4.8 Article

Temporal pressure enhanced topical drug delivery through micropore formation

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SCIENCE ADVANCES
卷 6, 期 22, 页码 -

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AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/sciadv.aaz6919

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资金

  1. Singapore Agency for Science, Technology and Research (A*STAR) Science and Engineering Research Council Additive Manufacturing for Biological Materials (AMBM) [A18A8b0059]
  2. City University of Hong Kong [9610472]
  3. A*STAR under its Industry Alignment Fund-Pre-Positioning Programme (IAF-PP)
  4. Wound Care Innovation for the Tropics Programme, Singapore (WCIT) [H18/01/a0/0I9, H17/01/a0/0C9]
  5. Skin Research Institute of Singapore [H17/01/a0/004]
  6. National Medical Research Council Singapore Large Collaborative Grant DYNAMO [NMRC/OFLCG/001/2017]
  7. National Medical Research Council Singapore Large Collaborative Grant TAAP [NMRC/OFLCG/004/2018]

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Transdermal drug delivery uses chemical, physical, or biochemical enhancers to cross the skin barrier. However, existing platforms require high doses of chemical enhancers or sophisticated equipment, use fragile biomolecules, or are limited to a certain type of drug. Here, we report an innovative methodology based on temporal pressure to enhance the penetration of all kinds of drugs, from small molecules to proteins and nanoparticles (up to 500 nm). The creation of micropores (similar to 3 mu m(2)) on the epidermal layer through a temporal pressure treatment results in the elevated expression of gap junctions, and reduced expression of occludin tight junctions. A 1 min treatment of 0.28-MPa allows nanoparticles (up to 500 nm) and macromolecules (up to 20 kDa) to reach a depth of 430-mu m into the dermal layer. Using, as an example, the delivery of insulin through topical application after the pressure treatment yields upto 80% drop in blood glucose in diabetic mice.

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