National Institute for Physiological Sciences, National Institutes of Natural Sciences, Okazaki, Japan.
FEBS J. 2022 Jul;289(14):4132-4145. doi: 10.1111/febs.15846. Epub 2021 Apr 12.
Understanding the molecular mechanisms of nociception has recently grown impressively. Nociception is mediated by mechanical, chemical, or microbial stimuli that evoke unpleasant feelings, alerting the host of the risk of tissue damage. Such diverse arrays of noxious stimuli trigger various escape reactions, usually altering immune homeostasis. Notably, nociceptors can recognize cytokines or pathogens via sensory molecules or innate immune receptors, participating in immune responses. Accumulating evidence suggests that activated nociceptors produce various humoral factors that affect the immune system and act like endocrine/paracrine signals. Thus, understanding the interplay between the nociceptive and immune systems may open new avenues for the development of an interdisciplinary research field, hereinafter referred to as 'senso-immunology'. This review will discuss the physiological relevance of the senso-immune system in the host defense context, focusing on how senso-immune research might yield novel treatments to cure pain and inflammation.
近年来,人们对伤害感受的分子机制的理解有了显著的进展。伤害感受是由机械、化学或微生物刺激引起的,会引起不愉快的感觉,提醒宿主有组织损伤的风险。如此多样化的有害刺激会引发各种逃避反应,通常会改变免疫稳态。值得注意的是,伤害感受器可以通过感觉分子或先天免疫受体识别细胞因子或病原体,参与免疫反应。越来越多的证据表明,激活的伤害感受器会产生各种影响免疫系统的体液因子,并充当内分泌/旁分泌信号。因此,了解伤害感受和免疫系统之间的相互作用可能为开发一个跨学科的研究领域开辟新途径,以下简称“感觉-免疫学”。这篇综述将讨论宿主防御背景下感觉-免疫系统的生理相关性,重点讨论感觉-免疫研究如何产生新的治疗方法来治疗疼痛和炎症。