1. Type 2 diabetes mellitus-associated transcriptome alterations in cortical neurones and associated neurovascular unit cells in the ageing brain
- Author
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Bury, Joanna J, Chambers, Annabelle, Heath, Paul R, Ince, Paul G, Shaw, Pamela J, Matthews, Fiona E, Brayne, Carol, Simpson, Julie E, Wharton, Stephen B, Cognitive Function And Ageing Study, Wharton, Stephen B [0000-0003-2785-333X], Apollo - University of Cambridge Repository, and Wharton, Stephen B. [0000-0003-2785-333X]
- Subjects
Male ,Candidate gene ,Aging ,medicine.medical_treatment ,Laser Capture Microdissection ,Biology ,lcsh:RC346-429 ,Pathology and Forensic Medicine ,Respiratory electron transport chain ,Transcriptome ,Cellular and Molecular Neuroscience ,Cortical neurone ,Differential expression ,Type 2 diabetes mellitus ,medicine ,Humans ,RNA, Messenger ,lcsh:Neurology. Diseases of the nervous system ,Aged ,Temporal cortex ,Aged, 80 and over ,Neurons ,Microarray analysis techniques ,Research ,Insulin ,Brain ,Endothelial Cells ,Temporal Lobe ,Cell biology ,Ageing ,medicine.anatomical_structure ,Diabetes Mellitus, Type 2 ,Astrocytes ,Neurovascular unit ,Dementia ,Female ,Neurology (clinical) ,Astrocyte - Abstract
Type 2 diabetes mellitus (T2D), characterised by peripheral insulin resistance, is a risk factor for dementia. In addition to its contribution to small and large vessel disease, T2D may directly damage cells of the brain neurovascular unit. In this study, we investigated the transcriptomic changes in cortical neurones, and associated astrocytes and endothelial cells of the neurovascular unit, in the ageing brain. Neurone, astrocyte, and endothelial cell-enriched mRNA, obtained by immuno-laser capture microdissection of temporal cortex (Brodmann area 21/22) from 6 cases with self-reported T2D in the Cognitive Function and Ageing Study neuropathology cohort, and an equal number of age and sex-matched controls, was assessed by microarray analysis. Integrated Molecular Pathway Level Analysis was performed using the Kyoto Encyclopaedia of Genes and Genomes database on significantly differentially expressed genes, defined as P
- Published
- 2021
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