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Multiscale mechanical-adapted hydrogels for the repair of intervertebral disc degeneration 被引量:1

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摘要 Nucleus pulposus(NP)tissue engineering brings new hope in the repair of intervertebral disc degeneration(IVDD).IVDD is often accompanied by multiscale changes in the mechanical microenvironment,including the changes of mechanical property of collagen fibril,NP tissue,and mechanical instability of spine.In this study,a multiscale mechanically-adapted strategy is proposed to promote NP repair.To achieve this goal,a viscoelasticadapted dual-network hydrogel(PVA-DN)is constructed.The hydrogel with multiscale tunable viscoelasticity and dynamic compression condition is used to meet the multiscale mechanical requirements of NP regeneration.The results show that the viscoelastic hydrogel promotes the proliferation,migration and adhesion of nucleus pulposus cell(NPC)as well as the secretion of NP-specific extracellular matrix.RNA-seq results show that it attenuates the inflammatory microenvironment by inhibiting the IL-17 signaling pathway.Appropriate dynamic compression applied to the viscoelastic scaffold further promotes the physiological function of NPC,and the viscoelasticity of hydrogel protects against NPC damage induced by excessive compression.Animal experiments demonstrate that the viscoelastic hydrogel effectively restores disc mechanical function and delays disc degen-eration in rats.Findings from this study highlight that the multiscale mechanically-adapted strategy is effective in the repair of IVDD.
出处 《Bioactive Materials》 2025年第6期336-352,共17页 生物活性材料(英文)
基金 supported by the National Natural Science Foundation of China(32201070,32171350,32471410,32171321,81925027,32130059) Jiangsu Basic Research Program(Natural Science Founda-tion)(BK20240019,BK20240020) International Cooperation Project of Ningbo City(2023H013) Medical and Health Science and Technology Innovation Project of Suzhou(SKY2022105) Basic cutting-edge innovation cross project of Suzhou Medical College of Soochow University(YXY2302010) the Priority Academic Program Development of Jiangsu Higher Education Institutions(PAPD).
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