Issue 11, 2015

Hydrolysable core crosslinked particles for receptor-mediated pH-sensitive anticancer drug delivery

Abstract

Biodegradable micelle systems with both extracellular stabilities and specific targeting properties are highly desirable for anti-cancer drug delivery. Here, we report a biodegradable and crosslinkable poly(propylene fumarate)-co-poly(lactide-co-glycolide)-co-poly(ethylene glycol) (PPF–PLGA–PEG) copolymer conjugated with folate (FA) molecules for receptor-mediated delivery of doxorubicin. Micelles with folate ligands on the surface and fumarate bonds within the core were self-assembled and crosslinked, which exhibited better stability against potential physiological conditions during and after drug administration. A pH sensitive drug release profile was observed showing robust release in an acidic environment due to the ester hydrolysis of PLGA (50 : 50). Furthermore, micelles with folate ligands on the surface showed strong targeting ability and therapeutic efficacy through receptor-mediated endocytosis, as evidenced by efficacious killing of cancer cells and fatal DNA damage. These results imply the promising potential of ligand-conjugated core crosslinked PPF–PLGA–PEG–FA micelles as carrier systems for targeted anti-cancer drug delivery.

Graphical abstract: Hydrolysable core crosslinked particles for receptor-mediated pH-sensitive anticancer drug delivery

Supplementary files

Article information

Article type
Paper
Submitted
03 Jun 2015
Accepted
02 Sep 2015
First published
03 Sep 2015

New J. Chem., 2015,39, 8840-8847

Author version available

Hydrolysable core crosslinked particles for receptor-mediated pH-sensitive anticancer drug delivery

X. Liu, A. Lee Miller II, B. E. Waletzki, T. K. Mamo, M. J. Yaszemski and L. Lu, New J. Chem., 2015, 39, 8840 DOI: 10.1039/C5NJ01404B

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