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CryoGrid-PIXUL-RNA:用于组织转录分析的高通量 RNA 分离平台。

CryoGrid-PIXUL-RNA: high throughput RNA isolation platform for tissue transcript analysis.

机构信息

UW Medicine South Lake Union, University of Washington, Seattle, WA, 98109, USA.

Institute for Stem Cell and Regenerative Medicine, University of Washington, Seattle, WA, 98109, USA.

出版信息

BMC Genomics. 2023 Aug 8;24(1):446. doi: 10.1186/s12864-023-09527-7.

Abstract

BACKGROUND

Disease molecular complexity requires high throughput workflows to map disease pathways through analysis of vast tissue repositories. Great progress has been made in tissue multiomics analytical technologies. To match the high throughput of these advanced analytical platforms, we have previously developed a multipurpose 96-well microplate sonicator, PIXUL, that can be used in multiple workflows to extract analytes from cultured cells and tissue fragments for various downstream molecular assays. And yet, the sample preparation devices, such as PIXUL, along with the downstream multiomics analytical capabilities have not been fully exploited to interrogate tissues because storing and sampling of such biospecimens remain, in comparison, inefficient.

RESULTS

To mitigate this tissue interrogation bottleneck, we have developed a low-cost user-friendly system, CryoGrid, to catalog, cryostore and sample tissue fragments. TRIzol is widely used to isolate RNA but it is labor-intensive, hazardous, requires fume-hoods, and is an expensive reagent. Columns are also commonly used to extract RNA but they involve many steps, are prone to human errors, and are also expensive. Both TRIzol and column protocols use test tubes. We developed a microplate PIXUL-based TRIzol-free and column-free RNA isolation protocol that uses a buffer containing proteinase K (PK buffer). We have integrated the CryoGrid system with PIXUL-based PK buffer, TRIzol, and PureLink column methods to isolate RNA for gene-specific qPCR and genome-wide transcript analyses. CryoGrid-PIXUL, when integrated with either PK buffer, TRIzol or PureLink column RNA isolation protocols, yielded similar transcript profiles in frozen organs (brain, heart, kidney and liver) from a mouse model of sepsis.

CONCLUSIONS

RNA isolation using the CryoGrid-PIXUL system combined with the 96-well microplate PK buffer method offers an inexpensive user-friendly high throughput workflow to study transcriptional responses in tissues in health and disease as well as in therapeutic interventions.

摘要

背景

疾病的分子复杂性要求高通量工作流程通过分析大量组织库来绘制疾病途径。在组织多组学分析技术方面已经取得了很大的进展。为了匹配这些先进分析平台的高通量,我们之前开发了一种多用途的 96 孔微孔板超声破碎仪 PIXUL,它可用于多种工作流程,从培养细胞和组织碎片中提取分析物,用于各种下游分子测定。然而,样品制备设备(如 PIXUL)以及下游多组学分析能力尚未被充分利用来检测组织,因为与组织相比,生物样本的存储和采样仍然效率低下。

结果

为了缓解这种组织检测瓶颈,我们开发了一种低成本、用户友好的系统 CryoGrid,用于组织碎片的编目、冷冻存储和采样。TRIzol 广泛用于分离 RNA,但它劳动强度大,有危险,需要通风橱,而且试剂昂贵。柱子也常用于提取 RNA,但它们涉及许多步骤,容易出现人为错误,而且价格昂贵。TRIzol 和柱子方案都使用试管。我们开发了一种基于微孔板 PIXUL 的无 TRIzol 和无柱子 RNA 分离方案,该方案使用含有蛋白酶 K(PK 缓冲液)的缓冲液。我们已经将 CryoGrid 系统与基于 PIXUL 的 PK 缓冲液、TRIzol 和 PureLink 柱方法集成在一起,用于分离 RNA 进行基因特异性 qPCR 和全基因组转录分析。CryoGrid-PIXUL 与 PK 缓冲液、TRIzol 或 PureLink 柱 RNA 分离方案结合使用时,在脓毒症小鼠模型的冷冻器官(脑、心、肾和肝)中产生了相似的转录谱。

结论

使用 CryoGrid-PIXUL 系统结合 96 孔微孔板 PK 缓冲液方法进行 RNA 分离,为研究健康和疾病以及治疗干预中的组织转录反应提供了一种廉价、用户友好的高通量工作流程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3767/10408117/9c220ca63607/12864_2023_9527_Fig1_HTML.jpg

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