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首页> 外文期刊>Journal of Nanobiotechnology >Nanoaerosols reduce required effective dose of liposomal levofloxacin against pulmonary murine Francisella tularensis subsp. novicida infection
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Nanoaerosols reduce required effective dose of liposomal levofloxacin against pulmonary murine Francisella tularensis subsp. novicida infection

机译:纳米气雾剂可降低针对肺鼠弗朗西斯菌的亚种的左氧氟沙星脂质体的有效剂量。新生病毒感染

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The Institute of Theoretical and Experimental Biophysics in Moscow recently developed a new nanoaerosol generator. This study evaluated this novel technology, which has the potential to enhance therapeutic delivery, with the goal of using the generator to treat pulmonary Francisella tularensis subsp. novicida (F. novicida) infections in BALB/c mice. First, the analysis of quantum dots distribution in cryosections of murine lungs demonstrated that nanoaerosols penetrate the alveoli and spread more homogenously in the lungs than upon intranasal delivery. Second, the generator was used to aerosolize the antibiotic levofloxacin to determine the effectiveness of nanoaerosolized levofloxacin as treatment against F. novicida. The generator was capable of delivering a sufficient dose of nanoaerosolized liposome-encapsulated levofloxacin to rescue mice against 100LD50 of F. novicida. The nanoaerosol-delivered dosage of liposome-encapsulated levofloxacin required to rescue mice is approximately 94× lower than the oral required dose and approximately 8× lower than the intraperitoneal dose required for rescue. In addition, treatment with nanoaerosols consumes less total volume of therapeutic solutions and is gentler on sprayed material than the aerosolization by a conventional three-jet Collison nebulizer as seen by the preservation of liposomes. This could represent a significant advance for the use of expensive therapeutics and lung directed therapies.
机译:莫斯科理论和实验生物物理研究所最近开发了一种新型的纳米气溶胶发生器。这项研究评估了这项新颖的技术,该技术具有增强治疗效果的潜力,其目标是使用发生器治疗肺炎性弗朗西斯菌。 BALB / c小鼠中感染了诺维达病毒(F. novicida)。首先,对鼠肺冷冻切片中量子点分布的分析表明,与鼻内给药相比,纳米气溶胶穿透肺泡并在肺中更均匀地扩散。第二,使用发生器将抗生素左氧氟沙星雾化,以测定纳米雾化的左氧氟沙星对诺维奇氏菌的治疗效果。该发生器能够递送足够剂量的纳米气雾化脂质体包裹的左氧氟沙星,以挽救小鼠抵抗新生鼠疫的100LD50。抢救小鼠所需的纳米气雾剂脂质体包裹的左氧氟沙星剂量约比口服所需剂量低94倍,比抢救所需的腹膜内剂量低约8倍。另外,从脂质体的保存来看,与通过常规三喷射科里森雾化器的雾化相比,用纳米气雾剂进行的处理消耗的治疗溶液的总体积更少,并且在喷涂材料上更温和。这可能代表使用昂贵的疗法和肺部定向疗法的重大进展。

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