Literature DB >> 10219063

Effect of bone decalcification procedures on DNA in situ hybridization and comparative genomic hybridization. EDTA is highly preferable to a routinely used acid decalcifier.

J C Alers1, P J Krijtenburg, K J Vissers, H van Dekken.   

Abstract

Decalcification is routinely performed for histological studies of bone-containing tissue. Although DNA in situ hybridization (ISH) and comparative genomic hybridization (CGH) have been successfully employed on archival material, little has been reported on the use of these techniques on archival decalcified bony material. In this study we compared the effects of two commonly used decalcifiers, i.e. , one proprietary, acid-based agent (RDO) and one chelating agent (EDTA), in relation to subsequent DNA ISH and CGH to bony tissues (two normal vertebrae, six prostate tumor bone metastases with one sample decalcified by both EDTA and RDO). We found that RDO-decalcified tissue was not suited for DNA ISH in tissue sections with centromere-specific probes, whereas we were able to adequately determine the chromosomal status of EDTA-decalcified material of both control and tumor material. Gel electrophoresis revealed that no DNA could be successfully retrieved from RDO-treated material. Moreover, in contrast to RDO-decalcified tumor material, we detected several chromosomal imbalances in the EDTA-decalcified tumor tissue by CGH analysis. Furthermore, it was possible to determine the DNA ploidy status of EDTA- but not of RDO-decalcified material by DNA flow cytometry. Decalcification of bony samples by EDTA is highly recommended for application in DNA ISH and CGH techniques.

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Year:  1999        PMID: 10219063     DOI: 10.1177/002215549904700512

Source DB:  PubMed          Journal:  J Histochem Cytochem        ISSN: 0022-1554            Impact factor:   2.479


  23 in total

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2.  Expression of multiple myeloma associated markers in bone marrow spicules using a novel immunohistochemical technique.

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Journal:  Biotech Histochem       Date:  2010-05-03       Impact factor: 1.718

Review 3.  Understanding preanalytical variables and their effects on clinical biomarkers of oncology and immunotherapy.

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Authors:  V B Kraus; J L Huebner; J DeGroot; A Bendele
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6.  Use of Biomarkers to Guide Decisions on Systemic Therapy for Women With Metastatic Breast Cancer: American Society of Clinical Oncology Clinical Practice Guideline.

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7.  Influence of decalcification procedures on immunohistochemistry and molecular pathology in breast cancer.

Authors:  Willemijne A M E Schrijver; Petra van der Groep; Laurien Dc Hoefnagel; Natalie D Ter Hoeve; Ton Peeters; Cathy B Moelans; Paul J van Diest
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8.  GNAS Mutations in Fibrous Dysplasia: A Comparative Study of Standard Sequencing and Locked Nucleic Acid PCR Sequencing on Decalcified and Nondecalcified Formalin-fixed Paraffin-embedded Tissues.

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Review 9.  Diagnostic assays for identification of anaplastic lymphoma kinase-positive non-small cell lung cancer.

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10.  Percutaneous image-guided biopsy of prostate cancer metastases yields samples suitable for genomics and personalised oncology.

Authors:  Matthew K H Hong; Nikhil Sapre; Pramit M Phal; Geoff Macintyre; Xiaowen Chin; John S Pedersen; Andrew Ryan; Michael Kerger; Anthony J Costello; Niall M Corcoran; Christopher M Hovens
Journal:  Clin Exp Metastasis       Date:  2013-10-02       Impact factor: 5.150

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