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May 17, 2026Trends in biotechnology0 citationsOpen Access

From anti-proliferation to immunomodulation: engineering next-generation cardiovascular biomaterials

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AGAngus GrantKLKhoon S. LimRTRichard P. Tan

Key Points

  • This review focuses on innovative strategies to address chronic inflammation and improve the integration of cardiovascular devices.
  • Examines anti-inflammatory strategies relevant to cardiovascular devices and materials.
  • Evaluates dual-drug systems, multimodal agents, polymeric coatings, hydrogels, and nanoparticle platforms.
  • Proposes pathways for integrating immunomodulatory design into cardiovascular devices.
  • Identifies dysregulated inflammation as a key factor in device failure.
  • Highlights the potential of targeted immunomodulatory approaches to enhance healing and device performance.
  • Discusses translational challenges in implementing these strategies in clinical settings.

Abstract

Cardiovascular devices such as stents, grafts, and bioprosthetic valves are vital treatments for advanced disease, yet long-term outcomes remain limited by chronic inflammation and poor tissue integration. Conventional drug-eluting devices rely on broad anti-proliferative agents that hinder healing and overlook the underlying mechanisms driving device failure. Growing evidence identifies dysregulated inflammation as a central cause of poor performance. Emerging selective immunomodulatory approaches aim to suppress pathological inflammation whilst promoting vascular regeneration. This review examines novel anti-inflammatory strategies relevant to cardiovascular devices and materials, including dual-drug systems and multimodal agents, and evaluates polymeric coatings, hydrogels, and nanoparticle platforms for targeted delivery. We also highlight translational challenges and propose pathways to integrate immunomodulatory design into clinically scalable cardiovascular devices.

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Cite This Study

Grant et al. (2026) studied this question.

synapsesocial.com/papers/6a095c2c7880e6d24efe23e3https://doi.org/10.1016/j.tibtech.2026.04.022
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