Endothelial Glycocalyx: Permeability Barrier and Mechanosensor

被引:216
作者
Curry, F. E. [1 ]
Adamson, R. H. [1 ]
机构
[1] Univ Calif Davis, Sch Med, Dept Physiol & Membrane Biol, Davis, CA 95616 USA
关键词
Shear stress; Fiber matrix; Vascular; Endothelium; Fluid balance; Inflammation; Edema; FLUID SHEAR-STRESS; CELL GLYCOCALYX; CAPILLARY-PERMEABILITY; SURFACE-LAYER; HYDRAULIC CONDUCTIVITY; VASCULAR-PERMEABILITY; LEUKOCYTE ADHESION; ALBUMIN MODULATION; SIEVE PLUGS; FLOW;
D O I
10.1007/s10439-011-0429-8
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Endothelial cells are covered with a polysaccharide rich layer more than 400 nm thick, mechanical properties of which limit access of circulating plasma components to endothelial cell membranes. The barrier properties of this endothelial surface layer are deduced from the rate of tracer penetration into the layer and the mechanics of red and white cell movement through capillary microvessels. This review compares the mechanosensor and permeability properties of an inner layer (100-150 nm, close to the endothelial membrane) characterized as a quasi-periodic structure which accounts for key aspects of transvascular exchange and vascular permeability with those of the whole endothelial surface layers. We conclude that many of the barrier properties of the whole surface layer are not representative of the primary fiber matrix forming the molecular filter determining transvascular exchange. The differences between the properties of the whole layer and the inner glycocalyx structures likely reflect dynamic aspects of the endothelial surface layer including tracer binding to specific components, synthesis and degradation of key components, activation of signaling pathways in the endothelial cells when components of the surface layer are lost or degraded, and the spatial distribution of adhesion proteins in microdomains of the endothelial cell membrane.
引用
收藏
页码:828 / 839
页数:12
相关论文
共 96 条
[51]   Loss of endothelial glycocalyx during acute hyperglycemia coincides with endothelial dysfunction and coagulation activation in vivo [J].
Nieuwdorp, M ;
van Haeften, TW ;
Gouverneur, MCLG ;
Mooij, HL ;
van Lieshout, MHP ;
Levi, M ;
Meijers, JCM ;
Holleman, F ;
Hoekstra, JBL ;
Vink, H ;
Kastelein, JJP ;
Stroes, ESG .
DIABETES, 2006, 55 (02) :480-486
[52]   Hypothesis: arterial glycocalyx dysfunction is the first step in the atherothrombotic process [J].
Noble, M. I. M. ;
Drake-Holland, A. J. ;
Vink, H. .
QJM-AN INTERNATIONAL JOURNAL OF MEDICINE, 2008, 101 (07) :513-518
[53]  
OGSTON AG, 1978, PROG BIOPHYS MOL BIO, V34, P197
[54]   THE SPACES IN A UNIFORM RANDOM SUSPENSION OF FIBRES [J].
OGSTON, AG .
TRANSACTIONS OF THE FARADAY SOCIETY, 1958, 54 (11) :1754-1757
[55]   A role for the endothelial glycocalyx in regulating microvascular permeability in diabetes mellitus [J].
Perrin, Rachel M. ;
Harper, Steven J. ;
Bates, David O. .
CELL BIOCHEMISTRY AND BIOPHYSICS, 2007, 49 (02) :65-72
[56]   Adenosine A3 receptor activation modulates the capillary endothelial glycocalyx [J].
Platts, SH ;
Duling, BR .
CIRCULATION RESEARCH, 2004, 94 (01) :77-82
[57]   The hydrodynamically relevant endothelial cell glycocalyx observed in vivo is absent in vitro [J].
Potter, Daniel R. ;
Damiano, Edward R. .
CIRCULATION RESEARCH, 2008, 102 (07) :770-776
[58]  
Pries A. R., 2006, V176, P1
[59]   Microvascular blood flow resistance: role of endothelial surface layer [J].
Pries, AR ;
Secomb, TW ;
Jacobs, H ;
Sperandio, M ;
Osterloh, K ;
Gaehtgens, P .
AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY, 1997, 273 (05) :H2272-H2279
[60]   Changes in blood volume and hematocrit during acute preoperative volume loading with 5% albumin or 6% hetastarch solutions in patients before radical hysterectomy [J].
Rehm, M ;
Haller, M ;
Orth, V ;
Kreimeier, U ;
Jacob, M ;
Dressel, H ;
Mayer, S ;
Brechtelsbauer, H ;
Finsterer, U .
ANESTHESIOLOGY, 2001, 95 (04) :849-856