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螺旋韧带成纤维细胞衍生的单核细胞趋化蛋白 1/CCL2 有助于流感嗜血杆菌诱导的中耳炎继发的内耳炎症。

Spiral ligament fibrocyte-derived MCP-1/CCL2 contributes to inner ear inflammation secondary to nontypeable H. influenzae-induced otitis media.

机构信息

Division of Cell Biology & Genetics, House Ear Institute, 2100 West 3rd Street, Los Angeles, CA, USA.

出版信息

BMC Infect Dis. 2010 Oct 28;10:314. doi: 10.1186/1471-2334-10-314.

Abstract

BACKGROUND

Otitis media (OM), one of the most common pediatric infectious diseases, causes inner ear inflammation resulting in vertigo and sensorineural hearing loss. Previously, we showed that spiral ligament fibrocytes (SLFs) recognize OM pathogens and up-regulate chemokines. Here, we aim to determine a key molecule derived from SLFs, contributing to OM-induced inner ear inflammation.

METHODS

Live NTHI was injected into the murine middle ear through the tympanic membrane, and histological analysis was performed after harvesting the temporal bones. Migration assays were conducted using the conditioned medium of NTHI-exposed SLFs with and without inhibition of MCP-1/CCL2 and CCR2. qRT-PCR analysis was performed to demonstrate a compensatory up-regulation of alternative genes induced by the targeting of MCP-1/CCL2 or CCR2.

RESULTS

Transtympanic inoculation of live NTHI developed serous and purulent labyrinthitis after clearance of OM. THP-1 cells actively migrated and invaded the extracellular matrix in response to the conditioned medium of NTHI-exposed SLFs. This migratory activity was markedly inhibited by the viral CC chemokine inhibitor and the deficiency of MCP-1/CCL2, indicating that MCP-1/CCL2 is a main attractant of THP-1 cells among the SLF-derived molecules. We further demonstrated that CCR2 deficiency inhibits migration of monocyte-like cells in response to NTHI-induced SLF-derived molecules. Immunolabeling showed an increase in MCP-1/CCL2 expression in the cochlear lateral wall of the NTHI-inoculated group. Contrary to the in vitro data, deficiency of MCP-1/CCL2 or CCR2 did not inhibit OM-induced inner ear inflammation in vivo. We demonstrated that targeting MCP-1/CCL2 enhances NTHI-induced up-regulation of MCP-2/CCL8 in SLFs and up-regulates the basal expression of CCR2 in the splenocytes. We also found that targeting CCR2 enhances NTHI-induced up-regulation of MCP-1/CCL2 in SLFs.

CONCLUSIONS

Taken together, we suggest that NTHI-induced SLF-derived MCP-1/CCL2 is a key molecule contributing to inner ear inflammation through CCR2-mediated recruitment of monocytes. However, deficiency of MCP-1/CCL2 or CCR2 alone was limited to inhibit OM-induced inner ear inflammation due to compensation of alternative genes.

摘要

背景

中耳炎(OM)是最常见的儿科传染病之一,可导致内耳炎症,引起眩晕和感觉神经性听力损失。此前,我们发现螺旋韧带成纤维细胞(SLF)可识别 OM 病原体并上调趋化因子。在此,我们旨在确定源自 SLF 的关键分子,该分子可导致 OM 引起的内耳炎症。

方法

通过鼓膜将活的 NTHI 注入小鼠中耳,采集颞骨后进行组织学分析。用暴露于 NTHI 的 SLF 的条件培养基进行迁移实验,同时抑制 MCP-1/CCL2 和 CCR2。进行 qRT-PCR 分析,以证明靶向 MCP-1/CCL2 或 CCR2 后替代基因的代偿性上调。

结果

经鼓膜接种活的 NTHI 后,OM 清除后可发展为浆液性和化脓性迷路炎。THP-1 细胞对暴露于 NTHI 的 SLF 的条件培养基积极迁移并侵入细胞外基质。该迁移活性可被病毒 CC 趋化因子抑制剂和 MCP-1/CCL2 缺乏明显抑制,表明 MCP-1/CCL2 是 SLF 衍生分子中 THP-1 细胞的主要趋化因子。我们进一步证明,CCR2 缺乏可抑制单核细胞样细胞对 NTHI 诱导的 SLF 衍生分子的迁移。免疫标记显示,NTHI 接种组耳蜗侧壁的 MCP-1/CCL2 表达增加。与体外数据相反,体内缺乏 MCP-1/CCL2 或 CCR2 并不能抑制 OM 引起的内耳炎症。我们证明,靶向 MCP-1/CCL2 可增强 SLF 中 NTHI 诱导的 MCP-2/CCL8 的上调,并上调脾细胞中 CCR2 的基础表达。我们还发现,靶向 CCR2 可增强 SLF 中 NTHI 诱导的 MCP-1/CCL2 的上调。

结论

综上所述,我们认为 NTHI 诱导的 SLF 衍生的 MCP-1/CCL2 是一种关键分子,通过 CCR2 介导的单核细胞募集,导致内耳炎症。然而,由于替代基因的补偿,缺乏 MCP-1/CCL2 或 CCR2 本身不足以抑制 OM 引起的内耳炎症。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f6e9/2988798/c023279ffa6c/1471-2334-10-314-1.jpg

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