Issue 50, 2021

Long term storage of miRNA at room and elevated temperatures in a silica sol–gel matrix

Abstract

Storage of biospecimens in their near native environment at room temperature can have a transformative global impact, however, this remains an arduous challenge to date due to the rapid degradation of biospecimens over time. Currently, most isolated biospecimens are refrigerated for short-term storage and frozen (−20 °C, −80 °C, liquid nitrogen) for long-term storage. Recent advances in room temperature storage of purified biomolecules utilize anhydrobiosis. However, a near aqueous storage solution that can preserve the biospecimen nearly “as is” has not yet been achieved by any current technology. Here, we demonstrate an aqueous silica sol–gel matrix for optimized storage of biospecimens. Our technique is facile, reproducible, and has previously demonstrated stabilization of DNA and proteins, within a few minutes using a standard benchtop microwave. Herein, we demonstrate complete integrity of miRNA 21, a highly sensitive molecule at 4, 25, and 40 °C over a period of ∼3 months. In contrast, the control samples completely degrade in less than 1 week. We attribute excellent stability to entrapment of miRNA within silica-gel matrices.

Graphical abstract: Long term storage of miRNA at room and elevated temperatures in a silica sol–gel matrix

Supplementary files

Article information

Article type
Paper
Submitted
17 Jun 2021
Accepted
08 Sep 2021
First published
23 Sep 2021
This article is Open Access
Creative Commons BY-NC license

RSC Adv., 2021,11, 31505-31510

Long term storage of miRNA at room and elevated temperatures in a silica sol–gel matrix

R. Chauhan, T. S. Kalbfleisch, C. S. Potnis, M. Bansal, M. W. Linder, R. S. Keynton and G. Gupta, RSC Adv., 2021, 11, 31505 DOI: 10.1039/D1RA04719A

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