3D细胞培养技术在纳米毒理学中的应用:我们还有多远?
Raheleh Shakeri1, Seyedeh Zohreh Mirjalili2, Ceyda Oksel Karakus3
1Department of Biological Science, Faculty of Science, University of Kurdistan, Sanandaj, Iran.
Stem cell reviews and reports
|February 3, 2026
概括
工程纳米材料 (ENM) 的毒性至关重要. 新兴的3D细胞培养和芯片上的器官提供比传统的2D模型更准确的纳米毒性测试,弥合了体外-体内生物间的差距.
科学领域:
- 纳米毒理学研究
- 生物医学工程 生物医学工程
- 细胞培养技术 细胞培养技术
背景情况:
- 评估工程纳米材料 (ENM) 的毒性至关重要.
- 传统的二维细胞培养很难模仿体内条件,导致体外-体内差距.
- 3D细胞培养模型和器官芯片正在出现以解决这些局限性.
研究的目的:
- 审查用于纳米毒性评估的经典和先进的3D细胞培养模型.
- 通过改进的实验系统,提供对ENM毒理学的见解.
- 弥合在体外和体内纳米毒性研究之间的知识差距.
主要方法:
- 复习经典的二维细胞培养模型.
- 探索无脚手架和基于脚手架的3D细胞培养.
- 分析3D共同培养方法 (直接接触和非接触).
- 基于微流体的组织芯片和器官的研究.
主要成果:
- 3D细胞培养和器官芯片提供了更具生理相关性的模型.
- 这些先进的系统可以更好地预测体内对ENM的反应.
- 新兴技术解决了传统二维文化的局限性.
结论:
- 3D细胞培养系统和器官芯片是纳米毒性研究中2D培养的优越替代品.
- 这些先进的模型提高了纳米医学研究的临床相关性.
- 进一步开发这些系统是了解ENM安全性和治疗潜力的关键.
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