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10.1007/s00604-015-1560-2

http://scihub22266oqcxt.onion/10.1007/s00604-015-1560-2
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C4778144!4778144!27013767
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suck abstract from ncbi

pmid27013767      Mikrochim+Acta 2016 ; 183 (ä): 955-63
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  • Nanopore-based analysis of biochemical species #MMPMID27013767
  • Liu N; Yang Z; Ou X; Wei B; Zhang J; Jia Y; Xia F
  • Mikrochim Acta 2016[]; 183 (ä): 955-63 PMID27013767show ga
  • Biological nanochannels or nanopores play a crucial role in basic biochemical processes in cells. Artificial nanopores possessing dimensions comparable to the size of biological molecules and mimicking the function of biological ion channels are of particular interest with respect to the design of biosensors with a sensitivity that can go down to the fM level and even to single molecule detection. Nanopore-based analysis (NPA) is currently a new research field with fascinating prospects. This review (with 118 refs.) summarizes the progress made in this field in the recent 10 years. Following an introduction into the fundamentals of NPA, we demonstrate its potential by describing selected methods for sensing (a) proteins such as streptavidin, certain antibodies, or thrombin via aptamers; (b) oligomers, larger nucleic acids, or micro-RNA; (c) small molecules, (d) ions such as K(I) which is vital to the maintenance of life, or Hg(II) which is dangerous to health. We summarize the results and discuss the merits and limitations of the various methods at last.Graphical abstractSchematic of a signal-off system and a signal-on system in nanopore analysis. The effective diameter of nanopores decreases when targets undergo certain interactions with receptors attached on the inner surface of the nanopore. Correspondingly, the current will drop on appearance of the analyte. This is referred to as a ?signal-off? system. Conversely, it is called a ?signal-on? system.
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