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犬肌营养不良症的实验性再生——1. 肌营养不良蛋白和β-血影蛋白表达的免疫细胞化学评估

Experimental regeneration in canine muscular dystrophy--1. Immunocytochemical evaluation of dystrophin and beta-spectrin expression.

作者信息

Sewry C A, Wilson L A, Dux L, Dubowitz V, Cooper B J

机构信息

Department of Paediatrics and Neonatal Medicine, Royal Postgraduate Medical School, Hammersmith Hospital, London, U.K.

出版信息

Neuromuscul Disord. 1992;2(5-6):331-42. doi: 10.1016/s0960-8966(06)80004-0.

Abstract

The expression of dystrophin and beta-spectrin was examined from 1 to 56 days in regenerating muscle fibres in normal and dystrophic dogs, following necrosis induced by the venom of Notechis scutatis. Normal and dystrophic dog muscle regenerated at an equal rate and new myotubes were present in both at the periphery of necrotic fibres by 3 days. In normal dogs dystrophin was detected in the sarcoplasm of the regenerating fibres by 3 days and was localized to the plasma membrane by 4 days. The localization of dystrophin is independent of beta-spectrin and was detected before beta-spectrin, which was not observed until 5-6 days. Normal peripheral labelling of both was restored by 14 days in normal dogs. Normal beta-spectrin labelling of regenerating dystrophic fibres was also restored by 14 days and is not dependent on the presence of dystrophin in dystrophic dogs. A proportion of regenerating fibres in normal and dystrophic dogs showed weak immunolabelling of beta-spectrin prior to 14 days. This is a feature of immature muscle fibres. Antibodies to different domains of dystrophin bound to the periphery and sarcoplasm of regenerating fibres in dystrophic dogs, particularly during the first 7 days of regeneration, but the fluorescence was less intense than in normal dogs. Weak labelling with antibodies corresponding to the C-terminus of the rod domain of dystrophin persisted on dystrophic regenerating fibres up to 21 days. This may relate to developmental isoforms of dystrophin.

摘要

在被盾鳞蝰蛇毒液诱导坏死之后,于正常犬和患营养不良症犬的再生肌纤维中,从第1天至第56天检测了肌营养不良蛋白和β-血影蛋白的表达情况。正常犬和患营养不良症犬的肌肉以相同速率再生,到第3天时,坏死纤维周边均出现了新的肌管。在正常犬中,到第3天时在再生纤维的肌浆中检测到肌营养不良蛋白,到第4天时其定位于质膜。肌营养不良蛋白的定位独立于β-血影蛋白,且在β-血影蛋白之前被检测到,β-血影蛋白直到第5 - 6天才被观察到。在正常犬中,到第14天时两者的正常周边标记恢复。再生的营养不良纤维的正常β-血影蛋白标记到第14天时也恢复,且在患营养不良症犬中不依赖于肌营养不良蛋白的存在。在第14天之前,正常犬和患营养不良症犬中一部分再生纤维显示β-血影蛋白的免疫标记较弱。这是未成熟肌纤维的一个特征。针对肌营养不良蛋白不同结构域的抗体与患营养不良症犬再生纤维的周边和肌浆结合,尤其是在再生的前7天,但荧光强度低于正常犬。与肌营养不良蛋白杆状结构域C末端对应的抗体的弱标记在患营养不良症的再生纤维上持续到第21天。这可能与肌营养不良蛋白的发育同工型有关。

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