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Studies on B Cells in the Fruit-Eating Black Flying Fox ( Pteropus alecto)

机译:吃水果的黑蝇狐中B细胞的研究 Pteropus alecto

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The ability of bats to act as reservoir for viruses that are highly pathogenic to humans suggests unique properties and functional characteristics of their immune system. However, the lack of bat specific reagents, in particular antibodies, has limited our knowledge of bat's immunity. Here, we report a panel of cross-reactive antibodies against MHC-II, NK1.1, CD3, CD21, CD27, and immunoglobulin (Ig), that allows flow cytometry analysis of B, T and NK cell populations in two different fruit-eating bat species namely, Pteropus alecto and E. spelaea . Results confirmed predominance of T cells in the spleen and blood of bats, as previously reported by us. However, the percentages of B cells in bone marrow and NK cells in spleen varied greatly between wild caught P. alecto bats and E. spelaea colony bats, which may reflect inherent differences of their immune system or different immune status. Other features of bat B cells were investigated. A significant increase in sIg ~(+) B cell population was observed in the spleen and blood from LPS-injected bats but not from poly I:C-injected bats, supporting T-independent polyclonal B cell activation by LPS. Furthermore, using an in vitro calcium release assay, P. alecto B cells exhibited significant calcium release upon cross-linking of their B cell receptor. Together, this work contributes to improve our knowledge of bat adaptive immunity in particular B cells.
机译:蝙蝠充当人类高致病性病毒的宿主的能力表明了其免疫系统的独特特性和功能特性。但是,缺乏蝙蝠特异性试剂,特别是抗体,限制了我们对蝙蝠免疫力的认识。在这里,我们报告了一组针对MHC-II,NK1.1,CD3,CD21,CD27和免疫球蛋白(Ig)的交叉反应抗体,可以对两种不同的水果-吃蝙蝠的物种,即翼手龙(Pteropus alecto)和大肠杆菌(E. spelaea)。正如我们先前报道的那样,结果证实了蝙蝠的脾脏和血液中T细胞占主导地位。然而,野生捕捞的电杆蝙蝠和斑节肠球菌蝙蝠之间骨髓中B细胞的百分比和脾脏NK细胞的百分比差异很大,这可能反映了它们免疫系统的固有差异或不同的免疫状态。研究了bat B细胞的其他特征。在注射LPS的蝙蝠的脾脏和血液中观察到sIg〜(+)B细胞的显着增加,但从注射I:C的蝙蝠的脾脏和血液中却没有观察到,这支持LPS激活了T独立的多克隆B细胞。此外,使用体外钙释放测定法,电双歧杆菌B细胞在其B细胞受体交联时显示出显着的钙释放。总之,这项工作有助于提高我们对特定B细胞的蝙蝠适应性免疫的认识。

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