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活化的多形核细胞促进背根神经节神经元的损伤和兴奋性。

Activated polymorphonuclear cells promote injury and excitability of dorsal root ganglia neurons.

作者信息

Shaw S K, Owolabi S A, Bagley J, Morin N, Cheng E, LeBlanc B W, Kim M, Harty P, Waxman S G, Saab C Y

机构信息

Department of Pediatrics, Women and Infants' Hospital, Brown Medical School, Providence, RI 02903, USA.

出版信息

Exp Neurol. 2008 Apr;210(2):286-94. doi: 10.1016/j.expneurol.2007.11.024. Epub 2007 Dec 4.

Abstract

Therapies aimed at depleting or blocking the migration of polymorphonuclear leukocytes (PMN or neutrophils) are partially successful in the treatment of neuroinflammatory conditions and in attenuating pain following peripheral nerve injury or subcutaneous inflammation. However, the functional effects of PMN on peripheral sensory neurons such as dorsal root ganglia (DRG) neurons are largely unknown. We hypothesized that PMN are detrimental to neuronal viability in culture and increase neuronal activity and excitability. We demonstrate that isolated peripheral PMN are initially in a relatively resting state but undergo internal oxidative burst and activation by an unknown mechanism within 10 min of co-culture with dissociated DRG cells. Co-culture for 24 h decreases neuronal count at a threshold<0.4:1 PMN:DRG cell ratio and increases the number of injured and apoptotic neurons. Within 3 min of PMN addition, fluorometric calcium imaging reveals intracellular calcium transients in small size (<25 microm diam) and large size (>25 microm diam) neurons, as well as in capsaicin-sensitive neurons. Furthermore, small size isolectin B4-labeled neurons undergo hyperexcitability manifested as decreased current threshold and increased firing frequency. Although co-culture of PMN and DRG cells does not perfectly model neuroinflammatory conditions in vivo, these findings suggest that activated PMN can potentially aggravate neuronal injury and cause functional changes to peripheral sensory neurons. Distinguishing the beneficial from the detrimental effects of PMN on neurons may aid in the development of more effective drug therapies for neurological disorders involving neuroinflammation, including painful neuropathies.

摘要

旨在消耗或阻断多形核白细胞(PMN或中性粒细胞)迁移的疗法在治疗神经炎症性疾病以及减轻周围神经损伤或皮下炎症后的疼痛方面取得了部分成功。然而,PMN对周围感觉神经元(如背根神经节(DRG)神经元)的功能影响在很大程度上尚不清楚。我们假设PMN对培养中的神经元活力有害,并会增加神经元活性和兴奋性。我们证明,分离出的外周PMN最初处于相对静止状态,但在与解离的DRG细胞共培养10分钟内,会通过未知机制经历内部氧化爆发和激活。共培养24小时会在PMN与DRG细胞比例低于0.4:1的阈值时减少神经元数量,并增加受损和凋亡神经元的数量。在添加PMN后3分钟内,荧光钙成像显示小尺寸(直径<25微米)和大尺寸(直径>25微米)神经元以及辣椒素敏感神经元内的细胞内钙瞬变。此外,小尺寸异凝集素B4标记的神经元会出现过度兴奋,表现为电流阈值降低和放电频率增加。尽管PMN与DRG细胞的共培养不能完美模拟体内神经炎症情况,但这些发现表明,活化的PMN可能会加重神经元损伤并导致周围感觉神经元的功能变化。区分PMN对神经元的有益和有害影响可能有助于开发针对涉及神经炎症的神经系统疾病(包括疼痛性神经病变)的更有效药物疗法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c8a8/2397441/fe73dabc8399/nihms46609f1.jpg

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