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July 25, 2025Journal of Nanobiotechnology73 citationsOpen Access

A comprehensive review of unlocking the potential of lignin-derived biomaterials: from lignin structure to biomedical application

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JZJixiang ZhaoHarbin Engineering UniversityMZMinyu ZhuQinghai UniversityWJWeilin JinChongqing University of Posts and Telecommunications

Key Points

  • Lignin shows promise in biomedical applications due to its biocompatibility and multifunctional properties.
  • Structural modifications can enhance lignin's bioactivity, mechanical strength, and adhesion for various uses.
  • The review covers lignin sources, modification principles, and innovative applications in drug delivery and tissue engineering.
  • Strategies to overcome limitations in processing and standardization are essential for advancing lignin-based technologies.

Abstract

Inspired by natural organisms, biomimetic materials with exceptional biocompatibility, degradability, and multifunctionality have emerged as promising candidates for biomedical applications. Lignin, a plant-derived organic polymer, has gained attention due to its intrinsic antioxidant activity, adhesive properties, and biocompatibility. Despite its structural advantages, challenges in stability, biodegradability, and practical implementation hinder its utilization. Structural modifications through chemical/physical treatments or microbial/enzymatic can optimize lignin's bioactivity, mechanical strength, and adhesion, enabling applications in drug delivery, Ultraviolet (UV) shielding, sensing, and wound healing. This review outlines lignin sources, modification principles, and adhesion of biomaterials mechanisms, while showcasing innovative lignin-based materials in biomedical contexts. We highlight their roles in therapeutic delivery systems, tissue engineering & regenerative medicine, and functional biomedical devices, emphasizing lignin's low toxicity and environmental adaptability. By addressing current limitations in processing techniques and clinical translation, we discuss lignin's potential to bridge laboratory research and practical medical solutions. The analysis concludes with an evaluation of lignin's untapped value in sustainable biomedicine, proposing strategies to overcome scalability and standardization barriers. This synthesis provides critical insights for advancing lignin-based technologies toward clinical implementation while maintaining ecological sustainability.

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Cite This Study

Zhao et al. (2025) studied this question.

synapsesocial.com/papers/689a0933e6551bb0af8ce2d2https://doi.org/10.1186/s12951-025-03604-7
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