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Energy metabolism dysregulation, cerebrovascular aging, and time-restricted eating: Current evidence and proof-of-concept findings

Ana Clara da C. Pinaffi‐Langley, Camila Bonin Pinto, Péter Mukli, Anna Péterfi, Zalan Kaposzta, Cameron D. Owens, Z Szarvas, Mihaly Muranyi, Cheryl Adams, Ali Shahriari, Priya Balasubramanian, Zoltán Ungvári, Anna Csiszár, Shannon M. Conley, Norman G. Hord

PNAS Nexus · 2024 · ▲ 5 citations

Abstract

Dysregulated energy metabolism is a hallmark of aging, including brain aging; thus, strategies to restore normal metabolic regulation are at the forefront of aging research. Intermittent fasting, particularly time-restricted eating (TRE), is one of these strategies. Despite its well-established effectiveness in improving metabolic outcomes in older adults, the effect of TRE on preserving or improving cerebrovascular health during aging remains underexplored. We explored how aging itself affects energy metabolism and contextualized these age-related changes to cerebrovascular health. We also conducted a literature search on PubMed and Scopus to identify and summarize current studies on TRE in older adults. Finally, we provided preliminary data from our proof-of-concept pilot trial on the effect of 6-month TRE on cerebrovascular health in older adults. Current evidence shows the potential of TRE to improve energy metabolism and physiological outcomes in older adults. TRE may improve cerebrovascular function indirectly due to its effect on glucose homeostasis. However, to date, direct evidence of the effect of TRE on cerebrovascular parameters is lacking. TRE is a well-tolerated and promising dietary intervention for promoting and maintaining cerebrovascular health in older adults. Further studies on TRE in older adults must be better controlled for energy balance to elucidate its independent effects from those of caloric restriction(definition).

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Provenance

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OpenAlex
DOI
10.1093/pnasnexus/pgae505
Canonical
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2026-06-16 MST

Cite this

APA
Pinaffi‐Langley, A.C.D.C., Pinto, C.B., Mukli, P., Péterfi, A., Kaposzta, Z., Owens, C.D., Szarvas, Z., Muranyi, M., Adams, C., Shahriari, A., Balasubramanian, P., Ungvári, Z., Csiszár, A., Conley, S.M., Hord, N.G., Anderson, L.J., Tarantini, S., &amp; Yabluchanskiy, A. (2024). Energy metabolism dysregulation, cerebrovascular aging, and time-restricted eating: Current evidence and proof-of-concept findings. <em>PNAS Nexus</em>. https://doi.org/10.1093/pnasnexus/pgae505
Vancouver
Pinaffi‐Langley ACDC, Pinto CB, Mukli P, Péterfi A, Kaposzta Z, Owens CD, et al. Energy metabolism dysregulation, cerebrovascular aging, and time-restricted eating: Current evidence and proof-of-concept findings. PNAS Nexus. 2024. doi:10.1093/pnasnexus/pgae505.
BibTeX
@article{ana2024Energy, title = {Energy metabolism dysregulation, cerebrovascular aging, and time-restricted eating: Current evidence and proof-of-concept findings}, author = {Ana Clara da C. Pinaffi‐Langley and Camila Bonin Pinto and Péter Mukli and Anna Péterfi and Zalan Kaposzta and Cameron D. Owens and Z Szarvas and Mihaly Muranyi and Cheryl Adams and Ali Shahriari and Priya Balasubramanian and Zoltán Ungvári and Anna Csiszár and Shannon M. Conley and Norman G. Hord and Leah J. Anderson and Stefano Tarantini and Andriy Yabluchanskiy}, journal = {PNAS Nexus}, year = {2024}, doi = {10.1093/pnasnexus/pgae505}, }

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