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Preserved functional autonomic phenotype in adult mice overexpressing moderate levels of human alpha‐synuclein in oligodendrocytes

机译:成年小鼠中保留的功能性自主神经表型在少突胶质细胞中过表达中等水平的人α-突触核蛋白

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摘要

Mice overexpressing human alpha‐synuclein in oligodendrocytes (MBP1‐α‐syn) recapitulate some key functional and neuropathological features of multiple system atrophy (MSA). Whether or not these mice develop severe autonomic failure, which is a key feature of human MSA, remains unknown. We explored cardiovascular autonomic regulation using long‐term blood pressure (BP) radiotelemetry and pharmacological testing. We instrumented 12 MBP1‐α‐syn mice and 11 wild‐type mice aged 9 months for radiotelemetry. Animals were tested with atropine, metoprolol, clonidine, and trimethaphan at 9 and 12 months age. We applied spectral and cross‐spectral analysis to assess heart rate (HR) and BP variability. At 9 months of age daytime BP (transgenic: 101 ± 2 vs. wild type: 99 ± 2 mmHg) and HR (497 ± 11 vs. 505 ± 16 beats/min) were similar. Circadian BP and HR rhythms were maintained. Nighttime BP (109 ± 2 vs. 108 ± 2 mmHg) and HR (575 ± 15 vs. 569 ± 14 beats/min), mean arterial BP responses to trimethaphan (−21 ± 8 vs. −10 ± 5 mmHg, P = 0.240) and to clonidine (−8 ± 3 vs. −5 ± 2 mmHg, P = 0.314) were similar. HR responses to atropine (+159 ± 24 vs. +146 ± 22 beats/min), and to clonidine (−188 ± 21 vs. −163 ± 33 beats/min) did not differ between strains. Baroreflex sensitivity (4 ± 1 vs. 4 ± 1 msec/mmHg) and HR variability (total power, 84 ± 17 vs. 65 ± 21 msec²) were similar under resting conditions and during pharmacological testing. Repeated measurements at 12 months of age provided similar results. In mice, moderate overexpression of human alpha‐synuclein in oligodendrocytes is not sufficient to induce overt autonomic failure. Additional mechanisms may be required to express the autonomic failure phenotype including higher levels of expression or more advanced age.
机译:在少突胶质细胞(MBP1-α-syn)中过表达人类α-突触核蛋白的小鼠概括了多系统萎缩(MSA)的一些关键功能和神经病理学特征。这些小鼠是否发生严重的自主神经衰竭,这是人类MSA的关键特征,目前尚不清楚。我们使用长期血压(BP)放射遥测法和药理学试验探索了心血管自主调节。我们为12个9个月大的MBP1-α-syn小鼠和11个野生型小鼠进行了无线电遥测。在9个月和12个月大时用阿托品,美托洛尔,可乐定和甲氧麻黄对动物进行了测试。我们应用频谱和跨频谱分析来评估心率(HR)和BP变异性。在9个月大的白天,BP(转基因:101±2 vs.野生型:99±2 mmHg)和HR(497±11 vs. 505±16 Beats / min)相似。维持昼夜节律的BP和HR节律。夜间BP(109±2 vs. 108±2 mmHg)和HR(575±15 vs. 569±14次/分钟),对甲氧苯甲酰胺的平均动脉BP反应(−21±8 vs.-10±5 mmHg,P = 0.240)和可乐定(-8±3 vs.-5±2 mmHg,P = 0.314)相似。菌株之间对阿托品(+159±24 vs. +146±22次/ min)和可乐定(-188±21 vs. -163±33次/ min)的HR反应没有差异。在静息状态下和药理测试期间,压力反射敏感性(4±1对4±1毫秒/ mmHg)和心律变异性(总功率84±17对65±21毫秒²)相似。在12个月大时重复测量可得出类似结果。在小鼠中,少突胶质细胞中人α-突触核蛋白的适度过度表达不足以诱发明显的自主神经功能衰竭。表达自主神经衰竭表型可能需要其他机制,包括更高水平的表达或更高的年龄。

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