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噬菌体抗细菌生物膜机制及应用策略的研究进展 被引量:4
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作者 杨佩霓 李庆蓉 +4 位作者 李江 何薇 和平安 吕梅 杨旭 《现代检验医学杂志》 CAS 2024年第1期199-204,共6页
细菌生物膜(bacterial biofilms,BF)是细菌在生物或非生物表面所形成的复杂微生物群落,其形成显著增强了细菌毒力和耐药性,与高比例的慢性细菌感染相关,对人类健康造成严重威胁。传统抗生素和常用消毒剂在清除生物膜方面的能力有限,迫... 细菌生物膜(bacterial biofilms,BF)是细菌在生物或非生物表面所形成的复杂微生物群落,其形成显著增强了细菌毒力和耐药性,与高比例的慢性细菌感染相关,对人类健康造成严重威胁。传统抗生素和常用消毒剂在清除生物膜方面的能力有限,迫切需要一种有效的新策略治疗细菌生物膜。噬菌体(bacteriophage,phage)作为一类能感染并裂解细菌的病毒,具有较高的安全性和特异度,被认为是治疗细菌生物膜有前景的替代方法。该文综述了噬菌体抗细菌生物膜的作用机制、基于噬菌体及其衍生物在防控细菌生物膜形成的应用策略,为开发高效的噬菌体抗细菌生物膜方法提供新思路。 展开更多
关键词 噬菌体 细菌生物 噬菌体抗细菌生物膜机制 噬菌体应用
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黄芩苷抗生物膜作用研究进展 被引量:8
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作者 韩佳慧 刘唐娟 +5 位作者 罗劲 温中薇 黄海珠 张珂 蒋玉婷 陈一强 《中成药》 CAS CSCD 北大核心 2021年第9期2438-2441,共4页
随着抗生素耐药率的不断上升,加速了后抗生素时代的到来,生物膜的形成是细菌/真菌产生多药耐药的主要原因之一。黄芩苷是黄芩的主要活性成分,具有抗病毒、抗菌、抗过敏、抗肿瘤、保肝、利胆、免疫调节等多种药理作用,尤以抗真菌/细菌作... 随着抗生素耐药率的不断上升,加速了后抗生素时代的到来,生物膜的形成是细菌/真菌产生多药耐药的主要原因之一。黄芩苷是黄芩的主要活性成分,具有抗病毒、抗菌、抗过敏、抗肿瘤、保肝、利胆、免疫调节等多种药理作用,尤以抗真菌/细菌作用最为显著。大量研究表明黄芩苷可抑制生物膜的形成和发育,本文将近年来对黄芩苷抗生物膜作用及其作用机制的研究进展进行综述,结合课题组对生物膜的研究,以期进一步深入挖掘其在抗生物膜方面的潜在价值,为治疗生物膜相关感染提供新的策略。 展开更多
关键词 黄芩 黄芩苷 金黄色葡萄球菌 抗细菌生物膜 真菌生物
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基于层层自组装技术与季铵盐类抗菌剂接枝制备表面抗菌涂层的研究 被引量:2
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作者 周俊涛 潘艳 +1 位作者 周超 邓林红 《生物医学工程研究》 2019年第3期347-352,共6页
通过层层自组装技术制备的抗菌涂层一般具有抗细菌粘附的能力,但不具备直接杀灭细菌的功能,故抗菌性能不佳。本研究通过层层自组装技术与“巯基-烯”点击反应相结合,将末端为巯基修饰的季铵盐类抗菌剂接枝到自组装涂层的含氧降冰片烯结... 通过层层自组装技术制备的抗菌涂层一般具有抗细菌粘附的能力,但不具备直接杀灭细菌的功能,故抗菌性能不佳。本研究通过层层自组装技术与“巯基-烯”点击反应相结合,将末端为巯基修饰的季铵盐类抗菌剂接枝到自组装涂层的含氧降冰片烯结构中,赋予涂层表面杀菌的性能。通过红外光谱(FT-IR)、核磁共振(1HNMR)、石英晶体微天平(QCM)以及水接触角测试,分别对表面进行结构及物理性能表征;并初步探讨了抗菌涂层的生物毒性,以及对金黄色葡萄球菌和大肠杆菌的抗菌性能。测试结果表明,本研究获得的涂层生物相容性较好;未接枝抗菌剂的自组装涂层具有表面抗细菌粘附的能力,在接枝了抗菌剂后,涂层不但可以抗细菌粘附,而且可以杀灭表面的细菌,有效抑制细菌生物膜的形成,可望应用于生物医用材料表面高抗菌性的功能化处理。 展开更多
关键词 层层自组装 细菌粘附 抗细菌生物膜 点击反应 细胞毒性
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Cell-free supernatants of Bacillus inhibit the biofilms of Pseudomonas lundensis cultured with and without Acinetobacter johnsonii
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作者 WU Shiyuan LU Zhong +3 位作者 SHI Honghui ZHANG Jun LU Haixia ZHU Junli 《微生物学报》 CAS CSCD 北大核心 2024年第10期3886-3900,共15页
[Objective] Pseudomonas as one of the dominant spoilage bacteria highly form biofilms in chilled meat products and processing environment when contaminating single or mixed with other species.This study aims to invest... [Objective] Pseudomonas as one of the dominant spoilage bacteria highly form biofilms in chilled meat products and processing environment when contaminating single or mixed with other species.This study aims to investigate the antibiofilm properties of the cell-free supernatants(CFSs) of three Bacillus species isolated from fermented food and rice seeds on Pseudomonas lundensis(PL) or and Acinetobacter johnsonii(AJ) as mono-or dual-species.[Methods] Biofilm biomass,extracellular polymeric substances(EPSs),and biofilm structure were measured by crystal violet staining,spectrophotometry,confocal laser scanning microscopy(CLSM),respectively,as well as transcription of biofilm-related genes determined by qPCR.[Results] The CFSs of Bacillus amyloliquefaciens ZG08,B.velezensis B5,and B.subtilis YB11 inhibited the biofilm formation of PL and AJ without affecting their growth.The treatment with 50% CFSs of ZG08 and B5 decreased the cell viability of two biofilms by 12.73%–21.04%,which was higher than that of YB11(0.15%–4.38%).The inhibition rates of 50% CFSs of the three strains were 59.75%–79.59% against the PL biofilm and 63.62%–78.57% against the biofilm of PL+AJ,in which the CFS of YB11 had weaker activity.The content of exopolysaccharides and exoprotein in the two biofilms treated with these CFSs were reduced by 53.77%–73.30% and 54.84%–62.38%,respectively.The treatment with the three CFSs also reduced the adhesive cells,loosened biofilm structures,and thinned their thickness by 57.63%–74.49% and 60.43%–64.64%,respectively.Moreover,the CFSs of ZG08 and B5 effectively eradicated by 41.77%–69.79% against the mature biofilms of PL and PL+AJ,compared to weak activity of YB11.In addition,the antibiofilm activities of the three CFSs were stable under four enzyme digestion and heating conditions.Compared with the control,the CFSs of ZG08 and B5 significantly down-regulated the expression of six biofilm-related genes,lapA,alg44,pelG,luxR,wspR,and rpoS.[Conclusion] The CFSs of ZG08 and B5 have strong antibiofilm activities against PL and AJ as mono-or dual-species. 展开更多
