Fat depot-related differences in gene expression, adiponectin secretion, and insulin action and signalling in human adipocytes differentiated in vitro from precursor stromal cells

التفاصيل البيبلوغرافية
العنوان: Fat depot-related differences in gene expression, adiponectin secretion, and insulin action and signalling in human adipocytes differentiated in vitro from precursor stromal cells
المؤلفون: Angelo Cignarelli, G Catalano, Luigi Laviola, Vincenzo Memeo, Sebastio Perrini, Maura Roberta Orlando, Gabriella Garruti, M. De Fazio, Riccardo Giorgino, F. De Stefano, M Melchiorre, Cristina Caccioppoli, Francesco Giorgino, Annalisa Natalicchio
المصدر: Diabetologia. 51(1)
سنة النشر: 2007
مصطلحات موضوعية: Adult, Male, medicine.medical_specialty, Stromal cell, Endocrinology, Diabetes and Metabolism, Glucose uptake, medicine.medical_treatment, Radioimmunoassay, Adipose tissue, Biology, In Vitro Techniques, chemistry.chemical_compound, Adipocyte, Internal medicine, Internal Medicine, medicine, Adipocytes, Humans, Insulin, Adiponectin secretion, Adiponectin, Gene Expression Profiling, Glucose transporter, Middle Aged, Endocrinology, Glucose, chemistry, Adipose Tissue, Gene Expression Regulation, Female, Stromal Cells, Signal Transduction
الوصف: The distinct metabolic properties of visceral and subcutaneous adipocytes may be due to inherent characteristics of the cells that are resident in each fat depot. To test this hypothesis, human adipocytes were differentiated in vitro from precursor stromal cells obtained from visceral and subcutaneous fat depots and analysed for genetic, biochemical and metabolic endpoints.Stromal cells were isolated from adipose tissue depots of nondiabetic individuals. mRNA levels of adipocyte-specific proteins were determined by real-time RT-PCR. Insulin signalling was evaluated by immunoblotting with specific antibodies. Glucose transport was measured by a 2-deoxy-glucose uptake assay. Adiponectin secretion in the adipocyte-conditioned medium was determined by a specific RIA.With cell differentiation, mRNA levels of PPARG, C/EBPalpha (also known as CEBPA), AP2 (also known as GTF3A), GLUT4 (also known as SLC2A4) were markedly upregulated, whereas GLUT1 (also known as SLC2A1) mRNA did not change. However, expression of C/EBPalpha, AP2 and adiponectin was higher in subcutaneous than in visceral adipocytes. By contrast, adiponectin was secreted at threefold higher rates by visceral than by subcutaneous adipocytes while visceral adipocytes also showed two- to threefold higher insulin-stimulated glucose uptake. Insulin-induced phosphorylation of the insulin receptor, IRS proteins, Akt and extracellular signal-regulated kinase-1/2 was more rapid and tended to decrease at earlier time-points in visceral than in subcutaneous adipocytes.Subcutaneous and visceral adipocytes, also when differentiated in vitro from precursor stromal cells, retain differences in gene expression, adiponectin secretion, and insulin action and signalling. Thus, the precursor cells that reside in the visceral and subcutaneous fat depots may already possess inherent and specific metabolic characteristics that will be expressed upon completion of the differentiation programme.
تدمد: 0012-186X
الوصول الحر: https://explore.openaire.eu/search/publication?articleId=doi_dedup___::8c94e2fe95dc5af5da1b32e0a1e38aecTest
https://pubmed.ncbi.nlm.nih.gov/17960360Test
حقوق: OPEN
رقم الانضمام: edsair.doi.dedup.....8c94e2fe95dc5af5da1b32e0a1e38aec
قاعدة البيانات: OpenAIRE