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Dual Stimuli-Triggered Nanogels in Response to Temperature and pH Changes for Controlled Drug Release.

Yun Kyoung KimEun-Joong KimJae Hyun LimHeui Kyoung ChoWoo Jin HongHyang Hwa JeonBong Geun Chung
Published in: Nanoscale research letters (2019)
Poly-N-isopropyl acrylamide (PNIPAM) nanogels have been modified with different acrylic acid (AAc) contents for the efficient control of lower critical solution temperature (LCST). In this study, PNIPAM-co-AAc nanogels nanogels showed two volume phase transitions in comparison with PNIPAM. The transition temperature of PNIPAM nanogels was increased with AAc contents. The controlled drug release performance of PNIPAM-co-AAc nanogels loaded with β-lapachone was attributed to the AAc content ratio and was efficiently triggered in response to temperature and pH. Moreover, a colorimetric cell proliferation assay and direct fluorescence-based live/dead staining were used to confirm the concurrence on drug release profiles. Finally, PNIPAM-co-AAc20 showed a relatively low level of drug release in the range of acidic to neutral pH at body temperature, while maximizing drug release at basic pH. Therefore, we demonstrated that the PNIPAM-based nanogel with the temperature- and pH-responsive features could be a promising nanocarrier for potential intestine-specific drug delivery.
Keyphrases
  • drug release
  • drug delivery
  • cancer therapy
  • cell proliferation
  • gold nanoparticles
  • high throughput
  • hydrogen peroxide
  • ionic liquid
  • sensitive detection
  • living cells
  • fluorescent probe
  • quantum dots
  • pi k akt