Literature DB >> 10365909

Effects of fixation on RNA extraction and amplification from laser capture microdissected tissue.

S M Goldsworthy1, P S Stockton, C S Trempus, J F Foley, R R Maronpot.   

Abstract

One of the key end points for understanding the molecular basis of carcinogenesis is the quantitation of gene expression in specific cell populations. Microdissection techniques allow extraction of morphologically distinct cells for molecular analysis. A recent advance in microdissection uses the PixCell laser capture microdissection (LCM) system, which allows for precise removal of pure cell populations from morphologically preserved tissue sections. The objective of this study was to determine the optimal fixation protocol for analyzing RNA from tissue samples using LCM. Optimal fixation must provide acceptable morphology, allow proper laser capture of selected cells, and preserve the integrity of mRNA. We evaluated the effects of both cross-linking and precipitive-type fixatives on frozen and paraffin-embedded mouse liver tissue. For assessment of the quality of the mRNA in LCM samples generated from various fixed tissues, reverse transcription-polymerase chain reaction (RT-PCR)-amplified mouse liver beta2-microglobulin mRNA was detected with ethidium bromide. We also examined mouse glyceraldehyde-3-phosphate-dehydrogenase by using the fluorogenic TaqMan system for real-time quantitative detection of RT-PCR products. Frozen tissues yielded more RT-PCR product than did paraffin-embedded tissues. In both frozen and paraffin-embedded tissues, differences were observed between the fixatives. Precipitive fixatives, such as ethanol and acetone, consistently produced more RT-PCR amplification product than did cross-linking fixatives such as formalin. Optimal fixation protocols for LCM analysis will facilitate the examination of gene expression in specific cell populations, accelerating investigations of the molecular differences responsible for the phenotypic changes observed during carcinogenesis.

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Year:  1999        PMID: 10365909

Source DB:  PubMed          Journal:  Mol Carcinog        ISSN: 0899-1987            Impact factor:   4.784


  89 in total

1.  Quantitative mRNA expression analysis from formalin-fixed, paraffin-embedded tissues using 5' nuclease quantitative reverse transcription-polymerase chain reaction.

Authors:  T E Godfrey; S H Kim; M Chavira; D W Ruff; R S Warren; J W Gray; R H Jensen
Journal:  J Mol Diagn       Date:  2000-05       Impact factor: 5.568

Review 2.  Laser capture microdissection: beyond functional genomics to proteomics.

Authors:  N L Simone; C P Paweletz; L Charboneau; E F Petricoin; L A Liotta
Journal:  Mol Diagn       Date:  2000-12

Review 3.  Laser capture microscopy.

Authors:  S Curran; J A McKay; H L McLeod; G I Murray
Journal:  Mol Pathol       Date:  2000-04

4.  Evaluation of non-formalin tissue fixation for molecular profiling studies.

Authors:  John W Gillespie; Carolyn J M Best; Verena E Bichsel; Kristina A Cole; Susan F Greenhut; Stephen M Hewitt; Mamoun Ahram; Yvonne B Gathright; Maria J Merino; Robert L Strausberg; Jonathan I Epstein; Stanley R Hamilton; Gallya Gannot; Galina V Baibakova; Valerie S Calvert; Michael J Flaig; Rodrigo F Chuaqui; Judi C Herring; John Pfeifer; Emmanuel F Petricoin; W Marston Linehan; Paul H Duray; G Steven Bova; Michael R Emmert-Buck
Journal:  Am J Pathol       Date:  2002-02       Impact factor: 4.307

5.  Laser capture microdissection and two-dimensional polyacrylamide gel electrophoresis: evaluation of tissue preparation and sample limitations.

Authors:  Rachel A Craven; Nick Totty; Patricia Harnden; Peter J Selby; Rosamonde E Banks
Journal:  Am J Pathol       Date:  2002-03       Impact factor: 4.307

6.  mRNA expression profiling of laser microbeam microdissected cells from slender embryonic structures.

Authors:  Stefan J Scheidl; Sven Nilsson; Mattias Kalén; Mats Hellström; Minoru Takemoto; Joakim Håkansson; Per Lindahl
Journal:  Am J Pathol       Date:  2002-03       Impact factor: 4.307

7.  Frozen tumor tissue microarray technology for analysis of tumor RNA, DNA, and proteins.

Authors:  M Schoenberg Fejzo; D J Slamon
Journal:  Am J Pathol       Date:  2001-11       Impact factor: 4.307

8.  Laser-capture microdissection, a tool for the global analysis of gene expression in specific plant cell types: identification of genes expressed differentially in epidermal cells or vascular tissues of maize.

Authors:  Mikio Nakazono; Fang Qiu; Lisa A Borsuk; Patrick S Schnable
Journal:  Plant Cell       Date:  2003-03       Impact factor: 11.277

9.  Optimizing gene expression analysis in archival brain tissue.

Authors:  Vivianna M D Van Deerlin; Lisa H Gill; Peter T Nelson
Journal:  Neurochem Res       Date:  2002-10       Impact factor: 3.996

10.  Novel tissue preparation method and cell-specific marker for laser microdissection of Arabidopsis mature leaf.

Authors:  Noriko Inada; Mary C Wildermuth
Journal:  Planta       Date:  2004-12-02       Impact factor: 4.116

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