4.6 Article

Lipase as a Chiral Selector Immobilised on Carboxylated Single-Walled Carbon Nanotubes and Encapsulated in the Organic Polymer Monolithic Capillary for Nano-High Performance Liquid Chromatography Enantioseparation of Racemic Pharmaceuticals

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MOLECULES
卷 28, 期 18, 页码 -

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MDPI
DOI: 10.3390/molecules28186663

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lipase; carbon nanotubes; monolith; enantioseparation; encapsulation; immobilisation; nano-HPLC; resolution

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In this study, lipase was immobilized on single-walled carbon nanotubes (SWCNTs) for use as an enantioselector in capillary monolithic columns for chiral separation of pharmaceuticals. The columns were prepared by encapsulating functionalized SWCNTs within an organic monolithic polymer and immobilizing lipase over the resulting monolith. The developed c-SWCNT-lipase-based polymeric monolithic capillaries showed promising potential for separating pharmaceutical enantiomers using nano-HPLC.
Herein, we report the preparation of lipase immobilised on single-walled carbon nanotubes (SWCNTs) as an enantioselector for capillary monolithic columns and their application in the chiral separation of racemic pharmaceuticals. The columns were prepared through the encapsulation of functionalised SWCNTs (c-SWCNTs) within an organic monolithic polymer, followed by the immobilisation of lipase over the obtained monolith, over a three-day (L1) and five-day (L2) period. The prepared columns were tested for the enantioselective nano-HPLC separation of 50 racemic drugs. A suitable resolution was achieved for 25 drugs using nano-RP-HPLC conditions for both the L1 and L2 capillaries, while no specific resolution was detected under normal-phase HPLC conditions. The developed c-SWCNT-lipase-based polymeric monolithic capillaries are a promising expansion for separating pharmaceutical enantiomers' using nano-HPLC.

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