Adenosine

Adenosine monophosphate-activated protein kinase: A golden mediator of exercise in metabolic dysfunction-associated diseases (review).

Metabolic diseases represent a major threat to human health and are largely associated with excessive energy intake and insufficient energy expenditure. Increasing evidence indicates that obesity, diabetes, metabolic dysfunction-associated fatty liver disease, sarcopenia, Alzheimer's disease, and cancer are closely associated...

🗓️ 2026-08-05
📰 Publication: International Journal Of Biological Macromolecules
Read MoreAdenosine monophosphate-activated protein kinase: A golden mediator of exercise in metabolic dysfunction-associated diseases (review).

A fluorescent aptasensor for deoxynivalenol detection based on Nb.BbvCI-assisted targeted-responsive three-way junctions integrated DNA walking machine.

Deoxynivalenol (DON) contamination in cereals is a widespread issue with global implications, necessitating the development of efficient detection methods. Here, a fluorescent aptasensor integrating target-responsive DNA three-way junction (TWJ) and DNA walking machine was developed to detect DON. The DON-specific...

🗓️ 2024-12-06
📰 Publication: Food Chemistry
Read MoreA fluorescent aptasensor for deoxynivalenol detection based on Nb.BbvCI-assisted targeted-responsive three-way junctions integrated DNA walking machine.

Hydrogen sulfide inhibits skeletal muscle ageing by up-regulating autophagy through promoting deubiquitination of adenosine 5'-monophosphate (AMP)-activated protein kinase α1 via ubiquitin specific peptidase 5.

Hydrogen sulfide (HS), the third gasotransmitter discovered, regulates a variety of physiological functions. Whether HS alleviates skeletal muscle ageing by regulating autophagy has not been reported. Mice were administered 150 mg/kg/day of D-galactose ( D-gal), and C2C12 myotubes were cultured in...

🗓️ 2024-08-27
📰 Publication: Journal Of Cachexia Sarcopenia And Muscle
Read MoreHydrogen sulfide inhibits skeletal muscle ageing by up-regulating autophagy through promoting deubiquitination of adenosine 5'-monophosphate (AMP)-activated protein kinase α1 via ubiquitin specific peptidase 5.

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