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Overcoming the Pitfalls of Cytochrome P450 Immobilization through the Use of Fusogenic Liposomes.
Kiiski, Iiro M A; Pihlaja, Tea; Urvas, Lauri; Witos, Joanna; Wiedmer, Susanne K; Jokinen, Ville P; Sikanen, Tiina M.
Afiliación
  • Kiiski IMA; Drug Research Program, Division of Pharmaceutical Chemistry and Technology, Faculty of Pharmacy, P.O. Box 56 (Viikinkaari 5E), Helsinki, FI-00014, Finland.
  • Pihlaja T; Drug Research Program, Division of Pharmaceutical Chemistry and Technology, Faculty of Pharmacy, P.O. Box 56 (Viikinkaari 5E), Helsinki, FI-00014, Finland.
  • Urvas L; Drug Research Program, Division of Pharmaceutical Chemistry and Technology, Faculty of Pharmacy, P.O. Box 56 (Viikinkaari 5E), Helsinki, FI-00014, Finland.
  • Witos J; Department of Bioproducts and Biosystems, School of Chemical Engineering, Aalto University, Aalto, FI-00076, Finland.
  • Wiedmer SK; Department of Chemistry, Faculty of Science, Helsinki, FI-00014, Finland.
  • Jokinen VP; Department of Materials Science and Engineering, School of Chemical Engineering, Aalto University, Espoo, FI-02150, Finland.
  • Sikanen TM; Drug Research Program, Division of Pharmaceutical Chemistry and Technology, Faculty of Pharmacy, P.O. Box 56 (Viikinkaari 5E), Helsinki, FI-00014, Finland.
Adv Biosyst ; 3(1): e1800245, 2019 Jan.
Article en En | MEDLINE | ID: mdl-32627340
This work describes a new nanotechnology-based immobilization strategy for cytochrome P450s (CYPs), the major class of drug metabolizing enzymes. Immobilization of CYPs on solid supports provides a significant leap forward compared with soluble enzyme assays by enabling the implementation of through-flow microreactors for, for example, determination of time-dependent inhibition. Immobilization of the complex CYP membrane-protein system is however particularly challenging as the preservation of the authentic enzyme kinetic parameters requires the full complexity of the lipid environment. The developed strategy is based on the spontaneous fusion of biotinylated fusogenic liposomes with lipid bilayers to facilitate the gentle biotinylation of human liver microsomes that incorporate all main natural CYP isoforms. The same process is also feasible for the biotinylation of recombinant CYPs expressed in insect cells, same as any membrane-bound enzymes in principle. As a result, CYPs could be immobilized on streptavidin-functionalized surfaces, both those of commercial magnetic beads and customized microfluidic arrays, so that the enzyme kinetic parameters remain unchanged, unlike in previously reported immobilization approaches that often suffer from restricted substrate diffusion to the enzyme's active site and steric hindrances. The specificity and robustness of the functionalization method of customized microfluidic CYP assays are also carefully examined.
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Texto completo: 1 Base de datos: MEDLINE Idioma: En Revista: Adv Biosyst Año: 2019 Tipo del documento: Article País de afiliación: Finlandia

Texto completo: 1 Base de datos: MEDLINE Idioma: En Revista: Adv Biosyst Año: 2019 Tipo del documento: Article País de afiliación: Finlandia