ITF1697, a stable Lys-Pro-containing peptide, inhibits Weibel-Palade body exocytosis induced by ischemia/reperfusion and pressure elevation

被引:8
作者
Bertuglia, Silvia
Ichimura, Hideo
Fossati, Gianluca
Parthasarathi, Kaushik
Leoni, Flavio
Modena, Daniela
Cremonesi, Piero
Bhattacharya, Jahar
Mascagni, Paolo
机构
[1] Italfarmaco Res Ctr, I-20092 Milan, Italy
[2] Univ Pisa, Sch Med, CNR, Inst Clin Physiol, I-56100 Pisa, Italy
[3] Columbia Univ, St Lukes Roosevelt Hosp Ctr, Lung Biol Lab, New York, NY USA
关键词
D O I
10.2119/2007-00079.Bertuglia
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 [生物化学与分子生物学]; 081704 [应用化学];
摘要
A number of Lys-Pro-containing short pepticles have been described as possessing a variety of biological activities in vitro. Because of limited metabolic stability, however, their efficacy in vivo is uncertain. To exploit the pharmacological potential of Lys-Pro-containing short peptides, we synthesized a series of chemically modified forms of these pepticles. One of them, ITF1697 (Gly(N alpha,-Et)Lys-Pro-Arg) was stable in vivo and particularly efficacious in experimental models of disseminated enclotoxemia and of cardiovascular disorders. Using intravital fluorescence microscopy, we studied the peptide cellular and molecular basis of protection in the Syrian hamster cheek pouch microcirculation subjected to ischemia/reperfusion (I/R) and in pressure elevation-induced proinflammatory responses in isolated Sprague-Dawley rat lungs, Continuous intravenous infusion of ITF1697 at 0.1 to 100 pg/kg/min nearly completely protected the cheek pouch microcirculation from I/R injury as measured by decreased vascular permeability and increased capillary perfusion. Adhesion of leukocytes and platelets to blood vessels was strongly inhibited by the peptide. ITF1697 exerted its activity at the early stages of endothelial activation and inhibited P-selectin and von Willebrand factor secretion. Further mechanistic studies in the rat lung preparation revealed that the peptide inhibited the intracellular Ca2+-dependent fusion of Weibel-Palade bodies with the plasma membrane. The ability of ITF1697 to inhibit the early functions of activated endothelial cells, such as the exocytosis of Weibel-Palade bodies, represents a novel and promising pharmacological tool in model of pathologies of a variety of microvascular disorders.
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页码:615 / 624
页数:10
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