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一种改良的双重制备方法,用于从激光显微切割的新鲜冷冻人类癌症组织标本中更好地分离核酸。

A modified dual preparatory method for improved isolation of nucleic acids from laser microdissected fresh-frozen human cancer tissue specimens.

作者信息

Kimble Danielle C, Litzi Tracy J, Snyder Gabrielle, Olowu Victoria, TaQee Sakiyah, Conrads Kelly A, Loffredo Jeremy, Bateman Nicholas W, Alba Camille, Rice Elizabeth, Shriver Craig D, Maxwell George L, Dalgard Clifton, Conrads Thomas P

机构信息

Gynecologic Cancer Center of Excellence, Department of Gynecologic Surgery and Obstetrics, Uniformed Services University of the Health Sciences, Walter Reed National Military Medical Center, Bethesda, MD 20889, United States.

Women's Health Integrated Research Center, Women's Service Line, Inova Health System, Annandale, VA 22003, United States.

出版信息

Biol Methods Protoc. 2024 Sep 10;9(1):bpae066. doi: 10.1093/biomethods/bpae066. eCollection 2024.

Abstract

A central theme in cancer research is to increase our understanding of the cancer tissue microenvironment, which is comprised of a complex and spatially heterogeneous ecosystem of malignant and non-malignant cells, both of which actively contribute to an intervening extracellular matrix. Laser microdissection (LMD) enables histology selective harvest of cellular subpopulations from the tissue microenvironment for their independent molecular investigation, such as by high-throughput DNA and RNA sequencing. Although enabling, LMD often requires a labor-intensive investment to harvest enough cells to achieve the necessary DNA and/or RNA input requirements for conventional next-generation sequencing workflows. To increase efficiencies, we sought to use a commonplace dual preparatory (DP) procedure to isolate DNA and RNA from the same LMD harvested tissue samples. While the yield of DNA from the DP protocol was satisfactory, the RNA yield from the LMD harvested tissue samples was significantly poorer compared to a dedicated RNA preparation procedure. We determined that this low yield of RNA was due to incomplete partitioning of RNA in this widely used DP protocol. Here, we describe a modified DP protocol that more equally partitions nucleic acids and results in significantly improved RNA yields from LMD-harvested cells.

摘要

癌症研究的一个核心主题是加深我们对癌组织微环境的理解,该微环境由恶性和非恶性细胞组成的复杂且空间异质性的生态系统构成,这两类细胞都积极参与细胞外基质的形成。激光显微切割(LMD)能够从组织微环境中对细胞亚群进行组织学选择性收获,以便对其进行独立的分子研究,例如通过高通量DNA和RNA测序。尽管LMD具有可行性,但为了获得足够的细胞以满足传统下一代测序工作流程所需的DNA和/或RNA输入要求,通常需要投入大量人力。为了提高效率,我们试图采用一种常见的双重制备(DP)程序,从相同的LMD收获的组织样本中分离DNA和RNA。虽然DP方案的DNA产量令人满意,但与专门的RNA制备程序相比,LMD收获的组织样本的RNA产量明显较低。我们确定,RNA产量低是由于这种广泛使用的DP方案中RNA分配不完全所致。在此,我们描述了一种改良的DP方案,该方案能更均匀地分配核酸,并显著提高LMD收获细胞的RNA产量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c814/11486541/765dc5b4aafa/bpae066f1.jpg

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