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Clearance kinetics and matrix binding partners of the receptor for advanced glycation end products
Authors
A Bierhaus
AL Miller
+57 more
AM Schmidt
B Rippe
C Cheng
C Chuong
CN Pace
D Frommhold
DI Sternberg
DS Pisetsky
G Marsche
H Fehrenbach
H Vlassara
H Vlassara
H Zhang
HC Volz
J Brett
J Steiner
J Xie
Jan J. Enghild
JH Boyd
JL Wautier
JM Englert
JM Englert
JR Klune
Judson M. Englert
K Dahlin
K Kataoka
KC Sourris
Lasse Ramsgaard
Lauren T. Crum
LE Hanford
Louis J. Sparvero
M Neeper
M Shirasawa
MA Hofmann
Michael T. Lotze
MT Goova
N Demling
Neale S. Mason
P Andrews
P Teismann
Pavle S. Milutinovic
R Pullerits
R Ramasamy
RH Hastings
RH Hastings
RM Effros
S Du Yan
S Mizumoto
S Muhammad
S Zeng
T Do
T Wendt
TA John
Tim D. Oury
William R. Abrams
Y Abdiche
Z Sarkany
Publication date
18 March 2014
Publisher
'Public Library of Science (PLoS)'
Doi
View
on
PubMed
Abstract
Elucidating the sites and mechanisms of sRAGE action in the healthy state is vital to better understand the biological importance of the receptor for advanced glycation end products (RAGE). Previous studies in animal models of disease have demonstrated that exogenous sRAGE has an anti-inflammatory effect, which has been reasoned to arise from sequestration of pro-inflammatory ligands away from membrane-bound RAGE isoforms. We show here that sRAGE exhibits in vitro binding with high affinity and reversibly to extracellular matrix components collagen I, collagen IV, and laminin. Soluble RAGE administered intratracheally, intravenously, or intraperitoneally, does not distribute in a specific fashion to any healthy mouse tissue, suggesting against the existence of accessible sRAGE sinks and receptors in the healthy mouse. Intratracheal administration is the only effective means of delivering exogenous sRAGE to the lung, the organ in which RAGE is most highly expressed; clearance of sRAGE from lung does not differ appreciably from that of albumin. Copyright: © 2014 Milutinovic et al
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