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糖尿病和高血压对大脑的影响不同:灰质的不良影响。

Differential impact of diabetes and hypertension in the brain: adverse effects in grey matter.

机构信息

Department of Clinical Neurosciences and the Hotchkiss Brain Institute, University of Calgary, Alberta, Canada.

出版信息

Neurobiol Dis. 2011 Nov;44(2):161-73. doi: 10.1016/j.nbd.2011.06.005. Epub 2011 Jun 25.

Abstract

Diabetes mellitus types 1 and 2 (DM1 and DM2) and/or hypertension (HTN) can contribute to cognitive decline, cerebral atrophy and white matter abnormalities in humans. Adult rat models of streptozotocin-induced DM1 and genetic strains of DM2 and HTN were used to investigate relative contributions of DM and HTN for alterations in cerebral structure and function as well as insulin receptor biology using cognitive testing, magnetic resonance imaging (MRI), and histological and molecular methods. The effects of DM1 or DM2 were generally similar. DM was associated with earlier onset of cognitive impairment than with HTN alone. DM was independently correlated with brain atrophy, whereas HTN had minimal effects on brain volume. The combination of DM and HTN led to identifiable mild hippocampal neuronal loss while either DM or HTN led to synaptic loss. Only DM led to downregulation of the insulin receptor pathways' activation. In contrast, only HTN was associated with vascular luminal reduction and restricted cerebral perfusion on MRI. The impacts of DM and HTN in the brain differ, while their separate contributions can lead to some additive adverse effects within rodent brain grey matter.

摘要

1 型和 2 型糖尿病(DM1 和 DM2)和/或高血压(HTN)可导致人类认知能力下降、脑萎缩和白质异常。使用链脲佐菌素诱导的 1 型糖尿病大鼠模型和 DM2 及 HTN 的遗传品系,通过认知测试、磁共振成像(MRI)以及组织学和分子方法,研究 DM 和 HTN 对脑结构和功能改变以及胰岛素受体生物学的相对贡献。DM1 或 DM2 的影响通常相似。DM 与认知障碍的早期发病有关,而与单纯 HTN 无关。DM 与脑萎缩独立相关,而 HTN 对脑容量的影响最小。DM 和 HTN 的组合导致可识别的轻度海马神经元丢失,而 DM 或 HTN 导致突触丢失。只有 DM 导致胰岛素受体途径的激活下调。相反,只有 HTN 与 MRI 上的血管腔缩小和脑灌注受限有关。DM 和 HTN 在大脑中的影响不同,而它们各自的贡献可能会导致啮齿动物大脑灰质中出现一些附加的不良影响。

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