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Updated: May 6, 2026

Retrospective MicroRNA Sequencing: Complementary DNA Library Preparation Protocol Using Formalin-fixed Paraffin-embedded RNA Specimens
Published on: May 5, 2018
High stability of microRNAs in tissue samples of compromised quality
Lorena Peiró-Chova1, María Peña-Chilet, José Antonio López-Guerrero
1Biobank, INCLIVA Biomedical Research Institute, Avenida Blasco Ibáñez, 17, 46010, Valencia, Spain.
Abstract:
Degradation of tissue samples limits performing RNA-based molecular studies, but little is known about the potential usefulness of samples of compromised quality for studies focused on miRNAs. In this work we analyze a series of cryopreserved tissue samples (n = 14), frozen samples that underwent a severe thawing process (n = 10), and their paired formalin-fixed paraffin-embedded (FFPE) tissue samples (n = 24) from patients with breast cancer obtained during primary surgical resection and collected in 2011. Quality and integrity analyses of the total and small fraction of RNA were carried out. Recovery of specific RNA molecules (miRNAs hsa-miR-21, hsa-miR-125b, and hsa-miR-191; snoRNA RNU6B; and mRNAs GAPDH and HPRT1) was also analyzed by quantitative RT-PCR. Our results suggest that visualisation of the small RNA electrophoretic profiles obtained using the Agilent 2100 bioanalyzer makes it possible to differentiate between the three groups of samples (optimally frozen, thawed, and FFPE). We demonstrate that specific miRNA molecules can be similarly recovered from different tissue sample sources, which supports their high degree of stability. We conclude that miRNAs are robustly detected irrespective of the quality of the tissue sample. In this regard, a word of caution should be raised before degraded samples are discarded: although prior quality assessment of the biological material to be analyzed is recommended, our work demonstrates that degraded tissue samples are also suitable for miRNA studies.
Insights
Degraded tissue samples, including thawed and formalin-fixed paraffin-embedded (FFPE) types, are suitable for microRNA (miRNA) studies. These stable molecules can be reliably detected even in compromised biological samples, supporting their use in molecular research.
Area of Science:
- Molecular Biology
- Genomics
- Biotechnology
Background:
- Tissue sample degradation poses challenges for RNA-based molecular studies.
- The utility of compromised samples for microRNA (miRNA) research remains largely unexplored.
Purpose of the Study:
- To assess the suitability of degraded tissue samples for miRNA analysis.
- To compare miRNA recovery across cryopreserved, thawed, and formalin-fixed paraffin-embedded (FFPE) breast cancer tissues.
Main Methods:
- Analysis of RNA quality and integrity in three sample types: cryopreserved, thawed, and FFPE.
- Quantitative reverse transcription polymerase chain reaction (qRT-PCR) to quantify specific RNA molecules (miRNAs, snoRNA, mRNAs).
- Agilent 2100 bioanalyzer for small RNA electrophoretic profile visualization.
Main Results:
- Small RNA electrophoretic profiles effectively differentiated between sample groups.
- Specific miRNA molecules (hsa-miR-21, hsa-miR-125b, hsa-miR-191) were recovered comparably across all sample types.
- MicroRNAs demonstrated high stability and robust detection regardless of tissue sample quality.
Conclusions:
- MicroRNAs are highly stable and reliably detected in various tissue sample qualities, including degraded ones.
- Degraded tissue samples, previously considered unsuitable, can be valuable for miRNA-based molecular studies.
- Prior quality assessment is recommended, but compromised samples should not be automatically discarded for miRNA research.
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