Literature DB >> 33543687

Demonstration of age-related blood-brain barrier disruption and cerebromicrovascular rarefaction in mice by longitudinal intravital two-photon microscopy and optical coherence tomography.

Ádám Nyúl-Tóth1,2, Stefano Tarantini1,3,4, Jordan DelFavero1, Feng Yan5, Priya Balasubramanian1, Andriy Yabluchanskiy1, Chetan Ahire1, Tamas Kiss1,6, Tamas Csipo1,3, Agnes Lipecz1,3, Attila E Farkas2,7, Imola Wilhelm2,8, István A Krizbai2,8, Qinggong Tang5, Anna Csiszar1,3,6, Zoltan Ungvari1,3,4,6.   

Abstract

Age-related blood-brain barrier (BBB) disruption and cerebromicrovascular rarefaction contribute importantly to the pathogenesis of both vascular cognitive impairment and dementia (VCID) and Alzheimer's disease (AD). Recent advances in geroscience research enable development of novel interventions to reverse age-related alterations of the cerebral microcirculation for prevention of VCID and AD. To facilitate this research, there is an urgent need for sensitive and easy-to-adapt imaging methods that enable longitudinal assessment of changes in BBB permeability and brain capillarization in aged mice and that could be used in vivo to evaluate treatment efficiency. To enable longitudinal assessment of changes in BBB permeability in aged mice equipped with a chronic cranial window, we adapted and optimized two different intravital two-photon imaging approaches. By assessing relative fluorescence changes over the baseline within a volume of brain tissue, after qualitative image subtraction of the brain microvasculature, we confirmed that, in 24-mo-old C57BL/6J mice, cumulative permeability of the microvessels to fluorescent tracers of different molecular masses (0.3 to 40 kDa) is significantly increased compared with that of 5-mo-old mice. Real-time recording of vessel cross-sections showed that apparent solute permeability of single microvessels is significantly increased in aged mice vs. young mice. Cortical capillary density, assessed both by intravital two-photon microscopy and optical coherence tomography was also decreased in aged mice vs. young mice. The presented methods have been optimized for longitudinal (over the period of 36 wk) in vivo assessment of cerebromicrovascular health in preclinical geroscience research.NEW & NOTEWORTHY Methods are presented for longitudinal detection of age-related increase in blood-brain barrier permeability and microvascular rarefaction in the mouse cerebral cortex by intravital two-photon microscopy and optical coherence tomography.

Entities:  

Keywords:  aging; blood-brain barrier; capillary density; intravital microscopy; microcirculation; multiphoton microscopy

Mesh:

Year:  2021        PMID: 33543687      PMCID: PMC8260380          DOI: 10.1152/ajpheart.00709.2020

Source DB:  PubMed          Journal:  Am J Physiol Heart Circ Physiol        ISSN: 0363-6135            Impact factor:   4.733


  135 in total

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Journal:  J Gerontol A Biol Sci Med Sci       Date:  2011-02-08       Impact factor: 6.053

6.  Quantification of blood-brain barrier solute permeability and brain transport by multiphoton microscopy.

Authors:  Lingyan Shi; Min Zeng; Yi Sun; Bingmei M Fu
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7.  Pharmacological or genetic depletion of senescent astrocytes prevents whole brain irradiation-induced impairment of neurovascular coupling responses protecting cognitive function in mice.

Authors:  Andriy Yabluchanskiy; Stefano Tarantini; Priya Balasubramanian; Tamas Kiss; Tamas Csipo; Gábor A Fülöp; Agnes Lipecz; Chetan Ahire; Jordan DelFavero; Adam Nyul-Toth; William E Sonntag; Michal L Schwartzman; Judith Campisi; Anna Csiszar; Zoltan Ungvari
Journal:  Geroscience       Date:  2020-01-20       Impact factor: 7.713

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Authors:  Axel Montagne; Samuel R Barnes; Melanie D Sweeney; Matthew R Halliday; Abhay P Sagare; Zhen Zhao; Arthur W Toga; Russell E Jacobs; Collin Y Liu; Lilyana Amezcua; Michael G Harrington; Helena C Chui; Meng Law; Berislav V Zlokovic
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9.  The exceptional longevity of the naked mole-rat may be explained by mitochondrial antioxidant defenses.

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10.  Nrf2 Deficiency Exacerbates Obesity-Induced Oxidative Stress, Neurovascular Dysfunction, Blood-Brain Barrier Disruption, Neuroinflammation, Amyloidogenic Gene Expression, and Cognitive Decline in Mice, Mimicking the Aging Phenotype.

Authors:  Stefano Tarantini; M Noa Valcarcel-Ares; Andriy Yabluchanskiy; Zsuzsanna Tucsek; Peter Hertelendy; Tamas Kiss; Tripti Gautam; Xin A Zhang; William E Sonntag; Rafael de Cabo; Eszter Farkas; Michael H Elliott; Michael T Kinter; Ferenc Deak; Zoltan Ungvari; Anna Csiszar
Journal:  J Gerontol A Biol Sci Med Sci       Date:  2018-06-14       Impact factor: 6.053

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3.  Spatial transcriptomic analysis reveals inflammatory foci defined by senescent cells in the white matter, hippocampi and cortical grey matter in the aged mouse brain.

Authors:  Tamas Kiss; Ádám Nyúl-Tóth; Jordan DelFavero; Zoltan Ungvari; Anna Csiszar; Priya Balasubramanian; Stefano Tarantini; Janet Faakye; Rafal Gulej; Chetan Ahire; Anna Ungvari; Andriy Yabluchanskiy; Graham Wiley; Lori Garman
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4.  Advances in brain barriers and brain fluids research in 2021: great progress in a time of adversity.

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  7 in total

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