0000000000122912

AUTHOR

Brian K. Kennedy

0000-0002-5754-1874

showing 4 related works from this author

Interventions to Slow Aging in Humans: Are We Ready?

2015

The workshop entitled 'Interventions to Slow Aging in Humans: Are We Ready?' was held in Erice, Italy, on October 8-13, 2013, to bring together leading experts in the biology and genetics of aging and obtain a consensus related to the discovery and development of safe interventions to slow aging and increase healthy lifespan in humans. There was consensus that there is sufficient evidence that aging interventions will delay and prevent disease onset for many chronic conditions of adult and old age. Essential pathways have been identified, and behavioral, dietary, and pharmacologic approaches have emerged. Although many gene targets and drugs were discussed and there was not complete consens…

GerontologyAgingDisease onsetPrescription DrugsLongevityPsychological interventionReviewsBiologyAMP-Activated Protein KinasesGrowth hormoneAging; Anti-aging; Centenarians; Dietary restriction; Lifespan studies; Longevity gene; Longevity regulation; Cell Biology; AgingDietary interventionsBiological FactorsMicelongevity geneSettore BIO/13 - Biologia ApplicataAnimalsHumansSirtuinsProtein restrictionCentenarianInsulin-Like Growth Factor ILifespan studieCaloric RestrictionSettore MED/04 - Patologia GeneraleGeroscienceGene targetsRibosomal Protein S6 KinasesTOR Serine-Threonine Kinasesanti-agingdietary restrictionCell Biologydietary restriction ; lifespan studies ; longevity gene ; centenarians ; anti-aging ; longevity regulation ; aginglongevity regulation3. Good healthDietEnzyme ActivationGene Expression RegulationGrowth HormoneGenetics of agingcentenariansaging; anti-aging; centenarians; dietary restriction; lifespan studies; longevity gene; longevity regulationSignal Transductionlifespan studies
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A Periodic Diet that Mimics Fasting Promotes Multi-System Regeneration, Enhanced Cognitive Performance, and Healthspan

2015

SummaryProlonged fasting (PF) promotes stress resistance, but its effects on longevity are poorly understood. We show that alternating PF and nutrient-rich medium extended yeast lifespan independently of established pro-longevity genes. In mice, 4 days of a diet that mimics fasting (FMD), developed to minimize the burden of PF, decreased the size of multiple organs/systems, an effect followed upon re-feeding by an elevated number of progenitor and stem cells and regeneration. Bi-monthly FMD cycles started at middle age extended longevity, lowered visceral fat, reduced cancer incidence and skin lesions, rejuvenated the immune system, and retarded bone mineral density loss. In old mice, FMD c…

MaleAbdominal Fat; Adult; Aged; Aging; Animals; Body Weight; Cardiovascular Diseases; Diet; Female; Humans; Male; Mice; Mice Inbred C57BL; Middle Aged; Neoplasms; Neurogenesis; Pilot Projects; Psychomotor Performance; Regeneration; Saccharomyces cerevisiae; Young Adult; Cognition; Fasting; LongevityAgingPhysiologyPilot ProjectsMiceCognitionNeoplasmsCardiovascular DiseaseSettore MED/49 - Scienze Tecniche Dietetiche Applicatemedia_common2. Zero hungerNeurogenesisLongevityFastingMiddle Aged3. Good healthCardiovascular DiseasesFemaleStem cellHumanAdultmedicine.medical_specialtyNeurogenesismedia_common.quotation_subjectLongevityAbdominal FatSaccharomyces cerevisiaeBiologyArticleYoung AdultImmune systemInternal medicineDiabetes mellitusmedicineAnimalsHumansRegenerationPilot ProjectAdverse effectCell Biology; Molecular Biology; PhysiologyMolecular BiologyAgedAnimalBody WeightCell Biologymedicine.diseaseMiddle ageDietMice Inbred C57BLEndocrinologyCancer cellNeoplasmNeurogenesiPsychomotor Performance
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Low Protein Intake Is Associated with a Major Reduction in IGF-1, Cancer, and Overall Mortality in the 65 and Younger but Not Older Population

2014

SummaryMice and humans with growth hormone receptor/IGF-1 deficiencies display major reductions in age-related diseases. Because protein restriction reduces GHR-IGF-1 activity, we examined links between protein intake and mortality. Respondents aged 50–65 reporting high protein intake had a 75% increase in overall mortality and a 4-fold increase in cancer death risk during the following 18 years. These associations were either abolished or attenuated if the proteins were plant derived. Conversely, high protein intake was associated with reduced cancer and overall mortality in respondents over 65, but a 5-fold increase in diabetes mortality across all ages. Mouse studies confirmed the effect…

Malemedicine.medical_specialtyLow proteinnutrition protein intake caloric restriction nutrientsPhysiologymedicine.medical_treatmentLongevityCalorie restrictionBreast NeoplasmsGrowth hormone receptorBiologyArticleMiceLow-protein dietNeoplasmsDiabetes mellitusInternal medicineDiabetes MellitusDiet Protein-RestrictedmedicineAnimalsHumansInsulin-Like Growth Factor IMelanomaMolecular BiologyAgedProportional Hazards ModelsMice KnockoutMice Inbred BALB CIncidence (epidemiology)CancerCell BiologyMiddle Agedmedicine.diseaseMiddle ageMice Inbred C57BLCross-Sectional StudiesEndocrinologyFemaleCarrier ProteinsFollow-Up StudiesSignal TransductionCell Metabolism
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Tor-Sch9 deficiency activates catabolism of the ketone body-like acetic acid to promote trehalose accumulation and longevity

2014

In mammals, extended periods of fasting leads to the accumulation of blood ketone bodies including acetoacetate. Here we show that similar to the conversion of leucine to acetoacetate in fasting mammals, starvation conditions induced ketone body-like acetic acid generation from leucine in S. cerevisiae. Whereas wild-type and ras2Δ cells accumulated acetic acid, long-lived tor1Δ and sch9Δ mutants rapidly depleted it through a mitochondrial acetate CoA transferase-dependent mechanism, which was essential for lifespan extension. The sch9Δ-dependent utilization of acetic acid also required coenzyme Q biosynthetic genes and promoted the accumulation of intracellular trehalose. These results indi…

AgingSaccharomyces cerevisiae ProteinsKetoneLongevitySaccharomyces cerevisiaeSaccharomyces cerevisiaePhosphatidylinositol 3-Kinaseschemistry.chemical_compoundAcetic acidSettore BIO/13 - Biologia ApplicataHumans2. Zero hungerchemistry.chemical_classificationbiologyCatabolismaging yeast nutrition acetic acid nutrientsTrehaloseOriginal ArticlesCell Biologybiology.organism_classificationchronological lifespanTrehaloseacetic acidSch9chemistryBiochemistryCoenzyme Q – cytochrome c reductaseKetone bodiesleucineLeucineProtein KinasesAging Cell
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