Tunable polymeric micelles for taxane and corticosteroid co-delivery

Publication date

2023-11-14

Authors

Shalmani, Armin Azadkhah
Wang, Alec
Ahmed, Zaheer
Sheybanifard, MaryamISNI 0000000527221732
Mihyar, Rahaf
Buhl, Eva Miriam
Pohl, Michael
Hennink, Wim EISNI 0000000390382745
Kiessling, Fabian
Metselaar, JosbertISNI 0000000394733565

Editors

Advisors

Supervisors

Document Type

Article
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License

cc_by

Abstract

Nanomedicine holds promise for potentiating drug combination therapies. Increasing (pre)clinical evidence is available exemplifying the value of co-formulating and co-delivering different drugs in modular nanocarriers. Taxanes like paclitaxel (PTX) are widely used anticancer agents, and commonly combined with corticosteroids like dexamethasone (DEX), which besides for suppressing inflammation and infusion reactions, are increasingly explored for modulating the tumor microenvironment towards enhanced nano-chemotherapy delivery and efficacy. We here set out to develop a size- and release rate-tunable polymeric micelle platform for co-delivery of taxanes and corticosteroids. We synthesized amphiphilic mPEG-b-p(HPMAm-Bz) block copolymers of various molecular weights and used them to prepare PTX and DEX single- and double-loaded micelles of different sizes. Both drugs could be efficiently co-encapsulated, and systematic comparison between single- and co-loaded formulations demonstrated comparable physicochemical properties, encapsulation efficiencies, and release profiles. Larger micelles showed slower drug release, and DEX release was always faster than PTX. The versatility of the platform was exemplified by co-encapsulating two additional taxane-corticosteroid combinations, demonstrating that drug hydrophobicity and molecular weight are key properties that strongly contribute to drug retention in micelles. Altogether, our work shows that mPEG-b-p(HPMAm-Bz) polymeric micelles serve as a tunable and versatile nanoparticle platform for controlled co-delivery of taxanes and corticosteroids, thereby paving the way for using these micelles as a modular carrier for multidrug nanomedicine. Graphical abstract: [Figure not available: see fulltext.]

Keywords

Co-loading, Corticosteroid, Drug combination, Nanomedicine, Polymeric micelles, Taxane, Pharmaceutical Science

Citation

Shalmani, A A, Wang, A, Ahmed, Z, Sheybanifard, M, Mihyar, R, Buhl, E M, Pohl, M, Hennink, W E, Kiessling, F, Metselaar, J M, Shi, Y, Lammers, T & Peña, Q 2023, 'Tunable polymeric micelles for taxane and corticosteroid co-delivery', Drug Delivery and Translational Research. https://doi.org/10.1007/s13346-023-01465-x