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Degradation of Hybrid Drug Delivery Carriers with a Mineral Core and a Protein–Tannin Shell under Proteolytic Hydrolases

Hybrid carriers with the mineral CaCO(3)/Fe(3)O(4) core and the protein–tannin shell are attractive for drug delivery applications due to reliable coupling of anticancer drugs with protein–tannin complex and the possibility of remote control over drug localization and delivery by the external magnet...

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Autores principales: Demina, Polina A., Saveleva, Mariia S., Anisimov, Roman A., Prikhozhdenko, Ekaterina S., Voronin, Denis V., Abalymov, Anatolii A., Cherednichenko, Kirill A., Timaeva, Olesya I., Lomova, Maria V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9149959/
https://www.ncbi.nlm.nih.gov/pubmed/35645188
http://dx.doi.org/10.3390/biomimetics7020061
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author Demina, Polina A.
Saveleva, Mariia S.
Anisimov, Roman A.
Prikhozhdenko, Ekaterina S.
Voronin, Denis V.
Abalymov, Anatolii A.
Cherednichenko, Kirill A.
Timaeva, Olesya I.
Lomova, Maria V.
author_facet Demina, Polina A.
Saveleva, Mariia S.
Anisimov, Roman A.
Prikhozhdenko, Ekaterina S.
Voronin, Denis V.
Abalymov, Anatolii A.
Cherednichenko, Kirill A.
Timaeva, Olesya I.
Lomova, Maria V.
author_sort Demina, Polina A.
collection PubMed
description Hybrid carriers with the mineral CaCO(3)/Fe(3)O(4) core and the protein–tannin shell are attractive for drug delivery applications due to reliable coupling of anticancer drugs with protein–tannin complex and the possibility of remote control over drug localization and delivery by the external magnetic field. This study aims to elucidate the mechanisms of drug release via enzymatic degradation of a protein–tannin carrier shell triggered by proteolytic hydrolases trypsin and pepsin under physiological conditions. To do this, the carriers were incubated with the enzyme solutions in special buffers to maintain the enzyme activity. The time-lapse spectrophotometric and electron microscopy measurements were carried out to evaluate the degradation of the carriers. It was established that the protein–tannin complex demonstrates the different degradation behavior depending on the enzyme type and buffer medium. The incubation in trypsin solution mostly resulted in the protein shell degradation. The incubation in pepsin solution did not affect the protein component; however, the citric buffer stimulates the degradation of the mineral core. The presented results allow for predicting the degradation pathways of the carriers including the release profile of the loaded cargo under physiological conditions. The viability of 4T1 breast cancer cells with mineral magnetic carriers with protein–tannin shells was investigated, and their movement in the fields of action of the permanent magnet was shown.
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spelling pubmed-91499592022-05-31 Degradation of Hybrid Drug Delivery Carriers with a Mineral Core and a Protein–Tannin Shell under Proteolytic Hydrolases Demina, Polina A. Saveleva, Mariia S. Anisimov, Roman A. Prikhozhdenko, Ekaterina S. Voronin, Denis V. Abalymov, Anatolii A. Cherednichenko, Kirill A. Timaeva, Olesya I. Lomova, Maria V. Biomimetics (Basel) Article Hybrid carriers with the mineral CaCO(3)/Fe(3)O(4) core and the protein–tannin shell are attractive for drug delivery applications due to reliable coupling of anticancer drugs with protein–tannin complex and the possibility of remote control over drug localization and delivery by the external magnetic field. This study aims to elucidate the mechanisms of drug release via enzymatic degradation of a protein–tannin carrier shell triggered by proteolytic hydrolases trypsin and pepsin under physiological conditions. To do this, the carriers were incubated with the enzyme solutions in special buffers to maintain the enzyme activity. The time-lapse spectrophotometric and electron microscopy measurements were carried out to evaluate the degradation of the carriers. It was established that the protein–tannin complex demonstrates the different degradation behavior depending on the enzyme type and buffer medium. The incubation in trypsin solution mostly resulted in the protein shell degradation. The incubation in pepsin solution did not affect the protein component; however, the citric buffer stimulates the degradation of the mineral core. The presented results allow for predicting the degradation pathways of the carriers including the release profile of the loaded cargo under physiological conditions. The viability of 4T1 breast cancer cells with mineral magnetic carriers with protein–tannin shells was investigated, and their movement in the fields of action of the permanent magnet was shown. MDPI 2022-05-12 /pmc/articles/PMC9149959/ /pubmed/35645188 http://dx.doi.org/10.3390/biomimetics7020061 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Demina, Polina A.
Saveleva, Mariia S.
Anisimov, Roman A.
Prikhozhdenko, Ekaterina S.
Voronin, Denis V.
Abalymov, Anatolii A.
Cherednichenko, Kirill A.
Timaeva, Olesya I.
Lomova, Maria V.
Degradation of Hybrid Drug Delivery Carriers with a Mineral Core and a Protein–Tannin Shell under Proteolytic Hydrolases
title Degradation of Hybrid Drug Delivery Carriers with a Mineral Core and a Protein–Tannin Shell under Proteolytic Hydrolases
title_full Degradation of Hybrid Drug Delivery Carriers with a Mineral Core and a Protein–Tannin Shell under Proteolytic Hydrolases
title_fullStr Degradation of Hybrid Drug Delivery Carriers with a Mineral Core and a Protein–Tannin Shell under Proteolytic Hydrolases
title_full_unstemmed Degradation of Hybrid Drug Delivery Carriers with a Mineral Core and a Protein–Tannin Shell under Proteolytic Hydrolases
title_short Degradation of Hybrid Drug Delivery Carriers with a Mineral Core and a Protein–Tannin Shell under Proteolytic Hydrolases
title_sort degradation of hybrid drug delivery carriers with a mineral core and a protein–tannin shell under proteolytic hydrolases
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9149959/
https://www.ncbi.nlm.nih.gov/pubmed/35645188
http://dx.doi.org/10.3390/biomimetics7020061
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