透明质酸
失明
流变学
角膜炎
加替沙星
材料科学
眼科
医学
抗生素
化学
微生物学
左氧氟沙星
生物
复合材料
解剖
验光服务
作者
Jingjing Hu,Fang Shen,Jiajia Luo,Rutie Yin,Y Tao,Yiyun Cheng
标识
DOI:10.1002/cbic.202400971
摘要
Bacterial keratitis is the most prevalent ocular surface infection, causing significant inconvenience to patients’ lives and posing a risk of blindness if mismanaged. The application of antibiotic gels has been a principal clinic therapeutic intervention due to the retarded ocular surface medication retention. However, current clinical gel formulations rely on high viscosity polymer matrices to improve retention, which often results in uneven gel layers, causing sticky sensation and prone to adhesion to periocular tissues during blinking, leading to clearance. In this study, we propose a supramolecular hydrogel assembled from antibiotic and natural nucleotide molecules with viscoelastic rheology and low cohesion texture. These features enabled it spread uniformly on the ocular surface, recover deformation after blinking, and are less likely to adhere to periocular tissues, significantly improving drug retention on the ocular surface and achieving better therapeutic effects in the treatment of bacterial keratitis. Additionally, the hydrogel is easy to prepare, has good visibility and safety, offering a new strategy for the development of ophthalmic gels.
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