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October 31, 2025Polymers2 citationsOpen Access

Polymeric Materials in Biomedical Engineering: A Bibliometric Mapping

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CVCristina VeresMTMaria TănaseDSDan Alexandru Szabo

Key Points

  • Hydrogels and biodegradable composites emerge as key materials in varied biomedical applications, such as wound healing.
  • Analysis reveals advancements in smart drug delivery systems with controlled release, improving treatment efficacy.
  • 3D/4D printing technology facilitates the production of patient-specific constructs, advancing personalized medicine.
  • Challenging issues remain, including biocompatibility and regulatory standards limiting widespread implementation.

Abstract

This study offers an integrated synthesis of polymeric materials in biomedical engineering, revealing four major and interlinked research domains: tissue engineering and regenerative medicine, drug delivery and nanomedicine, wound healing and antimicrobial applications, and advanced fabrication through 3D/4D printing and bioprinting. Across these areas, hydrogels, biodegradable composites, and stimuli-responsive polymers emerge as the most influential material classes. The analysis highlights substantial progress in extracellular matrix–mimetic scaffolds, smart drug delivery systems with controlled release, multifunctional wound dressings integrating antimicrobial and healing functions, and patient-specific constructs produced via additive manufacturing. Despite these advances, recurring challenges persist in long-term biocompatibility and safety, scalable and reproducible fabrication, and regulatory standardisation. The results point toward a convergence of bioactivity, manufacturability, and clinical translation, with hybrid natural–synthetic systems and personalised polymeric designs defining the next phase of biomedical polymer innovation.

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Cite This Study

Veres et al. (2025) studied this question.

synapsesocial.com/papers/6903fee5b25c631a4265ff22https://doi.org/10.3390/polym17212886
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