关键词 Bacillus spp. cell-free supernatant ANTIBIOFILM Pseudomonas lundensis Acinetobacter johnsonii biofilm of mixed species
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Visible-light-driven enhanced antibacterial and biofilm elimination activity of graphitic carbon nitride by embedded Ag nanoparticles 被引量:8
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作者 Wei Bing Zhaowei Chen +4 位作者 Hanjun Sun Peng Shi Nao Gao Jinsong Ren Xiaogang Qu 《Nano Research》 SCIE EI CAS CSCD 2015年第5期1648-1658,共11页
Semiconductor nanomaterials with photocatalytic activity have potential for many applications. An effective way of promoting photocatalytic activity is depositing noble metal nanoparticles (NPs) on a semiconductor, ... Semiconductor nanomaterials with photocatalytic activity have potential for many applications. An effective way of promoting photocatalytic activity is depositing noble metal nanoparticles (NPs) on a semiconductor, since the noble metal NPs act as excellent electron acceptors which inhibit the quick recombination of the photoexcited electron-hole pairs and thereby enhance the generation of reactive oxygen species (ROS). Herein, a highly effective platform, graphitic carbon nitride (g-C3N4) nanosheets with embedded Ag nanopartides (Ag/g-C3N4), was synthesized by a facile route. Under visible light irradiation, the ROS production of Ag/g-C3N4 nanohybrids was greatly improved compared with pristine g-C3N4 nanosheets, and moreover, the nanohybrids showed enhanced antibacterial efficacy and ability to disperse bacterial biofilms. We demonstrate for the first time that the Ag/g-C3N4 nanohybrids are efficient bactericidal agents under visible light irradiation, and can also provide a new way for biofilm elimination. The enhanced antibacterial properties and biofilm-disrupting ability of Ag/g-C3N4 nanohybrids may offer many biomedical applications. 展开更多
关键词 graphitic carbon nitride Ag/g-C3N4 nanohybrids antibacterial platform reactive oxygen species(ROS) BIOFILM
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New strategy for reversing biofilm-associated antibiotic resistance through ferrocene-substituted carborane ruthenium(Ⅱ)-arene complex
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作者 LI ShuiHong WU ChangYu +4 位作者 TANG Xiao GAO ShengPing ZHAO XinQing YAN Hong WANG XueMei 《Science China Chemistry》 SCIE EI CAS 2013年第5期595-603,共9页
Bacterial biofilms are inherently resistant to antimicrobial agents and are difficult to eradicate with conventional antimicrobial agents, resulting in many persistent and chronic bacterial infections. In this contrib... Bacterial biofilms are inherently resistant to antimicrobial agents and are difficult to eradicate with conventional antimicrobial agents, resulting in many persistent and chronic bacterial infections. In this contribution, a new strategy for reversing the biofilm-associated antibiotic resistance has been explored by induction of a carborane ruthenium(II)-arene complex (FcRuSB). Our results demonstrate that the FcRuSB could be utilized as an inducer to efficiently reverse the biofilm-associated antibiotic resistance of multidrug-resistant (MDR) clinical isolates of Staphylococcus aureus and Pseudomonas aeruginosa. The induced effect of FcRuSB is correlated with a considerable decrease in the expression of extracellular matrix proteins (EMP) of the two strains. The considerable decrease of the EMP of induced cells, resulting in the reduction of adherence and biofilm formation ability of the two types of MDR pathogens, and then can cause significantly enhanced sensitivity of them to antibiotics. 展开更多
关键词 bacterial biofilms carborane ruthenium(Ⅱ)-arene complex antibiotic resistance
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