2021

Glenn Foundation for Medical Research Postdoctoral Fellowships in Aging Research


Cormerais Headshot

Yann Cormerais, PhD

Postdoctoral Fellow, Harvard T.H. Chan School of Public Health

Genetic dissection of the insulin/IGF1-mTOR pathway in mammalian aging

Over the last two decades, manipulation of the Insulin and the mechanistic target of rapamycin complex 1 (mTORC1) pathways has emerged as one of the most promising approaches to increase the healthspan and lifespan. Using genetic, pharmaceutical, and dietary approaches, studies have demonstrated that silencing these molecular pathways can protect from age-related metabolic decline, muscle loss and that it can extend lifespan of organisms from worms to mice. However, the molecular mechanisms and whether these two pathways are linked in their influence over mammalian longevity remains largely unknown. In this proposed research, Dr. Cormerais will use a novel genetically engineered mouse model that specifically disconnects these two pathways. This project will seek to determine if reduced insulin signaling in mammals favors increased health-span and longevity due primarily to a reduction in mTORC1 signaling. These studies will provide critical new insight into the consequences of the Insulin-mTORC1 pathway during aging.

More 2021 Recipients of this Grant

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Investigation of osteo-lineage cells as primary mediators of senescence in the bone microenvironment

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The pathophysiological role of Succinate dehydrogenase deficiency in β-cell aging and diabetes

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Claire Leveau, PhD

Impact of Catechol-O-methyltransferase in the neuro-immune regulation of metabolic disorders

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Yuancheng Lu, PhD

A genomic search for novel rejuvenation cocktails

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Pradeep Ramalingam, MD, PhD

Rejuvenation of aged hematopoietic stem cells by suppression of bone marrow inflammaging

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Anand Saran, PhD

Using engineered native bacteria to understand the relationship between altered microbial functional dynamics and age-related circadian dysmetabolism

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Tina Sing, PhD

Leveraging gametogenesis-specific rejuvenation pathways to counteract cellular aging

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Yuting Tan, MD, PhD

De-aging the brain by reversing the immuno-metabolism of myeloid cells

Yuting Tan
Zeda Zhang, PhD

Identifying targets for senolytic therapies from the cell surface proteome of senescent cells

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Lei Zhang, PhD

Targeting cellular senescence with novel senotherapeutics by design to extend healthspan

Lei Zhang