Literature DB >> 21439131

Characterization of human umbilical cord lining-derived epithelial cells and transplantation potential.

Yue Zhou1, Shu Uin Gan, Gen Lin, Yan Ting Lim, Jeyakumar Masilamani, Fatimah Bte Mustafa, Meow Ling Phua, Laura Rivino, Toan Thang Phan, Kok Onn Lee, Roy Calne, Paul A MacAry.   

Abstract

In this study we describe the derivation and immunological characterization of a primary epithelial cell type from the human umbilical cord membrane. These cord lining epithelial cells (CLECs) expressed and/or secreted isoforms of the nonclassical human leukocyte antigen class I (HLA-1b) glycoproteins, HLA-G and E. Conditioned media from CLECs inhibited mitogen-stimulated T-lymphocyte responses, and in a mixed leukocyte reaction (MLR) assay, cocultured CLECs inhibited allogeneic responses with a concomitant reduction in proinflammatory cytokines. Using a transwell coculture system, it was demonstrated that these immunoregulatory effects were mediated by soluble factors secreted by CLECs, in a dose-dependent manner. Functional studies using HLA-G blocking antibody showed that the effects of CLEC-secreted products could be inhibited, thus demonstrating a significant and important role for soluble HLA-G. In vivo, we show that transplanted CLECs could be maintained for extended periods in immunocompetent mice where xenorejection rapidly destroyed primary keratinocytes, a control human epithelial cell type. Additionally, CLECs delayed the rejection of keratinocytes and extended their survival when cotransplanted, indicating an ability to protect adjacent human cell types that would otherwise be rejected if transplanted alone. We also show that CLECs transduced with a modified human proinsulin gene were transplanted intraperitoneally into streptozotocin (STZ)-induced diabetic mice, resulting in significantly lower levels of serum glucose compared to control mice. This study has characterized the immunological properties of CLECs and tested a potential therapeutic application in the treatment of a type 1 diabetes mouse model.

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Year:  2011        PMID: 21439131     DOI: 10.3727/096368910X564085

Source DB:  PubMed          Journal:  Cell Transplant        ISSN: 0963-6897            Impact factor:   4.064


  10 in total

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Journal:  Cell Transplant       Date:  2020 Jan-Dec       Impact factor: 4.064

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7.  Human Umbilical Cord Lining-Derived Epithelial Cells: A Potential Source of Non-Native Epithelial Cells That Accelerate Healing in a Porcine Cutaneous Wound Model.

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8.  Stem cell therapy for diabetes.

Authors:  K O Lee; S U Gan; R Y Calne
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9.  Intragenic integration in DLC1 sustains factor VIII expression in primary human cells without insertional oncogenicity.

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Review 10.  Short review on human umbilical cord lining epithelial cells and their potential clinical applications.

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  10 in total

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