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October 1, 2025International Journal of Molecular Sciences14 citationsOpen Access

Dynamic Hydrogels: Adaptive Biomaterials for Engineering Tumor Microenvironment and Cancer Treatment

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YWYuting WuYXYifei XiaoBYBohan Yin

Key Points

  • Dynamic hydrogels enhance cancer treatment outcomes by recreating the tumor microenvironment with precision and adaptability.
  • They demonstrate excellent performance in controlled cargo release and multifunctional integration for cancer therapies.
  • The review highlights innovative approaches like dual-responsive nanocomposites and the challenges of cytotoxicity and regulatory issues.
  • These biomaterials could play a pivotal role in advancing next-generation precision oncology by bridging material science with clinical needs.

Abstract

Dynamic hydrogels are revolutionizing tumor microenvironment (TME) engineering through their stimuli-responsive adaptability, mechanical tunability, and capacity for multifunctional integration. In addition, they are excellent biomaterials for cancer treatments, including their biomimetic properties and controlled cargo release capability. This review introduces the rational design and principles of dynamic hydrogels for recreating the tumor microenvironment and cancer therapy, including natural/synthetic hydrogels, multi-stimuli responsive hydrogels, and multi-drug loading hydrogels. These designs emphasize their unique roles in overcoming drug resistance, enhancing immunotherapy, and enabling patient-specific models. We highlight breakthroughs such as dual-responsive nanocomposites and microfluidic-integrated 3D platforms while addressing translational hurdles like cytotoxicity and regulatory delays. By proposing strategies to bridge material science with clinical needs, this work positions dynamic hydrogels as pivotal tools for next-generation precision oncology.

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Cite This Study

Wu et al. (2025) studied this question.

synapsesocial.com/papers/68dd91dafe798ba2fc499239https://doi.org/10.3390/ijms26199502
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