首页> 美国卫生研究院文献>Infection and Immunity >An Anti-β-Glucan Monoclonal Antibody Inhibits Growth and Capsule Formation of Cryptococcus neoformans In Vitro and Exerts Therapeutic Anticryptococcal Activity In Vivo
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An Anti-β-Glucan Monoclonal Antibody Inhibits Growth and Capsule Formation of Cryptococcus neoformans In Vitro and Exerts Therapeutic Anticryptococcal Activity In Vivo

机译:抗β-葡聚糖单克隆抗体体外抑制新型隐球菌的生长和胶囊形成并具有体内治疗抗隐球菌活性

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摘要

In this study we tested the in vitro and in vivo anti-Cryptococcus neoformans activity of an antilaminarin (anti-β-glucan) monoclonal antibody (MAb 2G8) (immunoglobulin G2b) which was previously shown to inhibit the growth of β-glucan-exposing Candida albicans cells. Here we show that MAb 2G8 binds to the cell wall of C. neoformans and inhibits its growth to an extent comparable to that observed for C. albicans. Binding and growth inhibition were detected almost equally for encapsulated and acapsular C. neoformans strains. In addition, at subinhibitory concentrations, MAb 2G8 reduced the capsule thickness without affecting protease or phospholipase production. Acapsular fungal cells, but not encapsulated fungal cells, were opsonized by the antibody and more efficiently phagocytosed and killed by human monocytes and by murine peritoneal macrophages. A single administration of MAb 2G8 resulted in a reduction in the fungal burden in the brains and livers of mice systemically infected with a highly virulent, encapsulated C. neoformans strain. This protective effect was also detected in neutropenic mice. Overall, these findings demonstrate that cell wall β-glucan of encapsulated C. neoformans is accessible to antibodies which can exert remarkable anticryptococcal activities in vitro and in vivo.
机译:在这项研究中,我们测试了抗层板蛋白(抗β-葡聚糖)单克隆抗体(MAb 2G8)(免疫球蛋白G2b)的体外和体内抗新型隐球菌活性,该活性先前已显示出可抑制暴露于β-葡聚糖的生长白色念珠菌细胞。在这里,我们显示MAb 2G8结合到新孢梭菌的细胞壁上,并抑制其生长,其程度可与白色念珠菌观察到的程度相当。对于包裹的和荚膜的新孢梭菌菌株,几乎均检测到结合和生长抑制。此外,在亚抑制浓度下,MAb 2G8降低了胶囊的厚度,而不会影响蛋白酶或磷脂酶的产生。荚膜真菌细胞,而不是荚膜真菌细胞,被抗体调理,并更有效地被人单核细胞和鼠腹膜巨噬细胞吞噬并杀死。单克隆抗体2G8的单次给药可减少全身感染高毒性,封装的新孢梭菌菌株的小鼠的大脑和肝脏中的真菌负担。在中性粒细胞减少症小鼠中也检测到这种保护作用。总体而言,这些发现表明,包封的新孢梭菌的细胞壁β-葡聚糖易于被抗体使用,该抗体可以在体内和体外发挥显着的抗隐球菌活性。

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