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February 2, 2026Chemical Reviews8 citationsOpen Access

Functionally Graded Surfaces and Materials: From Fabrication to Biomedical Applications

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MHMin HaoYCYidan ChenYMYuxuan Meng

Key Points

  • The review aims to overview the fabrication methods and biomedical applications of functionally graded surfaces and materials.
  • Introduction of gradient concepts in nature and their biological relevance.
  • Discussion on fabrication methods and characterization techniques for controlling graded profiles.
  • Highlighting examples that show how gradients influence cellular responses in biomedical contexts.
  • Functionally graded materials mimic native tissue architectures, enhancing biomedical applications.
  • Engineered gradients can effectively regulate specific cellular functions.
  • Challenges in reproducibility and scalability hinder clinical translation, with computational modeling and AI offering potential solutions.

Abstract

Functionally graded surfaces and materials, featuring spatial variations in terms of composition, structure, and other properties across distance, have emerged as powerful platforms for mimicking native tissue architectures and enabling a wide range of biomedical applications. This review aims to provide a comprehensive overview of their fabrication methods and biomedical applications. We begin by introducing the concept of gradients and their inherent biological relevance in nature. With a distinct focus on either surfaces or materials, we then discuss the fabrication methods and characterization techniques capable of controlling the graded profiles. Importantly, representative examples are provided to highlight how engineered gradients regulate specific cellular responses and functionalities in biomedical contexts. Despite significant progress, challenges remain in translating laboratory-scale fabrication to clinical use, such as ensuring good reproducibility and scalability. At the end, we discuss how computational modeling and artificial intelligence offer new opportunities to address these challenges. We hope this review provides a framework for advancing the development of next-generation functionally graded surfaces and materials toward diverse biomedical applications.

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Cite This Study

Hao et al. (2026) studied this question.

synapsesocial.com/papers/6980fc73c1c9540dea80e394https://doi.org/10.1021/acs.chemrev.5c00732
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