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February 16, 2026Regenerative Medicine2 citations

Advancing bone repair through immunoengineering: current strategies and future directions

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SPSana PourhajrezaeiMKMohammad Amin KhaliliHRHamta Rahmatipoor

Key Points

  • To explore advancements in immunoengineering that can optimize osteogenesis and enhance bone tissue regeneration.
  • Review of recent immunoengineering strategies and their applications in bone repair.
  • Analysis of biomaterial scaffolds for immune cell modulation.
  • Discussion of cytokine and chemokine delivery systems.
  • Emerging immunoengineering techniques can improve immune responses for better osteogenesis.
  • Functional biomaterials can regulate immune dynamics in bone healing.
  • Adoptive immunotherapy shows promise in facilitating tissue regeneration.

Abstract

Osteogenesis and bone tissue regeneration represent complex physiological processes characterized by the orchestrated interactions between immune cells, signaling molecules, and osteoprogenitor lineages. Recent advances in immunoengineering offer innovative approaches for modulating the immune microenvironment, thereby optimizing desired regenerative outcomes in bone repair. Dysregulated immune responses, often precipitated by trauma, senescence, or pathological conditions, create inflammatory environments that can inhibit osteogenesis. This review focuses on emerging strategies in immunoengineering designed to adjust immune responses, augment osteoinductive potential, and facilitate bone tissue regeneration. Key methodologies include the functional application of biomaterial scaffolds to modulate immune cell recruitment and polarization, optimization of cytokine and chemokine delivery systems tailored for controlled release kinetics, and establishment of a pro-regenerative niche with balanced pro- and anti-inflammatory cues through scaffold engineering. Innovative methods range from immune cell reprogramming to adoptive immunotherapy, both concentrating on their capacities to modulate immune dynamics in alignment with the temporal phases of bone regeneration. By integrating principles from immunology and regenerative biology, immunoengineering offers a robust framework for advancing osteogenic strategies and holds significant translational potential for clinical applications in skeletal tissue regeneration. This review discusses in detail key immunoengineering strategies, charting a course for future advancements in osteogenic regenerative therapies.

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Cite This Study

Pourhajrezaei et al. (2026) studied this question.

synapsesocial.com/papers/699264d1eb1f82dc367a0a55https://doi.org/10.1080/17460751.2026.2629851
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