3D 细胞培养研究进展:雄性睾丸生殖毒性体外模型
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1.兵器工业卫生研究所,西安 710065;2.西安市毒理与生物效应重点实验室,西安 710065;3.含能材料全国重点实验室,西安 710065

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R697;R-332;Q2-33

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Advances in 3D cell culture: in vitro models of male testicular reproductive toxicity
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1. Institute of Industrial Hygiene of Ordnance Industry, Xi’an 710065, China. 2. Xi’an Key Laboratory of Toxicology and Biological Effects, Xi’an 710065. 3. National Key Laboratory of Energetic Materials, Xi’an 710065

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    摘要:

    近年来,男性生育能力下降及睾丸相关疾病发病率上升的问题日益凸显,环境毒素、遗传因素、生活方式等是主要诱因,而药物研发中雄性生殖毒性评估亦成为环境安全与药物研发的关键环节。 传统动物实验存在周期长、伦理争议、种属差异及无法模拟睾丸微环境等局限性。 随着 3R 原则的推行,构建高生理相关性体外模型已成必然趋势,3D 培养可模拟体内环境,为睾丸细胞提供适宜 3D 生态位。 本文梳理 3D 培养在睾丸类器官模型中的进展,阐述睾丸生殖细胞生态位组成及对毒性评估的重要性,从技术原理与应用剖析脱细胞睾丸支架、水凝胶支架等 5 种 3D 培养系统的特点与效果,指出不同模型现存差异。 提出未来需关注标准化、多细胞共培养及高通量筛选,以推动其在生殖毒性研究中的应用,助力环境安全评估与药物研发。

    Abstract:

    In recent years, declining male fertility and increasing incidence of testis-related diseases have become increasingly prominent, with environmental toxins, genetic factors, and lifestyle being the main contributing factors. Assessment of male reproductive toxicity has emerged as a critical link in environmental safety and drug development processes. Traditional animal experiments suffer from several limitations, including long experimental cycles, ethical controversies, interspecies differences, and the inability to simulate the testicular microenvironment.With the implementation of the 3R principle (reduction, replacement, and refinement), the construction of in vitro models with high physiological relevance has becomeinevitable. 3D cell culture can mimic the in vivo environment and provide a suitable 3D niche for testicular cells. This review summarizes the research progress into 3D cell culture for the development of testicular models. The composition of the testicular germ cell niche and its significance for toxicity assessment are detailed, and the characteristics and efficacy of five 3D culture systems including decellularized testicular scaffolds and hydrogel scaffolds, from the perspectives of their technical principles and applications are analyzed. Additionally, existing limitations of current models are addressed, proposing that future research should focus on standardization, multicell co-culture, and high-throughput screening. These efforts are intended to promote the application of 3D testicular models in reproductive toxicity research, providing support for environmental safety assessment and drug development.

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李 欢,邓 辉,高 婷,沈嘉忱,刘志永,高俊宏.3D 细胞培养研究进展:雄性睾丸生殖毒性体外模型[J].中国比较医学杂志,2026,36(5):114~124.

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  • 收稿日期:2025-06-09
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  • 在线发布日期: 2026-04-01
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