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本文引用的文献

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Free-Standing Biodegradable Poly(lactic acid) Nanosheet for Sealing Operations in Surgery.用于手术密封操作的自支撑可生物降解聚(乳酸)纳米片。
Adv Mater. 2009 Nov 20;21(43):4388-92. doi: 10.1002/adma.200901035. Epub 2009 Jul 1.
2
Polymeric Multilayers that contain Silver Nanoparticles can be Stamped onto Biological Tissues to Provide Antibacterial Activity.含有银纳米颗粒的聚合物多层膜可被压印到生物组织上以提供抗菌活性。
Adv Funct Mater. 2011 May 24;21(10):1863-1873. doi: 10.1002/adfm.201002662.
3
Antibacterial efficacy of silver-impregnated polyelectrolyte multilayers immobilized on a biological dressing in a murine wound infection model.载银聚电解质多层膜固定于生物敷料后在小鼠创面感染模型中的抗菌效果。
Ann Surg. 2012 Aug;256(2):371-7. doi: 10.1097/SLA.0b013e318256ff99.
4
Therapeutic efficacy of an antibiotic-loaded nanosheet in a murine burn-wound infection model.载抗生素纳米片在小鼠烧伤感染模型中的治疗效果。
Acta Biomater. 2012 Aug;8(8):2932-40. doi: 10.1016/j.actbio.2012.04.019. Epub 2012 Apr 21.
5
Clinical evaluation of a PHMB-impregnated biocellulose dressing on paediatric lacerations.聚六亚甲基双胍浸渍生物纤维素敷料用于小儿撕裂伤的临床评估
J Wound Care. 2011 Jun;20(6):280-4. doi: 10.12968/jowc.2011.20.6.280.
6
Dual therapeutic action of antibiotic-loaded nanosheets for the treatment of gastrointestinal tissue defects.载抗生素纳米片的双重治疗作用,用于治疗胃肠道组织缺损。
Biomaterials. 2010 Aug;31(24):6269-78. doi: 10.1016/j.biomaterials.2010.04.051. Epub 2010 May 20.
7
Multiple functionalities of polyelectrolyte multilayer films: new biomedical applications.聚电解质多层膜的多种功能:新的生物医学应用。
Adv Mater. 2010 Jan 26;22(4):441-67. doi: 10.1002/adma.200901327.
8
In-vivo studies on intraperitoneally administrated poly(vinyl alcohol).体内研究腹膜内给予的聚乙烯醇。
J Biomed Mater Res B Appl Biomater. 2010 Apr;93(1):275-84. doi: 10.1002/jbm.b.31585.
9
Surfaces modified with nanometer-thick silver-impregnated polymeric films that kill bacteria but support growth of mammalian cells.经纳米厚的载银聚合物薄膜修饰的表面既能杀死细菌又能支持哺乳动物细胞生长。
Biomaterials. 2010 Feb;31(4):680-90. doi: 10.1016/j.biomaterials.2009.09.092. Epub 2009 Oct 28.
10
Experience with biobrane: uses and caveats for success.生物膜的应用经验:成功的使用方法及注意事项
Eplasty. 2009 Jun 26;9:e25.

使用载银可溶微膜构建物减少伤口生物负荷。

Reduction in wound bioburden using a silver-loaded dissolvable microfilm construct.

机构信息

Department of Chemical and Biological Engineering, University of Wisconsin, 1415 Engineering Drive, Madison, WI, 53706, USA.

出版信息

Adv Healthc Mater. 2014 Jun;3(6):916-28. doi: 10.1002/adhm.201300537. Epub 2014 Feb 12.

DOI:10.1002/adhm.201300537
PMID:24523027
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4112187/
Abstract

Silver is a widely used antimicrobial agent, yet, when impregnated in macroscopic dressings, it stains wounds, can lead to tissue toxicity, and can inhibit healing. Recently, polymeric nanofilms containing silver nanoparticles were reported to exhibit antimicrobial activity at loadings and release rates of silver that are 100× lower than conventional dressings. Here, fabrication of composite microfilm constructs that provide a facile way to transfer the silver-loaded polymeric nanofilms onto wounds in vivo is reported. The construct is fabricated from a silver nanoparticle-loaded polymeric nanofilm that is laminated with a micrometer-thick-soluble film of polyvinylalcohol (PVA). When placed on a moist wound, the PVA dissolves, leaving the silver-loaded nanofilm immobilized on the wound-bed. In vitro, the immobilized nanofilms release <1 μg cm(-2) d(-1) of silver over 30 d from skin dermis and they kill 5 log10 CFUs of Staphylococcus aureus in 24 h. In mice, wounds inoculated with 10(5) CFU S. aureus presented up to 3 log10 less bacterial burden when treated with silver/nanofilms for 3 d, as compared to unmodified wounds. In uncontaminated wounds, silver/nanofilms allow normal and complete wound closure by re-epithelialization. Dissolvable microfilm constructs may overcome key limitations associated with current uses of silver in wound healing.

摘要

银是一种广泛使用的抗菌剂,然而,当浸渍在宏观敷料中时,它会使伤口染色,可能导致组织毒性,并抑制愈合。最近,据报道,含有纳米银颗粒的聚合物纳米薄膜在负载和释放银的速率上表现出抗菌活性,其负载和释放银的速率比传统敷料低 100 倍。本文报道了一种复合微膜结构的制备方法,该结构为将载银聚合物纳米薄膜方便地转移到体内伤口提供了一种途径。该结构由载银聚合物纳米薄膜和微米厚的聚乙烯醇(PVA)可溶性薄膜层压而成。当放在潮湿的伤口上时,PVA 会溶解,留下载银的纳米薄膜固定在伤口床上。在体外,固定的纳米薄膜在 30 天内从皮肤真皮中释放 <1 μg cm(-2) d(-1) 的银,并且在 24 小时内杀死 5 log10 CFU 的金黄色葡萄球菌。在小鼠中,与未修饰的伤口相比,用银/纳米薄膜处理 3 天,接种 10(5) CFU 金黄色葡萄球菌的伤口的细菌负荷减少了 3 个对数级。在未污染的伤口中,银/纳米薄膜通过再上皮化允许正常和完全的伤口闭合。可溶解的微膜结构可能克服了当前在伤口愈合中使用银的关键限制。