4.5 Review

Strategies for sustained drug release from electrospun multi-layer nanostructures

出版社

WILEY
DOI: 10.1002/wnan.1772

关键词

electrospinning; multi-chamber nanostructure; nanofiber; strategy; sustained drug release

资金

  1. Natural Science Foundation of Shanghai [20ZR1439000]
  2. University of Shanghai for Science Technology [2020201]
  3. Navy Military Medical University [2020201]

向作者/读者索取更多资源

This review discusses the history and trends of the combination of electrospinning technology and sustained drug release (SDR), introducing 15 strategies for providing SDR profiles through multi-chamber core-shell nanostructures. Electrospun multi-chamber nanostructures are considered to be helpful in promoting the development of sustained drug release formulations.
Among different kinds of modified release profiles, sustained drug release (SDR) has received the most attention due to its capability to provide a safe, efficacious, and convenient drug delivery effect. Electrospun nanofibers have shown their popularity in this interdisciplinary field, as demonstrated by the first reports about SDRs on drug delivery applications of blended nanofibers and core-shell nanofibers. Along with the evolution of electrospinning from a single-fluid blending process to coaxial, tri-axial, side-by-side, and other multi-fluid processes, more multi-chamber nanostructures can be created through a single-step straight forward manner. These multi-chamber nanostructures can act as a powerful platform to support a wide variety of new strategies for the development of novel SDR nanomaterials. Thus, this review describes a combination history of electrospinning and SDR and its further development trend. After a summary of the presently popular multi-chamber core-shell nanostructures, 15 strategies for furnishing SDR profiles are categorized and exemplified. The perspectives of electrospun multi-chamber nanostructures for further promoting SDR are narrated. This article is categorized under: Therapeutic Approaches and Drug Discovery > Emerging Technologies

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