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Adipocytes secrete a variety of bioactive molecules that affect the insulin sensitivity of other tissues. We now show that the abundance of monocyte chemoattractant protein-1 (MCP-1) mRNA in adipose tissue and the plasma concentration of MCP-1 were increased both in genetically obese diabetic (db/db) mice and in WT mice with obesity induced by a high-fat diet. Mice engineered to express an MCP-1 transgene in adipose tissue under the control of the aP2 gene promoter exhibited insulin resistance, macrophage infiltration into adipose tissue, and increased hepatic triglyceride content. Furthermore, insulin resistance, hepatic steatosis, and macrophage accumulation in adipose tissue induced by a high-fat diet were reduced extensively in MCP-1 homozygous KO mice compared with WT animals. Finally, acute expression of a dominant-negative mutant of MCP-1 ameliorated insulin resistance in db/db mice and in WT mice fed a high-fat diet. These findings suggest that an increase in MCP-1 expression in adipose tissue contributes to the macrophage infiltration into this tissue, insulin resistance, and hepatic steatosis associated with obesity in mice.
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http://dx.doi.org/10.1172/JCI26498 | DOI Listing |
Circulation
September 2025
Cardiology Unit, Department of Cardiac, Thoracic, Vascular Sciences and Public Health, University of Padua, Italy (M.P.M).
Cardiac adipose tissue is normally present in the epicardium, but a variable amount can also be present in the myocardium, particularly in the subepicardial regions of the right ventricular anterolateral and apical regions. Pathological adipose tissue changes may occur in both ischemic (previous myocardial infarction) and nonischemic (previous myocarditis, arrhythmogenic cardiomyopathy, lipomatous hypertrophy of the interatrial septum, cardiac lipomas and liposarcomas) conditions, with or without extensive replacement-type myocardial fibrosis. Cardiac magnetic resonance is the gold standard imaging technique to characterize myocardial tissue changes and to distinguish between physiological and pathological cardiac fat deposits.
View Article and Find Full Text PDFCell Rep Med
July 2025
Sorbonne Université, INSERM U1269, Nutrition and obesities: systemic approach research group, Nutriomics, Paris F-75013, France. Electronic address:
Fibrosis in visceral white adipose tissue (vWAT) is closely associated with tissue dysfunction and systemic metabolic disturbances in obesity. Identifying pathways amenable to drug intervention to prevent fibrotic changes in vWAT is a critical step in addressing the array of metabolic complications associated with obesity. CD9 adipose progenitors (Progs) are key drivers of vWAT fibrosis.
View Article and Find Full Text PDFCell Mol Biol (Noisy-le-grand)
September 2025
Department of Health Sciences, University of York, York, U.K..
Dyslipidemia is considered a crucial risk factor for high risk of atherosclerosis and cardiovascular diseases. Cumin and coriander seeds are well-known flavoring agents that contain nutraceutical properties and appear to have beneficial health effects. A study was therefore conducted to investigate the effects of cumin and coriander seeds on body weight, abdominal fat and lipid profile in rats.
View Article and Find Full Text PDFOphthalmic Plast Reconstr Surg
September 2025
Division of Orbital and Ophthalmic Plastic Surgery.
Purpose: To objectively quantify, in East Asians and Caucasians, the width and distribution of the retro-orbicularis oculi and frontalis fat (ROOF) pad, subcutaneous fat, and orbicularis oculi muscle (OOM) at the superior orbital rim margin as well as 5 mm superior and inferior to this point.
Methods: Thirty adults were studied by high-resolution, surface coil MRI. In the quasi-sagittal image through the globe center, the ROOF, subcutaneous fat, and OOM thickness were measured anterior to the orbital septum, at 3 points: at the superior orbital rim, and 5 mm superior, and 5 mm inferior to the rim.
Reprod Domest Anim
September 2025
National Engineering Research Center for Breeding Swine Industry, South China Agricultural University, Guangzhou, China.
Canine somatic cell nuclear transfer (SCNT) is a powerful technology that can be used to clone beloved companion dogs, produce valuable working dogs, rescue endangered canine breeds, and create genetically engineered dogs. Nevertheless, the application of this technology is hindered by the low developmental efficiency of canine SCNT embryos. It has been shown that in pig and horse cloning using mesenchymal stem cells (MSCs), compared with fibroblasts, as donor cells can enhance the developmental potential of SCNT embryos.
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