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Biology subjects

D'Alessio, D. A.

Publications and source records attributed to D'Alessio, D. A..

2 recordsLinked to original sources

Legacy Effects of Early β-Adrenergic Stimulation Program Adipose Plasticity and Confer Metabolic Resilience in Obesity

Pathologic white adipose tissue (WAT) remodeling, characterized by fibrosis, inflammation, and adipocyte dysfunction, is a hallmark and driver of metabolic disease in obesity1. Here, we show that legacy effects of early physiological or pharmacological interventions driving adaptive adipose remodeling can mitigate maladaptive WAT remodeling and metabolic dysfunction when developing obesity later in life. Cold exposure or {beta}3-adrenergic receptor ({beta}3AR) agonism (CL316,243) induced thermogenic remodeling of WAT in male mice. After a prolonged recovery at room temperature, trained epididymal WAT reverted to an energy-storing state but retained a population of adipocytes resembling "metabolically flexible" visceral adipocytes found in human metabolically healthy obesity. The legacy of the antecedent treatment conferred lasting protection against glucose intolerance when later developing high fat diet (HFD)-induced obesity, with insulin sensitivity persisting for at least 20 weeks of overnutrition. This metabolic resilience was accompanied by healthy epididymal WAT expansion with reduced fibrosis and inflammation. Our findings demonstrate that short-term interventions, without genetic manipulation, can "train" adipose tissue, enhancing its long-term plasticity and conferring durable protection against future obesity-associated insulin resistance.

physiology↗

Ectopic, hepatic GLP-1R agonism enhances the weight loss efficacy of GLP-1 analogues.

ObjectiveUnimolecular triagonists drive substantial weight loss in patients with obesity (PwO) by engaging the glucagon-like peptide 1 (GLP-1) and glucose dependent insulinotropic polypeptide (GIP) receptors to reduce food intake (FI) and the hepatic glucagon (Gcg) receptor to enhance energy expenditure (EE). However, their development has been challenged by deleterious cardiovascular (CV) effects including increased heart rate (HR), elongated QTc, and arrhythmia mediated by GcgR agonism. GLP-1R monoagonists on the other hand improve both obesity and CV outcomes with negligible effects on EE. We sought to imbue peptide GLP-1R agonists with an EE enhancing effect by combining them with ectopic GLP-1R expression and agonism in hepatocytes. MethodsWe used an attenuated adenovirus (AAV) to induce the expression of a functional, liver-specific GLP-1R combined with traditional peptide agonist treatment to drive greater body weight loss via reduced energy intake and increased energy expenditure. ResultsAgonism of the ectopic GLP-1R with either semaglutide, a low internalization GLP-1R agonist (Sema584), or a dual GLP-1R/GIPR agonist in wild-type (WT) diet induced obese (DIO) mice led to enhanced EE and improved weight loss compared to agonist treatment alone. ConclusionsThis represents a novel mechanism for achieving polypharmacy to treat obesity. HighlightsO_LIA Glp1r encoding AAV induces expression of a functional receptor mouse livers. C_LIO_LIEndogenous GLP-1R does not mediate semaglutide clearance. C_LIO_LIEctopic GLP-1R mediates semaglutide clearance. C_LIO_LIEctopic, hepatic Glp1r plus semaglutide enhances weight loss in mice. C_LIO_LIEctopic, hepatic Glp1r plus a dual incretin agonist enhances weight loss in mice. C_LI

zoology↗