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梯度空心玻璃微珠诱导的分形自泵水凝胶的制备及其快速吸水性能研究
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作者 兰晋泽 时连鑫 +3 位作者 肖五一 张晓斌 王雨哲 王树涛 《现代化工》 CAS CSCD 北大核心 2024年第1期89-93,100,共6页
通过在水凝胶体系内引入梯度排布的空心玻璃微珠(hollow glass microsphere,HGM),制备了一种具有超高导水效率的分形自泵(fractal self-pumping,FS)水凝胶。在所制备的分形自泵空心玻璃微珠水凝胶(FS-HGM hydrogel)中,水凝胶骨架通过硅... 通过在水凝胶体系内引入梯度排布的空心玻璃微珠(hollow glass microsphere,HGM),制备了一种具有超高导水效率的分形自泵(fractal self-pumping,FS)水凝胶。在所制备的分形自泵空心玻璃微珠水凝胶(FS-HGM hydrogel)中,水凝胶骨架通过硅烷偶联剂将相邻空心玻璃微珠紧密结合固定,在玻璃微球间形成了逐级变小的亲水分形毛细微通道。结果表明,独特的分形毛细微通道极大地提高了水凝胶的导水性能,在动态接触角实验中表现出超过传统水凝胶约240倍的吸水速率,并且吸水效率随着FS-HGM水凝胶层的增厚有所提升。所制备的快速吸水分形凝胶通过高效移除过量渗出液,加速烫伤伤口愈合,为临床应用中输运生物流体开辟了新途径。 展开更多
关键词 分形结构 空心玻璃微珠 超快速吸水 水凝胶敷料 自泵
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A mechanically stable self-pumping organohydrogel dressing with aligned microchannels for accelerated diabetic wound healing
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作者 Wuyi Xiao Xizi Wan +3 位作者 Yikai Zhang Jinze Lan Lianxin Shi Shutao Wang 《Science China Materials》 SCIE EI CAS CSCD 2024年第9期2995-3002,共8页
Self-pumping dressings(SPDs)have been developed as a new type of effective material for the drainage of excessive wound exudates based on the structure of asymmetric wettability.However,current SPDs are easy to lose t... Self-pumping dressings(SPDs)have been developed as a new type of effective material for the drainage of excessive wound exudates based on the structure of asymmetric wettability.However,current SPDs are easy to lose their asymmetric wettability due to the weak interfacial mechanical stability between the hydrophobic and hydrophilic layers.Herein,we report an integrated self-pumping organohydrogel dressing with aligned microchannels(SPD-AM),prepared by an ice-templating-assisted wetting-enabled-transfer(WET)polymerization strategy,that can accelerate the healing process of diabetic wounds.The WET polymerization strategy enables strong interfacial mechanical stability between the hydrophobic organogel and hydrophilic hydrogel layers.The aligned microchannels greatly improve the draining capability of SPDs.Taking a diabetic rat model as an example,the SPD-AM can significantly reduce the bacterial colonization with low inflammatory responses,enhance dermal remodeling by about 47.31%,and shorten wound closure time by about 1/5 compared with other dressings,ultimately accelerating diabetic wound healing.This study is valuable for developing next-generation SPDs with stable mechanical performance for clinical applications. 展开更多
关键词 SPDs mechanically stable interfaces WET strategy ice-templating organohydrogel diabetic wounds
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