Impact of fixation duration on messenger RNA detectability in human formalin-fixed paraffin-embedded brain tissue

Brain Commun. 2024 Nov 28;6(6):fcae430. doi: 10.1093/braincomms/fcae430. eCollection 2024.

Abstract

Technologies to study mRNA in post-mortem human brain samples have greatly advanced our understanding of brain pathologies. With ongoing improvements, particularly in formalin-fixed paraffin-embedded tissue, these technologies will continue to enhance our knowledge in the future. Despite various considerations for tissue and mRNA quality, such as pre-mortem health status and RNA integrity, the impact of the tissue fixation time has not been addressed in a systemic fashion yet. In this study, we employed RNAscope to assess mRNA detectability in human post-mortem brain tissue in relation to fixation time. Our results reveal a dynamic change in mRNA detection across varying fixation durations, accompanied by an increase in signal derived from the negative probe and autofluorescence background. These findings highlight the critical relevance of standardized fixation protocols for the collection of human brain tissue in order to probe mRNA abundancy to ensure reliable and comparable results.

Keywords: RNAscope; human FFPE tissue; mRNA; post-mortem brain tissue; transcriptomic approaches.