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海藻酸诱导大鼠脊髓兴奋性毒性损伤后小胶质细胞和星形胶质细胞的反应性

Reactivity of microglia and astrocytes after an excitotoxic injury induced by kainic acid in the rat spinal cord.

作者信息

Zanuzzi Carolina Natalia, Nishida Fabián, Sisti María Susana, Barbeito Claudio Gustavo, Portiansky Enrique Leo

机构信息

Image Analysis Laboratory, School of Veterinary Sciences, National University of La Plata (UNLP), Buenos Aires, Argentina; National Research Council of Science and Technology (CONICET), Argentina.

Image Analysis Laboratory, School of Veterinary Sciences, National University of La Plata (UNLP), Buenos Aires, Argentina; National Research Council of Science and Technology (CONICET), Argentina.

出版信息

Tissue Cell. 2019 Feb;56:31-40. doi: 10.1016/j.tice.2018.11.007. Epub 2018 Dec 1.

Abstract

After injury of the nervous system glial cells react according to the stimuli by modifying their morphology and function. Glia activation was reported in different kainic acid (KA)-induced neurodegeneration models. Here, we describe glial morphometric changes occurring in an excitotoxic KA-induced cervical spinal cord injury model. Concomitant degenerative and apoptotic processes are also reported. Male rats injected at the spinal cord C5 segment either with KA or saline were euthanized at post-injection (PI) days 1, 2, 3 or 7. Anti-IBA-1 and anti-GFAP antibodies were used to identify microglia and activated astrocytes, respectively, and to morphometrically characterized them. Fluoro-Jade B staining and TUNEL reaction were used to determine neuronal and glial degeneration and apoptosis. KA-injected group showed a significant increase in microglia number at the ipsilateral side by PI day 3. Different microglia reactive phenotypes were observed. Reactive microglia was still present by PI day 7. Astrocytes in KA-injected group showed a biphasic increase in number at PI days 1 and 3. Degenerative and apoptotic events were only observed in KA-injected animals, increasing mainly by PI day 1. Understanding the compromise of glia in different neurodegenerative processes may help to define possible common or specific therapeutic approaches directed towards neurorestorative strategies.

摘要

神经系统损伤后,胶质细胞会根据刺激改变其形态和功能做出反应。在不同的 kainic 酸(KA)诱导的神经退行性变模型中均报道了胶质细胞激活现象。在此,我们描述了在兴奋性毒性 KA 诱导的颈脊髓损伤模型中发生的胶质细胞形态计量学变化。同时也报道了伴随的退行性变和凋亡过程。在脊髓 C5 节段注射 KA 或生理盐水的雄性大鼠在注射后(PI)第 1、2、3 或 7 天安乐死。分别使用抗 IBA-1 和抗 GFAP 抗体来识别小胶质细胞和活化星形胶质细胞,并对其进行形态计量学表征。使用 Fluoro-Jade B 染色和 TUNEL 反应来确定神经元和胶质细胞的变性和凋亡。KA 注射组在 PI 第 3 天时同侧小胶质细胞数量显著增加。观察到不同的小胶质细胞反应性表型。PI 第 7 天时仍存在反应性小胶质细胞。KA 注射组的星形胶质细胞数量在 PI 第 1 天和第 3 天呈双相增加。仅在 KA 注射的动物中观察到退行性变和凋亡事件,主要在 PI 第 1 天增加。了解胶质细胞在不同神经退行性过程中的损伤情况可能有助于确定针对神经修复策略的可能的共同或特定治疗方法。

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