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Selective ablation of basophils in mice reveals their nonredundant role in acquired immunity against ticks

机译:小鼠嗜碱性粒细胞的选择性消融揭示了它们在获得抗tick虫的免疫中的非冗余作用

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Ticks are ectoparasitic arthropods that can transmit a variety of microorganisms to humans and animals during blood feeding, causing serious infectious disorders, including Lyme disease. Acaricides are pharmacologic agents that kill ticks. The emergence of acaricide-resistant ticks calls for alternative control strategies for ticks and tick-borne diseases. Many animals develop resistance to ticks after repeated infestations, but the nature of this acquired anti-tick immunity remains poorly understood. Here we investigated the cellular and molecular mechanisms underlying acquired resistance to Haemaphysalis longicornis ticks in mice and found that antibodies were required, as was IgFc receptor expression on basophils but not on mast cells. The infiltration of basophils at tick-feeding sites occurred during the second, but not the first, tick infestation. To assess the requirement for basophil infiltration to acquired tick resistance, mice expressing the human diphtheria toxin receptor under the control of the mast cell protease 8 (Mcpt8) promoter were generated. Diphtheria toxin administration to these mice selectively ablated basophils. Diphtheria toxin–mediated basophil depletion before the second tick infestation resulted in loss of acquired tick resistance. These data provide the first clear evidence, to our knowledge, that basophils play an essential and nonredundant role in antibody-mediated acquired immunity against ticks, which may suggest new strategies for controlling tick-borne diseases.
机译:虫是外寄生节肢动物,可以在血液喂养期间将多种微生物传播给人类和动物,引起严重的传染病,包括莱姆病。杀螨剂是杀死tick虫的药物。抗杀螨剂icide的出现要求emerge和calls传播疾病的替代控制策略。许多动物在反复侵染后对壁虱产生抵抗力,但这种获得的抗壁虱免疫的性质仍知之甚少。在这里,我们研究了小鼠中对血红细胞壁虱抗性获得性抗性的细胞和分子机制,发现需要抗体,嗜碱性粒细胞而不是肥大细胞上的IgFc受体表达也是必需的。嗜碱菌在tick喂养部位的浸润发生在第二次而不是第一次tick侵扰期间。为了评估嗜碱性粒细胞浸润对获得性抗tick虱的需求,生成了在肥大细胞蛋白酶8(Mcpt8)启动子控制下表达人白喉毒素受体的小鼠。向这些小鼠施用白喉毒素可选择性消融嗜碱性粒细胞。在第二次tick虫侵染之前,白喉毒素介导的嗜碱性粒细胞耗竭导致获得性tick虫抵抗力丧失。据我们所知,这些数据提供了第一个明确的证据,即嗜碱性粒细胞在抗体介导的对tick的免疫中起着必不可少的作用,这可能为控制suggest传疾病提供了新的策略。

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