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Imprinted Polymers on the Route to Plastibodies for Biomacromolecules (MIPs), Viruses (VIPs), and Cells (CIPs).

Xiaorong ZhangAysu YarmanMahdien BagheriIbrahim M El-SherbinyRabeay Y A HassanSevinc KurbanogluArmel Franklin Tadjoung WaffoIngo ZebgerTutku Ceren KarabulutFrank F BierPeter LieberzeitFrieder W Scheller
Published in: Advances in biochemical engineering/biotechnology (2023)
Around 30% of the scientific papers published on imprinted polymers describe the recognition of proteins, nucleic acids, viruses, and cells. The straightforward synthesis from only one up to six functional monomers and the simple integration into a sensor are significant advantages as compared with enzymes or antibodies. Furthermore, they can be synthesized against toxic substances and structures of low immunogenicity and allow multi-analyte measurements via multi-template synthesis. The affinity is sufficiently high for protein biomarkers, DNA, viruses, and cells. However, the cross-reactivity of highly abundant proteins is still a challenge.
Keyphrases
  • induced apoptosis
  • cell cycle arrest
  • cell death
  • signaling pathway
  • mass spectrometry
  • oxidative stress
  • drinking water
  • single molecule
  • small molecule
  • solid phase extraction
  • binding protein
  • molecularly imprinted