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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Lipid-based lyotropic liquid crystalline phase transitions as a novel assay platform using birefringence as the visual signal output
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Lipid-based lyotropic liquid crystalline phase transitions as a novel assay platform using birefringence as the visual signal output

机译:基于脂质的溶血性液晶相晶相转变为使用双折射作为视觉信号输出的新型测定平台

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摘要

Amphiphilic lipids can often form various lipid-based lyotropic liquid crystalline phases when they are exposed to aqueous environments, which includes the inverse hexagonal (H-2), inverse cubic (V-2), inverse discontinuous cubic (I-2) and lamellar (L-alpha) phases. Their different interactions with crossed-polarised light make some phases appear bright and some dark, which offers great potential in developing a novel universal assay platform using birefringence as the visual signal output. Here, we have developed a novel strategy for constructing an assay platform using lyotropic liquid crystalline phases as the signal transducer and using changes in their birefringence upon exposure to lipase as the signal output. The hydrolysis of the ester group of glyceryl monooleate (GMO) by lipase induced a phase transition from cubic phase to hexagonal phase and consequently "turned on" the birefringence as the signal output. The change in the intensity of the birefringence depended on both the exposure time and concentration of lipase. The streptavidin-biotin affinity was utilised to demonstrate the potential of the birefringence assay platform, using free biotin as the model analyte, biotinylated lipase and streptavidin-coated magnetic beads in the competitive format. A semi-quantitative assay with a detection limit of 5 mu g mL(-1)to free biotin as the model analyte was achieved in the visual birefringence mode. This study demonstrated a proof-of-concept lyotropic assay platform with birefringence as the visual signal output that could be deployed as an electronics- and colour-free diagnostic device for a wide range of applications, for example to indicate the presence of toxins in water.
机译:当它们暴露于含水环境时,两亲性脂质通常可以形成各种脂质的血液液晶阶段,其包括逆六边形(H-2),逆立方(V-2),逆不连续立方(I-2)和层状物(L-alpha)阶段。它们与交叉偏振光的不同相互作用使一些阶段显得明亮和一些黑暗,这在使用双折射作为视觉信号输出的开发新的通用测定平台方面具有很大的潜力。在这里,我们开发了一种用于使用旋转液晶晶相构建测定平台的新策略,作为信号换能器,并且在暴露于脂肪酶时使用其双折射时的变化作为信号输出。通过脂肪酶诱导从立方相到六边形相的相转变并因此将双折射作为信号输出的相变。双折射强度的变化依赖于脂肪酶的暴露时间和浓度。使用的链霉抗生物素蛋白 - 生物素亲和力来证明双折射测定平台的潜力,使用游离生物素作为模型分析物,生物素化脂素和链霉抗生物素蛋白涂覆的磁珠以竞争格式。在视觉双折射模式下实现了作为模型分析物的游离生物素的5μgmm(-1)的半定量测定。该研究证明了概念证据,具有双折射作为视觉信号输出,可以作为各种应用部署为电子和无色诊断装置,例如表示水中毒素的存在。

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    Monash Univ Drug Delivery Disposit &

    Dynam Monash Inst Pharmaceut Sci Parkville Campus 381 Royal Parade Parkville Vic 3052 Australia;

    Monash Univ Drug Delivery Disposit &

    Dynam Monash Inst Pharmaceut Sci Parkville Campus 381 Royal Parade Parkville Vic 3052 Australia;

    ANSTO Australian Synchrotron SAXS WAXS Beamline 800 Blackburn Rd Clayton Vic 3169 Australia;

    Monash Univ Drug Delivery Disposit &

    Dynam Monash Inst Pharmaceut Sci Parkville Campus 381 Royal Parade Parkville Vic 3052 Australia;

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  • 正文语种 eng
  • 中图分类 分析化学;
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