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Genomics of perivascular space burden unravels early mechanisms of cerebral small vessel disease.

Authors :
Duperron MG
Knol MJ
Le Grand Q
Evans TE
Mishra A
Tsuchida A
Roshchupkin G
Konuma T
Trégouët DA
Romero JR
Frenzel S
Luciano M
Hofer E
Bourgey M
Dueker ND
Delgado P
Hilal S
Tankard RM
Dubost F
Shin J
Saba Y
Armstrong NJ
Bordes C
Bastin ME
Beiser A
Brodaty H
Bülow R
Carrera C
Chen C
Cheng CY
Deary IJ
Gampawar PG
Himali JJ
Jiang J
Kawaguchi T
Li S
Macalli M
Marquis P
Morris Z
Muñoz Maniega S
Miyamoto S
Okawa M
Paradise M
Parva P
Rundek T
Sargurupremraj M
Schilling S
Setoh K
Soukarieh O
Tabara Y
Teumer A
Thalamuthu A
Trollor JN
Valdés Hernández MC
Vernooij MW
Völker U
Wittfeld K
Wong TY
Wright MJ
Zhang J
Zhao W
Zhu YC
Schmidt H
Sachdev PS
Wen W
Yoshida K
Joutel A
Satizabal CL
Sacco RL
Bourque G
Lathrop M
Paus T
Fernandez-Cadenas I
Yang Q
Mazoyer B
Boutinaud P
Okada Y
Grabe HJ
Mather KA
Schmidt R
Joliot M
Ikram MA
Matsuda F
Tzourio C
Wardlaw JM
Seshadri S
Adams HHH
Debette S
Source :
Nature medicine [Nat Med] 2023 Apr; Vol. 29 (4), pp. 950-962. Date of Electronic Publication: 2023 Apr 17.
Publication Year :
2023

Abstract

Perivascular space (PVS) burden is an emerging, poorly understood, magnetic resonance imaging marker of cerebral small vessel disease, a leading cause of stroke and dementia. Genome-wide association studies in up to 40,095 participants (18 population-based cohorts, 66.3 ± 8.6 yr, 96.9% European ancestry) revealed 24 genome-wide significant PVS risk loci, mainly in the white matter. These were associated with white matter PVS already in young adults (N = 1,748; 22.1 ± 2.3 yr) and were enriched in early-onset leukodystrophy genes and genes expressed in fetal brain endothelial cells, suggesting early-life mechanisms. In total, 53% of white matter PVS risk loci showed nominally significant associations (27% after multiple-testing correction) in a Japanese population-based cohort (N = 2,862; 68.3 ± 5.3 yr). Mendelian randomization supported causal associations of high blood pressure with basal ganglia and hippocampal PVS, and of basal ganglia PVS and hippocampal PVS with stroke, accounting for blood pressure. Our findings provide insight into the biology of PVS and cerebral small vessel disease, pointing to pathways involving extracellular matrix, membrane transport and developmental processes, and the potential for genetically informed prioritization of drug targets.<br /> (© 2023. The Author(s).)

Details

Language :
English
ISSN :
1546-170X
Volume :
29
Issue :
4
Database :
MEDLINE
Journal :
Nature medicine
Publication Type :
Academic Journal
Accession number :
37069360
Full Text :
https://doi.org/10.1038/s41591-023-02268-w