In situ hybridization in the pathology laboratory: General principles, automation, and emerging research applications for tissue-based studies of gene expression

Author:

Hicks David G.,Longoria Gabe,Pettay James,Grogan Tom,Tarr Shannon,Tubbs Raymond

Publisher

Springer Science and Business Media LLC

Subject

Cell Biology,Anatomy,Cell Biology,General Medicine,Physiology,Histology

Reference37 articles.

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2. Basset P, Bellocq JP, Wolf C, Stoll I, Hutin P, Limacher JM, Po-dhajcer OL, Chenard MP, Rio MC, Chambon P (1990) A novel metalloproteinase gene specifically expressed in stromal cells of breast carcinomas. Nature 348: 699?704.

3. Basset P, Wolf C, Rouyer N, Bellocq JP, Rio MC, Chambon P (1994) Stromelysin-3 in stromal tissue as a control factor in breast cancer behavior. Cancer 74: 1045?1049.

4. Bitterman P, Watson D, Cronin M, Mosquera JM, Cobleigh MA, Baehner R, Shak S, Baker J (2004) Comparison of ER, PR, HER2 and Ki-67 Quantitative Expression in Formalin-Fixed, Par-affin-Embedded Breast Carcinomas by RT-PCR with Protein Expression by Immunohistochemistry. Modern Pathol 17: 23A.

5. Bubendorf L (2001) High-throughput microarray technologies: from genomics to clinics. Eur Urol 40: 231?238.

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3. The Pros and Cons of Automation for Immunohistochemistry from the Prospective of the Pathology Laboratory;Antigen Retrieval Immunohistochemistry Based Research and Diagnostics;2010-08-04

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