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      Collagen Membranes with Ribonuclease Inhibitors for Long-Term Stability of Electrochemical, Aptamer-Based Sensors Employing RNA

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          Abstract

          Electrochemical aptamer-based (E-AB) sensors offer advantageous analytical detection abilities on account of their rapid response time (sec to min), specificity to a target, and selectivity to function in complex media. Ribonucleic acid (RNA) aptamers employed in this class of sensor offer favorable binding characteristics resulting from the ability of RNA to form stable tertiary folds aided by long-range intermolecular interactions. As a result, RNA aptamers can fold into more complex three-dimensional structures than their DNA counterparts, and consequently, exhibit better binding ability to target analytes. Unfortunately, RNA aptamers are susceptible to degradation by nucleases, and for this reason, RNA-based sensors are scarce or require significant sample pretreatment before use in clinically-relevant media. Here, we combine the usefulness of a collagen I hydrogel membrane with entrapped ribonuclease inhibitors (RI) to protect small molecule RNA E-AB sensors from endogenous nucleases in complex media. More specifically, the biocompatibility of the naturally polymerized hydrogel with encapsulated RI promotes the protection of an aminoglycoside-binding RNA E-AB sensor up to 6 hours; enabling full sensor function in nuclease-rich environments (undiluted serum) without the need for prior sample preparation or oligonucleotide modification. The use of collagen as a biocompatible membrane represents a general approach to compatibly interface E-AB sensors with complex biological samples.

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          Author and article information

          Journal
          0370536
          519
          Anal Chem
          Anal. Chem.
          Analytical chemistry
          0003-2700
          1520-6882
          6 October 2017
          03 May 2017
          16 May 2017
          24 October 2017
          : 89
          : 10
          : 5598-5604
          Affiliations
          []Department of Chemistry and Biochemistry, University of Maryland Baltimore County (UMBC), Baltimore, Maryland 21250
          Author notes
          [* ]Corresponding author: rjwhite@ 123456umbc.edu
          Article
          PMC5653965 PMC5653965 5653965 nihpa910896
          10.1021/acs.analchem.7b00766
          5653965
          28440619
          08c61544-bd24-4b90-b50b-9e838911cb94
          History
          Categories
          Article

          collagen I hydrogel,RNA aptamer,ribonuclease,ribonuclease inhibitor,tobramycin,Electrochemical Aptamer-Based Sensors

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