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February 1, 2000Hormone and Metabolic Research569 citations

An Adipocyte-Derived Plasma Protein, Adiponectin, Adheres to Injured Vascular Walls

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YOYoshihisa OkamotoYAY. AritaMNM. Nishida

Key Points

  • This study investigates the behavior of adiponectin in relation to injured vascular walls.
  • Analyzed adiponectin characteristics in vitro and in vivo
  • Used solid-phase binding assays to evaluate specific binding to collagen types
  • Performed immunohistochemical analysis on catheter-injured vessels
  • Adiponectin was secreted into the medium when cDNA was transfected and detected in human plasma
  • Specifically bound to collagen types I, III, and V in solid-phase binding assays
  • Detected in walls of catheter-injured vessels but absent in intact vascular walls

Abstract

Adipose tissue secretes a variety of proteins into the bloodstream. We have previously reported a novel cDNA, apM1 (adipose most abundant gene transcript 1), which is specifically and abundantly expressed in adipose tissue 1. Primary structure analysis predicted that the apM1 gene product possesses significant homology to collagens VIII, X and complement factor C1q, and we named it adiponectin. In the current study, we analyzed characteristics of adiponectin in vitro and in vivo. Adiponectin protein was proved to be secreted into the medium when the cDNA was transfected to COS cells. Anti-adiponectin cross-reactivities were abundantly detected in the human plasma. In solid-phase binding assays, adiponectin specifically bound to collagen types I, III and V, which are present in vascular intima. Immunohistochemical analysis revealed that adiponectin was detected in the walls of the catheter-injured vessels but not in the intact vascular walls. These data suggest that adiponectin is a plasma protein produced by adipose tissue and accumulates in vascular walls when the endothelial barrier is injured.

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Cite This Study

Okamoto et al. (2000) studied this question.

synapsesocial.com/papers/6a1d446933e2df9c962f3947https://doi.org/10.1055/s-2007-978586
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