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成年脑和脾切片在纳米结构支架上的长期组织培养。

Long-Term Tissue Culture of Adult Brain and Spleen Slices on Nanostructured Scaffolds.

机构信息

Institute of Anatomy, University of Leipzig, Oststr. 25, 04317, Leipzig, Germany.

Leibniz Institute for Surface Modification (IOM) e.V., Permoser Str. 15, 04318, Leipzig, Germany.

出版信息

Adv Healthc Mater. 2017 May;6(9). doi: 10.1002/adhm.201601336. Epub 2017 Feb 20.

Abstract

Long-term tissue culture of adult mammalian organs is a highly promising approach to bridge the gap between single cell cultures and animal experiments, and bears the potential to reduce in vivo studies. Novel biomimetic materials open up new possibilities to maintain the complex tissue structure in vitro; however, survival times of adult tissues ex vivo are still limited to a few days with established state-of-the-art techniques. Here, it is demonstrated that TiO nanotube scaffolds with specific tissue-tailored characteristics can serve as superior substrates for long-term adult brain and spleen tissue culture. High viability of the explants for at least two weeks is achieved and compared to tissues cultured on standard polytetrafluoroethylene (PTFE) membranes. Histological and immunohistochemical staining and live imaging are used to investigate tissue condition after 5 and 14 d in vitro, while environmental scanning electron microscopy qualifies the interaction with the underlying scaffold. In contrast to tissues cultured on PTFE membranes, enhanced tissue morphology is detected in spleen slices, as well as minor cell death in neuronal tissue, both cultured on nanotube scaffolds. This novel biomimetic tissue model will prove to be useful to address fundamental biological and medical questions from tissue regeneration up to tumor progression and therapeutic approaches.

摘要

长期的成年哺乳动物器官组织培养是一种很有前途的方法,可以在单细胞培养和动物实验之间架起桥梁,并有可能减少体内研究。新型仿生材料为在体外维持复杂的组织结构开辟了新的可能性;然而,利用现有的最先进技术,成年组织在体外的存活时间仍然只能延长几天。在这里,研究证明具有特定组织定制特征的 TiO 纳米管支架可以作为长期成年大脑和脾脏组织培养的优异基质。至少两周内,外植体保持高存活率,并与在标准聚四氟乙烯(PTFE)膜上培养的组织进行比较。组织学和免疫组织化学染色和活体成像用于研究体外 5 天和 14 天后的组织状况,而环境扫描电子显微镜则确定了与底层支架的相互作用。与在 PTFE 膜上培养的组织相比,在纳米管支架上培养的脾脏切片中观察到组织形态增强,以及神经元组织中的细胞死亡减少。这种新型仿生组织模型将有助于解决从组织再生到肿瘤进展和治疗方法等基本生物学和医学问题。

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