Kayeen Vadakkan, Nelson Pynadathu Rumjit
MXene-derived bioactive materials are now recognized as a breakthrough category of nanomaterials for wound healing, thanks to their unique physicochemical and biological properties. Their remarkable photothermal conversion effectiveness, adjustable surface chemistry, and enhanced electrical conductivity provide a combination of antibacterial, anti-inflammatory, antioxidant, and growth-promoting activities crucial for tissue repair. When incorporated into hydrogels, microneedles, nanofibrous membranes, and hemostatic sponges, MXenes promote rapid hemostasis, collagen formation, angiogenesis, and epithelial regeneration, while efficiently reducing bacterial infections and oxidative stress. Recent improvements underscore its efficacy in addressing acute, chronic, diabetic, and infected wounds through multimodal treatment mechanisms, including photothermal and electrostimulation therapies. Notwithstanding these encouraging results, obstacles such as oxidation instability, synthesis variability, and an inadequate understanding of their long-term biological suitability and biodegradability hinder clinical translation. It is essential to address these challenges through standardized production techniques, thorough biosafety evaluations, and the creation of oxidation-resistant, biodegradable MXene composites.
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author={Kayeen Vadakkan and Nelson Pynadathu Rumjit},
year={2026},
language={en}
}TY - JOUR TI - A critical review of MXene derived bioactive materials for accel 2026 Next M AU - Kayeen Vadakkan AU - Nelson Pynadathu Rumjit PY - 2026 LA - en ER -
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