Advanced cancer perineural invasion induces profound peripheral neuronal plasticity, pain, and somatosensory mechanical deactivation, unmitigated by the lack of TNFR1. Part 2. Biophysics and gene expression.

IF 2.8 3区 医学 Q2 NEUROSCIENCES Molecular Pain Pub Date : 2025-01-01 Epub Date: 2025-02-13 DOI:10.1177/17448069251323666
Silvia Gutierrez, Renee A Parker, Morgan Zhang, Maria Daniela Santi, Yi Ye, Mario Danilo Boada
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Abstract

Preclinical studies addressing the peripheral effects of cancer perineural invasion report severe neuronal availability and excitability changes. Oral cell squamous cell carcinoma perineural invasion (MOC2-PNI) shows similar effects, modulating the afferent's sensibility (tactile desensitization with concurrent nociceptive sensitization) and demyelination without inducing spontaneous activity (see Part 1.). The current study addresses the electrical status (normal or abnormal) of both active (low threshold mechano receptors (LT) and high threshold mechano receptors (HT)) and inactive (F-type and S-type) afferents. Concurrently, we have also evaluated changes in the genetic landscape that may help to understand the physiological dynamics behind MOC2-PNI-induced functional disruption of the peripheral sensory system. We have observed that the altered cell distribution and mechanical sensibility of the animal's somatosensory system cannot be explained by cellular electrical dysfunction or MOC2-PNI-induced apoptosis. Although PNI does modify the expression of several genes related to cellular hypersensitivity, these changes are insufficient to explain the MOC2-PNI-induced aberrant neuronal excitability state. Our results indicate that genetic markers provide limited information about the functional hyperexcitable state of the peripheral system. Importantly, our results also highlight the emerging role of plasma membrane Ca2+-ATPase activity (PMCA) in explaining several aspects of the observed gender-specific neuronal plasticity and the reported cellular distribution switch generated by MOC2-PNI.

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表达:晚期癌症侵袭周围神经诱导周围神经元的可塑性,疼痛和躯体感觉机械失活,而TNFR1的缺乏则无法减轻。第2部分。生物物理学和基因表达。
针对癌症周围神经侵袭的外周影响的临床前研究报告了严重的神经元可用性和兴奋性变化。口腔细胞鳞状细胞癌神经周围浸润(MOC2-PNI)也表现出类似的效果,可以调节传入神经的敏感性(触觉脱敏与并发的伤害性敏化)和脱髓鞘,但不会诱导自发活动(见第1部分)。目前的研究解决了活性(低阈值机械受体(LT)和高阈值机械受体(HT))和非活性(f型和s型)传入神经的电状态(正常或异常)。同时,我们还评估了基因景观的变化,这可能有助于理解mo_2 - pni诱导的外周感觉系统功能破坏背后的生理动力学。我们观察到,动物体感觉系统的细胞分布和机械敏感性的改变不能用细胞电功能障碍或mo2c - pni诱导的细胞凋亡来解释。尽管PNI确实改变了与细胞超敏反应相关的几个基因的表达,但这些变化不足以解释mo2c -PNI诱导的异常神经元兴奋状态。我们的结果表明,遗传标记提供的信息有限的功能亢奋状态的外周系统。重要的是,我们的研究结果还强调了质膜Ca2+- atp酶活性(PMCA)在解释观察到的性别特异性神经元可塑性和mo2c - pni产生的细胞分布开关的几个方面的新作用。
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来源期刊
Molecular Pain
Molecular Pain 医学-神经科学
CiteScore
5.60
自引率
3.00%
发文量
56
审稿时长
6-12 weeks
期刊介绍: Molecular Pain is a peer-reviewed, open access journal that considers manuscripts in pain research at the cellular, subcellular and molecular levels. Molecular Pain provides a forum for molecular pain scientists to communicate their research findings in a targeted manner to others in this important and growing field.
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