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Bioreactor Controls-III01:22

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Strain improvement is a foundational strategy in industrial microbiology aimed at maximizing microbial productivity, particularly because natural isolates typically yield commercially valuable products in very low concentrations. Although optimizing the culture medium and environmental conditions can improve yields, these adjustments are inherently limited by the organism’s genetic potential. As a result, the focus shifts toward genetic modifications to enhance biosynthetic capacity. The...

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Strategies for Constructing Tissue-Engineered Fat for Soft Tissue Regeneration.

Jing Zhao1,2, Feng Lu3, Ziqing Dong4

  • 1Department of Plastic Surgery, Nanfang Hospital, Southern Medical University, 1838 Guangzhou North Road, Guangzhou, 510515, Guangdong, China.

Tissue Engineering and Regenerative Medicine
|November 30, 2023
PubMed
Summary

Adipose tissue engineering (ATE) offers solutions for soft tissue defects. Current strategies, including scaffold-based, scaffold-free, and synergistic approaches, aim for better tissue reconstruction and functional recovery.

Keywords:
ADSCsAdipose tissue engineeringAdipose tissue-derived stem cellsMicroenvironmentReconstructionScaffoldScaffold-free

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Area of Science:

  • Regenerative Medicine
  • Biomaterials Science
  • Plastic and Reconstructive Surgery

Background:

  • Soft tissue defects from inflammation, tumors, or trauma present significant surgical challenges.
  • Adipose tissue engineering (ATE) is a promising field for addressing these reconstructive needs.
  • Developing effective strategies for soft tissue reconstruction is crucial in modern surgery.

Purpose of the Study:

  • To review current adipose tissue engineering (ATE) strategies for soft tissue reconstruction.
  • To introduce potential construction methods applicable to ATE.
  • To provide an overview of the advancements and challenges in the field of ATE.

Main Methods:

  • Review of scaffold-based adipose tissue engineering strategies.
  • Review of scaffold-free adipose tissue engineering strategies.
  • Exploration of synergistic tissue engineering approaches combining scaffold-based and scaffold-free methods.

Main Results:

  • Scaffold-based and scaffold-free strategies are the primary methods in ATE.
  • Both established strategies have demonstrated clinical efficacy but also present limitations.
  • A synergistic tissue engineering strategy emerges, integrating the benefits of both scaffold-based and scaffold-free approaches.

Conclusions:

  • Future goals in ATE include personalized construction of engineered fat grafts.
  • Ensuring the stable survival of reconstructed adipose tissues is a key objective.
  • Achieving functional recovery of organs through tissue-engineered fat is a critical future aim.