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默克尔复合体引发机械性瘙痒吗?

Do Merkel complexes initiate mechanical itch?

作者信息

Bataille-Savattier Adeline, Le Gall-Ianotto Christelle, Lebonvallet Nicolas, Misery Laurent, Talagas Matthieu

机构信息

University of Brest, LIEN, Brest, France.

CHU Brest, Department of Dermatology, Brest, France.

出版信息

Exp Dermatol. 2023 Feb;32(2):226-234. doi: 10.1111/exd.14685. Epub 2022 Oct 21.

Abstract

Itch is a common sensation which is amenable to disabling patients' life under pathological and chronic conditions. Shared assertion easily limits itch to chemical itch, without considering mechanical itch and alloknesis, its pathological counterpart. However, in recent years, our understanding of the mechanical itch pathway, particularly in the central nervous system, has been enhanced. In addition, Merkel complexes, conventionally considered as tactile end organs only responsible for light touch perception due to Piezo2 expressed by both Merkel cells and SA1 Aβ-fibres - low threshold mechanical receptors (LTMRs) -, have recently been identified as modulators of mechanical itch. However, the tactile end organs responsible for initiating mechanical itch remain unexplored. The consensus is that some LTMRs, either SA1 Aβ- or A∂- and C-, are cutaneous initiators of mechanical itch, even though they are not self-sufficient to finely detect and encode light mechanical stimuli into sensory perceptions, which depend on the entire hosting tactile end organ. Consequently, to enlighten our understanding of mechanical itch initiation, this article discusses the opportunity to consider Merkel complexes as potential tactile end organs responsible for initiating mechanical itch, under both healthy and pathological conditions. Their unsuspected modulatory abilities indeed show that they are tuned to detect and encode light mechanical stimuli leading to mechanical itch, especially as they host not only SA1 Aβ-LTMRs but also A∂- and C-fibres.

摘要

瘙痒是一种常见的感觉,在病理和慢性条件下会严重影响患者的生活。人们通常轻易地将瘙痒局限于化学性瘙痒,而没有考虑到机械性瘙痒及其病理对应物——异常性疼痛。然而,近年来,我们对机械性瘙痒途径的理解,尤其是在中枢神经系统中的理解,有了增强。此外,默克尔复合体,传统上仅被视为触觉终末器官,由于默克尔细胞和SA1 Aβ纤维(低阈值机械感受器,LTMRs)都表达Piezo2,所以仅负责轻触觉感知,最近已被确定为机械性瘙痒的调节因子。然而,负责引发机械性瘙痒的触觉终末器官仍未被探索。目前的共识是,一些LTMRs,无论是SA1 Aβ纤维、Aδ纤维还是C纤维,都是机械性瘙痒的皮肤引发者,尽管它们自身不足以精细地检测并将轻微机械刺激编码为感觉认知,这依赖于整个宿主触觉终末器官。因此,为了加深我们对机械性瘙痒起始的理解,本文探讨了将默克尔复合体视为在健康和病理条件下负责引发机械性瘙痒的潜在触觉终末器官的可能性。它们未被怀疑的调节能力确实表明,它们能够检测并编码导致机械性瘙痒的轻微机械刺激,特别是因为它们不仅容纳SA1 Aβ-LTMRs,还容纳Aδ纤维和C纤维。

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