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本文引用的文献

1
Hodgkin lymphoma: an update on its biology with new insights into classification.霍奇金淋巴瘤:生物学进展及分类新见解
Clin Lymphoma Myeloma. 2009 Jun;9(3):206-16. doi: 10.3816/CLM.2009.n.042.
2
Automatic detection of spermatozoa for laser capture microdissection.用于激光捕获显微切割的精子自动检测
Int J Legal Med. 2009 Mar;123(2):169-75. doi: 10.1007/s00414-008-0271-1. Epub 2008 Jul 26.
3
ATR alterations in Hodgkin's lymphoma.霍奇金淋巴瘤中的ATR改变。
Oncol Rep. 2008 Apr;19(4):999-1005.
4
Laser capture microdissection technology.激光捕获显微切割技术。
Expert Rev Mol Diagn. 2007 Sep;7(5):647-57. doi: 10.1586/14737159.7.5.647.
5
Laser capture microdissection for analysis of single cells.用于单细胞分析的激光捕获显微切割技术。
Methods Mol Med. 2007;132:11-8. doi: 10.1007/978-1-59745-298-4_2.
6
Detection of CCND1 amplification using laser capture microdissection coupled with real-time polymerase chain reaction in human esophageal squamous cell carcinoma.利用激光捕获显微切割技术结合实时聚合酶链反应检测人食管鳞状细胞癌中CCND1基因扩增
Cancer Genet Cytogenet. 2007 May;175(1):19-25. doi: 10.1016/j.cancergencyto.2007.01.003.
7
An overview of laser microdissection technologies.激光显微切割技术概述。
Acta Histochem. 2007;109(3):171-6. doi: 10.1016/j.acthis.2007.02.001. Epub 2007 Apr 25.
8
Isolating cells from non-sperm cellular mixtures using the PALM microlaser micro dissection system.使用PALM微激光显微切割系统从非精子细胞混合物中分离细胞。
Forensic Sci Int. 2007 Dec 20;173(2-3):93-6. doi: 10.1016/j.forsciint.2007.01.031. Epub 2007 Apr 24.
9
Complementary techniques: laser capture microdissection--increasing specificity of gene expression profiling of cancer specimens.补充技术:激光捕获显微切割——提高癌症标本基因表达谱分析的特异性
Adv Exp Med Biol. 2007;593:54-65. doi: 10.1007/978-0-387-39978-2_6.
10
Successful application of microarray technology to microdissected formalin-fixed, paraffin-embedded tissue.微阵列技术在显微切割的福尔马林固定石蜡包埋组织中的成功应用。
J Mol Diagn. 2007 Feb;9(1):70-9. doi: 10.2353/jmoldx.2007.060004.

组织生物样本库中的激光捕获显微切割

Laser capture microdissection in the tissue biorepository.

作者信息

Liu Angen

机构信息

Tissue Biorepository, Hollings Cancer Center, Medical University of South Carolina, Charleston, South Carolina 29425, USA.

出版信息

J Biomol Tech. 2010 Sep;21(3):120-5.

PMID:20808641
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2922833/
Abstract

An important need of many cancer research projects is the availability of high-quality, appropriately selected tissue. Tissue biorepositories are organized to collect, process, store, and distribute samples of tumor and normal tissue for further use in fundamental and translational cancer research. This, in turn, provides investigators with an invaluable resource of appropriately examined and characterized tissue specimens and linked patient information. Human tissues, in particular, tumor tissues, are complex structures composed of heterogeneous mixtures of morphologically and functionally distinct cell types. It is essential to analyze specific cell types to identify and define accurately the biologically important processes in pathologic lesions. Laser capture microdissection (LCM) is state-of-the-art technology that provides the scientific community with a rapid and reliable method to isolate a homogeneous population of cells from heterogeneous tissue specimens, thus providing investigators with the ability to analyze DNA, RNA, and protein accurately from pure populations of cells. This is particularly well-suited for tumor cell isolation, which can be captured from complex tissue samples. The combination of LCM and a tissue biorepository offers a comprehensive means by which researchers can use valuable human biospecimens and cutting-edge technology to facilitate basic, translational, and clinical research. This review provides an overview of LCM technology with an emphasis on the applications of LCM in the setting of a tissue biorepository, based on the author's extensive experience in LCM procedures acquired at Fox Chase Cancer Center and Hollings Cancer Center.

摘要

许多癌症研究项目的一个重要需求是获得高质量、经过适当挑选的组织。组织生物样本库的设立旨在收集、处理、储存和分发肿瘤组织和正常组织样本,以供在基础癌症研究和转化癌症研究中进一步使用。这反过来为研究人员提供了经过适当检查和表征的组织标本以及相关患者信息的宝贵资源。人体组织,尤其是肿瘤组织,是由形态和功能各异的细胞类型组成的异质混合物构成的复杂结构。分析特定的细胞类型对于准确识别和定义病理病变中生物学上重要的过程至关重要。激光捕获显微切割(LCM)是一种先进技术,为科学界提供了一种快速可靠的方法,可从异质组织标本中分离出同质细胞群体,从而使研究人员能够从纯细胞群体中准确分析DNA、RNA和蛋白质。这特别适用于肿瘤细胞分离,肿瘤细胞可从复杂组织样本中捕获。LCM与组织生物样本库的结合提供了一种全面的手段,研究人员可以利用宝贵的人类生物标本和前沿技术来促进基础研究、转化研究和临床研究。基于作者在福克斯蔡斯癌症中心和霍林斯癌症中心获得的LCM程序方面的丰富经验,本综述概述了LCM技术,重点介绍了LCM在组织生物样本库中的应用。