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基于葡聚糖的抗菌水凝胶的直接合成用于杀生物剂的长效释放和消除局部生物膜。

Direct Synthesis of Dextran-Based Antibacterial Hydrogels for Extended Release of Biocides and Eradication of Topical Biofilms.

机构信息

Antimicrobial Research Laboratory, New Chemistry Unit, Jawaharlal Nehru Centre for Advanced Scientific Research , Jakkur,Bengaluru 560064, India.

出版信息

ACS Appl Mater Interfaces. 2017 May 17;9(19):15975-15985. doi: 10.1021/acsami.7b03208. Epub 2017 May 2.

Abstract

Cationic small molecular biocides have been developed as promising antibiofilm agents because of their tunability in chemical structures and their ability to disrupt established biofilms. However, the impact of biocides in antibiofilm treatment is largely limited due to the lack of an effective delivery system that can ensure sustained release of biocides at the target site. Herein we report a biocide-encapsulated antibacterial and antibiofilm hydrogel that acts as an efficient delivery vehicle for the biocide and eradicates matured bacterial biofilm. The hydrogels are prepared using dextran methacrylate (Dex-MA), a biocompatible and photopolymerizable polymer, and a nontoxic cationic biocide with two cationic charges, two nonpeptidic amide bonds, and optimized amphiphilicity, which is capable of eradicating established bacterial biofilms. The gels, prepared via direct loading of the biocide and with highly controllable amounts, display 100% activity against both drug-sensitive and drug-resistant bacteria such as methicillin-resistant Staphylococcus aureus (MRSA). Importantly, the gels are shown to release the biocide and kill bacteria for an extended period of time (until day 5). When being treated with the established bacterial biofilms, the released biocide from the gel is shown to completely eradicate establishedS. aureus, Escherichia coli, and MRSA biofilms, the most common biofilm forming bacteria that cause severe infections (e.g., skin infections, urinary tract infections, etc.) in humans. Moreover, the gels were shown to annihilate preformed MRSA biofilm with >99.99% bacterial reduction under in vitro and in vivo conditions in a superficial MRSA infection model in mice. Notably, when tested, excellent skin compatibility is observed for these materials in various animal models such as a rat model of acute dermal toxicity, guinea pig model of skin sensitization, and rabbit model of skin irritation. The biocompatible antibacterial and antibiofilm hydrogels developed herein thus might be useful in treating bacterial biofilm associated infections, especially topical infections.

摘要

阳离子小分子杀生剂因其化学结构的可调节性和破坏已建立的生物膜的能力而被开发为有前途的抗生物膜剂。然而,由于缺乏能够在靶部位持续释放杀生剂的有效递送系统,杀生剂在抗生物膜治疗中的作用在很大程度上受到限制。在此,我们报告了一种包封杀生剂的抗菌和抗生物膜水凝胶,它作为杀生剂的有效递送载体,能够根除成熟的细菌生物膜。水凝胶是通过使用葡聚糖甲基丙烯酸酯(Dex-MA)、一种生物相容性和光聚合聚合物以及一种具有两个阳离子电荷、两个非肽酰胺键和优化的两亲性的无毒阳离子杀生剂来制备的,该杀生剂能够根除已建立的细菌生物膜。通过直接负载杀生剂并具有高度可控的量制备的凝胶对包括耐甲氧西林金黄色葡萄球菌(MRSA)在内的药敏和耐药细菌均具有 100%的活性。重要的是,研究表明凝胶能够在较长时间(直到第 5 天)内释放杀生剂并杀死细菌。在用已建立的细菌生物膜处理时,凝胶中释放的杀生剂被证明能够完全根除金黄色葡萄球菌、大肠杆菌和 MRSA 生物膜,这是引起人类严重感染(例如皮肤感染、尿路感染等)的最常见的生物膜形成细菌。此外,研究表明,在体外和体内条件下,在小鼠浅表 MRSA 感染模型中,凝胶能够以 >99.99%的细菌减少率消除预先形成的 MRSA 生物膜。值得注意的是,在各种动物模型(例如急性皮肤毒性大鼠模型、豚鼠皮肤致敏模型和家兔皮肤刺激模型)中测试时,这些材料表现出优异的皮肤相容性。因此,开发的这种具有生物相容性的抗菌和抗生物膜水凝胶可能有助于治疗与细菌生物膜相关的感染,特别是局部感染。

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