Effect of HTK on the microcirculation in the rat chemaster muscle during warm ischemia and reperfusion

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Abstract

Histidine-tryptophan-ketoglutarate (HTK) preserves rat muscle function during cold storage. We examined the effect of HTK perfusion on preservation of microvascular function during 4 h of warm ischemia and subsequent reperfusion (I/R) in the rat cremaster muscle. Leukocyte-endothelium interactions, capillary perfusion, and arteriole diameters were quantified prior to HTK-perfusion and/or ischemia, and at 0, 1, and 2 h after restoration of blood flow. In all groups, the number of rolling leukocytes increased with time, whereas I/R induced a slight increase in leukocyte adhesion. After ischemia, capillary perfusion rapidly recovered to about 50% and returned to near normal (90%) after 2 h. HTK at 22°C did not affect the assessed microcirculation variables, whereas HTK at 4°C reduced leukocyte rolling, but not adhesion. Therefore, microvascular function of HTK-perfused muscles was not better preserved during warm I/R than that of nonperfused muscles. Contrary to other preservation solutions, HTK perfusion in itself was not detrimental to the microcirculation. © 2005 Wiley-Liss, Inc.

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APA

Bastiaanse, J., Anderson, G. L., Franken, R. J. P. M., Van Der Heijden, B. E. P. A., Oude Egbrink, M. G. A., Slaaf, D. W., & Kon, M. (2005). Effect of HTK on the microcirculation in the rat chemaster muscle during warm ischemia and reperfusion. Microsurgery, 25(2), 174–180. https://doi.org/10.1002/micr.20093

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