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通过激光捕获显微切割分离的均匀乳腺上皮细胞群体中RNA完整性的维持。

Maintaining RNA integrity in a homogeneous population of mammary epithelial cells isolated by Laser Capture Microdissection.

作者信息

Bevilacqua Claudia, Makhzami Samira, Helbling Jean-Christophe, Defrenaix Pierre, Martin Patrice

机构信息

INRA, UMR1313 Unité Génétique Animale et Biologie Intégrative, équipe Lait, Génome & Santé F-78350 Jouy-en-Josas, France.

出版信息

BMC Cell Biol. 2010 Dec 6;11:95. doi: 10.1186/1471-2121-11-95.

Abstract

BACKGROUND

Laser-capture microdissection (LCM) that enables the isolation of specific cell populations from complex tissues under morphological control is increasingly used for subsequent gene expression studies in cell biology by methods such as real-time quantitative PCR (qPCR), microarrays and most recently by RNA-sequencing. Challenges are i) to select precisely and efficiently cells of interest and ii) to maintain RNA integrity. The mammary gland which is a complex and heterogeneous tissue, consists of multiple cell types, changing in relative proportion during its development and thus hampering gene expression profiling comparison on whole tissue between physiological stages. During lactation, mammary epithelial cells (MEC) are predominant. However several other cell types, including myoepithelial (MMC) and immune cells are present, making it difficult to precisely determine the specificity of gene expression to the cell type of origin. In this work, an optimized reliable procedure for producing RNA from alveolar epithelial cells isolated from frozen histological sections of lactating goat, sheep and cow mammary glands using an infrared-laser based Arcturus Veritas LCM (Applied Biosystems®) system has been developed. The following steps of the microdissection workflow: cryosectioning, staining, dehydration and harvesting of microdissected cells have been carefully considered and designed to ensure cell capture efficiency without compromising RNA integrity.

RESULTS

The best results were obtained when staining 8 μm-thick sections with Cresyl violet® (Ambion, Applied Biosystems®) and capturing microdissected cells during less than 2 hours before RNA extraction. In addition, particular attention was paid to animal preparation before biopsies or slaughtering (milking) and freezing of tissue blocks which were embedded in a cryoprotective compound before being immersed in isopentane. The amount of RNA thus obtained from ca.150 to 250 acini (300,000 to 600,000 μm2) ranges between 5 to 10 ng. RNA integrity number (RIN) was ca. 8.0 and selectivity of this LCM protocol was demonstrated through qPCR analyses for several alveolar cell specific genes, including LALBA (α-lactalbumin) and CSN1S2 (αs2-casein), as well as Krt14 (cytokeratin 14), CD3e and CD68 which are specific markers of MMC, lymphocytes and macrophages, respectively.

CONCLUSIONS

RNAs isolated from MEC in this manner were of very good quality for subsequent linear amplification, thus making it possible to establish a referential gene expression profile of the healthy MEC, a useful platform for tumor biomarker discovery.

摘要

背景

激光捕获显微切割技术(LCM)能够在形态学控制下从复杂组织中分离特定细胞群体,越来越多地用于细胞生物学中后续的基因表达研究,如实时定量PCR(qPCR)、微阵列以及最近的RNA测序等方法。面临的挑战包括:i)精确且高效地选择感兴趣的细胞;ii)维持RNA的完整性。乳腺是一个复杂的异质性组织,由多种细胞类型组成,在其发育过程中相对比例会发生变化,从而阻碍了生理阶段间全组织基因表达谱的比较。在哺乳期,乳腺上皮细胞(MEC)占主导地位。然而,还存在其他几种细胞类型,包括肌上皮细胞(MMC)和免疫细胞,这使得难以精确确定基因表达对起源细胞类型的特异性。在这项工作中,已开发出一种优化的可靠程序,用于从泌乳山羊、绵羊和奶牛乳腺的冷冻组织切片中分离肺泡上皮细胞,使用基于红外激光的Arcturus Veritas LCM(应用生物系统公司)系统生产RNA。仔细考虑并设计了显微切割工作流程的以下步骤:冷冻切片、染色、脱水以及收获显微切割的细胞,以确保细胞捕获效率而不损害RNA完整性。

结果

用甲酚紫(Ambion,应用生物系统公司)对8μm厚的切片进行染色,并在RNA提取前不到2小时捕获显微切割的细胞时,获得了最佳结果。此外,特别关注活检或屠宰(挤奶)前的动物准备以及组织块的冷冻,组织块在浸入异戊烷之前先嵌入冷冻保护化合物中。从约150至250个腺泡(300,000至600,000μm²)获得的RNA量在5至10 ng之间。RNA完整性数值(RIN)约为8.0,通过对几个肺泡细胞特异性基因进行qPCR分析,证明了该LCM方案的选择性,这些基因包括LALBA(α-乳白蛋白)和CSN1S2(αs2-酪蛋白),以及Krt14(细胞角蛋白14)、CD3e和CD68,它们分别是MMC、淋巴细胞和巨噬细胞的特异性标志物。

结论

以这种方式从MEC分离的RNA质量非常好,可用于后续的线性扩增,从而有可能建立健康MEC的参考基因表达谱,这是发现肿瘤生物标志物的有用平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8bb0/3019183/a1927e96dbfc/1471-2121-11-95-1.jpg

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