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Humanized θ-Defensins (Retrocyclins) Enhance Macrophage Performance and Protect Mice from Experimental Anthrax Infections

机译:人源化θ-防御素(Retrocyclins)可增强巨噬细胞性能并保护小鼠免受实验性炭疽感染

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摘要

Retrocyclins are humanized versions of the θ-defensin peptides expressed by the leukocytes of several nonhuman primates. Previous studies, performed in serum-free media, determined that retrocyclins 1 (RC1) and RC2 could prevent successful germination of Bacillus anthracis spores, kill vegetative B. anthracis cells, and inactivate anthrax lethal factor. We now report that retrocyclins are extensively bound by components of native mouse, human, and fetal calf sera, that heat-inactivated sera show greatly enhanced retrocyclin binding, and that native and (especially) heat-inactivated sera greatly reduce the direct activities of retrocyclins against spores and vegetative cells of B. anthracis. Nevertheless, we also found that retrocyclins protected mice challenged in vivo by subcutaneous, intraperitoneal, or intranasal instillation of B. anthracis spores. Retrocyclin 1 bound extensively to B. anthracis spores and enhanced their phagocytosis and killing by murine RAW264.7 cells. Based on the assumption that spore-bound RC1 enters phagosomes by “piggyback phagocytosis,” model calculations showed that the intraphagosomal concentration of RC1 would greatly exceed its extracellular concentration. Murine alveolar macrophages took up fluorescently labeled retrocyclin, suggesting that macrophages may also acquire extracellular RC1 directly. Overall, these data demonstrate that retrocyclins are effective in vivo against experimental murine anthrax infections and suggest that enhanced macrophage function contributes to this property.
机译:逆转录素是几种非人类灵长类动物的白细胞表达的θ-防御素肽的人源化形式。先前在无血清培养基中进行的研究确定,逆转录素1(RC1)和RC2可以阻止炭疽芽孢杆菌孢子成功萌发,杀死无性炭疽芽孢杆菌细胞并使炭疽致死因子失活。我们现在报道,逆转录素广泛地与天然小鼠,人类和胎牛血清的成分结合,热灭活的血清显示出大大增强的逆转录素结合,天然和(特别是)热灭活的血清极大地降低了逆转录素的直接活性。对抗炭疽杆菌的孢子和营养细胞。尽管如此,我们还发现逆转录素可以保护体内经炭疽芽孢杆菌皮下,腹膜内或鼻内滴注攻击的小鼠。 Retrocyclin 1广泛绑定到炭疽芽孢杆菌的孢子,并增强其吞噬作用和鼠RAW264.7细胞的杀伤力。基于孢子结合的RC1通过“背pi式吞噬作用”进入吞噬体的假设,模型计算表明RC1的吞噬体内浓度将大大超过其细胞外浓度。鼠肺泡巨噬细胞吸收了荧光标记的逆转录素,提示巨噬细胞也可能直接获得细胞外RC1。总体而言,这些数据表明逆转录素在体内可有效抵抗实验性鼠炭疽感染,并表明增强的巨噬细胞功能有助于该特性。

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