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Simultaneous determination of proteins in microstructured optical fibers supported by chemometric tools

机译:化学工具支撑的微结构化光纤中蛋白质的同时测定

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A new perspective on the relevant problem-creating simple, rapid, and efficient protein sensors based on microstructured optical fibers using a simple homogeneous analysis format-was proposed. Commercially available long-period grating hollow core microstructured optical fibers (LPG HCMOF) were used to determine bovine serum albumin (BSA) and albumin from chicken eggs (OVA) in binary mixtures as well as immunoglobulin G (IgG) in the presence of BSA and OVA. LPG HCMOF transmission spectra allowed the detection of both BSA and OVA up to 10 mg/mL with LOD as low as 0.1 and 0.8 mu g/mL, respectively. Partial least squares regression (PLS) was utilized for modeling of LPG HCMOF spectral data and quantitative analysis of BSA, OVA, total protein, and IgG in binary and ternary mixtures. Rather high coefficients of determination (R-2) and low root mean square error for the calibration (RMSEC) (15%) and prediction (RMSEP) (20%) were obtained for all PLS models. The proposed approach was tested in the analysis of BSA in spiked horse blood hemolyzed (HBH). The results demonstrated the functionality of the proposed approach and offered the opportunity for the creation of a wide range of sensors for protein determination in complex mixtures.
机译:提出了一种新的基于微观结构光纤的相关问题创造简单,快速和高效蛋白质传感器的新视角。市售的长周期光栅中空核心微观结构光纤(LPG HCMOF)用于从二元混合物中的鸡蛋(OVA)中的牛血清白蛋白(BSA)和白蛋白,并且在BSA存在下的免疫球蛋白G(IgG) ova。 LPG HCMOF透射光谱允许检测BSA和OVA高达10mg / ml,分别低至0.1和0.8μg/ mL。部分最小二乘回归(PLS)用于模拟LPG HCMOF光谱数据和BSA,OVA,总蛋白质和IgG的定量分析,在二元和三元混合物中。对于所有PLS模型,获得了校准(RMSEC)(RMSEC)(15%)和预测(RMSEP)(RMSEP)(20%)的高度判定系数(R-2)和低根均方误差。在分析尖刺马血液中的BSA分析中测试了所提出的方法。结果证明了拟议方法的功能,并为在复杂混合物中创建了广泛的蛋白质测定的各种传感器的机会。

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