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AIBP 通过调控背根神经节神经元脂筏动力学及其与 TLR4 的接近程度来调节化疗诱导的周围神经病变中的 TRPV1 激活。

AIBP regulates TRPV1 activation in chemotherapy-induced peripheral neuropathy by controlling lipid raft dynamics and proximity to TLR4 in dorsal root ganglion neurons.

机构信息

Departments of Medicine and.

Anesthesiology, University of California, San Diego, La Jolla, CA, United States.

出版信息

Pain. 2023 Jun 1;164(6):e274-e285. doi: 10.1097/j.pain.0000000000002834. Epub 2022 Nov 29.

Abstract

Nociceptive afferent signaling evoked by inflammation and nerve injury is mediated by the opening of ligand-gated and voltage-gated receptors or channels localized to cholesterol-rich lipid raft membrane domains. Dorsal root ganglion (DRG) nociceptors express high levels of toll-like receptor 4 (TLR4), which also localize to lipid rafts. Genetic deletion or pharmacologic blocking of TLR4 diminishes pain associated with chemotherapy-induced peripheral neuropathy (CIPN). In DRGs of mice with paclitaxel-induced CIPN, we analyzed DRG neuronal lipid rafts, expression of TLR4, activation of transient receptor potential cation channel subfamily V member 1 (TRPV1), and TLR4-TRPV1 interaction. Using proximity ligation assay, flow cytometry, and whole-mount DRG microscopy, we found that CIPN increased DRG neuronal lipid rafts and TLR4 expression. These effects were reversed by intrathecal injection of apolipoprotein A-I binding protein (AIBP), a protein that binds to TLR4 and specifically targets cholesterol depletion from TLR4-expressing cells. Chemotherapy-induced peripheral neuropathy increased TRPV1 phosphorylation, localization to neuronal lipid rafts, and proximity to TLR4. These effects were also reversed by AIBP treatment. Regulation of TRPV1-TLR4 interactions and their associated lipid rafts by AIBP covaried with the enduring reversal of mechanical allodynia otherwise observed in CIPN. In addition, AIBP reduced intracellular calcium in response to the TRPV1 agonist capsaicin, which was increased in DRG neurons from paclitaxel-treated mice and in the naïve mouse DRG neurons incubated in vitro with paclitaxel. Together, these results suggest that the assembly of nociceptive and inflammatory receptors in the environment of lipid rafts regulates nociceptive signaling in DRG neurons and that AIBP can control lipid raft-associated nociceptive processing.

摘要

伤害性传入信号的激活由炎症和神经损伤引起,由位于富含胆固醇的脂筏膜域的配体门控和电压门控受体或通道的开放介导。背根神经节(DRG)伤害感受器表达高水平的 Toll 样受体 4(TLR4),其也定位于脂筏。TLR4 的基因缺失或药理学阻断可减轻与化疗诱导的周围神经病变(CIPN)相关的疼痛。在紫杉醇诱导的 CIPN 的小鼠 DRG 中,我们分析了 DRG 神经元脂筏、TLR4 的表达、瞬时受体电位阳离子通道亚家族 V 成员 1(TRPV1)的激活以及 TLR4-TRPV1 相互作用。通过接近连接测定、流式细胞术和整个 DRG 显微镜,我们发现 CIPN 增加了 DRG 神经元脂筏和 TLR4 的表达。这些作用通过鞘内注射载脂蛋白 A-I 结合蛋白(AIBP)逆转,AIBP 是一种与 TLR4 结合并专门从表达 TLR4 的细胞中去除胆固醇的蛋白。化疗诱导的周围神经病变增加了 TRPV1 的磷酸化、向神经元脂筏的定位和与 TLR4 的接近。这些作用也通过 AIBP 治疗逆转。AIBP 对 TRPV1-TLR4 相互作用及其相关脂筏的调节与 CIPN 中观察到的机械性痛觉过敏的持久逆转有关。此外,AIBP 降低了对 TRPV1 激动剂辣椒素的细胞内钙反应,而紫杉醇处理的小鼠 DRG 神经元和体外用紫杉醇孵育的幼稚小鼠 DRG 神经元中的这种反应增加。总之,这些结果表明,伤害性和炎症受体在脂筏环境中的组装调节 DRG 神经元中的伤害性信号传导,并且 AIBP 可以控制与脂筏相关的伤害性处理。

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