Exploring the in vitro hypolipidemic benefits of bamboo mushrooms: A study on their impact on lipid droplets and adipocytokine levels through metabolome and lipidome profiling
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引用次数: 0
Abstract
Functional foods from edible mushrooms, like the protein-rich and low-calorie Phallus indusiatus (Bamboo mushroom), are promising for obesity prevention. However, scientific evidence supporting its active compounds' benefits is limited. This study used tandem-mass spectroscopy (LC-MS/MS) to analyze Bamboo mushroom's metabolites and lipids, identifying over 1000 metabolites, with adenosine most abundant. Pathway analysis showed significant activity in amino acid and specific metabolism pathways. Lipidomic analysis revealed 131 molecular lipids across categories such as sphingolipids and glycerolipids. The extracts' cytotoxicity and hypolipidemic efficacy were evaluated using a mouse adipocytes model, demonstrating no cellular toxicity at 6.25–100 μg/mL and effective reduction in lipid droplets. Additionally, the extracts significantly reduced levels of monocyte chemoattractant protein-1 (MCP-1) and plasminogen activator inhibitor-1 (PAI-1), suggesting potential hypolipidemic effects. These findings highlight Bamboo mushroom's capability as a functional food to combat obesity by influencing lipid metabolism.
NFS JournalAgricultural and Biological Sciences-Food Science
CiteScore
11.10
自引率
0.00%
发文量
18
审稿时长
29 days
期刊介绍:
The NFS Journal publishes high-quality original research articles and methods papers presenting cutting-edge scientific advances as well as review articles on current topics in all areas of nutrition and food science. The journal particularly invites submission of articles that deal with subjects on the interface of nutrition and food research and thus connect both disciplines. The journal offers a new form of submission Registered Reports (see below). NFS Journal is a forum for research in the following areas: • Understanding the role of dietary factors (macronutrients and micronutrients, phytochemicals, bioactive lipids and peptides etc.) in disease prevention and maintenance of optimum health • Prevention of diet- and age-related pathologies by nutritional approaches • Advances in food technology and food formulation (e.g. novel strategies to reduce salt, sugar, or trans-fat contents etc.) • Nutrition and food genomics, transcriptomics, proteomics, and metabolomics • Identification and characterization of food components • Dietary sources and intake of nutrients and bioactive compounds • Food authentication and quality • Nanotechnology in nutritional and food sciences • (Bio-) Functional properties of foods • Development and validation of novel analytical and research methods • Age- and gender-differences in biological activities and the bioavailability of vitamins, minerals, and phytochemicals and other dietary factors • Food safety and toxicology • Food and nutrition security • Sustainability of food production