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1.
iScience ; 25(1): 103657, 2022 Jan 21.
Article in English | MEDLINE | ID: mdl-35024589

ABSTRACT

Pluripotent stem cell (PSC)-derived retinal sheet transplanted in vivo can form structured photoreceptor layers, contact with host bipolar cells, and transmit light signals to host retinas. However, a major concern is the presence of graft bipolar cells that may impede host-graft interaction. In this study, we used human ESC-retinas with the deletion of Islet-1 (ISL1) gene to achieve the reduced graft ON-bipolar cells after xenotransplantation into end-stage retinal degeneration model rats. Compared with wild-type graft, ISL1 -/- hESC-retinas showed better host-graft contact, with indication of host-graft synapse formation and significant restoration of light responsiveness in host ganglion cells. We further analyzed to find out that improved functional integration of ISL1 -/- hESC-retinas seemed attributed by a better host-graft contact and a better preservation of host inner retina. ISL1 -/- hESC-retinas are promising for the efficient reconstruction of a degenerated retinal network in future clinical application.

2.
Stem Cell Reports ; 16(4): 851-867, 2021 04 13.
Article in English | MEDLINE | ID: mdl-33770500

ABSTRACT

ESC- and iPSC-derived retinal transplantation is a promising therapeutic approach for disease with end-stage retinal degeneration, such as retinitis pigmentosa and age-related macular degeneration. We previously showed medium- to long-term survival, maturation, and light response of transplanted human ESC- and iPSC-retina in mouse, rat, and monkey models of end-stage retinal degeneration. Because the use of patient hiPSC-derived retina with a disease-causing gene mutation is not appropriate for therapeutic use, allogeneic transplantation using retinal tissue/cells differentiated from a stocked hESC and iPSC line would be most practical. Here, we characterize the immunological properties of hESC- and iPSC-retina and present their three major advantages: (1) hESC- and iPSC-retina expressed low levels of human leukocyte antigen (HLA) class I and little HLA class II in vitro, (2) hESC- and iPSC-retina greatly suppressed immune activation of lymphocytes in co-culture, and (3) hESC- and iPSC-retina suppressed activated immune cells partially via transforming growth factor ß signaling. These results support the use of allogeneic hESC- and iPSC-retina in future clinical application.


Subject(s)
Cell Differentiation , Human Embryonic Stem Cells/cytology , Immunosuppression Therapy , Induced Pluripotent Stem Cells/cytology , Retina/immunology , Animals , Cell Differentiation/drug effects , Histocompatibility Antigens Class I/metabolism , Human Embryonic Stem Cells/drug effects , Human Embryonic Stem Cells/transplantation , Humans , Immunomodulation/drug effects , Induced Pluripotent Stem Cells/drug effects , Induced Pluripotent Stem Cells/metabolism , Interferon-gamma/pharmacology , Leukocytes, Mononuclear/drug effects , Leukocytes, Mononuclear/metabolism , Primates , Recombinant Proteins/pharmacology , Retinal Pigment Epithelium/cytology , Transforming Growth Factor beta/metabolism
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