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Thrombin-induced rabbit platelet microbicidal protein is fungicidal in vitro.

机译:凝血酶诱导的兔血小板杀微生物蛋白在体外具有杀真菌作用。

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摘要

Platelet microbicidal protein (PMP) is released from platelets in response to thrombin stimulation. PMP is known to possess in vitro bactericidal activity against Staphylococcus aureus and viridans group streptococci. To determine whether PMP is active against other intravascular pathogens, we evaluated its potential fungicidal activity against strains of Candida species and Cryptococcus neoformans. Anionic resin adsorption and gel electrophoresis confirmed that the fungicidal activity of PMP resided in a small (approximately 8.5-kDa), cationic protein, identical to previous studies of PMP-induced bacterial killing (M.R. Yeaman, S.M. Puentes, D.C. Norman, and A.S. Bayer, Infect. Immun. 60:1202-1209, 1992). When assayed over a 180-min period in vitro, the susceptibilities of these fungi to PMP varied considerably. Generally, Candida albicans strains (mean survival, 33.5% +/- 6.9% [n = 6]) as well as isolates of Candida glabrata (mean survival, 50.8% +/- 2.9% [n = 2]) were the most susceptible to killing by PMP, while Candida guillermondii and Candida parapsilosis were relatively resistant to PMP-induced killing. Compared with C. albicans, C. neoformans was relatively resistant to the fungicidal activity of PMP, with a mean survival among the isolates studied of 77.4% +/- 12.4% (n = 6). Against C. albicans, PMP-induced fungicidal activity was time dependent (range, 0 to 180 min), PMP concentration dependent (range, 10 to 150 U/ml), and inversely related to the fungal inoculum (range, 5 x 10(3) to 1 x 10(5) CFU/ml). Scanning electron microscopy of PMP-exposed C. albicans and C. neoformans cells revealed extensive surface damage and collapse, suggesting that the site of PMP fungicidal action may directly or indirectly involve the fungal cell envelope.
机译:响应凝血酶的刺激,血小板中的血小板杀微生物蛋白(PMP)释放出来。已知PMP具有针对金黄色葡萄球菌和绿豆类链球菌的体外杀菌活性。为了确定PMP是否对其他血管内病原体具有活性,我们评估了其对念珠菌和新隐球菌菌株的潜在杀真菌活性。阴离子树脂吸附和凝胶电泳证实,PMP的杀真菌活性存在于小的阳离子蛋白质中(约8.5 kDa),与先前对PMP诱导的细菌杀灭研究(MR Yeaman,SM Puentes,DC Norman和AS Bayer)相同。 ,Infect.Immun.60:1202-1209,1992)。在体外180分钟内进行测定时,这些真菌对PMP的敏感性差异很大。通常,白色念珠菌菌株(平均存活率为33.5%+/- 6.9%[n = 6])和分离的光滑念珠菌(平均存活率为50.8%+/- 2.9%[n = 2])最易感。 PMP致死,而假丝酵母和假丝酵母则对PMP致死具有相对抗性。与白色念珠菌相比,新孢梭菌对PMP的杀真菌活性具有相对的抵抗力,在研究的分离物中平均存活率为77.4%+/- 12.4%(n = 6)。对白色念珠菌而言,PMP诱导的杀真菌活性是时间依赖性的(范围为0至180分钟),PMP浓度依赖性的是范围(范围为10至150 U / ml),并且与真菌接种物成反比(范围为5 x 10( 3)至1 x 10(5)CFU / ml)。暴露于PMP的白色念珠菌和新孢梭菌细胞的扫描电子显微镜显示广泛的表面损伤和塌陷,表明PMP杀真菌作用的部位可能直接或间接涉及真菌细胞的包膜。

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