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细菌纳米纤维素与二氧化钛杂化物:具有细胞相容性且可冷冻保存的细胞载体

Bacterial Nanocellulose and Titania Hybrids: Cytocompatible and Cryopreservable Cell Carriers.

作者信息

Anton-Sales Irene, Roig-Sanchez Soledad, Sánchez-Guisado María Jesús, Laromaine Anna, Roig Anna

机构信息

Institute of Materials Science of Barcelona (ICMAB-CSIC), Campus UAB, 08193 Bellaterra, Catalonia, Spain.

出版信息

ACS Biomater Sci Eng. 2020 Sep 14;6(9):4893-4902. doi: 10.1021/acsbiomaterials.0c00492. Epub 2020 Aug 26.

DOI:10.1021/acsbiomaterials.0c00492
PMID:33455286
Abstract

Carrier-assisted cell transplantation offers new strategies to improve the clinical outcomes of cellular therapies. Bacterial nanocellulose (BC) is an emerging biopolymer that might be of great value in the development of animal-free, customizable, and temperature-stable novel cell carriers. Moreover, BC exhibits a myriad of modification possibilities to incorporate additional functionalities. Here, we have synthesized BC-titanium dioxide (TiO) nanocomposites (BC/TiO) to evaluate and compare the suitability of not only BC but also a model hybrid nanobiomaterial as cell transplantation supports. This work provides thorough information on the interactions between BC-based substrates and model human cells in terms of cell attachment, morphology, proliferation rate, and metabolic activity. Two methods to partially retrieve the adhered cells are also reported. Both BC and BC/TiO substrates are positively evaluated in terms of cytocompatibility and endotoxin content without detecting major differences between BC and BC nanocomposites. Lastly, the effective cryopreservation of cells-BC and cells-BC/TiO constructs, yielding high cell viability and intact cell carrier's characteristics after thawing, is demonstrated. Taken together, our results show that both BC and BC/TiO enable to integrate the processes of expansion and long-term storage of human cells in transportable, robust and easy to manipulate supports.

摘要

载体辅助细胞移植为改善细胞治疗的临床效果提供了新策略。细菌纳米纤维素(BC)是一种新兴的生物聚合物,在开发无动物、可定制且温度稳定的新型细胞载体方面可能具有重要价值。此外,BC具有多种修饰可能性以融入额外功能。在此,我们合成了BC-二氧化钛(TiO)纳米复合材料(BC/TiO),以评估和比较不仅BC而且一种模型混合纳米生物材料作为细胞移植载体的适用性。这项工作在细胞附着、形态、增殖率和代谢活性方面提供了关于基于BC的基质与模型人类细胞之间相互作用的详尽信息。还报道了两种部分回收贴壁细胞的方法。就细胞相容性和内毒素含量而言,BC和BC/TiO基质均得到积极评价,未检测到BC与BC纳米复合材料之间的重大差异。最后,证明了细胞-BC和细胞-BC/TiO构建体的有效冷冻保存,解冻后具有高细胞活力和完整的细胞载体特性。综上所述,我们的结果表明,BC和BC/TiO都能够在可运输、坚固且易于操作的载体中整合人类细胞的扩增和长期储存过程。

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