Literature DB >> 20502189

Effects of formalin, methacarn, and fineFIX fixatives on RNA preservation.

Isabella Dotti1, Serena Bonin, Giorgio Basili, Ermanno Nardon, Alessandro Balani, Salvatore Siracusano, Fabrizio Zanconati, Silvia Palmisano, Nicolò De Manzini, Giorgio Stanta.   

Abstract

Formalin-fixed tissues represent the most abundant clinical material for retrospective studies. However, formalin highly affects macromolecules, impairing their extraction and analysis. In this study, the suitability of some potential substitutes of formalin for RNA-based applications has been considered. Conventional formalin was compared with methacarn and the commercial FineFIX. Their impact on overall RNA preservation was investigated in a cell line-based model fixed during a time course treatment and in a series of fixed human tissues. RNA yield was detected by Nanodrop; ribosomal RNA (rRNA) integrity by electrophoresis and the Agilent Bioanalyzer; messenger RNA (mRNA) integrity by Northern blot and endpoint reverse transcription-polymerase chain reaction; and mRNA amount by real-time polymerase chain reaction. In the cell line model, formalin fixation showed time-dependent detrimental effects on overall RNA preservation. Methacarn and FineFIX were more conservative on both rRNA and mRNA preservation and their impact was time-independent. In tissues, high rRNA degradation levels were found in all fixed specimens, contrasting with the results found in the cells. Conversely, the effects of the fixatives on mRNA integrity reflected the observations shown in the cell line model. In methacarn-fixed samples mRNA amount was also preserved, whereas in formalin and FineFIX-fixed samples it was notably lower when compared with the fresh frozen control. Alcohol-based fixatives are a good solution for long-term fixation of both cytologic and tissue samples by virtue of their time-independent effects on mRNA preservation. In fixed tissue samples, however, the potential effects of preanalytical tissue-related factors should be considered when performing mRNA quantitative analysis.

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Year:  2010        PMID: 20502189     DOI: 10.1097/PDM.0b013e3181b520f8

Source DB:  PubMed          Journal:  Diagn Mol Pathol        ISSN: 1052-9551


  26 in total

1.  Molecular fixative enables expression microarray analysis of microdissected clinical cervical specimens.

Authors:  Gerald Li; Dirk van Niekerk; Dianne Miller; Thomas Ehlen; Cathie Garnis; Michele Follen; Martial Guillaud; Calum Macaulay
Journal:  Exp Mol Pathol       Date:  2014-01-08       Impact factor: 3.362

2.  Histomorphological and Molecular Assessments of the Fixation Times Comparing Formalin and Ethanol-Based Fixatives.

Authors:  Joon-Yong Chung; Joon Seon Song; Kris Ylaya; John D Sears; Lauren Choi; Hanbyoul Cho; Avi Z Rosenberg; Stephen M Hewitt
Journal:  J Histochem Cytochem       Date:  2017-11-10       Impact factor: 2.479

3.  The non-crosslinking fixative RCL2®-CS100 is compatible with both pathology diagnosis and molecular analyses.

Authors:  Florence Boissière-Michot; Amélie Denouël; Nathalie Boulle; Carole Guillaume; Béatrice Orsetti; Evelyne Lopez-Crapez; Marie-Christine Chateau; Frédéric Bibeau
Journal:  Pathol Oncol Res       Date:  2012-08-15       Impact factor: 3.201

4.  Effects of short and long-term alcohol-based fixation on Sprague-Dawley rat tissue morphology, protein and nucleic acid preservation.

Authors:  Simona Panzacchi; Federica Gnudi; Daniele Mandrioli; Rita Montella; Valentina Strollo; Bruce Alexander Merrick; Fiorella Belpoggi; Eva Tibaldi
Journal:  Acta Histochem       Date:  2019-07-03       Impact factor: 2.479

5.  Impact of tissue preservation on collagen fiber architecture.

Authors:  H N Hutson; C Kujawa; K Eliceiri; P Campagnola; K S Masters
Journal:  Biotech Histochem       Date:  2018-10-24       Impact factor: 1.718

Review 6.  A review of room temperature storage of biospecimen tissue and nucleic acids for anatomic pathology laboratories and biorepositories.

Authors:  Jerry J Lou; Leili Mirsadraei; Desiree E Sanchez; Ryan W Wilson; Maryam Shabihkhani; Gregory M Lucey; Bowen Wei; Elyse J Singer; Sergey Mareninov; William H Yong
Journal:  Clin Biochem       Date:  2013-12-18       Impact factor: 3.281

7.  Quantitation of fixative-induced morphologic and antigenic variation in mouse and human breast cancers.

Authors:  Robert D Cardiff; Neil E Hubbard; Jesse A Engelberg; Robert J Munn; Claramae H Miller; Judith E Walls; Jane Q Chen; Héctor A Velásquez-García; Jose J Galvez; Katie J Bell; Laurel A Beckett; Yue-Ju Li; Alexander D Borowsky
Journal:  Lab Invest       Date:  2013-02-11       Impact factor: 5.662

8.  A Buffered Alcohol-Based Fixative for Histomorphologic and Molecular Applications.

Authors:  Candice Perry; Joon-Yong Chung; Kris Ylaya; Chel Hun Choi; Amari Simpson; Kaipo T Matsumoto; William A Smith; Stephen M Hewitt
Journal:  J Histochem Cytochem       Date:  2016-05-24       Impact factor: 2.479

9.  Targeted therapies in cancer - challenges and chances offered by newly developed techniques for protein analysis in clinical tissues.

Authors:  K Malinowsky; C Wolff; S Gündisch; D Berg; Kf Becker
Journal:  J Cancer       Date:  2010-12-19       Impact factor: 4.207

10.  The PAXgene(®) tissue system preserves phosphoproteins in human tissue specimens and enables comprehensive protein biomarker research.

Authors:  Sibylle Gündisch; Christina Schott; Claudia Wolff; Kai Tran; Christian Beese; Christian Viertler; Kurt Zatloukal; Karl-Friedrich Becker
Journal:  PLoS One       Date:  2013-03-29       Impact factor: 3.240

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