溶菌酶响应性壳聚糖-链霉素共轭物水凝胶用于按需释放生物膜分散酶以有效清除口腔生物膜

IF 7 2区 材料科学 Q2 CHEMISTRY, PHYSICAL
María Luisa Del Pozo, Antonio Aguanell, Eduardo García-Junceda* and Julia Revuelta*, 
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引用次数: 0

摘要

具有可控降解和持续抗生物膜活性的水凝胶是治疗牙周炎或龋齿等口腔感染很有前景的生物材料。本文开发了一种原位成型壳聚糖-链霉素水凝胶,这种水凝胶可针对已形成的细菌生物膜对溶菌酶做出反应,溶菌酶是口腔感染时唾液中过度表达的一种酶。将这种新型水凝胶应用于模拟口腔生物膜时,过表达的溶菌酶会降解水凝胶并释放出壳聚糖-链霉素寡糖,从而消除生物膜。这项工作表明,壳聚糖和链霉素的偶联能产生协同效应,基于壳聚糖-链霉素共轭物的新型水凝胶能有效抑制体外形成的大肠杆菌、金黄色葡萄球菌和铜绿假单胞菌的生物膜,显著降低生物膜的生物量,并大幅减少已形成的生物膜中的存活细菌数量。最后,加载了生物膜破坏酶(尤其是 DNase I 和/或 DspB)的 CS-Str 水凝胶在减少铜绿假单胞菌和金黄色葡萄球菌生物膜生物量方面的能力显著提高(分别提高了 84% 和高达 92%),导致细胞存活率急剧下降,铜绿假单胞菌的存活率低于 4%,金黄色葡萄球菌的存活率低于 5%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Lysozyme-Responsive Hydrogels of Chitosan-Streptomycin Conjugates for the On-Demand Release of Biofilm-Dispersing Enzymes for the Efficient Eradication of Oral Biofilms

Hydrogels with controlled degradation and sustained antibiofilm activity are promising biomaterials for the treatment of oral infections such as periodontitis or caries. In this article, an in situ forming chitosan-streptomycin hydrogel is developed that can target established bacterial biofilms in response to lysozyme, an enzyme that is overexpressed in saliva during oral infections. When the new hydrogel is applied to simulated oral biofilms, the overexpressed lysozyme degrades the hydrogel and releases chitosan-streptomycin oligosaccharides that can eradicate the biofilm. This work has shown that the coupling of chitosan and streptomycin can have a synergistic effect and that the new hydrogel based on chitosan-streptomycin conjugate can effectively combat biofilms of E. coli, S. aureus, and P. aeruginosa formed in vitro achieving a significant reduction in the biomass of the biofilm and a substantial reduction in the population of viable bacteria in established biofilms. Finally, the CS-Str hydrogel loaded with biofilm-disrupting enzymes, in particular, DNase I and/or DspB, showed a significantly increased ability to reduce the biofilm biomass of P. aeruginosa and S. aureus (by over 84% and up to 92%, respectively), resulting in a drastic reduction in cell viability, which fell below 4% for P. aeruginosa and below 5% for S. aureus.

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来源期刊
Chemistry of Materials
Chemistry of Materials 工程技术-材料科学:综合
CiteScore
14.10
自引率
5.80%
发文量
929
审稿时长
1.5 months
期刊介绍: The journal Chemistry of Materials focuses on publishing original research at the intersection of materials science and chemistry. The studies published in the journal involve chemistry as a prominent component and explore topics such as the design, synthesis, characterization, processing, understanding, and application of functional or potentially functional materials. The journal covers various areas of interest, including inorganic and organic solid-state chemistry, nanomaterials, biomaterials, thin films and polymers, and composite/hybrid materials. The journal particularly seeks papers that highlight the creation or development of innovative materials with novel optical, electrical, magnetic, catalytic, or mechanical properties. It is essential that manuscripts on these topics have a primary focus on the chemistry of materials and represent a significant advancement compared to prior research. Before external reviews are sought, submitted manuscripts undergo a review process by a minimum of two editors to ensure their appropriateness for the journal and the presence of sufficient evidence of a significant advance that will be of broad interest to the materials chemistry community.
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