AHEART June 47/6
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چکیده
Delp, Michael D., Patrick N. Colleran, M. Keith Wilkerson, Matthew R. McCurdy, and Judy MullerDelp. Structural and functional remodeling of skeletal muscle microvasculature is induced by simulated microgravity. Am J Physiol Heart Circ Physiol 278: H1866–H1873, 2000.— Hindlimb unloading of rats results in a diminished ability of skeletal muscle arterioles to constrict in vitro and elevate vascular resistance in vivo. The purpose of the present study was to determine whether alterations in the mechanical environment (i.e., reduced fluid pressure and blood flow) of the vasculature in hindlimb skeletal muscles from 2-wk hindlimb-unloaded (HU) rats induces a structural remodeling of arterial microvessels that may account for these observations. Transverse cross sections were used to determine media cross-sectional area (CSA), wall thickness, outer perimeter, number of media nuclei, and vessel luminal diameter of feed arteries and first-order (1A) arterioles from soleus and the superficial portion of gastrocnemius muscles. Endothelium-dependent dilation (ACh) was also determined. Media CSA of resistance arteries was diminished by hindlimb unloading as a result of decreased media thickness (gastrocnemius muscle) or reduced vessel diameter (soleus muscle). ACh-induced dilation was diminished by 2 wk of hindlimb unloading in soleus 1A arterioles, but not in gastrocnemius 1A arterioles. These results indicate that structural remodeling and functional adaptations of the arterial microvasculature occur in skeletal muscles of the HU rat; the data suggest that these alterations may be induced by reductions in transmural pressure (gastrocnemius muscle) and wall shear stress (soleus muscle).
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AHEART 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...
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Nevière, Rémi, Benoit Guery, Serge Mordon, Farid Zerimech, Stéphane Charré, Francis Wattel, and Claude Chopin. Inhaled NO reduces leukocyte-endothelial cell interactions and myocardial dysfunction in endotoxemic rats. Am J Physiol Heart Circ Physiol 278: H1783–H1790, 2000.— Inhaled nitric oxide (NO) has been shown to have some protective effect in the peripheral distal inflamed vasculature. The...
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