Saul Villeda, PhD

Associate Professor
Department of Anatomy
Eli and Edythe Broad Center of Regeneration Medicine and Stem Cell Research
+1 415 502-1929
Research Description: 

My lab has previously shown that systemic manipulations such as heterochronic parabiosis (in which the circulatory system of an old and young animal are connected), administration of young blood plasma, or administration of exercise-induced blood factors can partially reverse age-related loss of plasticity in the aged brain. As a consequence, we can now consider reactivating latent plasticity dormant in the aged brain as a means to rejuvenate regenerative, synaptic and cognitive functions late in life. Interestingly, work from my lab has revealed bi-directionality in the influence of the systemic environment indicating pro-youthful factors in young blood or following exercise elicit rejuvenation while pro-aging factors in old blood drive pre-mature aging. Our work has further indicated that mitigating the effect of pro-aging factors in old blood may also provide an effective approach to rejuvenate aging phenotypes. The goal of my research program is to elucidate cellular and molecular mechanisms that can be targeted to halt the aging process or promote rejuvenation in the old brain, as a means to counteract dementia-related neurodegenerative disease in the elderly, providing a unique therapeutic approach.

Primary Thematic Area: 
Neurobiology
Secondary Thematic Area: 
Developmental & Stem Cell Biology
Research Summary: 
Mechanisms of Brain Aging and Rejuvenation

Websites

Publications: 

Halt aging? - functional HSCs lead the way.

Cell research

Chu RT, Schroer AB, Villeda SA

Brain aging rejuvenation factors in adults with genetic and sporadic neurodegenerative disease.

Brain Communications

Casaletto KB, Saloner R, Kornak J, Staffaroni AM, Villeda S, Paolillo E, VandeBunte AM, Cadwallader CJ, Lario Lago A, Webb J, Chen C, Rascovsky K, Miyagawa T, Ramos EM, Masdeu JC, Pantelyat A, Tartaglia MC, Bozoki A, Pressman PS, Rademakers R, Kremers W, Darby R, Younes K, Pascual B, Ghoshal N, Lapid M, Mackenzie IRA, Li J, Hsiung GR, Hall JN, Yutsis MV, Litvan I, Henderson VW, Sivasankaran R, Worringer K, Domoto-Reilly K, Synder A, Loureiro J, Kramer JH, Heuer H, Forsberg LK, Rosen HJ, Boeve B, Rojas JC, Boxer AL

Systemic Mechanisms of Brain Aging and Rejuvenation.

Alzheimer's & Dementia

Saul Villeda

Endogenous neuronal DNA double-strand breaks are not sufficient to drive brain aging and neurodegeneration.

bioRxiv : the preprint server for biology

Cohen S, Cheradame L, Pratt KJB, Collins S, Barillas A, Carlson A, Ramani V, Legube G, Villeda SA, Mullins RD, Schwer B

A maternal brain hormone that builds bone.

Nature

Babey ME, Krause WC, Chen K, Herber CB, Torok Z, Nikkanen J, Rodriguez R, Zhang X, Castro-Navarro F, Wang Y, Wheeler EE, Villeda S, Leach JK, Lane NE, Scheller EL, Chan CKF, Ambrosi TH, Ingraham HA