Wistar rats developed hypoinsulinemia and hyperglycemia within 7 days when treated daily with 40 mg/kg body wt of cyclosporin A (CsA) and recovered from the metabolic alteration within 1 wk when CsA treatment was terminated. By light microscopy, there was no lymphocytic infiltration, but cytoplasmic vacuolization in the islets of Langerhans from the CsA-treated rats was seen. By electron microscopy, severe degranulation, cytoplasmic vacuolization, and dilation of endoplasmic reticulum were clearly seen in the pancreatic β-cells. Islet cells isolated from the CsA-treated rats showed >50% reduction in mRNA synthesis. A similar inhibitory pattern of mRNA synthesis was observed in in vitro CsA-treated (10 μg/ml) human pancreatic islet cells from one biopsy sample and in similarly treated rat insulinoma cells (RINm5F). The inhibitory effect of CsA on mRNA synthesis in RINm5F cells was dose dependent, with a 50%-inhibiting dose of 5 μg/ml. In addition to the inhibition of mRNA synthesis, CsA also inhibited protein and DNA syntheses, although the inhibitory effect on these macromolecular syntheses was significantly less than that on mRNA synthesis. However, there was only a minor effect of CsA on in vitro transcription and translation compared with that on RINm5F and islet cells. It is concluded that CsA-induced degranulation of the β-cells in Wistar rats, accompanied by hypoinsulinemia and hyperglycemia, may be due to indirect, reversible interference of the cellular function primarily involved in mRNA synthesis.
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Original Articles|
August 01 1987
Role of Cyclosporin A in Macromolecular Synthesis of β-Cells Free
Hyone-Myong Eun;
Hyone-Myong Eun
Department of Microbiology and Infectious Diseases and the Laboratory of Viral and Immunopathogenesis of Diabetes, Julia McFarlane Diabetes Research Unit, the University of Calgary
Calgary, Alberta, Canada
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Chin-Yong Pak;
Chin-Yong Pak
Department of Microbiology and Infectious Diseases and the Laboratory of Viral and Immunopathogenesis of Diabetes, Julia McFarlane Diabetes Research Unit, the University of Calgary
Calgary, Alberta, Canada
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Chang-Jin Kim;
Chang-Jin Kim
Department of Microbiology and Infectious Diseases and the Laboratory of Viral and Immunopathogenesis of Diabetes, Julia McFarlane Diabetes Research Unit, the University of Calgary
Calgary, Alberta, Canada
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Robert G McArthur;
Robert G McArthur
Department of Microbiology and Infectious Diseases and the Laboratory of Viral and Immunopathogenesis of Diabetes, Julia McFarlane Diabetes Research Unit, the University of Calgary
Calgary, Alberta, Canada
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Ji-Won Yoon
Ji-Won Yoon
Department of Microbiology and Infectious Diseases and the Laboratory of Viral and Immunopathogenesis of Diabetes, Julia McFarlane Diabetes Research Unit, the University of Calgary
Calgary, Alberta, Canada
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Address correspondence and reprint requests to Dr. Ji-Won Yoon, Department of Microbiology and Infectious Diseases, University of Calgary, 3330 Hospital Drive NW, Calgary, Alberta T2N 4N1, Canada.
Diabetes 1987;36(8):952–958
Article history
Received:
June 18 1986
Revision Received:
February 10 1987
Accepted:
February 10 1987
PubMed:
3297889
Citation
Hyone-Myong Eun, Chin-Yong Pak, Chang-Jin Kim, Robert G McArthur, Ji-Won Yoon; Role of Cyclosporin A in Macromolecular Synthesis of β-Cells. Diabetes 1 August 1987; 36 (8): 952–958. https://doi.org/10.2337/diab.36.8.952
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