Insulin-Secreting Cells from Human Eyelid-Derived Stem Cells Alleviate Type I Diabetes in Immunocompetent Mice

Author:

Kang Hyun Mi1,Kim Jiyoung1,Park Seah1,Kim Jinyoung1,Kim Haekwon1,Kim Kyung Sik2,Lee Eun Jig3,Seo Sung Ig4,Kang Sung Goo5,Lee Jong-Eun6,Lim Hyunjung6

Affiliation:

1. Department of Biotechnology, Seoul Women's University, Seoul, Korea

2. Department of Surgery, Yonsei University College of Medicine, Seoul, Korea

3. Department of Internal Medicine, Yonsei University College of Medicine, Seoul, Korea

4. Mimi Aesthetic Plastic Surgery Clinic, Seoul, Korea

5. Department of Biology, School of Biological Sciences, Inje University, Kimhae, Korea

6. Department of Biomedical Science & Technology, IBST, Konkuk University, Seoul, Korea

Abstract

Abstract Various attempts have been made to develop stem cell-based therapy to alleviate type I diabetes using animal models. However, it has been a question whether human insulin produced from explanted cells is solely responsible for the normoglycemia of diabetic animals. In this study, we isolated neural crest-like stem cells from the human eyelid fat and examined their therapeutic potentials for diabetes. The human eyelid adipose-derived stem cells (HEACs) displayed characteristics of neural crest cells. Using a two-step culture condition combined with nicotinamide, activin, and/or GLP-1, we differentiated HEACs into insulin-secreting cells and examined in vivo effects of differentiated cells by transplantation experiments. Following differentiation in vitro, HEACs released insulin and c-peptide in a glucose-dependent manner. Upon their transplantation under kidney capsules of streptozotocin-treated immunocompetent mice, we observed normalization of hyperglycemia in 10 of 20 recipient mice until sacrifice after 2 months. Only the human, but not the mouse, insulin and c-peptide were detected in the blood of recipient mice. Removal of the kidneys transplanted with HEACs resulted in a sharp increase of blood glucose level. Removed kidney tissues showed distinct expression of various human genes including insulin, and colocalization of the human insulin and the human nuclear protein in many cells. However, they showed diminished or null expression of some immune-related genes. In conclusion, human insulin alone produced from eyelid-derived stem cells following differentiation into insulin-secreting cells and transplantation could normalize type I diabetes in mice. Disclosure of potential conflicts of interest is found at the end of this article.

Funder

2008 Seoul Women's University

Korean Science and Engineering Foundation

Korean Government

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Developmental Biology,Molecular Medicine

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