Literature DB >> 20071773

Cerebrovascular dysfunction and microcirculation rarefaction precede white matter lesions in a mouse genetic model of cerebral ischemic small vessel disease.

Anne Joutel1, Marie Monet-Leprêtre, Claudia Gosele, Céline Baron-Menguy, Annette Hammes, Sabine Schmidt, Barbara Lemaire-Carrette, Valérie Domenga, Andreas Schedl, Pierre Lacombe, Norbert Hubner.   

Abstract

Cerebral ischemic small vessel disease (SVD) is the leading cause of vascular dementia and a major contributor to stroke in humans. Dominant mutations in NOTCH3 cause cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL), a genetic archetype of cerebral ischemic SVD. Progress toward understanding the pathogenesis of this disease and developing effective therapies has been hampered by the lack of a good animal model. Here, we report the development of a mouse model for CADASIL via the introduction of a CADASIL-causing Notch3 point mutation into a large P1-derived artificial chromosome (PAC). In vivo expression of the mutated PAC transgene in the mouse reproduced the endogenous Notch3 expression pattern and main pathological features of CADASIL, including Notch3 extracellular domain aggregates and granular osmiophilic material (GOM) deposits in brain vessels, progressive white matter damage, and reduced cerebral blood flow. Mutant mice displayed attenuated myogenic responses and reduced caliber of brain arteries as well as impaired cerebrovascular autoregulation and functional hyperemia. Further, we identified a substantial reduction of white matter capillary density. These neuropathological changes occurred in the absence of either histologically detectable alterations in cerebral artery structure or blood-brain barrier breakdown. These studies provide in vivo evidence for cerebrovascular dysfunction and microcirculatory failure as key contributors to hypoperfusion and white matter damage in this genetic model of ischemic SVD.

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Year:  2010        PMID: 20071773      PMCID: PMC2810078          DOI: 10.1172/JCI39733

Source DB:  PubMed          Journal:  J Clin Invest        ISSN: 0021-9738            Impact factor:   14.808


  51 in total

1.  Postmortem diffusion of autoradiographic blood flow tracers.

Authors:  J H Greenberg; C LoBrutto; K M Lombard; J Chen
Journal:  Brain Res       Date:  1999-09-18       Impact factor: 3.252

2.  CADASIL: skin biopsy allows diagnosis in early stages.

Authors:  M Ebke; M Dichgans; M Bergmann; H U Voelter; P Rieger; T Gasser; G Schwendemann
Journal:  Acta Neurol Scand       Date:  1997-06       Impact factor: 3.209

3.  Notch3 is required for arterial identity and maturation of vascular smooth muscle cells.

Authors:  Valérie Domenga; Peggy Fardoux; Pierre Lacombe; Marie Monet; Jacqueline Maciazek; Luke T Krebs; Bernard Klonjkowski; Eliane Berrou; Matthias Mericskay; Zhen Li; Elisabeth Tournier-Lasserve; Thomas Gridley; Anne Joutel
Journal:  Genes Dev       Date:  2004-11-15       Impact factor: 11.361

4.  Strong clustering and stereotyped nature of Notch3 mutations in CADASIL patients.

Authors:  A Joutel; K Vahedi; C Corpechot; A Troesch; H Chabriat; C Vayssière; C Cruaud; J Maciazek; J Weissenbach; M G Bousser; J F Bach; E Tournier-Lasserve
Journal:  Lancet       Date:  1997-11-22       Impact factor: 79.321

5.  Homologous recombination based modification in Escherichia coli and germline transmission in transgenic mice of a bacterial artificial chromosome.

Authors:  X W Yang; P Model; N Heintz
Journal:  Nat Biotechnol       Date:  1997-09       Impact factor: 54.908

Review 6.  CADASIL: hereditary disease of arteries causing brain infarcts and dementia.

