This review article discusses the gut microbiota and vitamin D as an emerging and vital axis influencing immune aging and age-related diseases. It highlights the dual role of gut microbiota in shaping host immunity and regulating vitamin D metabolism, alongside the significant immunomodulatory potential of vitamin D in maintaining intestinal homeostasis and barrier integrity. The findings suggest that vitamin D deficiency and gut dysbiosis accelerate immunosenescence and inflammageing, contributing to unhealthy aging and increased risk of age-related diseases.
Gut
Gut-vitamin D interplay: key to mitigating immunosenescence and promoting healthy ageing
Immunity & Ageing
Related Studies
Gut
Skin-directed Solius UVB light therapy increases vitamin D levels and alters intestinal microbiome and metabolome homeostasis
Frontiers in Microbiology
This mouse study tested whether Solius UVB light therapy could influence gut health, comparing vitamin D sufficient and deficient mice given either a single exposure or six repeated exposures over 14 days. Repeated exposures significantly increased vitamin D levels to match sufficient-diet controls without injury to the skin. Notably, repeated therapy significantly altered gut microbiota composition and fecal metabolome, especially in vitamin D–deficient mice, enriching bacteria linked to metabolic health and leanness while increasing beneficial compounds like short-chain fatty acids, bile acid derivatives, and tryptophan metabolites. Pathway analysis further suggested UVB exposure inhibited oxidative stress and tumor-related signaling while activating anti-inflammatory pathways. Serum metabolomic changes were much smaller than fecal changes, suggesting the effects were concentrated in the gut rather than just reflecting systemic responses. Overall, the study concludes Solius UVB therapy can be safely used to reshape gut microbial and metabolic profiles in a way that promotes gut health, with effects depending on repeated dosing and baseline vitamin D status.
Gut
Skin-directed Solius UVB light therapy increases vitamin D levels and alters intestinal microbiome and metabolome homeostasis
Frontiers in Microbiology
This mouse study tested whether Solius UVB light therapy could influence gut health, comparing vitamin D sufficient and deficient mice given either a single exposure or six repeated exposures over 14 days. Repeated exposures significantly increased vitamin D levels to match sufficient-diet controls without injury to the skin. Notably, repeated therapy significantly altered gut microbiota composition and fecal metabolome, especially in vitamin D–deficient mice, enriching bacteria linked to metabolic health and leanness while increasing beneficial compounds like short-chain fatty acids, bile acid derivatives, and tryptophan metabolites. Pathway analysis further suggested UVB exposure inhibited oxidative stress and tumor-related signaling while activating anti-inflammatory pathways. Serum metabolomic changes were much smaller than fecal changes, suggesting the effects were concentrated in the gut rather than just reflecting systemic responses. Overall, the study concludes Solius UVB therapy can be safely used to reshape gut microbial and metabolic profiles in a way that promotes gut health, with effects depending on repeated dosing and baseline vitamin D status.
Gut
Skin Exposure to Narrow Band Ultraviolet (UVB) Light Modulates the Human Intestinal Microbiome
Frontiers in Microbiology
This study shows that treatment with narrowband UVB light therapy leads to changes in the gut microbiome including increases to microbiota diversity, suggesting a novel skin-gut axis for promoting gut health.
Gut
Skin Exposure to Narrow Band Ultraviolet (UVB) Light Modulates the Human Intestinal Microbiome
Frontiers in Microbiology
This study shows that treatment with narrowband UVB light therapy leads to changes in the gut microbiome including increases to microbiota diversity, suggesting a novel skin-gut axis for promoting gut health.
Gut
The gut-skin axis: a bi-directional, microbiota-driven relationship with therapeutic potential
Gut Microbes
This review explores the gut-skin axis, describing the interaction that occurs between the skin and the gastrointestinal tract. Recent studies show that exposing the skin to ultraviolet B-light can beneficially modulate both the gut microbiome and intestinal health.
Gut
The gut-skin axis: a bi-directional, microbiota-driven relationship with therapeutic potential
Gut Microbes
This review explores the gut-skin axis, describing the interaction that occurs between the skin and the gastrointestinal tract. Recent studies show that exposing the skin to ultraviolet B-light can beneficially modulate both the gut microbiome and intestinal health.
