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Accumulation and loss of extracellular matrix during shear stress-mediated intimal growth and regression in baboon vascular grafts.

Abstract
The composition of extracellular matrix during growth and regression of the neointima was analyzed during healing in a baboon aorto-iliac polytetrafluoroethylene graft. Graft neointimal thickening can be modulated by altering blood flow by construction of downstream arteriovenous fistulas. Normal flow with normal shear stress induces neointimal thickening, whereas high flow with high shear stress upstream of a fistula induces regression of established neointima. The neointima formed under normal shear stress is enriched in hyaluronan and proteoglycans, particularly versican. On the other hand, the neointima near the graft material is enriched in collagen and biglycan. Neointimal regression in response to high shear stress is associated with a loss of proteoglycans as detected by histochemical staining. Immunostaining with an antibody against an ADAMTS cleavage neoepitope of versican increases after switching to high flow, although immunostaining for versican core protein is not appreciably changed by high flow. The present data demonstrate that the graft neointima is enriched with proteoglycans, particularly versican and hyaluronan, as well as collagen, and there is a differential distribution of each. Neointimal atrophy occurs with an apparent loss of proteoglycans and evidence of versican degradation.
AuthorsRichard D Kenagy, Jens W Fischer, Stephanie Lara, John D Sandy, Alexander W Clowes, Thomas N Wight
JournalThe journal of histochemistry and cytochemistry : official journal of the Histochemistry Society (J Histochem Cytochem) Vol. 53 Issue 1 Pg. 131-40 (Jan 2005) ISSN: 0022-1554 [Print] United States
PMID15637346 (Publication Type: Journal Article, Research Support, Non-U.S. Gov't, Research Support, U.S. Gov't, P.H.S.)
Chemical References
  • Polytetrafluoroethylene
Topics
  • Animals
  • Aorta (pathology)
  • Blood Vessel Prosthesis (adverse effects)
  • Extracellular Matrix (pathology)
  • Hyperplasia
  • Iliac Artery (pathology)
  • Male
  • Papio
  • Polytetrafluoroethylene
  • Regional Blood Flow
  • Stress, Mechanical
  • Tunica Intima (pathology, ultrastructure)

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