Abalone-Inspired Adhesive and Photo-Responsive Microparticle Delivery Systems for Periodontal Drug Therapy.
Chuanhui SongDanqing HuangCheng ZhaoYuan Jin ZhaoPublished in: Advanced science (Weinheim, Baden-Wurttemberg, Germany) (2022)
Antibiotics provide promising strategies for treating periodontitis, while their delivery and controllable release with desired oral retention remain challenging. Here, inspired by the unique suction-cup structures of abalones, a novel adhesive and photo-responsive microparticle (MP) delivery system is developed to treat periodontitis through microfluidic electrospray technology. Such MPs are generated by quickly ionic cross-linking of sodium alginate together with photo-curing of poly(ethylene glycol) diacrylate of the distorted microfluidic droplets during their high-speed dropping into calcium chloride solution. Attributing to their unique concave structures, the abalone-inspired MPs exhibit desired underwater adhesion ability and stability under running water. In addition, due to the loading of antibiotics minocycline hydrochloride and near-infrared (NIR)-responsive black phosphorus during their fabrication, the resultant MPs can not only eradicate bacteria directly, but also realize a controllable and effective drug release upon NIR irradiation. Based on these features, it is demonstrated from in vivo periodontitis that the abalone-inspired MPs are firmly adhesive and can controlled-release drugs on the tooth, and thus have outstanding antibacterial efficacy against Porphyromonas gingivalis. These results indicate the particular values of the abalone-inspired MPs for oral-related disease treatment.
Keyphrases
- drug release
- high speed
- cancer therapy
- drug delivery
- high resolution
- single cell
- circulating tumor cells
- photodynamic therapy
- high throughput
- mass spectrometry
- atomic force microscopy
- stem cells
- fluorescence imaging
- emergency department
- staphylococcus aureus
- high intensity
- drug induced
- ionic liquid
- anti inflammatory
- label free
- solid state
- essential oil
- visible light