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首页> 外文期刊>ACS nano >Monodisperse Liposomes with Femtoliter Volume Enable Quantitative Digital Bioassays of Membrane Transporters and Cell-Free Gene Expression
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Monodisperse Liposomes with Femtoliter Volume Enable Quantitative Digital Bioassays of Membrane Transporters and Cell-Free Gene Expression

机译:单分散脂质体,具有飞兆半体积,使得膜转运蛋白和无细胞基因表达的定量数字生物测量剂

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摘要

Digital bioassays have emerged as a new category of bioanalysis. However, digital bioassays for membrane transporter proteins have not been well established yet despite high demands in molecular physiology and molecular pharmacology due to the lack of biologically functional monodisperse liposomes with femtoliter volumes. Here, we established a simple and robust method to produce femtoliter-sized liposomes (femto-liposomes). We prepared 10~(6) monodispersed water-in-oil droplets stabilized by a lipid monolayer using a polyethylene glycol-coated femtoliter reactor array device. Droplets were subjected to the optimized emulsion transfer process for femto-liposome production. Liposomes were monodispersed (coefficient of variation = 5–15%) and had suitable diameter (0.6–5.3 μm) and uniform volumes of subfemtoliter or a few femtoliters; thus, they were termed uniform femto-liposomes. The unilamellarity of uniform femto-liposomes allowed quantitative single-molecule analysis of passive and active transporter proteins: α-hemolysin and F_(o)F_(1)-ATPase. Digital gene expression in uniform femto-liposomes (cell-free transcription and translation from single DNA molecules) was also demonstrated, showing the versatility of digital assays for membrane transporter proteins and cell-free synthetic biology.
机译:数字生物测定是作为一种新的生物分析类别。然而,对于膜转运蛋白的数字生物测量蛋白尚未得到很好的成立,尽管分子生理学和分子药理的需求很高,因此由于缺乏具有Femtoliter体积的生物功能性单分散脂质体。在这里,我们建立了一种简单且稳健的方法来生产毫微升性脂质体(Femto-脂质体)。我们使用聚乙二醇涂层的Femtoliter反应器阵列装置制备10〜(6)〜(6)个单分散的水滴。对液滴进行液体脂质生产的优化乳液转移方法。脂质体是单分散的(变异系数= 5-15%),具有合适的直径(0.6-5.3μm)和均匀的亚次渗透剂或一些小学生体积;因此,它们被称为均匀的毫微微脂质体。均匀毫微微脂质的单掩模性允许无源和活性转运蛋白的定量单分子分析:α-溶血素和F_(O)F_(1)-ATPase。还证明了均匀毫微微脂质体中的数字基因表达(无细胞转录和来自单个DNA分子的翻译),显示了膜转运蛋白和无细胞合成生物学的数字测定的多功能性。

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