MLN4924 Promotes Self-Renewal of Limbal Stem Cells and Ocular Surface RestorationJournal of Personalized Medicine 2023; 13(3) doi: 10.3390/jpm13030379
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Alexander V. Ljubimov, Mehrnoosh Saghizadeh. Progress in corneal wound healingProgress in Retinal and Eye Research 2015; 49 doi: 10.1016/j.preteyeres.2015.07.002
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Ansu Ann John, Hooman Ahmadzadeh, Alfonso L. Sabater. Developing stem cells for corneal disease: recent developments and future perspectivesRegenerative Medicine 2025; 20(6) doi: 10.1080/17460751.2025.2526253
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Fu-shin X. Yu, Patrick S.Y. Lee, Lingling Yang, Nan Gao, Yangyang Zhang, Alexander V. Ljubimov, Ellen Yang, Qingjun Zhou, Lixin Xie. The impact of sensory neuropathy and inflammation on epithelial wound healing in diabetic corneasProgress in Retinal and Eye Research 2022; 89 doi: 10.1016/j.preteyeres.2021.101039
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Xinbo Gao, Kai Guo, Samuel M. Santosa, Mario Montana, Michael Yamakawa, Joelle A. Hallak, Kyu-Yeon Han, Susan J. Doh, Mark I. Rosenblatt, Jin-Hong Chang, Dimitri T. Azar. Application of corneal injury models in dual fluorescent reporter transgenic mice to understand the roles of the cornea and limbus in angiogenic and lymphangiogenic privilegeScientific Reports 2019; 9(1) doi: 10.1038/s41598-019-48811-z
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Reem Al Monla, Vincent Daien, Frederic Michon. Advanced bioengineering strategies broaden the therapeutic landscape for corneal failureFrontiers in Bioengineering and Biotechnology 2024; 12 doi: 10.3389/fbioe.2024.1480772
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Hong Thi Nguyen, Kasem Theerakittayakorn, Sirilak Somredngan, Apichart Ngernsoungnern, Piyada Ngernsoungnern, Pishyaporn Sritangos, Mariena Ketudat-Cairns, Sumeth Imsoonthornruksa, Juthaporn Assawachananont, Nattawut Keeratibharat, Rangsirat Wongsan, Ruttachuk Rungsiwiwut, Chuti Laowtammathron, Nguyen Xuan Bui, Rangsun Parnpai. Signaling Pathways Impact on Induction of Corneal Epithelial-like Cells Derived from Human Wharton’s Jelly Mesenchymal Stem CellsInternational Journal of Molecular Sciences 2022; 23(6) doi: 10.3390/ijms23063078
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Núria Nieto-Nicolau, Beatriz Martín-Antonio, Claudia Müller-Sánchez, Ricardo P Casaroli-Marano. In Vitro Potential of Human Mesenchymal Stem Cells for Corneal Epithelial Regeneration Regenerative Medicine 2020; 15(3) doi: 10.2217/rme-2019-0067
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Jing Sun, Wei‑Hua Liu, Feng‑Mei Deng, Yong‑Hui Luo, Ke Wen, Hong Zhang, Hai‑Rong Liu, Jiang Wu, Bing‑Yin Su, Yi‑Lun Liu. Differentiation of rat adipose‑derived mesenchymal stem cells into corneal‑like epithelial cells driven by PAX6Experimental and Therapeutic Medicine 2017;  doi: 10.3892/etm.2017.5576
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江兰 赵. Progress in the Mechanism of Wnt Signaling Pathway Affecting the Stemness of Limbal Epithelial Stem CellsHans Journal of Ophthalmology 2024; 13(02) doi: 10.12677/hjo.2024.132005
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Ricardo M. Gouveia, Guillaume Lepert, Suneel Gupta, Rajiv R. Mohan, Carl Paterson, Che J. Connon. Assessment of corneal substrate biomechanics and its effect on epithelial stem cell maintenance and differentiationNature Communications 2019; 10(1) doi: 10.1038/s41467-019-09331-6
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J.A. González, J.R. Vallejo. Los reptiles en la historia de la oftalmología española: excrementos de lagarto ocelado y leucoma cornealArchivos de la Sociedad Española de Oftalmología 2017; 92(9) doi: 10.1016/j.oftal.2016.12.012
