Department of Bioengineering, Stanford University, James H Clark Center, E300, 318 Campus Drive, Stanford, CA, 94305, USA.
Chan Zuckerberg Biohub, San Francisco, CA, 94158, USA.
BMC Genomics. 2018 Feb 13;19(1):140. doi: 10.1186/s12864-018-4512-5.
High-fidelity preservation strategies for primary tissues are in great demand in the single cell RNAseq community. A reliable method would greatly expand the scope of feasible multi-site collaborations and maximize the utilization of technical expertise. When choosing a method, standardizability and fidelity are important factors to consider due to the susceptibility of single-cell RNAseq analysis to technical noise. Existing approaches such as cryopreservation and chemical fixation are less than ideal for failing to satisfy either or both of these standards.
Here we propose a new strategy that leverages preservation schemes developed for organ transplantation. We evaluated the strategy by storing intact mouse kidneys in organ transplant preservative solution at hypothermic temperature for up to 4 days (6 h, 1, 2, 3, and 4 days), and comparing the quality of preserved and fresh samples using FACS and single cell RNAseq. We demonstrate that the strategy effectively maintained cell viability, transcriptome integrity, cell population heterogeneity, and transcriptome landscape stability for samples after up to 3 days of preservation. The strategy also facilitated the definition of the diverse spectrum of kidney resident immune cells, to our knowledge the first time at single cell resolution.
Hypothermic storage of intact primary tissues in organ transplant preservative maintains the quality and stability of the transcriptome of cells for single cell RNAseq analysis. The strategy is readily generalizable to primary specimens from other tissue types for single cell RNAseq analysis.
单细胞 RNAseq 领域非常需要能够高度保真地保存原代组织的方法。可靠的方法将极大地扩展可行的多站点合作范围,并最大限度地利用技术专长。在选择方法时,由于单细胞 RNAseq 分析容易受到技术噪声的影响,因此标准化和保真度是需要考虑的重要因素。现有的方法,如冷冻保存和化学固定,都不太理想,因为它们不能满足这两个标准中的一个或两个。
在这里,我们提出了一种新的策略,利用开发用于器官移植的保存方案。我们通过将完整的小鼠肾脏在低温器官移植保存液中保存长达 4 天(6 小时、1 天、2 天、3 天和 4 天)来评估该策略,并使用 FACS 和单细胞 RNAseq 比较保存和新鲜样本的质量。我们证明,该策略可以有效地维持细胞活力、转录组完整性、细胞群体异质性和保存 3 天内的样本的转录组稳定性。该策略还促进了对肾脏固有免疫细胞的多样化谱的定义,据我们所知,这是首次在单细胞分辨率下进行。
在器官移植保存液中低温保存完整的原代组织可以保持用于单细胞 RNAseq 分析的细胞转录组的质量和稳定性。该策略易于推广到用于单细胞 RNAseq 分析的其他组织类型的原代标本。