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Differential gene expression profile in pig adipose tissue treated with/without clenbuterol

机译:用/不使用盐酸克仑特罗治疗的猪脂肪组织中的差异基因表达谱

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Background Clenbuterol, a beta-agonist, can dramatically reduce pig adipose accumulation at high dosages. However, it has been banned in pig production because people who eat pig products treated with clenbuterol can be poisoned by the clenbuterol residues. To understand the molecular mechanism for this fat reduction, cDNA microarray, real-time PCR, two-dimensional electrophoresis and mass spectra were used to study the differential gene expression profiles of pig adipose tissues treated with/without clenbuterol. The objective of this research is to identify novel genes and physiological pathways that potentially facilitate clenbuterol induced reduction of adipose accumulation. Results Clenbuterol was found to improve the lean meat percentage about 10 percent (P Conclusion Pig fat accumulation was reduced dramatically with clenbuterol treatment. Histological sections and global evaluation of gene expression after administration of clenbuterol in pigs identified profound changes in adipose cells. With clenbuterol stimulation, adipose cell volumes decreased and their gene expression profile changed, which indicate some metabolism processes have been also altered. Although the biological functions of the differentially expressed genes are not completely known, higher expressions of these molecules in adipose tissue might contribute to the reduction of fat accumulation. Among these genes, five lipid metabolism related genes were of special interest for further study, including apoD and apoR. The apoR expression was increased at both the RNA and protein levels. The apoR may be one of the critical molecules through which clenbuterol reduces fat accumulation.
机译:背景克仑特罗是一种β受体激动剂,可以大剂量减少猪脂肪的积累。但是,它已被禁止在猪的生产中,因为食用食用盐酸克伦特罗处理过的猪产品的人会因盐酸克伦特罗残留而中毒。为了了解减少脂肪的分子机制,使用cDNA微阵列,实时PCR,二维电泳和质谱研究了用/不用克仑特罗治疗的猪脂肪组织的差异基因表达谱。这项研究的目的是确定可能促进瘦肉精诱导的脂肪堆积减少的新基因和生理途径。结果发现瘦肉精可将瘦肉率提高约10%(P结论瘦肉精治疗可显着降低猪脂肪积累。在猪中服用瘦肉精后的组织学切片和基因表达的整体评估发现,脂肪细胞发生了深刻变化。通过瘦肉精刺激,脂肪细胞的体积减少,基因表达谱发生变化,这表明一些代谢过程也发生了变化,虽然差异表达基因的生物学功能尚不完全清楚,但这些分子在脂肪组织中的高表达可能有助于减少脂肪代谢。在这些基因中,与脂代谢相关的五个基因特别感兴趣,包括apoD和apoR,其在RNA和蛋白质水平上的表达均增加,apoR可能是瘦肉精的关键分子之一。减少脂肪堆积。

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