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周围感觉神经元和非神经元细胞表达功能性 Piezo1 通道。

Peripheral sensory neurons and non-neuronal cells express functional Piezo1 channels.

机构信息

Department of Anesthesiology, Medical College of Wisconsin, Milwaukee, WI, USA.

Department of Physiology, Medical College of Georgia, Augusta University, Augusta, GA, USA.

出版信息

Mol Pain. 2023 Jan-Dec;19:17448069231174315. doi: 10.1177/17448069231174315.

Abstract

Here, we present evidence showing Piezo1 protein expression in the primary sensory neurons (PSNs) and non-neuronal cells of rat peripheral nervous system. Using a knockdown/knockout validated antibody, we detected Piezo1 immunoreactivity (IR) in ∼60% of PSNs of rat dorsal root ganglia (DRG) with higher IR density in the small- and medium-sized neurons. Piezo1-IR was clearly identified in DRG perineuronal glia, including satellite glial cells (SGCs) and Schwann cells; in sciatic nerve Schwann cells surrounding the axons and cutaneous afferent endings; and in skin epidermal Merkel cells and melanocytes. Neuronal and non-neuronal Piezo1 channels were functional since various cells (dissociated PSNs and SGCs from DRGs, isolated Schwann cells, and primary human melanocytes) exhibited a robust response to Piezo1 agonist Yoda1 by an increase of intracellular Ca concentration ([Ca]). These responses were abolished by non-specific Piezo1 antagonist GsMTx4. Immunoblots showed elevated Piezo1 protein in DRG proximal to peripheral nerve injury-induced painful neuropathy, while PSNs and SGCs from rats with neuropathic pain showed greater Yoda1-evoked elevation of [Ca] and an increased frequency of cells responding to Yoda1, compared to controls. Sciatic nerve application of GsMTx4 alleviated mechanical hypersensitivity induced by Yoda1. Overall, our data show that Piezo1 is widely expressed by the neuronal and non-neuronal cells in the peripheral sensory pathways and that painful nerve injury appeared associated with activation of Piezo1 in PSNs and peripheral glial cells.

摘要

在这里,我们提供了证据表明 Piezo1 蛋白在大鼠周围神经系统的初级感觉神经元(PSNs)和非神经元细胞中表达。使用经过验证的敲低/敲除抗体,我们在大鼠背根神经节(DRG)的约 60%的 PSNs 中检测到 Piezo1 免疫反应性(IR),其中中小神经元的 IR 密度更高。Piezo1-IR 清楚地在 DRG 周围神经胶质细胞中被识别,包括卫星胶质细胞(SGCs)和雪旺细胞;在坐骨神经中的轴突和皮肤传入末梢周围的施万细胞;以及在皮肤表皮 Merkel 细胞和黑色素细胞中。神经元和非神经元 Piezo1 通道是功能性的,因为各种细胞(DRG 分离的 PSNs 和 SGCs、分离的 Schwann 细胞和原代人黑色素细胞)对 Piezo1 激动剂 Yoda1 表现出强烈的反应,导致细胞内 Ca 浓度增加([Ca])。这些反应被非特异性 Piezo1 拮抗剂 GsMTx4 所阻断。免疫印迹显示,在周围神经损伤诱导的痛性神经病的 DRG 近端,Piezo1 蛋白水平升高,而患有神经病理性疼痛的大鼠的 PSNs 和 SGCs 对 Yoda1 引起的 [Ca]升高反应更大,对 Yoda1 有反应的细胞频率增加,与对照组相比。坐骨神经应用 GsMTx4 减轻了 Yoda1 引起的机械性超敏反应。总的来说,我们的数据表明 Piezo1 广泛表达于周围感觉通路中的神经元和非神经元细胞,并且疼痛性神经损伤似乎与 PSNs 和周围神经胶质细胞中 Piezo1 的激活有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2708/10240879/8f2b480b1a69/10.1177_17448069231174315-fig1.jpg

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