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The Neural Differentiation Potential of Limbal Stem Cells: A Model for Studying the Multipotency of Limbal Stem Cells
期刊文章

The Neural Differentiation Potential of Limbal Stem Cells: A Model for Studying the Multipotency of Limbal Stem Cells

C.-Y. Tsai, H.-S. Chu, C.-M. Cheng 和 W.-L. Chen
Cornea, 卷.38
2019
Web of Science ID: WOS:000509676900002

摘要

coculture system corneal nerves limbal stem cells neuron culture Animals Cell Differentiation Cell Line, Tumor Cells, Cultured Coculture Techniques Eye Neoplasms Immunohistochemistry Limbus Corneae Microscopy, Fluorescence Neoplasms, Experimental Neuroblastoma Rabbits Stem Cells clostridiopeptidase A microtubule associated protein 2 tubulin animal tissue Article cell structure coculture controlled study fluorescence microscopy immunocytochemistry limbal stem cell nerve cell differentiation Neuro-2a cell line nonhuman null result phenotype priority journal protein expression stem cell animal cell culture cell differentiation cornea limbus cytology experimental neoplasm eye tumor immunohistochemistry Leporidae neuroblastoma pathology stem cell tumor cell line
Purpose:To investigate the multipotency, especially the neural differentiation potential, of limbal stem cells (LSCs) using a coculture system and to provide a relevant literature review.Methods:Limbal tissue was harvested from adult New Zealand white rabbits and treated with collagenase A. Small pieces of the resulting limbal epithelial sheets were cocultured with a neuroblastoma cell line (Neuro-2A) in transwells. Morphological observation of the growing epithelial sheets was accomplished by microscopy, and marker expression was detected by immunocytochemistry for ßIII-tubulin and microtubule-associated protein 2. A literature review of associated studies was performed.Results:In the coculture group, directly adherent colonies of neuron-like (DACN) cells were observed among the growing limbal epithelial sheets from day 3. The DACN cells exhibited neuron-like morphology. The control group comprising limbal cell sheets cultured alone showed a very small number of DACN cells at the end of the culture period (day 14). Immunocytochemical staining revealed that the DACN cells were positive for ßIII-tubulin and microtubule-associated protein 2, confirming the neuronal phenotype of the neuron-like cells. By contrast, the DACN cells in the control group produced negative results. In previous reports, LSCs and niches exhibited neural potential, but most differentiated neural cells were observed as floating spheres, in contrast to the DACN cells observed in the present study.Conclusions:We developed a coculture system of LSCs and Neuro-2A neuroblastoma cells and obtained DACN cells with neural differentiation potential. Our findings confirm the neural potential of LSCs, consistent with previous reports, but in a form other than floating spheres. © 2019 Lippincott Williams and Wilkins. All rights reserved.

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合作類型
機構合作
引用書目主題
1 Clinical & Life Sciences
1.36 Ophthalmology
1.36.686 Ocular Surface Disorders
Web Of Science研究領域
Ophthalmology
ESI研究領域
Clinical Medicine

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