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Advances and applications of biomimetic biomaterials for endogenous skin regeneration

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摘要 Endogenous regeneration is becoming an increasingly important strategy for wound healing as it facilitates skin’s own regenerative potential for self-healing,thereby avoiding the risks of immune rejection and exogenous infection.However,currently applied biomaterials for inducing endogenous skin regeneration are simplistic in their structure and function,lacking the ability to accurately mimic the intricate tissue structure and regulate the disordered microenvironment.Novel biomimetic biomaterials with precise structure,chemical composition,and biophysical properties offer a promising avenue for achieving perfect endogenous skin regeneration.Here,we outline the recent advances in biomimetic materials induced endogenous skin regeneration from the aspects of structural and functional mimicry,physiological process regulation,and biophysical property design.Furthermore,novel techniques including in situ reprograming,flexible electronic skin,artificial intelligence,single-cell sequencing,and spatial transcriptomics,which have potential to contribute to the development of biomimetic biomaterials are highlighted.Finally,the prospects and challenges of further research and application of biomimetic biomaterials are discussed.This review provides reference to address the clinical problems of rapid and high-quality skin regeneration.
出处 《Bioactive Materials》 SCIE CSCD 2024年第9期492-520,共29页 生物活性材料(英文)
基金 supported in part by the National Nature Science Foundation of China(92268206) the CAMS Innovation Fund for Medical Sciences(CIFMS,2019-I2M-5-059) the Military Medical Research Projects (2023-JSKY-SSQG-006) the National Key Research andDevelopment Program of China (2023YFC3011900) the Beijing NaturalScience Foundation (7232158) the Youth Autonomous InnovationScience Foundation of PLA general hospital (22QNFC019).
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