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声振空化玻璃化法用于高效保存稀有细胞。

Acoustic Droplet Vitrification Method for High-Efficiency Preservation of Rare Cells.

机构信息

Key Laboratory of Artificial Micro/Nano-Structures, Ministry of Education, School of Physics and Technology, Wuhan University, Wuhan 430072, China.

Department of Laboratory Medicine, Zhongnan Hospital of Wuhan University, Wuhan 430072, China.

出版信息

ACS Appl Mater Interfaces. 2021 Mar 24;13(11):12950-12959. doi: 10.1021/acsami.1c01452. Epub 2021 Mar 11.

Abstract

Cryopreservation is a key step for current translational medicine including reproductive medicine, regenerative medicine, and cell therapy. However, it is challenging to preserve rare cells for practical applications due to the difficulty in handling low numbers of cells as well as the lack of highly efficient and biocompatible preservation protocols. Here, we developed an acoustic droplet vitrification method for high-efficiency handling and preservation of rare cells. By employing an acoustic droplet ejection device, we can encapsulate rare cells into water-in-air droplets with a volume from ∼pL to ∼nL and deposit these cell-containing droplets into a droplet array onto a substrate. By incorporating a cooling system into the droplet array substrate, we can vitrify hundreds to thousands of rare cells at an ultrafast speed (about ∼2 s) based on the high surface to volume ratio of the droplets. By optimizing this method with three different cell lines (a human lung cancer cell line, A549 cells, a human liver cell line, L02 cells, and a mouse embryonic fibroblast cell line, 3T3-L1 cells), we developed an effective protocol with excellent cell viability (e.g., >85% for days, >70% for months), proliferation, and adhesion. As a proof-of-concept application, we demonstrated that our method can rapidly handle and efficiently preserve rare cells, highlighting its broad applications in species diversity, basic research, and clinical medicine.

摘要

低温保存是当前转化医学的关键步骤,包括生殖医学、再生医学和细胞治疗。然而,由于处理少量细胞的难度以及缺乏高效和生物相容的保存方案,因此难以实际应用来保存稀有细胞。在这里,我们开发了一种声控液滴玻璃化方法,用于高效处理和保存稀有细胞。通过使用声控液滴喷射装置,我们可以将稀有细胞包裹在水包气的液滴中,液滴体积从 ∼pL 到 ∼nL,并将这些含细胞的液滴沉积到基片上的液滴阵列中。通过将冷却系统集成到液滴阵列基片中,我们可以基于液滴的高表面积与体积比,以超快的速度(约 2 秒)对数百到数千个稀有细胞进行玻璃化。通过对三种不同的细胞系(人肺癌细胞系 A549 细胞、人肝细胞系 L02 细胞和小鼠胚胎成纤维细胞系 3T3-L1 细胞)进行优化,我们开发了一种具有优异细胞活力(例如,数日存活率>85%,数月存活率>70%)、增殖和黏附能力的有效方案。作为概念验证应用,我们证明了我们的方法可以快速处理和有效地保存稀有细胞,突出了其在物种多样性、基础研究和临床医学中的广泛应用。

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