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The proliferation and differentiation of primary pig preadipocytes is suppressed when cultures are incubated at 37°Celsius compared to euthermic conditions in pigs

机译:与正常温度条件下的猪相比将培养物在37°C下孵育时原猪前脂肪细胞的增殖和分化受到抑制

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摘要

Given similarities in metabolic parameters and cardiovascular physiology, the pig is well positioned as a biomedical model for metabolic disease and obesity in humans. Better understanding molecular mechanisms governing porcine adipocyte hyperplasia may provide insight into the regulation of adipose tissue development that is useful both when considering the pig as a commodity and when extrapolating porcine data to human disease. Primary cultures of pig stromal-vascular cells have served as a useful tool for investigating factors that regulate preadipocyte proliferation and differentiation. However, such cultures have generally been maintained at 37>°C in vitro despite euthermia being 39>°C in pigs. To address potential concerns about the physiological relevance of culturing primary pig preadipocytes under what would be hypothermic conditions in vivo, the objective of this study was to investigate the effect of culture temperature on the proliferation and differentiation of pig preadipocytes in primary culture. Culturing primary preadipocytes at 37 rather than 39>°C decreases their proliferation rates based upon cleavage of the tetrazolium salt, MTT (P < 0.001), reduction of resazurin (P < 0.001), and daily cell counts (P < 0.001). Likewise, culturing primary porcine preadipocytes at 37>°C suppressed their adipogenic potential based upon monitoring adipogenesis morphologically, biochemically, and via the expression of mRNA encoding adipogenic marker genes. Collectively, these data indicate the proliferation and differentiation of primary pig preadipocytes is suppressed when cultures are incubated at 37>°C compared to normal body temperature of pigs. This may confound investigation of factors that impact adipocyte hyperplasia in the pig.
机译:考虑到新陈代谢参数和心血管生理学的相似性,猪被很好地定位为人类新陈代谢疾病和肥胖症的生物医学模型。更好地了解控制猪脂肪细胞增生的分子机制可能会提供对脂肪组织发育调控的见解,这在将猪视为商品以及将猪数据外推至人类疾病时都非常有用。猪基质血管细胞的原代培养已成为研究调节前脂肪细胞增殖和分化的因素的有用工具。但是,尽管猪体中的体温为39 >°C,但通常在体外将这种培养物维持在37 >°。为了解决可能在体内低温条件下培养原代猪前脂肪细胞的生理相关性的潜在问题,本研究的目的是研究培养温度对原代培养中猪前脂肪细胞增殖和分化的影响。根据四唑盐,MTT的裂解(P <0.001),刃天青素的降低(P <0.001)和每日细胞计数(37°C而不是39°C),原代前脂肪细胞的增殖速率降低。 P <0.001)。同样,在37°C下培养原代猪前脂肪细胞可通过形态,生化和编码脂肪形成标记基因的mRNA表达来监测脂肪形成,从而抑制其脂肪形成潜力。总体而言,这些数据表明,与猪的正常体温相比,将培养物在37°C下孵育时,原代猪前脂肪细胞的增殖和分化受到抑制。这可能会混淆影响猪脂肪细胞增生的因素的调查。

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