首页> 美国卫生研究院文献>JARO: Journal of the Association for Research in Otolaryngology >Expression of Fractalkine Receptor CX3CR1 on Cochlear Macrophages Influences Survival of Hair Cells Following Ototoxic Injury
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Expression of Fractalkine Receptor CX3CR1 on Cochlear Macrophages Influences Survival of Hair Cells Following Ototoxic Injury

机译:耳蜗巨噬细胞上Fractalkine受体CX3CR1的表达影响耳毒性损伤后毛细胞的存活。

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摘要

The role of innate immunity and macrophage recruitment to the inner ear after hair cell injury is a subject where little is known. In this paper, we demonstrate recruitment of monocytes and macrophages to the inner ear after kanamycin. We also examined the effect of fractalkine receptor (CX3CR1) deletion in kanamycin ototoxicity. We observed more functional and structural damage in CX3CR1 null mice compared to wild-type and heterozygous littermates. In order to determine if increased susceptibility to kanamycin resulted from CX3CR1 deletion from cochlear leukocytes, we created bone marrow chimeras by transplanting CX3CR1-null bone marrow into wild-type mice whose native bone marrow was ablated by lethal irradiation. These mice were then treated with kanamycin sulfate. Auditory brainstem responses (ABR), hair cell counts, and numbers of macrophages recruited to the cochlea were recorded in irradiated mice that received either wild-type, CX3CR1 heterozygous, or CX3CR1 knockout bone marrow. A strong correlation was present between numbers of macrophages and hair cell death in recipients transplanted with CX3CR1 null marrow. No correlation between macrophage number and hair cell loss was present in mice transplanted with wild-type or CX3CR1 heterozygous marrow. We suggest that CX3CR1 plays a role in modulating the detrimental effects of cochlear macrophages after kanamycin ototoxicity. Our data point to the possibility that CX3CR1-deficient cochlear macrophages exacerbate kanamycin ototoxicity while CX3CR1-expressing monocytes do not.
机译:毛细胞损伤后先天免疫和巨噬细胞募集到内耳的作用尚不清楚。在本文中,我们证明了卡那霉素后单核细胞和巨噬细胞向内耳的募集。我们还检查了在卡那霉素耳毒性中fractalkine受体(CX3CR1)删除的影响。我们观察到与野生型和杂合同窝仔相比,CX3CR1缺失小鼠具有更多的功能和结构损伤。为了确定是否从耳蜗白细胞中删除了CX3CR1而导致对卡那霉素的敏感性增加,我们通过将CX3CR1无效的骨髓移植到野生型小鼠中建立了骨髓嵌合体,野生型小鼠的天然骨髓通过致死性辐射消融。然后用硫酸卡那霉素治疗这些小鼠。在接受野生型,CX3CR1杂合性或CX3CR1剔除骨髓的辐照小鼠中,记录了听觉脑干反应(ABR),毛细胞数和募集到耳蜗的巨噬细胞数量。在用CX3CR1无效骨髓移植的受体中,巨噬细胞数量与毛细胞死亡之间存在很强的相关性。在野生型或CX3CR1杂合骨髓移植的小鼠中,巨噬细胞数量与毛细胞丢失之间没有相关性。我们建议CX3CR1在卡那霉素耳毒性后调节耳蜗巨噬细胞的有害作用中发挥作用。我们的数据指出,缺乏CX3CR1的人工耳蜗巨噬细胞会加剧卡那霉素的耳毒性,而表达CX3CR1的单核细胞则不会。

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