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Biodegradable Hybrid Stomatocyte Nanomotors for Drug Delivery.


ABSTRACT: We report the self-assembly of a biodegradable platinum nanoparticle-loaded stomatocyte nanomotor containing both PEG-b-PCL and PEG-b-PS as a potential candidate for anticancer drug delivery. Well-defined stomatocyte structures could be formed even after incorporation of 50% PEG-b-PCL polymer. Demixing of the two polymers was expected at high percentage of semicrystalline poly(?-caprolactone) (PCL), resulting in PCL domain formation onto the membrane due to different properties of two polymers. The biodegradable motor system was further shown to move directionally with speeds up to 39 ?m/s by converting chemical fuel, hydrogen peroxide, into mechanical motion as well as rapidly delivering the drug to the targeted cancer cell. Uptake by cancer cells and fast doxorubicin drug release was demonstrated during the degradation of the motor system. Such biodegradable nanomotors provide a convenient and efficient platform for the delivery and controlled release of therapeutic drugs.

SUBMITTER: Tu Y 

PROVIDER: S-EPMC5348104 | biostudies-literature | 2017 Feb

REPOSITORIES: biostudies-literature

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Biodegradable Hybrid Stomatocyte Nanomotors for Drug Delivery.

Tu Yingfeng Y   Peng Fei F   André Alain A M AA   Men Yongjun Y   Srinivas Mangala M   Wilson Daniela A DA  

ACS nano 20170214 2


We report the self-assembly of a biodegradable platinum nanoparticle-loaded stomatocyte nanomotor containing both PEG-b-PCL and PEG-b-PS as a potential candidate for anticancer drug delivery. Well-defined stomatocyte structures could be formed even after incorporation of 50% PEG-b-PCL polymer. Demixing of the two polymers was expected at high percentage of semicrystalline poly(ε-caprolactone) (PCL), resulting in PCL domain formation onto the membrane due to different properties of two polymers.  ...[more]

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