Search bioRxiv⌕ Search

Biology subjects

Maugard, T.

Publications and source records attributed to Maugard, T..

2 recordsLinked to original sources

Low-molecular-weight Ulva lacinulata extract exhibiting anti-inflammatory and pro-autophagic activities in RAW 264.7 macrophages: a promising candidate for the development of active ingredients targeting low-grade inflammation

Marine macroalgae are valuable sources of bioactive compounds. In this study, we thus investigated the chemical composition and biological activity of an extract from the green seaweed Ulva lacinulata, composed of small bioactive compounds. Comprehensive compositional analyses and high-resolution mass spectrometry revealed its diverse molecular profile composed in particular of peptides/amino acid derivatives, saccharides, low-chain fatty diacids, oxylipins and minerals. Its anti-inflammatory activity was assessed after 6 h pre-treatment in LPS-stimulated cultured RAW 264.7 macrophages, showing that it significantly and dose-dependently reduced the expression and/or secretion of pro-inflammatory cytokines such as TNF- and IL-6, and targeted the NF-{kappa}B signaling cascade. It modulated the SIRT1-AMPK signaling axis and increased the LC3-II/LC3-I ratio, supporting the activation of a controlled autophagic response. This work highlighted the potential of this marine-derived extract as a safe and effective functional ingredient for the development of functional food and/or dietary supplements targeting chronic low-grade inflammation.

biochemistry↗

Totum-448, a polyphenol-rich plant extract, decreases hepatic steatosis and inflammation in diet-induced MASLD mice

The increasing prevalence of obesity-driven metabolic dysfunction-associated steatotic liver disease (MASLD) urges the development of new therapeutic strategies. Totum-448 is a unique patented combination of polyphenol-rich plant extracts designed to reduce hepatic steatosis, a risk factor for steatohepatitis and type 2 diabetes. In this study, we investigated the effects of Totum-448 on metabolic homeostasis and steatohepatitis in diet-induced MASLD mice. For this purpose, male C57Bl6/J mice were fed a high-fat diet in combination with sucrose-containing drinking water for 12 weeks, followed by diet supplementation with or without Totum-448 for 4 weeks. Body weight/composition, caloric intake, plasma parameters and whole-body glucose tolerance were measured throughout the study and fecal microbiota composition was determined by 16S sequencing. Hepatic steatosis, transcriptomic/lipidomic profiles and immune cell composition were assessed by histological/biochemical assays, RNA sequencing, MS-based lipidomics, and spectral flow cytometry. We found that Totum-448 significantly lowered hyperinsulinemia and systemic glucose intolerance in MASLD mice without affecting body weight, fat mass, calorie intake, feces production or fecal microbiota composition. Furthermore, a decrease in liver MASLD activity score and macrovesicular steatosis, hepatic triglycerides and cholesterol contents, and plasma alanine aminotransferase levels were observed. Totum-448 also reduced the liver inflammatory and pro-fibrotic transcriptomic signatures and decreased both MASLD-induced loss in tissue-resident Kupffer cells and recruitment of monocyte-derived pro-inflammatory macrophages. Altogether, Totum-448 reduces hepatic steatosis and inflammation in insulin-resistant, steatotic, obese mice, a dual effect that likely contributes to improved whole-body metabolic homeostasis. Supplementation with Totum-448 may therefore constitute a promising novel nutritional approach for MASLD patients.

physiology↗