Literature DB >> 18564874

Acid-labile core cross-linked micelles for pH-triggered release of antitumor drugs.

Yannie Chan1, To Wong, Frances Byrne, Maria Kavallaris, Volga Bulmus.   

Abstract

Micelles of a model amphiphilic block copolymer, poly(hydroxyethyl acrylate)-block-poly(n-butyl acrylate) (PHEA-b-PBA), synthesized via the RAFT polymerization were cross-linked by copolymerization of a degradable cross-linker from the living RAFT-end groups of PBA chains, yielding a cross-linked core without affecting significantly the original micelle size. The cross-linker incorporation into the micelles was evidenced via physicochemical analysis of the copolymer unimers formed upon acidic cleavage of the cross-linked micelles. High doxorubicin loading capacities (60 wt %) were obtained. Hydrolysis of less than half of the cross-links in the core was found to be sufficient to release doxorubicin faster at acidic pH compared to neutral pH. The system represents the first example of core-cross-linked micelles that can be destabilized (potentially both above and below CMC) by the pH-dependent cleavage of the cross-links and the subsequent polarity change in the core to enable the release of hydrophobic drugs entrapped inside the micelle.

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Year:  2008        PMID: 18564874     DOI: 10.1021/bm800043n

Source DB:  PubMed          Journal:  Biomacromolecules        ISSN: 1525-7797            Impact factor:   6.988


  20 in total

1.  19F- and fluorescently labeled micelles as nanoscopic assemblies for chemotherapeutic delivery.

Authors:  Wenjun Du; Zhiqiang Xu; Andreas M Nyström; Ke Zhang; Jeffrey R Leonard; Karen L Wooley
Journal:  Bioconjug Chem       Date:  2008-12       Impact factor: 4.774

2.  Well-defined, reversible disulfide cross-linked micelles for on-demand paclitaxel delivery.

Authors:  Yuanpei Li; Kai Xiao; Juntao Luo; Wenwu Xiao; Joyce S Lee; Abby M Gonik; Jason Kato; Tiffany A Dong; Kit S Lam
Journal:  Biomaterials       Date:  2011-06-11       Impact factor: 12.479

3.  A Facile and Efficient Approach for the Production of Reversible Disulfide Cross-linked Micelles.

Authors:  Yuanpei Li; Gaurav Bharadwaj; Joyce S Lee
Journal:  J Vis Exp       Date:  2016-12-23       Impact factor: 1.355

4.  Simulating the co-encapsulation of drugs in a "smart" core-shell-shell polymer nanoparticle.

Authors:  Gavin A Buxton
Journal:  Eur Phys J E Soft Matter       Date:  2014-03-18       Impact factor: 1.890

Review 5.  Reversibly crosslinked nanocarriers for on-demand drug delivery in cancer treatment.

Authors:  Yu Shao; Wenzhe Huang; Changying Shi; Sean T Atkinson; Juntao Luo
Journal:  Ther Deliv       Date:  2012-12

6.  Redox-Responsive, Core Cross-Linked Polyester Micelles.

Authors:  Zhonghai Zhang; Lichen Yin; Chunlai Tu; Ziyuan Song; Yanfeng Zhang; Yunxiang Xu; Rong Tong; Qin Zhou; Jie Ren; Jianjun Cheng
Journal:  ACS Macro Lett       Date:  2012-12-24       Impact factor: 6.903

Review 7.  Stimuli-responsive cross-linked micelles for on-demand drug delivery against cancers.

Authors:  Yuanpei Li; Kai Xiao; Wei Zhu; Wenbin Deng; Kit S Lam
Journal:  Adv Drug Deliv Rev       Date:  2013-09-21       Impact factor: 15.470

Review 8.  Exploiting nanotechnology to overcome tumor drug resistance: Challenges and opportunities.

Authors:  Ameya R Kirtane; Stephen M Kalscheuer; Jayanth Panyam
Journal:  Adv Drug Deliv Rev       Date:  2013-09-10       Impact factor: 15.470

9.  Spectral modeling for accelerated pH spectroscopy using EPR.

Authors:  R Ahmad; L C Potter; V V Khramtsov
Journal:  J Magn Reson       Date:  2012-03-17       Impact factor: 2.229

10.  Folate Receptor-Targeted Polymeric Micellar Nanocarriers for Delivery of Orlistat as a Repurposed Drug against Triple-Negative Breast Cancer.

Authors:  Ramasamy Paulmurugan; Rohith Bhethanabotla; Kaushik Mishra; Rammohan Devulapally; Kira Foygel; Thillai V Sekar; Jeyarama S Ananta; Tarik F Massoud; Abraham Joy
Journal:  Mol Cancer Ther       Date:  2015-11-09       Impact factor: 6.261

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