Human retinal pigment epithelial cells inhibit proliferation and IL2R expression of activated T cells.

Research output: Contribution to journalJournal articleResearchpeer-review

Standard

Human retinal pigment epithelial cells inhibit proliferation and IL2R expression of activated T cells. / Kaestel, Charlotte G; Jørgensen, Annette; Nielsen, Mette; Eriksen, Karsten W; Ødum, Niels; Holst Nissen, Mogens; Röpke, Carsten.

In: Experimental Eye Research, Vol. 74, No. 5, 2002, p. 627-37.

Research output: Contribution to journalJournal articleResearchpeer-review

Harvard

Kaestel, CG, Jørgensen, A, Nielsen, M, Eriksen, KW, Ødum, N, Holst Nissen, M & Röpke, C 2002, 'Human retinal pigment epithelial cells inhibit proliferation and IL2R expression of activated T cells.', Experimental Eye Research, vol. 74, no. 5, pp. 627-37. https://doi.org/10.1006/exer.2002.1183

APA

Kaestel, C. G., Jørgensen, A., Nielsen, M., Eriksen, K. W., Ødum, N., Holst Nissen, M., & Röpke, C. (2002). Human retinal pigment epithelial cells inhibit proliferation and IL2R expression of activated T cells. Experimental Eye Research, 74(5), 627-37. https://doi.org/10.1006/exer.2002.1183

Vancouver

Kaestel CG, Jørgensen A, Nielsen M, Eriksen KW, Ødum N, Holst Nissen M et al. Human retinal pigment epithelial cells inhibit proliferation and IL2R expression of activated T cells. Experimental Eye Research. 2002;74(5):627-37. https://doi.org/10.1006/exer.2002.1183

Author

Kaestel, Charlotte G ; Jørgensen, Annette ; Nielsen, Mette ; Eriksen, Karsten W ; Ødum, Niels ; Holst Nissen, Mogens ; Röpke, Carsten. / Human retinal pigment epithelial cells inhibit proliferation and IL2R expression of activated T cells. In: Experimental Eye Research. 2002 ; Vol. 74, No. 5. pp. 627-37.

Bibtex

@article{4b9f1b40ba3e11ddae57000ea68e967b,
title = "Human retinal pigment epithelial cells inhibit proliferation and IL2R expression of activated T cells.",
abstract = "The purpose of this study was to characterize the effects of human retinal pigment epithelial (RPE) cells on activated T cells. Activated T cells were cocultured with adult and foetal human RPE cells whereafter apoptosis and proliferation were determined by flow cytometry and (3)H-Thymidine incorporation assay, respectively. T cells and RPE cells were cultured directly together or in a transwell system for determination of the effect of cell contact. The importance of cell surface molecules was examined by application of a panel of blocking antibodies (CD2, CD18, CD40, CD40L, CD54, CD58) in addition to use of TCR negative T cell lines. The expression of IL2R-alpha -beta and -gamma chains of activated T cells was analysed by flow cytometry after incubation of T cells alone or with RPE cells. Human RPE cells were found to inhibit the proliferation of activated T cells by a cell contact-dependent mechanism. The RPE cells inhibitory abilities were not affected by blocking of any of the tested surface molecules. The inhibition of the T cells' proliferation correlates with a decreased expression of IL2R-beta and -gamma chains. The T cells regain their ability to proliferate and increase their IL2R-beta and -gamma chain expression within 24 hr after removal from the coculture. It is concluded that the cultured human adult and foetal RPE cells inhibit the proliferation of activated T cells by a process that does not involve apoptosis. It depends on cell contact but the involved surface molecules were not revealed. The proliferation inhibition correlates with a modulation of the T cells' expression of IL2R, and is reversible.",
author = "Kaestel, {Charlotte G} and Annette J{\o}rgensen and Mette Nielsen and Eriksen, {Karsten W} and Niels {\O}dum and {Holst Nissen}, Mogens and Carsten R{\"o}pke",
note = "Keywords: Apoptosis; Cell Communication; Cell Cycle; Cell Division; Cell Line; Coculture Techniques; Humans; Lymphocyte Activation; Male; Pigment Epithelium of Eye; Receptors, Interleukin-2; T-Lymphocytes",
year = "2002",
doi = "10.1006/exer.2002.1183",
language = "English",
volume = "74",
pages = "627--37",
journal = "Experimental Eye Research",
issn = "0014-4835",
publisher = "Academic Press",
number = "5",

}

RIS

TY - JOUR

T1 - Human retinal pigment epithelial cells inhibit proliferation and IL2R expression of activated T cells.

