Border Control: The Role of the Microbiome in Regulating Epithelial Barrier Function DOI Creative Commons

Fernanda Schreiber,

Iulia Balas,

Matthew J. Robinson

et al.

Cells, Journal Year: 2024, Volume and Issue: 13(6), P. 477 - 477

Published: March 8, 2024

The gut mucosal epithelium is one of the largest organs in body and plays a critical role regulating crosstalk between resident microbiome host. To this effect, tight control what permitted through barrier high importance. There should be restricted passage harmful microorganisms antigens while at same time allowing absorption nutrients water. An increased permeability, or “leaky gut”, has been associated with variety diseases ranging from infections, metabolic diseases, inflammatory autoimmune to neurological conditions. Several factors can affect including cytokines, dietary components, microbiome. Here, we discuss how impacts permeability epithelial harnessed for therapeutic purposes.

Language: Английский

Dietary Fructose and Fructose-Induced Pathologies DOI
Sunhee Jung, Hosung Bae, Won‐Suk Song

et al.

Annual Review of Nutrition, Journal Year: 2022, Volume and Issue: 42(1), P. 45 - 66

Published: Aug. 22, 2022

The consumption of fructose as sugar and high-fructose corn syrup has markedly increased during the past several decades. This trend coincides with exponential rise metabolic diseases, including obesity, nonalcoholic fatty liver disease, cardiovascular diabetes. While biochemical pathways metabolism were elucidated in early 1990s, organismal-level its whole-body pathophysiological impacts have been only recently investigated. In this review, we discuss history consumption, molecular involved different organs gut microbiota, role pathogenesis remaining questions to treat such diseases.

Language: Английский

Citations

78

Importance of gut microbiota metabolites in the development of cardiovascular diseases (CVD) DOI

Maryam Hemmati,

Setayesh Kashanipoor,

Payman Mazaheri

et al.

Life Sciences, Journal Year: 2023, Volume and Issue: 329, P. 121947 - 121947

Published: July 16, 2023

Language: Английский

Citations

44

Dietary Trehalose as a Bioactive Nutrient DOI Open Access
Anqi Chen, Patrick A. Gibney

Nutrients, Journal Year: 2023, Volume and Issue: 15(6), P. 1393 - 1393

Published: March 14, 2023

Trehalose is a naturally occurring, non-reducing disaccharide comprising two covalently-linked glucose molecules. It possesses unique physiochemical properties, which account for multiple biological roles in variety of prokaryotic and eukaryotic organisms. In the past few decades, intensive research on trehalose has uncovered its functions, extended uses as sweetener stabilizer food, medical, pharmaceutical, cosmetic industries. Further, increased dietary consumption sparked how affects gut microbiome. addition to role sugar, gained attention ability modulate homeostasis, potentially therapeutic agent diabetes. This review discusses bioactive effects trehalose, highlighting promise future industrial scientific contributions.

Language: Английский

Citations

43

Nutritional regulation of microbiota-derived metabolites: Implications for immunity and inflammation DOI Creative Commons
Mohammad Arifuzzaman,

Nicholas Collins,

Chun‐Jun Guo

et al.

Immunity, Journal Year: 2024, Volume and Issue: 57(1), P. 14 - 27

Published: Jan. 1, 2024

Language: Английский

Citations

38

Border Control: The Role of the Microbiome in Regulating Epithelial Barrier Function DOI Creative Commons

Fernanda Schreiber,

Iulia Balas,

Matthew J. Robinson

et al.

Cells, Journal Year: 2024, Volume and Issue: 13(6), P. 477 - 477

Published: March 8, 2024

The gut mucosal epithelium is one of the largest organs in body and plays a critical role regulating crosstalk between resident microbiome host. To this effect, tight control what permitted through barrier high importance. There should be restricted passage harmful microorganisms antigens while at same time allowing absorption nutrients water. An increased permeability, or “leaky gut”, has been associated with variety diseases ranging from infections, metabolic diseases, inflammatory autoimmune to neurological conditions. Several factors can affect including cytokines, dietary components, microbiome. Here, we discuss how impacts permeability epithelial harnessed for therapeutic purposes.

Language: Английский

Citations

23