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甘露聚糖结合凝集素缺陷型小鼠中线虫清除能力和抗磷酸胆碱特异性 IgM 反应降低。

Decreased nematode clearance and anti-phosphorylcholine-specific IgM responses in mannose-binding lectin-deficient mice.

机构信息

Department of Comparative Biomedical Sciences, The Royal Veterinary College, Royal College Street, London, NW1 0TU, UK.

Department of Pathology, Uniformed Services University of the Health Sciences, 4301 Jones Bridge Road, Bethesda, MD, 20814, USA.

出版信息

Immunol Cell Biol. 2019 Mar;97(3):305-316. doi: 10.1111/imcb.12219. Epub 2019 Jan 6.

DOI:10.1111/imcb.12219
PMID:30457677
Abstract

Brugia malayi is a nematode that causes human lymphatic filariasis. Previously, we showed that mannose-binding lectin (MBL)-A is necessary for clearance of B. malayi microfilariae in mice and presence of MBL-A is linked with maximal levels of parasite-specific IgM. Common human MBL gene polymorphisms result in low MBL expression and lead to recurring bacterial infections. Furthermore, these low-expressing human MBL polymorphisms result in greatly increased susceptibility to lymphatic filarial infection. Indeed, gain of new filarial infections over a 30-year period are 10-fold higher in people with low, compared to high, MBL-expression phenotypes. Human MBL closely resembles mouse MBL-C, rather than MBL-A; therefore, we examined the role of mouse MBL-C in clearance of microfilariae. Absence of MBL-C alone, or both MBL-A and -C, resulted in delayed clearance of microfilariae and reduced parasite-specific IgM in mice. There were few profound changes in B cell sub-populations or in the ability of MBL-deficient mice to respond to T-dependent or T-independent antigens. However, absence of MBL-A and/or MBL-C resulted in reduced IgM to phosphorylcholine, a constituent of filarial and bacterial antigens, suggesting that inability to form proficient antibody responses to this moiety leads to lack of microfilarial clearance and overall susceptibility to filariasis.

摘要

班氏丝虫是一种引起人类淋巴丝虫病的线虫。先前,我们表明甘露糖结合凝集素(MBL)-A 对于清除小鼠中的班氏丝虫微丝蚴是必需的,并且 MBL-A 的存在与寄生虫特异性 IgM 的最高水平相关。常见的人类 MBL 基因多态性导致 MBL 表达降低,导致反复发生细菌感染。此外,这些低表达的人类 MBL 多态性导致对淋巴丝虫感染的易感性大大增加。事实上,与高 MBL 表达表型相比,低 MBL 表达表型的人在 30 年期间获得新的丝虫感染的几率增加了 10 倍。人类 MBL 非常类似于小鼠 MBL-C,而不是 MBL-A;因此,我们研究了小鼠 MBL-C 在清除微丝蚴中的作用。单独缺乏 MBL-C,或同时缺乏 MBL-A 和 -C,导致微丝蚴清除延迟和寄生虫特异性 IgM 减少。MBL 缺陷小鼠的 B 细胞亚群或对 T 依赖性或 T 非依赖性抗原的反应能力几乎没有发生深刻变化。然而,缺乏 MBL-A 和/或 MBL-C 导致对磷酸胆碱的 IgM 减少,磷酸胆碱是丝虫和细菌抗原的组成部分,这表明不能形成对该部分有效的抗体反应导致微丝蚴清除不足和对丝虫病的整体易感性。

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