Literature DB >> 11390423

Origin of neointimal endothelium and alpha-actin-positive smooth muscle cells in transplant arteriosclerosis.

J L Hillebrands1, F A Klatter, B M van den Hurk, E R Popa, P Nieuwenhuis, J Rozing.   

Abstract

The development of transplant arteriosclerosis (TA) is today's most important problem in clinical organ transplantation. Histologically, TA is characterized by perivascular inflammation and progressive intimal thickening. Current thought on this process of vascular remodeling assumes that neointimal vascular smooth muscle (VSM) cells and endothelium in TA are graft-derived, holding that medial VSM cells proliferate and migrate into the subendothelial space in response to signals from inflammatory cells and damaged graft endothelium. Using MHC class I haplotype-specific immunohistochemical staining and single-cell PCR analyses, we show that the neointimal alpha-actin-positive VSM cells in rat aortic or cardiac allografts are of recipient and not of donor origin. In aortic but not in cardiac allografts, recipient-derived endothelial cells (ECs) replaced donor endothelium. Cyclosporine treatment prevents neointima formation and preserves the vascular media in aortic allografts. Recipient-derived ECs do not replace graft endothelium after cyclosporine treatment. We propose that, although it progresses beyond the needs of functional repair, TA reflects the activity of a normal healing process that restores vascular wall function following allograft-induced immunological injury.

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Year:  2001        PMID: 11390423      PMCID: PMC209313          DOI: 10.1172/JCI10233

Source DB:  PubMed          Journal:  J Clin Invest        ISSN: 0021-9738            Impact factor:   14.808


  54 in total

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Review 3.  Chronic graft rejection.

Authors:  H Azuma; N L Tilney
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Review 4.  Chronic rejection: an update on the mechanism.

Authors:  P Häyry
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Authors:  W Schürch; O Skalli; T A Seemayer; G Gabbiani
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  42 in total

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10.  Host-derived smooth muscle cells accumulate in cardiac allografts: role of inflammation and monocyte chemoattractant protein 1.

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