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Assessing the In Vivo Biocompatibility of Molecularly Imprinted Polymer Nanoparticles

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posted on 2023-05-26, 15:59 authored by Samr Kassem, Stanislav S Piletsky, Hasan Yesilkaya, Ozcan Gazioglu, Medhanie Habtom, Francesco Canfarotta, Elena Piletska, Alan C Spivey, Eric O Aboagye, Sergey A Piletsky
Molecularly imprinted polymer nanoparticles (nanoMIPs) are high affinity synthetic receptors which show promise as imaging and therapeutic agents. Comprehensive analysis of the in vivo behaviour of nanoMIPs must be performed before they can be considered for clinical applications. This work reports the solid-phase synthesis of nanoMIPs and an investigation of their biodistribution, clearance and cytotoxicity in a rat model following both intravenous and oral administration. These nanoMIPs were found in each harvested tissue type, including brain tissue, implying their ability to cross the blood–brain barrier. The nanoMIPs were cleared from the body via both faeces and urine. Furthermore, we describe an immunogenicity study in mice, demonstrating that nanoMIPs specific for a cell surface protein showed moderate adjuvant properties, whilst those imprinted for a scrambled peptide showed no such behaviour. Given their ability to access all tissue types and their relatively low cytotoxicity, these results pave the way for in vivo applications of nanoMIPs.

Funding

This research was funded by the EPSRC grant number 2133561, the MRC grant number 2136145, the NIH grants R01 AI139077-01A1 and R01 AI135060-01A1, and the Imperial President’s PhD Scholarship.

History

Citation

Kassem, S.; Piletsky, S.S.; Yesilkaya, H.; Gazioglu, O.; Habtom, M.; Canfarotta, F.; Piletska, E.; Spivey, A.C.; Aboagye, E.O.; Piletsky, S.A. Assessing the In Vivo Biocompatibility of Molecularly Imprinted Polymer Nanoparticles. Polymers 2022, 14, 4582. https:// doi.org/10.3390/polym14214582

Author affiliation

School of Chemistry

Version

  • VoR (Version of Record)

Published in

Polymers

Volume

14

Pagination

4582

Publisher

MDPI AG

eissn

2073-4360

Acceptance date

2022-10-26

Copyright date

2022

Available date

2023-05-26

Language

en

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