AHEART January 47/1
نویسنده
چکیده
Vink, Hans, and Brian R. Duling. Capillary endothelial surface layer selectively reduces plasma solute distribution volume. Am. J. Physiol. Heart Circ. Physiol. 278: H285– H289, 2000.—We previously reported that a 0.4to 0.5-μmthick endothelial surface layer confines Dextran 70 (70 kDa) to the central core of hamster cremaster muscle capillaries. In the present study we used a variety of plasma tracers to probe the barrier properties of the endothelial surface layer using combined fluorescence and brightfield intravital microscopy. No permeation of the endothelial surface layer was observed for either neutral or anionic dextrans $70 kDa, but a neutral Dextran 40 (40 kDa) and neutral free dye (rhodamine, 0.4 kDa) equilibrated with the endothelial surface layer within 1 min. In contrast, small anionic tracers of similar size (0.4–40 kDa) permeated the endothelial surface layer relatively slowly with half-times (t50) between 11 and 60 min, depending on tracer size. Furthermore, two plasma proteins, fibrinogen (340 kDa) and albumin (67 kDa), moved slowly into the endothelial surface layer at the same rates, despite greatly differing sizes (t50 < 40 min). Dextran 70, which did not enter the glycocalyx over the course of these experiments, entered at the same rate as free albumin when it was conjugated to albumin. These findings demonstrate that for anionic molecules size and charge have a profound effect on the penetration rate into the glycocalyx. The equal rates of penetration of the glycocalyx demonstrated by the different protein molecules suggests that multiple factors may influence the penetration of the barrier, including molecular size, charge, and structure.
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AHEART February 47/2
DAVID FULTON,1 ANDREAS PAPAPETROPOULOS,1 XIAOPING ZHANG,2 JOHN D. CATRAVAS,3 THOMAS H. HINTZE,2 AND WILLIAM C. SESSA1 1Department of Pharmacology, Boyer Center for Molecular Medicine, Yale University School of Medicine, New Haven, Connecticut 06536-0812; 2Department of Physiology, New York Medical College, Valhalla, New York 10595; and 3Vascular Biology Center and Department of Pharmacology and...
متن کاملAHEART June 47/6
YASUHIRO ETO,1 HIROAKI SHIMOKAWA,1 JUNKO HIROKI,1 KUNIO MORISHIGE,1 TADASHI KANDABASHI,1 YASUHARU MATSUMOTO,1 MUTSUKI AMANO,2 MASAHIKO HOSHIJIMA,3 KOZO KAIBUCHI,2 AND AKIRA TAKESHITA1 1Department of Cardiovascular Medicine, Kyushu University Graduate School of Medical Sciences, Higashi-ku, Fukuoka 812-8582, 2Division of Signal Transduction, Nara Institute of Science, and Technology, Nara 630-01...
متن کاملAHEART June 47/6
ANNA BABINSKA,1 MICHAEL V. HOGAN,2* TOMASZ SOBOCKI,1* MALGORZATA B. SOBOCKA,1 YIGAL H. EHRLICH,2 AND ELIZABETH KORNECKI1 1Department of Anatomy and Cell Biology, State University of New York, Health Science Center at Brooklyn, Brooklyn 11203; and the 2College of Staten Island/Institute for Basic Research Center for Developmental Neuroscience, City University of New York, College of Staten Islan...
متن کاملAHEART January 47/1
Shi, Hong, Hui-Zhen Wang, and Zhiguo Wang. Extracellular Ba21 blocks the cardiac transient outward K1 current. Am. J. Physiol. Heart Circ. Physiol. 278: H295–H299, 2000.—Ba21 is widely used as a tool in patch-clamp studies because of its ability to block a variety of K1 channels and to pass Ca21 channels. Its potential ability to block the cardiac transient outward K1 current (Ito) has not been...
متن کاملAHEART January 47/1
Hulme, J. T., and C. H. Orchard Effect of acidosis on transient outward potassium current in isolated rat ventricular myocytes. Am. J. Physiol. Heart Circ. Physiol. 278: H50–H59, 2000.—The effect of acidosis on the transient outward K1 current (Ito) of rat ventricular myocytes has been investigated using the perforated patch-clamp technique. When the holding potential was 280 mV, depolarizing p...
متن کاملAHEART February 47/2
YANG-GAN WANG,1 RAJIV KUMAR,1 MARY B. WAGNER,1 RONALD WILDERS,2,3 DAVID A. GOLOD,1 WILLIAM N. GOOLSBY,1 AND RONALD W. JOYNER1 1Todd Franklin Cardiac Research Laboratory, Children’s Heart Center, Department of Pediatrics, Emory University, Atlanta, Georgia 30322; 2Department of Medical Physiology and Sports Medicine, Utrecht University, 3584 CG Utrecht; and 3Academic Medical Center, Department o...
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