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首页> 外文期刊>Toxicological sciences: An official journal of the Society of Toxicology >From the Cover: An Animal-Free In Vitro Three-Dimensional Testicular Cell Coculture Model for Evaluating Male Reproductive Toxicants
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From the Cover: An Animal-Free In Vitro Three-Dimensional Testicular Cell Coculture Model for Evaluating Male Reproductive Toxicants

机译:从封面:无动物的体外三维睾丸细胞共培养模型,用于评估雄性生殖毒物

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Primary testicular cell coculture model has been used to evaluate testicular abnormalities during development, and was able to identify the testicular toxicity of phthalates. However, the primary testicular cell coculture model has disadvantages in employing animals for the isolation of testicular cells, and the complicated isolation procedure leads to inconsistent results. We developed an invitro testicular coculture model from rodent testicular cell lines, including spermatogonial cells, Sertoli cells, and Leydig cells with specified cell density and extracellular matrix (ECM) composition. Using comparative high-content analysis of F-actin cytoskeletal structure between the coculture and single cell culture models, we demonstrated a 3D structure of the coculture, which created an invivo-like niche, and maintained and supported germ cells within a 3D environment. We validated this model by discriminating between reproductive toxicants and nontoxicants among 32 compounds in comparison to the single cell culture models. Furthermore, we conducted a comparison between the invitro (IC50) and invivo reproductive toxicity testing (lowest observed adverse effect level on reproductive system). We found the invitro coculture model could classify the tested compounds into 4 clusters, and identify the most toxic reproductive substances, with high concordance, sensitivity, and specificity of 84%, 86.21%, and 100%, respectively. We observed a strong correlation of IC50 between the invitro coculture model and the invivo testing results. Our results suggest that this novel invitro coculture model may be useful for screening testicular toxicants and prioritize chemicals for further assessment in the future.
机译:原发性睾丸细胞共培养模型已被用于在发育过程中评估睾丸异常,并且能够识别邻苯二甲酸盐的睾丸毒性。然而,主要睾丸细胞共培养模型在使用动物用于分离睾丸细胞的缺点中,并且复杂的隔离程序导致结果不一致。我们开发了啮齿动物睾丸细胞系的invitro睾丸素培养模型,包括精囊细胞,塞托里氏细胞和具有特定细胞密度和细胞外基质(ECM)组合物的Leydig细胞。使用比较高含量分析的F-actin细胞骨骼结构与单细胞和单细胞培养模型之间,我们证明了共培养的3D结构,其在3D环境中产生了一种invivo样的利基,并在3D环境中保持和支持的生殖细胞。与单细胞培养模型相比,我们通过鉴别32种化合物之间的生殖毒物和毒剂之间验证了该模型。此外,我们在invitro(IC50)和Invivo生殖毒性测试之间进行了比较(在生殖系统上的最低观察到的不良影响水平)。我们发现invitro共有模型可以将测试的化合物分类为4个簇,并鉴定最有毒的生殖物质,分别具有高的一致性,敏感性和特异性,分别为84%,86.21%和100%。我们观察到IC50在邀请委员会共培养模型与INVIVO测试结果之间的强烈相关性。我们的研究结果表明,这种新的invitro共培养模型可用于筛查睾丸毒物,并优先考虑未来进一步评估。

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