AI Article Synopsis

  • Microfibers are gaining attention for their potential in developing flexible tissue models for biomedical applications, including 3D cell culture and clinical treatments.
  • The effectiveness of these materials relies on their ability to replicate natural tissue characteristics, such as structure, mechanical properties, and cell behavior.
  • The paper discusses various fiber fabrication methods, polymers used in biomedicine, and techniques for altering fiber properties, showcasing microfibers as adaptable tools for creating specific environments for cell growth.

Article Abstract

Microfibers have received much attention due to their promise for creating flexible and highly relevant tissue models for use in biomedical applications such as 3D cell culture, tissue modeling, and clinical treatments. A generated tissue or implanted material should mimic the natural microenvironment in terms of structural and mechanical properties as well as cell adhesion, differentiation, and growth rate. Therefore, the mechanical and biological properties of the fibers are of importance. This paper briefly introduces common fiber fabrication approaches, provides examples of polymers used in biomedical applications, and then reviews the methods applied to modify the mechanical and biological properties of fibers fabricated using different approaches for creating a highly controlled microenvironment for cell culturing. It is shown that microfibers are a highly tunable and versatile tool with great promise for creating 3D cell cultures with specific properties.

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Source
http://dx.doi.org/10.1002/mabi.201700279DOI Listing

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