4.7 Article

Evolution of drug-eluting biomedical implants for sustained drug delivery

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ELSEVIER
DOI: 10.1016/j.ejpb.2020.12.005

关键词

Drug delivery; Biomedical implants; Drug-eluting biomedical implant; Controlled drug release; Sustained drug release; Drug eluting biomaterials; Biomedical implant applications

资金

  1. Alfred P. Sloan Foundation
  2. University of Iowa Graduate College
  3. American Association for University Women
  4. Lyle and Sharon Bighley Chair of Pharmaceutical Sciences
  5. National Cancer Institute at the National Institutes of Health [P30 CA086862]
  6. Assistant Secretary of Defense for Health Affairs [W81XWH1810658]

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This article provides an overview of the history, types, and potential biomedical applications of implantable drug delivery systems (IDDSs). While there are still obstacles to overcome, emerging new technologies are driving the continuous development and improvement of IDDSs.
In the field of drug delivery, the most commonly used treatments have traditionally been systemically delivered using oral or intravenous administration. The problems associated with this type of delivery is that the drug concentration is controlled by first pass metabolism, and therefore may not always remain within the therapeutic window. Implantable drug delivery systems (IDDSs) are an excellent alternative to traditional delivery because they offer the ability to precisely control the drug release, deliver drugs locally to the target tissue, and avoid the toxic side effects often experienced with systemic administration. Since the creation of the first FDA-approved IDDS in 1990, there has been a surge in research devoted to fabricating and testing novel IDDS formulations. The versatility of these systems is evident when looking at the various biomedical applications that utilize IDDSs. This review provides an overview of the history of IDDSs, with examples of the different types of IDDS formulations, as well as looking at current and future biomedical applications for such systems. Though there are still obstacles that need to be overcome, ever-emerging new technologies are making the manufacturing of IDDSs a rewarding therapeutic endeavor with potential for further improvements.

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