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Exercise hormone irisin is a critical regulator of cognitive function
by
Wrann, Christiane D.
, Valaris, Sophia
, Tanzi, Rudolph E.
, Spiegelman, Bruce M.
, Mazuera, Sofia
, Choi, Se Hoon
, Kim, Eunhee
, Young, Michael F.
, Jedrychowski, Mark P.
, Christie, Brian R.
, Tu, Hua
, Besnard, Antoine
, Islam, Mohammad R.
, Bond, Sabrina F.
, Bettio, Luis E. B.
, Schmider, Angela B.
, Luo, Renhao
, Soberman, Roy J.
, Kim, Hyeonwoo
, Haley, Erin B.
, Kitchen, Robert R.
, Caldarone, Barbara J.
in
13/1
/ 13/31
/ 13/44
/ 13/51
/ 14/19
/ 38/91
/ 631/378
/ 631/443/319
/ 64/60
/ 96
/ Aging
/ Alzheimer's disease
/ Animal models
/ Animals
/ Behavior, Animal
/ Biomedical and Life Sciences
/ Cognition
/ Cognition Disorders - etiology
/ Cognition Disorders - metabolism
/ Cognition Disorders - psychology
/ Cognitive ability
/ Dentate gyrus
/ Disease Models, Animal
/ Exercise
/ Fibronectins - genetics
/ Fibronectins - metabolism
/ Gene Deletion
/ Gene Expression
/ Hormones - metabolism
/ Life Sciences
/ Memory
/ Mice
/ Mice, Knockout
/ Neurodegenerative diseases
/ Phenotype
/ Physical Conditioning, Animal
/ Physical fitness
/ Variance analysis
2021
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Exercise hormone irisin is a critical regulator of cognitive function
by
Wrann, Christiane D.
, Valaris, Sophia
, Tanzi, Rudolph E.
, Spiegelman, Bruce M.
, Mazuera, Sofia
, Choi, Se Hoon
, Kim, Eunhee
, Young, Michael F.
, Jedrychowski, Mark P.
, Christie, Brian R.
, Tu, Hua
, Besnard, Antoine
, Islam, Mohammad R.
, Bond, Sabrina F.
, Bettio, Luis E. B.
, Schmider, Angela B.
, Luo, Renhao
, Soberman, Roy J.
, Kim, Hyeonwoo
, Haley, Erin B.
, Kitchen, Robert R.
, Caldarone, Barbara J.
in
13/1
/ 13/31
/ 13/44
/ 13/51
/ 14/19
/ 38/91
/ 631/378
/ 631/443/319
/ 64/60
/ 96
/ Aging
/ Alzheimer's disease
/ Animal models
/ Animals
/ Behavior, Animal
/ Biomedical and Life Sciences
/ Cognition
/ Cognition Disorders - etiology
/ Cognition Disorders - metabolism
/ Cognition Disorders - psychology
/ Cognitive ability
/ Dentate gyrus
/ Disease Models, Animal
/ Exercise
/ Fibronectins - genetics
/ Fibronectins - metabolism
/ Gene Deletion
/ Gene Expression
/ Hormones - metabolism
/ Life Sciences
/ Memory
/ Mice
/ Mice, Knockout
/ Neurodegenerative diseases
/ Phenotype
/ Physical Conditioning, Animal
/ Physical fitness
/ Variance analysis
2021
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Exercise hormone irisin is a critical regulator of cognitive function
by
Wrann, Christiane D.
, Valaris, Sophia
, Tanzi, Rudolph E.
, Spiegelman, Bruce M.
, Mazuera, Sofia
, Choi, Se Hoon
, Kim, Eunhee
, Young, Michael F.
, Jedrychowski, Mark P.
, Christie, Brian R.
, Tu, Hua
, Besnard, Antoine
, Islam, Mohammad R.
, Bond, Sabrina F.
, Bettio, Luis E. B.
, Schmider, Angela B.
, Luo, Renhao
, Soberman, Roy J.
, Kim, Hyeonwoo
, Haley, Erin B.
, Kitchen, Robert R.
, Caldarone, Barbara J.
in
13/1
/ 13/31
/ 13/44
/ 13/51
/ 14/19
/ 38/91
/ 631/378
/ 631/443/319
/ 64/60
/ 96
/ Aging
/ Alzheimer's disease
/ Animal models
/ Animals
/ Behavior, Animal
/ Biomedical and Life Sciences
/ Cognition
/ Cognition Disorders - etiology
/ Cognition Disorders - metabolism
/ Cognition Disorders - psychology
/ Cognitive ability
/ Dentate gyrus
/ Disease Models, Animal
/ Exercise
/ Fibronectins - genetics
/ Fibronectins - metabolism
/ Gene Deletion
/ Gene Expression
/ Hormones - metabolism
/ Life Sciences
/ Memory
/ Mice
/ Mice, Knockout
/ Neurodegenerative diseases
/ Phenotype
/ Physical Conditioning, Animal
/ Physical fitness
/ Variance analysis
2021
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Exercise hormone irisin is a critical regulator of cognitive function
Journal Article
Exercise hormone irisin is a critical regulator of cognitive function
2021
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Overview
Identifying secreted mediators that drive the cognitive benefits of exercise holds great promise for the treatment of cognitive decline in ageing or Alzheimer’s disease (AD). Here, we show that irisin, the cleaved and circulating form of the exercise-induced membrane protein FNDC5, is sufficient to confer the benefits of exercise on cognitive function. Genetic deletion of
Fndc5
/irisin (global
Fndc5
knock-out (KO) mice; F5KO) impairs cognitive function in exercise, ageing and AD. Diminished pattern separation in F5KO mice can be rescued by delivering irisin directly into the dentate gyrus, suggesting that irisin is the active moiety. In F5KO mice, adult-born neurons in the dentate gyrus are morphologically, transcriptionally and functionally abnormal. Importantly, elevation of circulating irisin levels by peripheral delivery of irisin via adeno-associated viral overexpression in the liver results in enrichment of central irisin and is sufficient to improve both the cognitive deficit and neuropathology in AD mouse models. Irisin is a crucial regulator of the cognitive benefits of exercise and is a potential therapeutic agent for treating cognitive disorders including AD.
Irisin is shown to mediate beneficial effects on cognitive function associated with exercise and to improve cognitive function in mouse models of Alzheimer’s disease, probably through its direct action in the brain.
Publisher
Nature Publishing Group UK,Nature Publishing Group
Subject
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