Authors:  H Kalimo; M Viitanen; K Amberla; V Juvonen; R Marttila; M Pöyhönen; J O Rinne; M Savontaus; S Tuisku; B Winblad
Journal:  Neuropathol Appl Neurobiol       Date:  1999-08       Impact factor: 8.090

7.  Patterns of MRI lesions in CADASIL.

Authors:  H Chabriat; C Levy; H Taillia; M T Iba-Zizen; K Vahedi; A Joutel; E Tournier-Lasserve; M G Bousser
Journal:  Neurology       Date:  1998-08       Impact factor: 9.910

8.  The phenotypic spectrum of CADASIL: clinical findings in 102 cases.

Authors:  M Dichgans; M Mayer; I Uttner; R Brüning; J Müller-Höcker; G Rungger; M Ebke; T Klockgether; T Gasser
Journal:  Ann Neurol       Date:  1998-11       Impact factor: 10.422

9.  SPECT study of a German CADASIL family: a phenotype with migraine and progressive dementia only.

Authors:  J K Mellies; T Bäumer; J A Müller; E Tournier-Lasserve; H Chabriat; O Knobloch; H J Hackelöer; H H Goebel; L Wetzig; P Haller
Journal:  Neurology       Date:  1998-06       Impact factor: 9.910

10.  Construction and characterization of a 10-fold genome equivalent rat P1-derived artificial chromosome library.

Authors:  P Y Woon; K Osoegawa; P J Kaisaki; B Zhao; J J Catanese; D Gauguier; R Cox; E R Levy; G M Lathrop; A P Monaco; P J de Jong
Journal:  Genomics       Date:  1998-06-15       Impact factor: 5.736

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  142 in total

Review 1.  Genetic animal models of cerebral vasculopathies.

Authors:  Jeong Hyun Lee; Brian J Bacskai; Cenk Ayata
Journal:  Prog Mol Biol Transl Sci       Date:  2012       Impact factor: 3.622

Review 2.  Notch and disease: a growing field.

Authors:  Angeliki Louvi; Spyros Artavanis-Tsakonas
Journal:  Semin Cell Dev Biol       Date:  2012-02-20       Impact factor: 7.727

Review 3.  Cell-to-cell communication and vascular dementia.

Authors:  Hans H Dietrich
Journal:  Microcirculation       Date:  2012-07       Impact factor: 2.628

4.  Individual variability of cerebral autoregulation, posterior cerebral circulation and white matter hyperintensity.

Authors:  Jie Liu; Benjamin Y Tseng; Muhammad Ayaz Khan; Takashi Tarumi; Candace Hill; Niki Mirshams; Timea M Hodics; Linda S Hynan; Rong Zhang
Journal:  J Physiol       Date:  2016-02-09       Impact factor: 5.182

Review 5.  Perturbations of the cerebrovascular matrisome: A convergent mechanism in small vessel disease of the brain?

Authors:  Anne Joutel; Iman Haddad; Julien Ratelade; Mark T Nelson
Journal:  J Cereb Blood Flow Metab       Date:  2016-01       Impact factor: 6.200

Review 6.  Cerebral blood flow regulation and neurovascular dysfunction in Alzheimer disease.

Authors:  Kassandra Kisler; Amy R Nelson; Axel Montagne; Berislav V Zlokovic
Journal:  Nat Rev Neurosci       Date:  2017-05-18       Impact factor: 34.870

Review 7.  Understanding the role of the perivascular space in cerebral small vessel disease.

Authors:  Rosalind Brown; Helene Benveniste; Sandra E Black; Serge Charpak; Martin Dichgans; Anne Joutel; Maiken Nedergaard; Kenneth J Smith; Berislav V Zlokovic; Joanna M Wardlaw
Journal:  Cardiovasc Res       Date:  2018-09-01       Impact factor: 10.787

8.  Regulation of myogenic tone and structure of parenchymal arterioles by hypertension and the mineralocorticoid receptor.

Authors:  Paulo W Pires; William F Jackson; Anne M Dorrance
Journal:  Am J Physiol Heart Circ Physiol       Date:  2015-04-24       Impact factor: 4.733

9.  HB-EGF depolarizes hippocampal arterioles to restore myogenic tone in a genetic model of small vessel disease.

Authors:  Jackson T Fontaine; Amanda C Rosehart; Anne Joutel; Fabrice Dabertrand
Journal:  Mech Ageing Dev       Date:  2020-10-27       Impact factor: 5.432

Review 10.  The effects of hypertension on the cerebral circulation.

Authors:  Paulo W Pires; Carla M Dams Ramos; Nusrat Matin; Anne M Dorrance
Journal:  Am J Physiol Heart Circ Physiol       Date:  2013-04-12       Impact factor: 4.733

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