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March 6, 2026Biochemistry (Moscow)0 citations

Gradient Hydrogels: Fabrication Strategies and Biomedical Applications

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NYN. G. YabbarovIRIvan V. RomashkinВЗВ. А. Захарова

Key Points

  • The central aim is to explore fabrication strategies for gradient hydrogels and their applications in biomedicine.
  • Reviewed various fabrication techniques including layer-by-layer formation and microfluidic methods.
  • Summarized characterization methodologies for gradient hydrogels.
  • Discussed emerging applications in fields like regenerative medicine and organ-on-chip systems.
  • Identified gradient hydrogels' ability to mimic native tissues and influence cell behavior.
  • Highlighted applications in controlled drug delivery and tissue engineering.
  • Discussed challenges in protocol standardization and manufacturing scalability.

Abstract

Gradient hydrogels represent a unique class of biomaterials capable of mimicking the spatial heterogeneity of native tissues and providing targeted effects on cells through mechanical, chemical, and biophysical gradients. In recent years, numerous fabrication strategies have been developed to generate gradient hydrogels, including layer-by-layer formation, photopolymerization, microfluidic techniques, and 3D/4D printing. This review summarizes current methodologies for the characterization of gradient hydrogels and highlights their emerging biomedical applications, such as controlled drug delivery, tissue engineering, regenerative medicine, organ-on-chip systems, and soft bioelectronic devices. Furthermore, the review discusses critical challenges related to the protocol standardization, manufacturing scalability, integration with additive manufacturing technologies, and potential regulatory barriers.

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Cite This Study

Yabbarov et al. (2026) studied this question.

synapsesocial.com/papers/69aa70a9531e4c4a9ff5aa36https://doi.org/10.1134/s0006297925604137
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