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Systematic Design and Study of Star-like Polymeric Prodrug Unimolecular Micelles β-CD-P[CL-co-(ACL-g-DOX)-SS-MPEG](21) by DPD Simulations

[Image: see text] Unimolecular micelles composed of a single polymeric molecule have recently attracted significant attention in anti-cancer drug delivery due to their high thermodynamic stability and small particle sizes. Applying the prodrug strategy to unimolecular micelles may provide superior n...

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Autores principales: Yang, Zexiong, Mai, Haiyan, Wang, Delin, He, Teng, Chen, Fang, Yang, Chufen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9910076/
https://www.ncbi.nlm.nih.gov/pubmed/36777574
http://dx.doi.org/10.1021/acsomega.2c07371
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author Yang, Zexiong
Mai, Haiyan
Wang, Delin
He, Teng
Chen, Fang
Yang, Chufen
author_facet Yang, Zexiong
Mai, Haiyan
Wang, Delin
He, Teng
Chen, Fang
Yang, Chufen
author_sort Yang, Zexiong
collection PubMed
description [Image: see text] Unimolecular micelles composed of a single polymeric molecule have recently attracted significant attention in anti-cancer drug delivery due to their high thermodynamic stability and small particle sizes. Applying the prodrug strategy to unimolecular micelles may provide superior nano-drug carriers with simultaneous high stability, low drug leakage, and well-drug loading capacity. However, the formation mechanism of the unimolecular prodrug micelles, the superiority of the prodrug strategy, as well as the prodrug controlled release mechanism were scantily understood at the mesoscopic scale. In this work, dissipative particle dynamics mesoscopic simulations were employed to investigate the self-assembly behavior, formation conditions, drug distribution regularities, and the prodrug release process of the star-like polymeric prodrug unimolecular micelles formed by β-CD-P[CL-co-(ACL-g-DOX)-SS-MPEG](21). A special bond-breaking script was used to accomplish the bond-breaking simulation of the grafted DOX bonds and the disulfide bonds. Results showed that to form well monodispersed and superior DOX-loaded unimolecular micelles, the polymer concentration should be well controlled at low volume fractions (≤10.59%), and the detailed molecular structure of the polymer was suggested as β-cyclodextrin-P[caprolactone-co-(amino caprolactone-g-doxorubicin)-disulfide-methyl polyethylene glycol](21)) (β-CD-P[CL(30)-co-(ACL-g-DOX)(8)-SS-MPEG(49)](21)). By comparison with the DOX physically loaded micelles, it was found that the prodrug unimolecular micelles with DOX grafted on the polymer displayed no drug leakage and superior drug loading capacity. Simulations on the prodrug release process showed that the prodrug unimolecular micelles assembled by β-CD-P[CL(30)-co-(ACL-g-DOX)(8)-SS-MPEG(49)](21) would provide good dual pH/reduction-responsive DOX release performance.
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spelling pubmed-99100762023-02-10 Systematic Design and Study of Star-like Polymeric Prodrug Unimolecular Micelles β-CD-P[CL-co-(ACL-g-DOX)-SS-MPEG](21) by DPD Simulations Yang, Zexiong Mai, Haiyan Wang, Delin He, Teng Chen, Fang Yang, Chufen ACS Omega [Image: see text] Unimolecular micelles composed of a single polymeric molecule have recently attracted significant attention in anti-cancer drug delivery due to their high thermodynamic stability and small particle sizes. Applying the prodrug strategy to unimolecular micelles may provide superior nano-drug carriers with simultaneous high stability, low drug leakage, and well-drug loading capacity. However, the formation mechanism of the unimolecular prodrug micelles, the superiority of the prodrug strategy, as well as the prodrug controlled release mechanism were scantily understood at the mesoscopic scale. In this work, dissipative particle dynamics mesoscopic simulations were employed to investigate the self-assembly behavior, formation conditions, drug distribution regularities, and the prodrug release process of the star-like polymeric prodrug unimolecular micelles formed by β-CD-P[CL-co-(ACL-g-DOX)-SS-MPEG](21). A special bond-breaking script was used to accomplish the bond-breaking simulation of the grafted DOX bonds and the disulfide bonds. Results showed that to form well monodispersed and superior DOX-loaded unimolecular micelles, the polymer concentration should be well controlled at low volume fractions (≤10.59%), and the detailed molecular structure of the polymer was suggested as β-cyclodextrin-P[caprolactone-co-(amino caprolactone-g-doxorubicin)-disulfide-methyl polyethylene glycol](21)) (β-CD-P[CL(30)-co-(ACL-g-DOX)(8)-SS-MPEG(49)](21)). By comparison with the DOX physically loaded micelles, it was found that the prodrug unimolecular micelles with DOX grafted on the polymer displayed no drug leakage and superior drug loading capacity. Simulations on the prodrug release process showed that the prodrug unimolecular micelles assembled by β-CD-P[CL(30)-co-(ACL-g-DOX)(8)-SS-MPEG(49)](21) would provide good dual pH/reduction-responsive DOX release performance. American Chemical Society 2023-01-26 /pmc/articles/PMC9910076/ /pubmed/36777574 http://dx.doi.org/10.1021/acsomega.2c07371 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Yang, Zexiong
Mai, Haiyan
Wang, Delin
He, Teng
Chen, Fang
Yang, Chufen
Systematic Design and Study of Star-like Polymeric Prodrug Unimolecular Micelles β-CD-P[CL-co-(ACL-g-DOX)-SS-MPEG](21) by DPD Simulations
title Systematic Design and Study of Star-like Polymeric Prodrug Unimolecular Micelles β-CD-P[CL-co-(ACL-g-DOX)-SS-MPEG](21) by DPD Simulations
title_full Systematic Design and Study of Star-like Polymeric Prodrug Unimolecular Micelles β-CD-P[CL-co-(ACL-g-DOX)-SS-MPEG](21) by DPD Simulations
title_fullStr Systematic Design and Study of Star-like Polymeric Prodrug Unimolecular Micelles β-CD-P[CL-co-(ACL-g-DOX)-SS-MPEG](21) by DPD Simulations
title_full_unstemmed Systematic Design and Study of Star-like Polymeric Prodrug Unimolecular Micelles β-CD-P[CL-co-(ACL-g-DOX)-SS-MPEG](21) by DPD Simulations
title_short Systematic Design and Study of Star-like Polymeric Prodrug Unimolecular Micelles β-CD-P[CL-co-(ACL-g-DOX)-SS-MPEG](21) by DPD Simulations
title_sort systematic design and study of star-like polymeric prodrug unimolecular micelles β-cd-p[cl-co-(acl-g-dox)-ss-mpeg](21) by dpd simulations
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9910076/
https://www.ncbi.nlm.nih.gov/pubmed/36777574
http://dx.doi.org/10.1021/acsomega.2c07371
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