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P物质/神经激肽1与三叉神经系统:围产期猝死发病机制的潜在联系

Substance P/Neurokinin 1 and Trigeminal System: A Possible Link to the Pathogenesis in Sudden Perinatal Deaths.

作者信息

Mehboob Riffat

机构信息

Biomedical Sciences, King Edward Medical University , Lahore , Pakistan.

出版信息

Front Neurol. 2017 Mar 13;8:82. doi: 10.3389/fneur.2017.00082. eCollection 2017.

Abstract

Sudden demise of a healthy fetus or a neonate is a very tragic episode in the life of parents. These deaths have been a mystery since ages but still remain unexplained. This review proposes the involvement of trigeminal nerve, neurotransmitter substance P (SP), and its receptor neurokinin 1 (NK-1R) in regulation of cardiorespiratory control in fetuses and newborns. Anomalies and immaturity of neuroregulatory systems such as trigeminal system in medulla oblongata of brainstem may provide a possible mechanism of sudden perinatal deaths. Vulnerable infants are born with respiratory center immaturity which in combination with any stressor such as cold, hypoxia, and smoking may lead to cessation of breathing and ventilatory response. SP/NK-1R may be involved in regulating the ventilatory control in neonates while it is decreased in fetal and adult life in humans, and any alterations from these may lead to irreversible sleep apnea and fatal breathing, ultimately sudden death. This review summarizes the studies performed to highlight the expression of SP or NK-1R in sudden perinatal deaths and proposes the involvement of trigeminal ganglion along with its nerve and SP/NK-1R expression alteration as one of the possible pathophysiological underlying mechanism. However, further studies are required to explore the role of SP, NK-1R, and trigeminal system in the pathogenesis of sudden infant deaths, sudden intrauterine deaths, stillbirths, and sudden deaths later in human life.

摘要

健康胎儿或新生儿的突然死亡对其父母来说是人生中极其悲惨的事件。自古以来,这些死亡事件一直是个谜,至今仍无法解释。本综述提出三叉神经、神经递质P物质(SP)及其受体神经激肽1(NK-1R)参与胎儿和新生儿心肺控制的调节。神经调节系统的异常和不成熟,如脑干延髓中的三叉神经系统,可能是围产期突然死亡的一种可能机制。脆弱的婴儿出生时呼吸中枢不成熟,再加上任何应激源,如寒冷、缺氧和吸烟,可能导致呼吸停止和通气反应。SP/NK-1R可能参与调节新生儿的通气控制,而在人类胎儿期和成年期其表达降低,任何与此的改变都可能导致不可逆的睡眠呼吸暂停和致命性呼吸,最终导致猝死。本综述总结了为突出SP或NK-1R在围产期突然死亡中的表达而进行的研究,并提出三叉神经节及其神经以及SP/NK-1R表达改变作为可能的病理生理潜在机制之一。然而,需要进一步研究来探索SP、NK-1R和三叉神经系统在婴儿猝死、子宫内猝死、死产以及人类后期突然死亡发病机制中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f88/5346962/d40a56eb31de/fneur-08-00082-g001.jpg

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