Ossipov Michael H
Department of Pharmacology, College of Medicine, University of Arizona, Tucson, AZ 85724, USA.
Scientifica (Cairo). 2012;2012:561761. doi: 10.6064/2012/561761. Epub 2012 Dec 25.
Pain is often perceived an unpleasant experience that includes sensory and emotional/motivational responses. Accordingly, pain serves as a powerful teaching signal enabling an organism to avoid injury, and is critical to survival. However, maladaptive pain, such as neuropathic or idiopathic pain, serves no survival function. Genomic studies of individuals with congenital insensitivity to pain or paroxysmal pain syndromes considerable increased our understanding of the function of peripheral nociceptors, and especially of the roles of voltage-gated sodium channels and of nerve growth factor (NGF)/TrkA receptors in nociceptive transduction and transmission. Brain imaging studies revealed a "pain matrix," consisting of cortical and subcortical regions that respond to noxious inputs and can positively or negatively modulate pain through activation of descending pain modulatory systems. Projections from the periaqueductal grey (PAG) and the rostroventromedial medulla (RVM) to the trigeminal and spinal dorsal horns can inhibit or promote further nociceptive inputs. The "pain matrix" can explain such varied phenomena as stress-induced analgesia, placebo effect and the role of expectation on pain perception. Disruptions in these systems may account for the existence idiopathic pan states such as fibromyalgia. Increased understanding of pain modulatory systems will lead to development of more effective therapeutics for chronic pain.
疼痛通常被视为一种不愉快的体验,包括感觉和情感/动机反应。因此,疼痛是一种强大的警示信号,能使生物体避免受伤,对生存至关重要。然而,适应不良性疼痛,如神经性疼痛或特发性疼痛,并无生存功能。对先天性无痛觉个体或阵发性疼痛综合征个体的基因组研究极大地增进了我们对周围伤害感受器功能的理解,尤其是电压门控钠通道以及神经生长因子(NGF)/TrkA受体在伤害性转导和传递中的作用。脑成像研究揭示了一个“疼痛矩阵”,它由皮质和皮质下区域组成,这些区域对有害输入做出反应,并可通过激活下行性疼痛调节系统对疼痛产生正向或负向调节作用。导水管周围灰质(PAG)和延髓头端腹内侧网状结构(RVM)向三叉神经和脊髓背角的投射可抑制或促进进一步的伤害性输入。“疼痛矩阵”可以解释诸如应激诱导镇痛、安慰剂效应以及期望对疼痛感知的作用等各种现象。这些系统的紊乱可能是纤维肌痛等特发性疼痛状态存在的原因。对疼痛调节系统的进一步了解将有助于开发出更有效的慢性疼痛治疗方法。