91桃色

ISSN: 2155-952X

Journal of Biotechnology & Biomaterials
Open 91桃色

Our Group organises 3000+ Global Events every year across USA, Europe & Asia with support from 1000 more scientific Societies and Publishes 700+ Open 91桃色 Journals which contains over 50000 eminent personalities, reputed scientists as editorial board members.

Open 91桃色 Journals gaining more Readers and Citations
700 Journals and 15,000,000 Readers Each Journal is getting 25,000+ Readers

This Readership is 10 times more when compared to other Subscription Journals (Source: Google Analytics)

The Role of Synthetic Biology in Tailoring Biomaterial Properties for Tissue Engineering Applications

Jesubori L. Bankole*
Department of Biomedical Engineering, Bells University of Technology, Nigeria
*Corresponding Author: Jesubori L. Bankole, Department of Biomedical Engineering, Bells University of Technology, Nigeria, Email: jesubori.l.B.67@gmail.com

Received Date: Nov 05, 2024 / Published Date: Nov 29, 2024

Citation: Bankole JL (2024) The Role of Synthetic Biology in Tailoring Biomaterial Properties for Tissue Engineering Applications. J Biotechnol Biomater, 14: 420.

Copyright: © 2024 Bankole JL. This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.

 

Abstract

Synthetic biology has emerged as a transformative field, offering innovative strategies to design and engineer biomaterials with tailored properties for tissue engineering applications. By leveraging genetic programming, cellular machinery, and biomolecular engineering, synthetic biology enables precise control over the biochemical, mechanical, and structural attributes of biomaterials. This review highlights recent advancements in the integration of synthetic biology with biomaterial development, emphasizing applications such as scaffolds for tissue regeneration, bioactive materials for controlled cell signaling, and dynamic systems capable of adapting to physiological environments. Additionally, challenges and opportunities in this interdisciplinary domain are discussed, providing insights into future directions for creating next-generation biomaterials that closely mimic the complexity of native tissues

Citations : 3330

Indexed In
  • Index Copernicus
  • Google Scholar
  • Sherpa Romeo
  • Open J Gate
  • Genamics JournalSeek
  • Academic Keys
  • ResearchBible
  • China National Knowledge Infrastructure (CNKI)
  • 91桃色 to Global Online Research in Agriculture (AGORA)
  • Electronic Journals Library
  • RefSeek
  • Hamdard University
  • EBSCO A-Z
  • OCLC- WorldCat
  • SWB online catalog
  • Virtual Library of Biology (vifabio)
  • Publons
  • Geneva Foundation for Medical Education and Research
  • Euro Pub
  • ICMJE
Recommended Journals
Share This Page
International Conferences 2025-26
 
Meet Inspiring Speakers and Experts at our 3000+ Global

Conferences by Country

Medical & Clinical Conferences

Conferences By Subject

Top