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Material-Inspired Paradigms in Metalloimmunology: From Fundamental Insights to Therapeutic Intervention

Authors: HE Qian; LI Qian; LUAN Xintong; ZHANG Liyun

DOI: 10.1007/s40843-025-4062-2Status: Verified Translated Edition
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Key Findings in This Report

• • Metal ions act as dynamic signaling molecules via non-covalent interactions, enabling rapid immune modulation; this contrasts with stable covalent modifications, offering reversible control for therapeutic intervention. • • Metal-based nanomaterials, such as Fe-Ce6 nanoparticles, achieve bacterial microenvironment-responsive nanozyme generation and photodynamic antibacterial activity, accelerating infected wound healing (Sci China Mater, 2025, 68: 2962–2972). • • Copper ionophores combined with autophagy interference amplify cuproptotic stress and antitumor immunity, as demonstrated in J Control Release (2025, 388: 114262), highlighting a dual-mechanism strategy. • • Magnesium-based nanoflowers in controlled-release hydrogels synergize immunomodulation and cartilage regeneration in tendon-bone healing (Bioactive Mater, 2024, 36: 62–82), indicating metal-ion delivery systems can address tissue repair bottlenecks.