AU - Kaestel, Charlotte G

AU - Jørgensen, Annette

AU - Nielsen, Mette

AU - Eriksen, Karsten W

AU - Ødum, Niels

AU - Holst Nissen, Mogens

AU - Röpke, Carsten

N1 - Keywords: Apoptosis; Cell Communication; Cell Cycle; Cell Division; Cell Line; Coculture Techniques; Humans; Lymphocyte Activation; Male; Pigment Epithelium of Eye; Receptors, Interleukin-2; T-Lymphocytes

PY - 2002

Y1 - 2002

N2 - The purpose of this study was to characterize the effects of human retinal pigment epithelial (RPE) cells on activated T cells. Activated T cells were cocultured with adult and foetal human RPE cells whereafter apoptosis and proliferation were determined by flow cytometry and (3)H-Thymidine incorporation assay, respectively. T cells and RPE cells were cultured directly together or in a transwell system for determination of the effect of cell contact. The importance of cell surface molecules was examined by application of a panel of blocking antibodies (CD2, CD18, CD40, CD40L, CD54, CD58) in addition to use of TCR negative T cell lines. The expression of IL2R-alpha -beta and -gamma chains of activated T cells was analysed by flow cytometry after incubation of T cells alone or with RPE cells. Human RPE cells were found to inhibit the proliferation of activated T cells by a cell contact-dependent mechanism. The RPE cells inhibitory abilities were not affected by blocking of any of the tested surface molecules. The inhibition of the T cells' proliferation correlates with a decreased expression of IL2R-beta and -gamma chains. The T cells regain their ability to proliferate and increase their IL2R-beta and -gamma chain expression within 24 hr after removal from the coculture. It is concluded that the cultured human adult and foetal RPE cells inhibit the proliferation of activated T cells by a process that does not involve apoptosis. It depends on cell contact but the involved surface molecules were not revealed. The proliferation inhibition correlates with a modulation of the T cells' expression of IL2R, and is reversible.

AB - The purpose of this study was to characterize the effects of human retinal pigment epithelial (RPE) cells on activated T cells. Activated T cells were cocultured with adult and foetal human RPE cells whereafter apoptosis and proliferation were determined by flow cytometry and (3)H-Thymidine incorporation assay, respectively. T cells and RPE cells were cultured directly together or in a transwell system for determination of the effect of cell contact. The importance of cell surface molecules was examined by application of a panel of blocking antibodies (CD2, CD18, CD40, CD40L, CD54, CD58) in addition to use of TCR negative T cell lines. The expression of IL2R-alpha -beta and -gamma chains of activated T cells was analysed by flow cytometry after incubation of T cells alone or with RPE cells. Human RPE cells were found to inhibit the proliferation of activated T cells by a cell contact-dependent mechanism. The RPE cells inhibitory abilities were not affected by blocking of any of the tested surface molecules. The inhibition of the T cells' proliferation correlates with a decreased expression of IL2R-beta and -gamma chains. The T cells regain their ability to proliferate and increase their IL2R-beta and -gamma chain expression within 24 hr after removal from the coculture. It is concluded that the cultured human adult and foetal RPE cells inhibit the proliferation of activated T cells by a process that does not involve apoptosis. It depends on cell contact but the involved surface molecules were not revealed. The proliferation inhibition correlates with a modulation of the T cells' expression of IL2R, and is reversible.

U2 - 10.1006/exer.2002.1183

DO - 10.1006/exer.2002.1183

M3 - Journal article

C2 - 12076084

VL - 74

SP - 627

EP - 637

JO - Experimental Eye Research

JF - Experimental Eye Research

SN - 0014-4835

IS - 5

ER -

ID: 8747486