Matrix sieving-enforced retrograde transcytosis regulates tissue accumulation of C-reactive protein
Cardiovascular Research

Abstract
Circulating proteins larger than 3 nm can be transported across continuous endothelial barrier of blood vessels via transcytosis. However, excessive accumulation of serum proteins within the vessel walls is uncommon even for those abundant in the circulation. The aim of this study was to investigate how transcytosis regulates tissue accumulation of the prototypical acute-phase reactant C-reactive protein (CRP) and other serum proteins.
Transcytosis of CRP as well as of transferrin and low-density lipoprotein across aortic endothelial cells is bidirectional with directional preference from the apical (blood) to basolateral (tissue) direction both
Our findings identify matrix sieving-enforced retrograde transcytosis as a general mechanism that prevents excessive tissue accumulation of blood-borne proteins and suggest that lesion-derived CRP might also contribute to elevated serum CRP levels associated with increased risk for cardiovascular diseases.
Contributors

Hai-Yun Li
Author

Xiao-Ling Liu
Author

Yu-Tong Liu
Author

Zhe-Kun Jia
Author

János G Filep
Author

Lawrence A Potempa
Author

Shang-Rong Ji
Author

Yi Wu
Author
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