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首页> 外文期刊>Journal of the Royal Society of New Zealand >Intra-carotid body inter-cellular communication
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Intra-carotid body inter-cellular communication

机译:颈动脉内体细胞间通讯

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The classic peripheral chemoreflex response is a critical homeostatic mechanism. In healthy individuals, appropriate chemoreflex responses are triggered by acute activation of the carotid body - the principal chemosensory organ in mammals. However, the aberrant chronic activation of the carotid body can drive the elevated sympathetic activity underlying cardio-respiratory diseases such as hypertension, diabetes and heart failure. Carotid body resection induces intolerable side effects and so understanding how to modulate carotid body output without removing it, and whilst maintaining the physiological chemoreflex response, represents the next logical next step in the development of effective clinical interventions. By definition, excessive carotid body output must result from altered intra-carotid body inter-cellular communication. Alongside the canonical synaptic transmission from glomus cells to petrosal afferents, many other modes of information exchange in the carotid body have been identified, for example bidirectional signalling between type I and type II cells via ATP-induced ATP release, as well as electrical communication via gap junctions. Thus, herein we review the carotid body as an integrated circuit, discussing a variety of different inter-cellular signalling mechanisms and highlighting those that are potentially relevant to its pathological hyperactivity in disease with the aim of identifying novel therapeutic targets.
机译:经典的外周 chemoreflex 反应是一种关键的稳态机制。在健康个体中,适当的化学反射反应是由颈动脉体(哺乳动物的主要化学感觉器官)的急性激活触发的。然而,颈动脉体的异常慢性激活可以驱动高血压、糖尿病和心力衰竭等心肺疾病的潜在交感神经活动升高。颈动脉体切除术会引起无法忍受的副作用,因此了解如何在不切除颈动脉体输出的情况下调节颈动脉体输出,同时保持生理化学反射反应,代表了开发有效临床干预措施的下一个合乎逻辑的下一步。根据定义,颈动脉体输出量过多必须由颈动脉体内细胞间通讯的改变引起。除了从球细胞到岩传入细胞的典型突触传递外,还确定了颈动脉体内的许多其他信息交换模式,例如通过 ATP 诱导的 ATP 释放在 I 型和 II 型细胞之间的双向信号传导,以及通过间隙连接进行电通信。因此,在此,我们将颈动脉体作为一个集成电路进行回顾,讨论各种不同的细胞间信号传导机制,并强调那些可能与其疾病中的病理性多动相关的机制,目的是确定新的治疗靶点。

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