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首页> 外文期刊>ACS Omega >Size-Dependent Inhibitory Effects of Antibiotic Drug Nanocarriers against Pseudomonas aeruginosa
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Size-Dependent Inhibitory Effects of Antibiotic Drug Nanocarriers against Pseudomonas aeruginosa

机译:抗生素药物纳米载体对铜绿假单胞菌的大小依赖性抑制作用

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Multidrug membrane transporters (efflux pumps) are responsible for multidrug resistance (MDR) and the low efficacy of therapeutic drugs. Noble metal nanoparticles (NPs) possess a high surface-area-to-volume ratio and size-dependent plasmonic optical properties, enabling them to serve both as imaging probes to study sized-dependent MDR and as potential drug carriers to circumvent MDR and enhance therapeutic efficacy. To this end, in this study, we synthesized three different sizes of silver nanoparticles (Ag NPs), 2.4 ± 0.7, 13.0 ± 3.1, and 92.6 ± 4.4 nm, functionalized their surface with a monolayer of 11-amino-1-undecanethiol (AUT), and covalently conjugated them with antibiotics (ofloxacin, Oflx) to prepare antibiotic drug nanocarriers with conjugation ratios of 8.6 × 10~(2), 9.4 × 10~(3), and 6.5 × 10~(5) Oflx molecules per NP, respectively. We purified and characterized the nanocarriers and developed cell culture medium in which the cells grew normally and the nanocarriers were stable (non-aggregated), to quantitatively study the size, dose, and efflux pump (MexAB-OprM) dependent inhibitory effect of the nanocarriers against two strains of Pseudomonas aeruginosa , WT (normal expression of MexAB-OprM) and ΔABM (deletion of MexAB-OprM). We found that the inhibitory effect of these nanocarriers highly depended on the sizes of NPs, the doses of antibiotic, and the expression of MexAB-OprM. The same amount of Oflx on the largest nanocarriers (92.6 ± 4.4 nm) showed the highest inhibitory effect (the lowest minimal inhibitory concentration) against P. aeruginosa . Surprisingly, the smallest nanocarriers (2.4 ± 0.7 nm) exhibited a lower inhibitory effect than free Oflx. The results suggest that size-dependent multivalent effects, the distribution and localization of Oflx (pharmacodynamics), and the efflux of Oflx all play a role in the inhibitory effects. Control experiments using three sizes of AgMUNH_(2) NPs (absence of Oflx) showed that these NPs do not exhibit any significant inhibitory activity toward both strains. These new findings demonstrate the need for and possibility of designing optimal sized antibiotic nanocarriers to achieve the highest efficacy against P. aeruginosa .
机译:多药膜转运蛋白(外排泵)是造成多药耐药性(MDR)和治疗药物疗效低下的原因。贵金属纳米粒子(NPs)具有高的表面积与体积之比和尺寸依赖的等离子体光学特性,使其既可以用作成像探针来研究尺寸依赖的MDR,又可以作为潜在的药物载体来规避MDR并提高治疗效果功效。为此,在这项研究中,我们合成了三种不同尺寸的银纳米颗粒(Ag NPs),分别为2.4±0.7、13.0±3.1和92.6±4.4 nm,并通过单层11-氨基-1-十一烷硫醇( AUT),然后将它们与抗生素(氧氟沙星,Oflx)共价偶联以制备抗生素药物纳米载体,其共轭比为8.6×10〜(2),9.4×10〜(3)和6.5×10〜(5)Oflx分子/ NP,分别。我们纯化和表征了纳米载体,并开发了细胞正常生长且纳米载体稳定(非聚集)的细胞培养基,以定量研究纳米载体的大小,剂量和外排泵(MexAB-OprM)依赖性抑制作用针对两种铜绿假单胞菌菌株,WT(MexAB-OprM的正常表达)和ΔABM(MexAB-OprM的缺失)。我们发现这些纳米载体的抑制作用高度取决于NP的大小,抗生素的剂量以及MexAB-OprM的表达。在最大的纳米载体(92.6±4.4 nm)上,相同量的Oflx对P表现出最高的抑制作用(最低的最低抑制浓度)。铜绿。出乎意料的是,最小的纳米载体(2.4±0.7 nm)表现出的抑制作用要低于游离的Oflx。结果表明,大小依赖性多价效应,Oflx的分布和定位(药效学)以及Oflx的流出均在抑制作用中起作用。使用三种大小的AgMUNH_(2)NPs(缺少Oflx)的对照实验表明,这些NPs对两种菌株均未显示任何明显的抑制活性。这些新发现表明,需要设计最佳尺寸的抗生素纳米载体以实现最高的抗iP功效。铜绿。

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