Muscle wasting is a frequently observed, inflammation-driven condition in aging and disease, known as sarcopenia and cachexia. Current treatment strategies target the muscle directly and are often not able to reverse the process. Because a reduced gut function is related to systemic inflammation, this might be an indirect target to ameliorate muscle wasting, by administering pro-, pre-, and synbiotics. Therefore, this review aimed to study the potential of pro-, pre-, and synbiotics to treat muscle wasting and to elucidate which metabolites and mechanisms affect the organ crosstalk in cachexia. Overall, the literature shows that Lactobacillus species pluralis (spp.) and possibly other genera, such as Bifidobacterium, can ameliorate muscle w...
In humans, aging is characterized by the progressive decline in biological, physiological, and psych...
[[abstract]]In humans, aging is characterized by the progressive decline in biological, physiologica...
Aging is associated with a decline in skeletal muscle mass and function—termed sarcopenia—as mediate...
International audienceEvidence suggests that gut microbiota composition and diversity can be a deter...
Dear Editor-in-ChiefThe topic of the interaction between gut microbiota and skeletal muscle and its ...
Muscle wasting, known as cachexia, is a debilitating condition associated with chronic inflammation ...
Muscle wasting is characterized by a loss of muscle mass and strength, and occurs in several patholo...
Cancer cachexia is a multifactorial syndrome that includes muscle wasting and inflammation. As gut m...
International audienceGut microbiota is involved in the development of several chronic diseases, inc...
Gut microbiota is involved in the development of several chronic diseases, including diabetes, obesi...
International audienceThe aim of this study was to identify a probiotic-based strategy for maintaini...
Probiotics have shown potential to counteract sarcopenia, although the extent to which they can infl...
In the last decade, scientists have accumulated increasing evidence showing that the human gut micro...
Inadequate nutrition and physical inactivity are the mainstays of primary sarcopenia–physiopathology...
In humans, aging is characterized by the progressive decline in biological, physiological, and psych...
[[abstract]]In humans, aging is characterized by the progressive decline in biological, physiologica...
Aging is associated with a decline in skeletal muscle mass and function—termed sarcopenia—as mediate...
International audienceEvidence suggests that gut microbiota composition and diversity can be a deter...
Dear Editor-in-ChiefThe topic of the interaction between gut microbiota and skeletal muscle and its ...
Muscle wasting, known as cachexia, is a debilitating condition associated with chronic inflammation ...
Muscle wasting is characterized by a loss of muscle mass and strength, and occurs in several patholo...
Cancer cachexia is a multifactorial syndrome that includes muscle wasting and inflammation. As gut m...
International audienceGut microbiota is involved in the development of several chronic diseases, inc...
Gut microbiota is involved in the development of several chronic diseases, including diabetes, obesi...
International audienceThe aim of this study was to identify a probiotic-based strategy for maintaini...
Probiotics have shown potential to counteract sarcopenia, although the extent to which they can infl...
In the last decade, scientists have accumulated increasing evidence showing that the human gut micro...
Inadequate nutrition and physical inactivity are the mainstays of primary sarcopenia–physiopathology...
In humans, aging is characterized by the progressive decline in biological, physiological, and psych...
[[abstract]]In humans, aging is characterized by the progressive decline in biological, physiologica...
Aging is associated with a decline in skeletal muscle mass and function—termed sarcopenia—as mediate...