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July 31, 202527 citations

Smart and Biodegradable Polymers in Tissue Engineering and Interventional Devices: A Brief Review.

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RDRashid Dallaev

Key Points

  • Biodegradable and smart polymers are transforming tissue engineering and interventional devices.
  • Focus on shape-memory polymers and conductive polymers highlights advancements in functionality and application.
  • Key fabrication methods like electrospinning and 3D printing impact pore structure and device performance.
  • Emerging trends suggest that combining nanotechnology and personalized therapeutics will enhance clinical outcomes.

Abstract

Recent advancements in polymer science have catalyzed a transformative shift in biomedical engineering, particularly through the development of biodegradable and smart polymers. This review explores the evolution, functionality, and application of these materials in areas such as tissue scaffolding, cardiovascular occluders, and controlled drug delivery systems. Emphasis is placed on shape-memory polymers (SMPs), conductive polymers, and polymer-based composites that combine tunable degradation, mechanical strength, and bioactivity. The synergy between natural and synthetic polymers-augmented by nanotechnology and additive manufacturing-enables the creation of intelligent scaffolds and implantable devices tailored for specific clinical needs. Key fabrication methods, including electrospinning, freeze-drying, and emulsion-based techniques, are discussed in relation to pore structure and functionalization strategies. Finally, the review highlights emerging trends, including ionic doping, 3D printing, and multifunctional nanocarriers, outlining their roles in the future of regenerative medicine and personalized therapeutics.

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Cite This Study

Rashid Dallaev (2025) studied this question.

synapsesocial.com/papers/689a0c5fe6551bb0af8cf703https://doi.org/10.3390/polym17141976
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