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  Aging impairs the neurovascular interface in the heart

Wagner, J. U. G., Tombor, L. S., Malacarne, P. F., Kettenhausen, L.-M., Panthel, J., Kujundzic, H., et al. (2023). Aging impairs the neurovascular interface in the heart. SCIENCE, 381(6660), 897-905. doi:10.1126/science.ade4961.

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Wagner, Julian U. G., Author
Tombor, Lukas S., Author
Malacarne, Pedro Felipe, Author
Kettenhausen, Lisa-Maria, Author
Panthel, Josefine, Author
Kujundzic, Haris, Author
Manickam, Nivethitha, Author
Schmitz, Katja, Author
Cipca, Maria, Author
Stilz, Kathrin A., Author
Fischer, Ariane, Author
Muhly-Reinholz, Marion, Author
Abplanalp, Wesley T., Author
John, David, Author
Mohanta, Sarajo K., Author
Weber, Christian, Author
Habenicht, Andreas J. R., Author
Buchmann, Giulia K., Author
Angendohr, Stephan, Author
Amin, Ehsan, Author
Scherschel, Katharina, AuthorKloecker, Nikolaj, AuthorKelm, Malte, AuthorSchuettler, Dominik, AuthorClauss, Sebastian, AuthorGuenther, Stefan1, Author           Boettger, Thomas1, Author           Braun, Thomas1, Author           Baer, Christian, AuthorPham, Minh-Duc, AuthorKrishnan, Jaya, AuthorHille, Susanne, AuthorMueller, Oliver J., AuthorBozoglu, Tarik, AuthorKupatt, Christian, AuthorNardini, Eleonora, AuthorOsmanagic-Myers, Selma, AuthorMeyer, Christian, AuthorZeiher, Andreas M., AuthorBrandes, Ralf P., AuthorLuxan, Guillermo, AuthorDimmeler, Stefanie, Author more..
Affiliations:
1Cardiac Development and Remodeling, Max Planck Institute for Heart and Lung Research, Max Planck Society, ou_2591695              

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 Abstract: Aging is a major risk factor for impaired cardiovascular health. Because the aging myocardium is characterized by microcirculatory dysfunction, and because nerves align with vessels, we assessed the impact of aging on the cardiac neurovascular interface. We report that aging reduces nerve density in the ventricle and dysregulates vascular-derived neuroregulatory genes. Aging down-regulates microRNA 145 (miR-145) and derepresses the neurorepulsive factor semaphorin-3A. miR-145 deletion, which increased Sema3a expression or endothelial Sema3a overexpression, reduced axon density, mimicking the aged-heart phenotype. Removal of senescent cells, which accumulated with chronological age in parallel to the decline in nerve density, rescued age-induced denervation, reversed Sema3a expression, preserved heart rate patterns, and reduced electrical instability. These data suggest that senescence-mediated regulation of nerve density contributes to age-associated cardiac dysfunction.

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 Dates: 2023-08-242023-08-25
 Publication Status: Issued
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 Rev. Type: -
 Identifiers: ISI: 001058773200033
DOI: 10.1126/science.ade4961
PMID: 37616346
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Title: SCIENCE
Source Genre: Journal
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Pages: - Volume / Issue: 381 (6660) Sequence Number: - Start / End Page: 897 - 905 Identifier: ISSN: 0036-8075