Biomimetic delivery of signals for bone tissue engineering

Abstract

Bone tissue engineering is an exciting approach to directly repair bone defects or engineer bone tissue for transplantation. Biomaterials play a pivotal role in providing a template and extracellular environment to support regenerative cells and promote tissue regeneration. A variety of signaling cues have been identified to regulate cellular activity, tissue development, and the healing process. Numerous studies and trials have shown the promise of tissue engineering, but successful translations of bone tissue engineering research into clinical applications have been limited, due in part to a lack of optimal delivery systems for these signals. Biomedical engineers are therefore highly motivated to develop biomimetic drug delivery systems, which benefit from mimicking signaling molecule release or presentation by the native extracellular matrix during development or the natural healing process. Engineered biomimetic drug delivery systems aim to provide control over the location, timing, and release kinetics of the signal molecules according to the drug’s physiochemical properties and specific biological mechanisms. This article reviews biomimetic strategies in signaling delivery for bone tissue engineering, with a focus on delivery systems rather than specific molecules. Both fundamental considerations and specific design strategies are discussed with examples of recent research progress, demonstrating the significance and potential of biomimetic delivery systems for bone tissue engineering.

Document Details

Document Type
Pub Defense Publication
Publication Date
Aug 29, 2018
Source ID
10.1038/s41413-018-0025-8

Entities

People

  • Laura Saunders
  • Ming Dang
  • Peter X Ma
  • Xufeng Niu
  • Yubo Fan

Organizations

  • National Center for Advancing Translational Sciences
  • National Heart, Lung, and Blood Institute
  • National Institute of Dental and Craniofacial Research
  • United States Army Medical Research and Development Command

Tags

Readers

  • Immunology and Pathology
  • Nanocomposite Materials Science
  • Systems Analysis and Design

Technology Areas

  • Biotechnology
  • Biotechnology - Cancer Biotech