首页> 外文期刊>Food and Chemical Toxicology: An International Journal Published for the British Industrial Biological Research >The use use of KnockOut serum replacement (KSR) in three dimensional rat testicular cells co-culture model: An improved male reproductive toxicity testing system
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The use use of KnockOut serum replacement (KSR) in three dimensional rat testicular cells co-culture model: An improved male reproductive toxicity testing system

机译:使用淘汰血清替代(KSR)在三维大鼠睾丸细胞共同培养模型中的使用:一种改进的男性生殖毒性测试系统

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Recent increasing restrictions on animals have persuaded researchers to seek in vitro alternatives that could reduce the use of experimental animals and provide a unique methodology for the exploration of specific toxicant mechanisms in testes. Although various in vitro models have been reported, their application in toxicological studies has been limited due to various reasons. In the present study, an improved three-dimensional rat testicular cell co-culture model was established by the addition of KSR to the culture medium instead of FBS.The effects of KSR and FBS were assessed and followed by an assessment of the effects of BPA on somatic cell function and germ cell differentiation in vitro using this improved co-culture model. It was found that the addition of KSR could enhance cell proliferation and germ cell meiosis, which confirmed the functional integrity of the co-culture model. Finally, the effects of BPA on the in vitro model demonstrated that the model could successfully mimic in vivo testis physiology phenomenon. We concluded that the modified model could be used to evaluate various chemicals on rat testis cells and investigate the specific mechanisms of toxicant activity in the testis in future studies. (C) 2017 Published by Elsevier Ltd.
机译:最近对动物的越来越大的限制已经说服研究人员寻求体外替代品,可以减少实验动物的使用,并为探索睾丸的特异性毒物机制提供独特的方法。虽然已经报道了各种体外模型,但由于各种原因,它们在毒理学研究中的应用受到限制。在本研究中,通过向培养基而不是FBS的KSR建立改进的三维大鼠睾丸细胞共培养模型。评估KSR和FBS的效果,然后评估BPA的作用用这种改进的共培养模型对体外细胞功能和生殖细胞分化。发现ksr的添加可以增强细胞增殖和生殖细胞减数,这证实了共培养模型的功能完整性。最后,BPA对体外模型的影响表明该模型可以成功模仿体内睾丸生理现象。我们得出结论,改性模型可用于评估大鼠睾丸细胞上的各种化学品,并研究未来研究中睾丸中毒性活性的具体机制。 (c)2017年由elestvier有限公司出版

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