Check this out for an exciting opening, associate professor with tenure (Obesity and comorbidities; extracellular vesicles) or contact me by email, [email protected]: https://t.co/UBa9ReBqpo
From @AhmedIsmaeelPhD@NickTThomas Coordinated Regulation of Myonuclear DNA Methylation, mRNA, And miRNA Levels Associates with The Metabolic Response to Rapid Synergist Ablation-Induced Skeletal Muscle Hypertrophy in Female Mice #myotwitter@APS_Function https://t.co/fkKXuGl8Tc
Resistance training in humans and mechanical overload in rodents do not elevate muscle protein lactylation. Great lab effort led by Mads Mattingly and collab with @mackinprof@IVechetti.
https://t.co/J7GuXwkHth
Many years of work during my post doc @UKYCMB finally coming to life. Hopefully useful findings for anyone interested in #ExtracellularVesicles & #SkeletalMuscle
Single cell RNA-seq, cool IHC, & more.
Thanks to all involved ⬇️⬇️⬇️
https://t.co/49LC5VXuP6
Nice collaborative work with @FerdinandvW@Rodrigo_FerGo, et al.
Extracellular vesicle characteristics and microRNA content in cerebral palsy and typically developed individuals at rest and in response to aerobic exercise https://t.co/juzW2uSDzg
@Ethan_L_Ostrom@HornbergerLab@KevinMurachPhD We are observing a metabolic shift to aerobic glycolysis during SA. Perhaps a better way to produce nucleotides necessary for muscle growth?
Back at it again with w/@FerdinandvW@IVechetti “Multi-transcriptome analysis following an acute skeletal muscle growth stimulus yields tools for discerning global and MYC regulatory networks” with open webtools for checking your favorite genes #myotwitter https://t.co/h0NlwtQV0u
🔔exercise physiologists working on #extracellularvesicles👇🏽
📨 Extended submission deadline!
@FrontPhysiol
Inter-organ crosstalk during #exercise in health and disease: extracellularvesicles as new kids on the block 🚴🏽♀️🏃🏽
https://t.co/WDrIOU8Ie3
@IVechetti