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Related Experiment Video

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Engineering 3D Cellularized Collagen Gels for Vascular Tissue Regeneration
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Tissue Engineered Constructs for Periodontal Regeneration: Current Status and Future Perspectives.

Cedryck Vaquette1,2,3, Sophia P Pilipchuk4,5, P Mark Bartold6

  • 1Queensland University of Technology (QUT), Brisbane, 4059, Australia.

Advanced Healthcare Materials
|August 28, 2018
PubMed
Summary

Periodontal tissue engineering aims to regenerate tissues lost to periodontitis. Advanced 3D multiphasic tissue engineering constructs (TECs) show promise for complete periodontal regeneration, addressing current treatment limitations.

Keywords:
additive manufacturingperiodontal regenerationscaffoldstissue engineering

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Area of Science:

  • Biomaterials Science
  • Regenerative Medicine
  • Periodontology

Background:

  • The periodontium supports teeth but is damaged by periodontitis, an inflammatory disease.
  • Current treatments manage inflammation but do not achieve complete periodontal regeneration.
  • Tissue engineering offers strategies to control wound healing for periodontal regeneration.

Purpose of the Study:

  • To review recent advancements in periodontal tissue engineering.
  • To critically analyze the potential and limitations of 3D multiphasic tissue engineering constructs (TECs).
  • To discuss future directions for clinical translation.

Main Methods:

  • Review of current literature on periodontal tissue engineering.
  • Focus on advanced 3D multiphasic tissue engineering constructs (TECs).
  • Analysis of regenerative potential and limitations of TECs.

Main Results:

  • 3D multiphasic TECs are a key focus in periodontal regeneration research.
  • Significant progress has been made, but challenges remain for predictable regeneration.
  • Future strategies include scaffold customization, enhanced bioactivity, fiber guidance, and chair-side solutions.

Conclusions:

  • Periodontal tissue engineering, particularly with 3D multiphasic TECs, holds significant potential for regeneration.
  • Addressing limitations and exploring future strategies are crucial for clinical translation.
  • Personalized scaffolds and enhanced bioactivity will drive future periodontal regeneration therapies.