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Rohit Shetty, Krishna Poojita Vunnava, Kamesh Dhamodaran, Himanshu Matalia, Subramani Murali, Chaitra Jayadev, Ponnulagu Murugeswari, Arkasubhra Ghosh, Debashish Das. Characterization of Corneal Epithelial Cells in KeratoconusTranslational Vision Science & Technology 2019; 8(1) doi: 10.1167/tvst.8.1.2
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Veronica Hidalgo-Alvarez, Hala S. Dhowre, Olivia A. Kingston, Carl M. Sheridan, Hannah J. Levis. Biofabrication of Artificial Stem Cell Niches in the Anterior Ocular SegmentBioengineering 2021; 8(10) doi: 10.3390/bioengineering8100135
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Mercede Majdi, Lisa Wasielewski, Ali R. Djalilian. Tissue-Specific Stem Cell NicheStem Cell Biology and Regenerative Medicine 2015;  doi: 10.1007/978-3-319-21705-5_4
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Yuzuru Sasamoto, Bruce R. Ksander, Markus H. Frank, Natasha Y. Frank. Repairing the corneal epithelium using limbal stem cells or alternative cell-based therapiesExpert Opinion on Biological Therapy 2018; 18(5) doi: 10.1080/14712598.2018.1443442
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Nickhil Jadav, Sailakshmi Velamoor, Niki Hazelton, Karen Reader, Duane Harland, Mihnea Bostina. Uncovering mitotic ultrastructure in the native hair follicle using volume electron microscopyJournal of Cell Science 2026; 139(4) doi: 10.1242/jcs.264198
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Jasmin S. Nurković, Radiša Vojinović, Zana Dolićanin. Corneal Stem Cells as a Source of Regenerative Cell-Based TherapyStem Cells International 2020; 2020 doi: 10.1155/2020/8813447
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Majid Moshirfar, Nour Bundogji, Alyson N. Tukan, Yasmyne C. Ronquillo. Implications of Corneal Refractive Surgery in Patients with Fabry DiseaseOphthalmology and Therapy 2022; 11(3) doi: 10.1007/s40123-022-00503-0
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E. Moraki, R. Grima, K. J. Painter. A stochastic model of corneal epithelium maintenance and recovery following perturbationJournal of Mathematical Biology 2019; 78(5) doi: 10.1007/s00285-018-1308-9
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Jeremy John Mathan, Salim Ismail, Jennifer Jane McGhee, Charles Ninian John McGhee, Trevor Sherwin. Sphere-forming cells from peripheral cornea demonstrate the ability to repopulate the ocular surfaceStem Cell Research & Therapy 2016; 7(1) doi: 10.1186/s13287-016-0339-7
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Zahra Bibak-Bejandi, Zohre Arabpour, Alireza Razavi, Amirhossein Moghtader, Sumaiya Shahjahan, Ahmad Alzein, Jeonghyun (Esther) Kwon, Reyhaneh Bibak-Bejandi, Nuran Aly, Ali Djalilian. Limbal stem cell deficiency approaches and limbal niche restorationIndian Journal of Ophthalmology 2025; 73(4) doi: 10.4103/IJO.IJO_464_25
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Nadia Boroumand, Abolfazl Nosrati Tirkani, Dina Javid, Ali Hasani, Danial Taherzadeh, Alireza Hosseinzadeh, Sanaz Nooripour, Siamak Zarei-Ghanavati, Seyed Isaac Hashemy, Daryoush Hamidi Alamdari. Novelty in limbal stem cell culture and cell senescenceExperimental Eye Research 2019; 181 doi: 10.1016/j.exer.2019.02.015
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Zahid Hussain, Renjun Pei. Scaffold-free and scaffold-based cellular strategies and opportunities for cornea tissue engineeringProgress in Biomedical Engineering 2021; 3(3) doi: 10.1088/2516-1091/ac12d7
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Michael B. Raizman, Pedram Hamrah, Edward J. Holland, Terry Kim, Francis S. Mah, Christopher J. Rapuano, Roger G. Ulrich. Drug-induced corneal epithelial changesSurvey of Ophthalmology 2017; 62(3) doi: 10.1016/j.survophthal.2016.11.008
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