Balancing metabolism–control of weight gain, blood glucose levels and intestinal leakiness by alpha-lactalbumin-oleic acid complexes

Abstract This study proposes a new molecular concept for the treatment of obesity and diabetes, using peptide-fatty acid complexes. Oral administration of the BAMLET complex reduced weight gain and hyperglycemia, in C57BL/6 mice with diet induced obesity. Intestinal glucose and lipid metabolism was broadly affected, including FGF19- and adiponectin-controlled gene networks. BAMLET treatment further targeted the glucose transporter GLUT2, reducing intestinal Slc2a2 expression and GLUT2 protein levels and targeting its glucose-binding pocket. Lowered GLUT2 levels and inhibition of glucose uptake in cellular models supported a potential in vivo effect on glucose uptake. BAMLET treatment further inhibited weight gain, adiponectin and leptin associated gene networks in chronically obese B6.Cg- Lep ob /J mice and visceral and systemic adipose tissue growth was reduced in both backgrounds. Interactions with the oleic acid binding pocket of the AdipoR2 adiponectin receptor and the Ig-like domain of the leptin receptor were predicted in silico and confirmed by surface plasmon resonance. Relevance for chronic diabetes was further suggested by rapid effects of BAMLET in C57BL/6- Ins2 Akita /J mice, with reversal of intestinal leakiness after three days and weight gain with continued treatment. The results identify BAMLET an orally available metabolic regulator and suggest a new, non-toxic approach to treating metabolic disorders.

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Publication Details

Journal
Scientific Reports
Published
2026-09-19
DOI
https://doi.org/10.1038/s41598-026-71811-9
Primary Topic
Regulation of Appetite and Obesity
Type
article
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article

Balancing metabolism–control of weight gain, blood glucose levels and intestinal leakiness by alpha-lactalbumin-oleic acid complexes

Arunima Chaudhuri, Shahram Ahmadi, Atefeh Nazari, Inès Ambite et al.
Scientific Reports
Regulation of Appetite and Obesity
article

Balancing metabolism–control of weight gain, blood glucose levels and intestinal leakiness by alpha-lactalbumin-oleic acid complexes

Arunima Chaudhuri, Shahram Ahmadi, Atefeh Nazari, Inès Ambite, Catharina Svanborg, Inês Gomes, Siddharth Chinchankar, Farhan Haq, Hien Tran
article en

Abstract

Abstract This study proposes a new molecular concept for the treatment of obesity and diabetes, using peptide-fatty acid complexes. Oral administration of the BAMLET complex reduced weight gain and hyperglycemia, in C57BL/6 mice with diet induced obesity. Intestinal glucose and lipid metabolism was broadly affected, including FGF19- and adiponectin-controlled gene networks. BAMLET treatment further targeted the glucose transporter GLUT2, reducing intestinal Slc2a2 expression and GLUT2 protein levels and targeting its glucose-binding pocket. Lowered GLUT2 levels and inhibition of glucose uptake in cellular models supported a potential in vivo effect on glucose uptake. BAMLET treatment further inhibited weight gain, adiponectin and leptin associated gene networks in chronically obese B6.Cg- Lep ob /J mice and visceral and systemic adipose tissue growth was reduced in both backgrounds. Interactions with the oleic acid binding pocket of the AdipoR2 adiponectin receptor and the Ig-like domain of the leptin receptor were predicted in silico and confirmed by surface plasmon resonance. Relevance for chronic diabetes was further suggested by rapid effects of BAMLET in C57BL/6- Ins2 Akita /J mice, with reversal of intestinal leakiness after three days and weight gain with continued treatment. The results identify BAMLET an orally available metabolic regulator and suggest a new, non-toxic approach to treating metabolic disorders.

Scientific ReportsVol. 16(1)
Good health and well-being
Openalex Percentile: Top 14%
Regulation of Appetite and Obesity
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Balancing metabolism–control of weight gain, blood glucose levels and intestinal leakiness by alpha-lactalbumin-oleic acid complexes — Arunima Chaudhuri, Shahram Ahmadi, et al. · Scientific Reports (2026) | TGRS Research Map | TGRS