Issue 8, 2012

Synthesis and characterization of novel dual-responsive nanogels and their application as drug delivery systems

Abstract

In this study, a temperature/pH dual-response nanogel based on NIPAm, MAA, and PEGMA was synthesized via emulsion polymerization and characterized by 1H-NMR, FT-IR, TEM and DLS. By introducing a novel initiator, through which PEG-AIBN-PEG was synthesized, it was revealed that the PEG segments from PEG-AIBN-PEG with a dosage of initiator had a significant influence over the macro-state and stability of the nanogels. In order to optimize the feeding prescription for better application as a drug delivery system, the effect of the co-monomer contents on the response to stimuli (temperature and pH value) and cytotoxicity of the nanogels has been studied in detail. The results demonstrated that the responsiveness, reversibility and volume phase transition critical value of the nanogels could be controlled by adjusting the feeding ratio of the co-monomers in the synthesis process. MTT assay results revealed that nanogels with appropriate compositions showed good biocompatibility and relatively low toxicity. Most importantly, by studying the drug loading behavior, it was found that the dimensions of the drug molecules had a considerable influence on the drug loading efficiency and loading capacity of the nanogels, and that the mechanism by which drug molecule sizes influence the drug loading behavior of nanogels needs further investigation. The results indicated that such PNMP nanogels might have potential applications in drug delivery and other medical applications, but that the drug loading mechanism must be further developed.

Graphical abstract: Synthesis and characterization of novel dual-responsive nanogels and their application as drug delivery systems

Article information

Article type
Paper
Submitted
18 Jan 2012
Accepted
17 Feb 2012
First published
21 Feb 2012

Nanoscale, 2012,4, 2694-2704

Synthesis and characterization of novel dual-responsive nanogels and their application as drug delivery systems

J. Peng, T. Qi, J. Liao, M. Fan, F. Luo, H. Li and Z. Qian, Nanoscale, 2012, 4, 2694 DOI: 10.1039/C2NR30147D

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