生物医学工程
固定(群体遗传学)
膜
阻隔膜
化学
胶粘剂
材料科学
再生(生物学)
粘附
粘结强度
人造骨
骨愈合
骨形成
软组织
生物相容性
表面改性
钙
骨组织
作者
Yuzhu Wang,Gao‐peng Dang,Zhi-ting Li,Zhi‐hong Feng,Que Bai,Jiaxin Hao,Xiao-Qing Cao,Tao Ye,Jing Li,Franklin Tay,Malcolm Xing,Ming Fang,Jun‐ting Gu,Li‐na Niu
摘要
ABSTRACT Stable fixation of barrier membranes is essential for achieving effective bone augmentation during guided bone regeneration (GBR). Conventional fixation techniques, such as membrane nails and sutures, provide suboptimal results and may lead to the displacement of bone substitute materials, eventually compromising regenerative outcomes. To address this, a thermosensitive injectable adhesive, M2N2ACa, was developed to solidify upon exposure to a 36°C wet environment. This material was found to facilitate robust adhesion between barrier membranes and moist bone surfaces at 36°C, achieving an adhesive strength of 227.86 kPa. In addition to its mechanical bonding capabilities, M2N2ACa can release calcium ions to enhance clot density and mechanical strength, thereby reinforcing the surrounding blood clot and stabilizing the bone substitutes. This dual mechanism of mechanical fixation through membrane bonding and biological reinforcement via clot modulation substantially improves graft retention and promotes bone augmentation. These findings highlight the value of M2N2ACa as a promising barrier membrane adhesive with the potential to simplify clinical procedures and improve GBR outcomes.
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