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Joshua N Farr

Showing results (81-90 of 91) with videos related to

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Nature Medicine|August 22, 2017
Targeting cellular senescence prevents age-related bone loss in miceJoshua N Farr, Ming Xu, Megan M Weivoda, et al.
Nature Medicine|November 9, 2017
Corrigendum: Targeting cellular senescence prevents age-related bone loss in miceJoshua N Farr, Ming Xu, Megan M Weivoda, et al.
Nature Communications|August 16, 2022
A new gene set identifies senescent cells and predicts senescence-associated pathways across tissuesDominik Saul, Robyn Laura Kosinsky, Elizabeth J Atkinson, et al.
Biorxiv : the Preprint Server for Biology|March 3, 2023
<i>In vitro</i> and <i>in vivo</i> effects of zoledronate on senescence and senescence-associated secretory phenotype markersParinya Samakkarnthai, Dominik Saul, Lei Zhang, et al.
Nature Communications|January 9, 2020
Identification of osteoclast-osteoblast coupling factors in humans reveals links between bone and energy metabolismMegan M Weivoda, Chee Kian Chew, David G Monroe, et al.
The Journal of Clinical Investigation|February 22, 2023
Local senolysis in aged mice only partially replicates the benefits of systemic senolysisJoshua N Farr, Dominik Saul, Madison L Doolittle, et al.
Journal of Medical Devices|October 12, 2013
Applications of a New Handheld Reference Point Indentation Instrument Measuring Bone Material StrengthConnor Randall, Daniel Bridges, Roberto Guerri, et al.
Aging Cell|March 11, 2015
The Achilles' heel of senescent cells: from transcriptome to senolytic drugsYi Zhu, Tamara Tchkonia, Tamar Pirtskhalava, et al.
Nature Medicine|July 11, 2018
Senolytics improve physical function and increase lifespan in old ageMing Xu, Tamar Pirtskhalava, Joshua N Farr, et al.
Nature|October 11, 2023
Apoptotic stress causes mtDNA release during senescence and drives the SASPStella Victorelli, Hanna Salmonowicz, James Chapman, et al.
Pageof 10

Showing results (81-90 of 91) with videos related to

Sort By:
Pageof 10
Nature Medicine|August 22, 2017
Targeting cellular senescence prevents age-related bone loss in miceJoshua N Farr, Ming Xu, Megan M Weivoda, et al.
Nature Medicine|November 9, 2017
Corrigendum: Targeting cellular senescence prevents age-related bone loss in miceJoshua N Farr, Ming Xu, Megan M Weivoda, et al.
Nature Communications|August 16, 2022
A new gene set identifies senescent cells and predicts senescence-associated pathways across tissuesDominik Saul, Robyn Laura Kosinsky, Elizabeth J Atkinson, et al.
Biorxiv : the Preprint Server for Biology|March 3, 2023
<i>In vitro</i> and <i>in vivo</i> effects of zoledronate on senescence and senescence-associated secretory phenotype markersParinya Samakkarnthai, Dominik Saul, Lei Zhang, et al.
Nature Communications|January 9, 2020
Identification of osteoclast-osteoblast coupling factors in humans reveals links between bone and energy metabolismMegan M Weivoda, Chee Kian Chew, David G Monroe, et al.
The Journal of Clinical Investigation|February 22, 2023
Local senolysis in aged mice only partially replicates the benefits of systemic senolysisJoshua N Farr, Dominik Saul, Madison L Doolittle, et al.
Journal of Medical Devices|October 12, 2013
Applications of a New Handheld Reference Point Indentation Instrument Measuring Bone Material StrengthConnor Randall, Daniel Bridges, Roberto Guerri, et al.
Aging Cell|March 11, 2015
The Achilles' heel of senescent cells: from transcriptome to senolytic drugsYi Zhu, Tamara Tchkonia, Tamar Pirtskhalava, et al.
Nature Medicine|July 11, 2018
Senolytics improve physical function and increase lifespan in old ageMing Xu, Tamar Pirtskhalava, Joshua N Farr, et al.
Nature|October 11, 2023
Apoptotic stress causes mtDNA release during senescence and drives the SASPStella Victorelli, Hanna Salmonowicz, James Chapman, et al.
Pageof 10