人体肺组织低温保存用于三维离体分析。

IF 5.8 2区 医学 Q1 Medicine
Nickolas G Diodati, Ganlin Qu, Borna Mehrad, Matthew A Schaller
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引用次数: 0

摘要

体外培养技术通过允许在人体组织中进行生物学研究,帮助研究人员缩小了实验室和临床之间的翻译差距。然而,在肺生物学中,这种组织的可用性是实验设计的一个限制因素,并限制了这些模型作为体外或体内方法的科学严格补充的可重复性和可复制性。人体肺组织的低温保存是通过在肺生物学的离体研究中产生供体低温保存生物库来解决这些限制的一种策略。现代低温保存解决方案,结合了低温保护细胞外大分子和细胞渗透的无毒小分子的混合物,使人类肺组织能够长期储存,允许在同一供体中重复实验,并在多个供体中同时研究相同的假设,因此赋予体外系统可重复性和可复制性的质量。在整个冷冻保存过程中,需要适当地保持组织结构、性质和功能的基本方面。本文讨论了成功建立冷冻库的现有低温保存系统的例子,以及与低温保存兼容的体外培养技术,目的是表明低温保存在体外人肺组织培养中的潜力,并强调低温保存扩大体外人肺培养系统在追求临床相关发现中的应用的机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Cryopreservation of human lung tissue for 3D ex vivo analysis.

Cryopreservation of human lung tissue for 3D ex vivo analysis.

Cryopreservation of human lung tissue for 3D ex vivo analysis.

Cryopreservation of human lung tissue for 3D ex vivo analysis.

Ex vivo culture techniques have assisted researchers in narrowing the translational gap between the lab and the clinic by allowing the study of biology in human tissues. In pulmonary biology, however, the availability of such tissues is a limiting factor in experimental design and constrains the reproducibility and replicability of these models as scientifically rigorous complements to in vitro or in vivo methods. Cryopreservation of human lung tissue is a strategy to address these limitations by generating cryopreserved biobanks of donors in the ex vivo study of pulmonary biology. Modern cryopreservation solutions, incorporating blends of cryoprotective extracellular macromolecules and cell-permeant non-toxic small molecules, have enabled the long-term storage of human lung tissue, allowing repeated experiments in the same donors and the simultaneous study of the same hypothesis across multiple donors, therefore granting the qualities of reproducibility and replicability to ex vivo systems. Specific considerations are required to properly maintain fundamental aspects of tissue structure, properties, and function throughout the cryopreservation process. The examples of existing cryopreservation systems successfully employed to amass cryobanks, and ex vivo culture techniques compatible with cryopreservation, are discussed herein, with the goal of indicating the potential of cryopreservation in ex vivo human lung tissue culture and highlighting opportunities for cryopreservation to expand the utility of ex vivo human lung culture systems in the pursuit of clinically relevant discoveries.

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来源期刊
Respiratory Research
Respiratory Research RESPIRATORY SYSTEM-
CiteScore
9.70
自引率
1.70%
发文量
314
审稿时长
4-8 weeks
期刊介绍: Respiratory Research publishes high-quality clinical and basic research, review and commentary articles on all aspects of respiratory medicine and related diseases. As the leading fully open access journal in the field, Respiratory Research provides an essential resource for pulmonologists, allergists, immunologists and other physicians, researchers, healthcare workers and medical students with worldwide dissemination of articles resulting in high visibility and generating international discussion. Topics of specific interest include asthma, chronic obstructive pulmonary disease, cystic fibrosis, genetics, infectious diseases, interstitial lung diseases, lung development, lung tumors, occupational and environmental factors, pulmonary circulation, pulmonary pharmacology and therapeutics, respiratory immunology, respiratory physiology, and sleep-related respiratory problems.
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