Matches in SemOpenAlex for { <https://semopenalex.org/work/W2776393814> ?p ?o ?g. }
- W2776393814 endingPage "1642" @default.
- W2776393814 startingPage "1635" @default.
- W2776393814 abstract "Methods to detect low concentrations of small molecules are useful for a wide range of analytical problems including the development of clinical assays, the study of complex biological systems, and the detection of biological warfare agents. This paper describes a semisynthetic ion channel platform capable of detecting small molecule analytes with picomolar sensitivity. Our methodology exploits the transient nature of ion channels formed from gramicidin A (gA) nanopores and the frequency of observed single channel events as a function of concentration of free gA molecules that reversibly dimerize in a bilayer membrane. We initially use a protein (here, a monoclonal antibody) to sequester the ion channel activity of a C-terminally modified gA derivative. When a small molecule analyte is introduced to the electrical recording medium, it competitively binds to the protein and liberates the gA derivative, restoring its single ion channel activity. We found that monitoring the frequency of gA channel events makes it possible to detect picomolar concentrations of small molecule in solution. In part, due to the digital on/off nature of frequency-based analysis, this approach is 103 times more sensitive than measuring macroscopic membrane ion flux through gA channels as a basis for detection. This novel methodology, therefore, significantly improves the limit of detection of nanopore-based sensors for small molecule analytes, which has the potential for incorporation into miniaturized and low cost devices that could complement current established assays." @default.
- W2776393814 created "2018-01-05" @default.
- W2776393814 creator A5019694751 @default.
- W2776393814 creator A5023378358 @default.
- W2776393814 creator A5047600505 @default.
- W2776393814 creator A5066274616 @default.
- W2776393814 creator A5079317230 @default.
- W2776393814 creator A5089798356 @default.
- W2776393814 date "2018-01-16" @default.
- W2776393814 modified "2023-09-25" @default.
- W2776393814 title "Frequency-Based Analysis of Gramicidin A Nanopores Enabling Detection of Small Molecules with Picomolar Sensitivity" @default.
- W2776393814 cites W1580315781 @default.
- W2776393814 cites W1592730805 @default.
- W2776393814 cites W1678350171 @default.
- W2776393814 cites W1877811573 @default.
- W2776393814 cites W1968063242 @default.
- W2776393814 cites W1974008109 @default.
- W2776393814 cites W1976157304 @default.
- W2776393814 cites W1981908216 @default.
- W2776393814 cites W1982620893 @default.
- W2776393814 cites W1983063145 @default.
- W2776393814 cites W1988874714 @default.
- W2776393814 cites W1989239732 @default.
- W2776393814 cites W1991440871 @default.
- W2776393814 cites W1993575340 @default.
- W2776393814 cites W1997119515 @default.
- W2776393814 cites W1999647281 @default.
- W2776393814 cites W2006803138 @default.
- W2776393814 cites W2007126425 @default.
- W2776393814 cites W2021178815 @default.
- W2776393814 cites W2025695685 @default.
- W2776393814 cites W2028606986 @default.
- W2776393814 cites W2032062499 @default.
- W2776393814 cites W2033146918 @default.
- W2776393814 cites W2034287217 @default.
- W2776393814 cites W2034474421 @default.
- W2776393814 cites W2037252212 @default.
- W2776393814 cites W2037567333 @default.
- W2776393814 cites W2044465463 @default.
- W2776393814 cites W2047987880 @default.
- W2776393814 cites W2051815061 @default.
- W2776393814 cites W2052454197 @default.
- W2776393814 cites W2055705536 @default.
- W2776393814 cites W2059205219 @default.
- W2776393814 cites W2061822515 @default.
- W2776393814 cites W2062734966 @default.
- W2776393814 cites W2065476796 @default.
- W2776393814 cites W2077024660 @default.
- W2776393814 cites W2077602216 @default.
- W2776393814 cites W2077804275 @default.
- W2776393814 cites W2078742768 @default.
- W2776393814 cites W2081737898 @default.
- W2776393814 cites W2085544730 @default.
- W2776393814 cites W2087030944 @default.
- W2776393814 cites W2089571021 @default.
- W2776393814 cites W2092945847 @default.
- W2776393814 cites W2097704121 @default.
- W2776393814 cites W2098040478 @default.
- W2776393814 cites W2098954359 @default.
- W2776393814 cites W2106954995 @default.
- W2776393814 cites W2118315567 @default.
- W2776393814 cites W2122883307 @default.
- W2776393814 cites W2126818937 @default.
- W2776393814 cites W2128795881 @default.
- W2776393814 cites W2133014645 @default.
- W2776393814 cites W2147568693 @default.
- W2776393814 cites W2280139308 @default.
- W2776393814 cites W2316313381 @default.
- W2776393814 cites W2320205033 @default.
- W2776393814 cites W2325479064 @default.
- W2776393814 cites W2333233767 @default.
- W2776393814 cites W2337779421 @default.
- W2776393814 cites W2346480006 @default.
- W2776393814 cites W2598508366 @default.
- W2776393814 cites W3098162602 @default.
- W2776393814 doi "https://doi.org/10.1021/acs.analchem.7b02961" @default.
- W2776393814 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/29266927" @default.
- W2776393814 hasPublicationYear "2018" @default.
- W2776393814 type Work @default.
- W2776393814 sameAs 2776393814 @default.
- W2776393814 citedByCount "5" @default.
- W2776393814 countsByYear W27763938142018 @default.
- W2776393814 countsByYear W27763938142019 @default.
- W2776393814 countsByYear W27763938142021 @default.
- W2776393814 countsByYear W27763938142022 @default.
- W2776393814 crossrefType "journal-article" @default.
- W2776393814 hasAuthorship W2776393814A5019694751 @default.
- W2776393814 hasAuthorship W2776393814A5023378358 @default.
- W2776393814 hasAuthorship W2776393814A5047600505 @default.
- W2776393814 hasAuthorship W2776393814A5066274616 @default.
- W2776393814 hasAuthorship W2776393814A5079317230 @default.
- W2776393814 hasAuthorship W2776393814A5089798356 @default.
- W2776393814 hasBestOaLocation W27763938142 @default.
- W2776393814 hasConcept C10390740 @default.
- W2776393814 hasConcept C113196181 @default.
- W2776393814 hasConcept C119128265 @default.
- W2776393814 hasConcept C12554922 @default.
- W2776393814 hasConcept C141795571 @default.