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Chaigneau, J.

Publications and source records attributed to Chaigneau, J..

2 recordsLinked to original sources

Extracellular vesicles carrying surface-anchored adiponectin prevent obesity-related metabolic complications by enhancing insulin sensitivity

Adiponectin (Adpn) is a potent insulin-sensitizing adipokine with therapeutic promise for type 2 diabetes (T2D) and metabolic dysfunction-associated steatohepatitis (MASH). Its clinical use is limited by challenges in producing stable, bioactive high-molecular weight forms. Adipocyte-derived extracellular vesicles (EVs) naturally carry oligomeric Adpn on their surface, enhancing hormone stability and activity. Here, we engineered EVs displaying membrane-anchored Adpn (EVPP-Adpn) and control EVs lacking Adpn (EVCTL), and evaluated their metabolic effects in high fat diet (HFD)-induced obesity mice. EVPP-Adpn were purified from HEK293T cells stably transfected with a chimeric Adpn fused to a transmembrane domain and a pilot peptide (PP) directing it to EVs; EVCTL were produced from non-transfected cells. HFD-fed male and female mice received intraperitoneal EV injections for six weeks. EVPP-Adpn improved glucose tolerance and insulin sensitivity, promoted adipocyte lipid storage through insulin-regulated lipogenesis and alleviated MASH features (liver steatosis, inflammation and fibrosis). EVPP-Adpn lowered circulating ceramides and reduced FGF21, indicating improved hepatic metabolism, and activated AKT and AMPK pathways in liver and skeletal muscle, consistent with increased adiponectin signaling. These results demonstrate that surface-anchored Adpn EVs restore tissue-specific insulin signaling and improve obesity-related metabolic dysfunctions, highlighting their potential as a novel biotherapeutic strategy for T2D and MASH.

bioengineering↗

Vertical sleeve gastrectomy in rodents: impact on metabolic, cardiovascular and hepatic functions of mothers and perinatal consequences

BackgroundMaternal obesity is a well-known risk factor for obstetrical complications during pregnancy, and cardiovascular and metabolic pathologies in the offspring. In the last two decades, bariatric surgery has emerged as the most effective treatment for severe obesity, and is known to improve fertility, leading to a rise in procedures among women of childbearing age. ObjectivesThis study investigates the impact of pre-conceptional sleeve gastrectomy (SG) on metabolic, cardiovascular and hepatic functions of mothers at short and middle terms after surgery, and its perinatal consequences. MethodsSprague-Dawley female control rats (CM) received a standard diet, while others were fed a high-fat, high-sugar diet (HFHS). HFHS rats were divided into obese mothers (OM) and sleeve gastrectomy mothers (SM). One month after surgery, all groups underwent gestation and subsequent lactation Metabolic function was assessed at 1 and 4 months after surgery; cardiovascular and hepatic functions were evaluated only 4 months after SG. ResultsFrom 1 month post-surgery, SM showed normalized leptin and insulin levels compared to OM. Moreover, SG normalized body weight associated with a decreased white adipose tissue weight and adipocyte size at 4 months post-surgery. Interestingly, although steatosis has been detected in HFHS rats, SM exhibited only hepatic fibrosis at 4 months post-surgery. Moreover, SM showed a hypertrophic remodeling of thoracic aorta without effect on its vasoreactivity but along with endothelial dysfunction of mesenteric artery, associated with a stronger involvement of COX/PGI2 pathway. In the offspring, obesity in mothers was associated to a decreased liter size, reversed by sleeve gastrectomy without any effect on the birth weight of pups. ConclusionWhile this study reports an improvement of metabolic function at short- and medium-terms after bariatric surgery, our results highlight an alteration of hepatic and vascular functions by sleeve gastrectomy, with minimal effect on the offspring in the perinatal period.

physiology↗