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长期细胞和组织培养后用于多次使用的TiO纳米管阵列的再生——对成年猪视网膜及其他组织的环境扫描电子显微镜(ESEM)研究

Regeneration of TiO Nanotube Arrays after Long-Term Cell and Tissue Culture for Multiple Use - an Environmental Scanning Electron Microscopy (ESEM) Survey of Adult Pig Retina and beyond.

作者信息

Friebe Sabrina, Mayr Stefan G

机构信息

1Leibniz-Institut für Oberflächenmodifizierung e.V. (IOM), Permoserstr. 15, 04318 Leipzig, Germany.

2Division of Surface Physics, University of Leipzig, Linnéstraße. 5, 04103 Leipzig, Germany.

出版信息

Biol Proced Online. 2019 Jan 29;21:2. doi: 10.1186/s12575-019-0090-4. eCollection 2019.

Abstract

Long-term organotypic culture of adult tissues not only open up possibilities for studying complex structures of explants in vitro, but also can be employed e.g. to investigate pathological changes, their fingerprints on tissue mechanics, as well as the effectiveness of drugs. While conventional culture methods do not allow for survival times of more than a few days, we have demonstrated recently that TiO nanotube arrays allow to maintain integrity of numerous tissues, including retina, brain, spline and tonsils, for as long as 2 weeks in vitro. A mystery in culturing has been the interaction of tissue with these substrates, which is also reflected by tissue debris after liftoff. As the latter reveals fingerprints of tissue adhesion and impedes with nanotube array reuse, we address within the present environmental scanning electron study debris nature and the effectiveness of cleaning approaches of distinct physical and chemical methods, including UV-light irradiation, O2 plasma treatment and application of an enzyme-based buffer. This will lays the foundation for large-scale regeneration and reuse of nanotube arrays in science and clinical research.

摘要

成体组织的长期器官型培养不仅为体外研究外植体的复杂结构开辟了可能性,还可用于例如研究病理变化、它们在组织力学上的特征以及药物的有效性。虽然传统培养方法的存活时间不超过几天,但我们最近证明,TiO纳米管阵列能够在体外长达2周的时间内维持包括视网膜、脑、脊髓和扁桃体在内的多种组织的完整性。培养过程中的一个谜团是组织与这些基质的相互作用,这在组织剥离后的组织碎片中也有所体现。由于后者揭示了组织粘附的特征并妨碍纳米管阵列的重复使用,我们在当前的环境扫描电子研究中探讨了碎片的性质以及包括紫外线照射、氧气等离子体处理和应用基于酶的缓冲液在内的不同物理和化学方法的清洁效果。这将为纳米管阵列在科学和临床研究中的大规模再生和重复使用奠定基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/180d/6350358/99ab9674ad3f/12575_2019_90_Fig2_HTML.jpg

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