Hucho Tim, Levine Jon D
Max Planck Institute for Molecular Genetics, 14195 Berlin, Germany.
Neuron. 2007 Aug 2;55(3):365-76. doi: 10.1016/j.neuron.2007.07.008.
The electrophysiological properties of peripheral neurons activated by noxious stimuli, the primary afferent nociceptors, have been investigated intensively, and our knowledge about the molecular basis of transducers for noxious stimuli has increased greatly. In contrast, understanding of the intracellular signaling mechanisms regulating nociceptor sensitization downstream of ligand binding to the receptors is still at a relatively nascent stage. After outlining the initiated signaling cascades, we discuss the emerging plasticity within these cascades and the importance of subcellular compartmentalization. In addition, the recently realized importance of functional interactions with the extracellular matrix, cytoskeleton, intracellular organelles such as mitochondria, and sex hormones will be introduced. This burgeoning literature establishes new cellular features crucial for the function of nociceptive neurons and argues that additional focus should be placed on understanding the complex integration of cellular events that make up the "cell biology of pain."
有害刺激激活的外周神经元,即初级传入伤害感受器的电生理特性已得到深入研究,并且我们对有害刺激感受器分子基础的认识有了极大提高。相比之下,对于配体与受体结合后调节伤害感受器敏化的细胞内信号传导机制的理解仍处于相对初期阶段。在概述起始的信号级联反应后,我们将讨论这些级联反应中出现的可塑性以及亚细胞区室化的重要性。此外,还将介绍最近认识到的与细胞外基质、细胞骨架、线粒体等细胞内细胞器以及性激素功能相互作用的重要性。这些迅速增长的文献确立了对伤害性神经元功能至关重要的新细胞特征,并认为应更多地关注理解构成“疼痛细胞生物学”的细胞事件的复杂整合。