Life sciences · Journal article
Journal of Food Measurement & Characterization · September 22, 2026
No summary has been generated for this record yet. What follows is drawn from its source metadata only.
Journal article.
No findings were extractable from the material analysed.
Safety was not reported in the material analysed. Check the source before drawing any conclusion about harm.
The source did not state who this applies to in practice.
Graded across the dimensions that decide whether you should act, each from what the source actually supports. There is no single score, and where a dimension was not assessed it says so.
This record has not been graded across any dimension yet. Treat the label above as provisional and read the source.
What is missing. This record has no bottom line, key findings, reported figures, evidence dimensions. That is a gap in the analysis, not a judgement about the study.
Despite growing interest in fermented citrus-derived functional ingredients, their metabolic effects in diet-induced obesity and the chemical characteristics of the fermented preparations remain insufficiently characterized. This study characterized a fermented citrus bioconversion product (FCBP) and evaluated its metabolic effects in a high-fat diet (HFD)-induced obese mouse model. FCBP was produced by microbial fermentation of a citrus flavonoid-rich substrate using Bacillus subtilis and characterized by HPLC fingerprinting. Mice fed an HFD containing 45% kcal from fat received FCBP (10 or 20 mg/kg/day) orally for 8 weeks, with hesperidin included as a comparative reference compound. FCBP at 20 mg/kg significantly attenuated body-weight gain and reduced plasma triglyceride levels compared with the HFD group. Histological analysis further demonstrated that FCBP significantly reduced HFD-induced hepatic steatosis. FCBP was also associated with alterations in hepatic expression of genes related to glucose and lipid metabolism, including SREBP1c, ACC1, PPARγ, GLUT4 (Slc2a4), PGC-1α, and PPARα. Notably, increased SREBP1c mRNA expression was accompanied by decreased ACC1 expression and reduced hepatic steatosis, indicating that the transcriptional responses did not support a simple model of uniform suppression of hepatic lipogenesis. FCBP treatment also reduced aortic VCAM-1- and ICAM-1-positive areas under HFD conditions. Collectively, these findings demonstrate selected metabolic and tissue-level effects of FCBP in HFD-fed mice. However, because a matched non-fermented citrus preparation was not included, the observed effects cannot be attributed specifically to the fermentation process, and further comprehensive chemical and mechanistic characterization is warranted.