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首页> 外文期刊>Analytical chemistry >Determination of Theophylline in Serum by Molecularly Imprinted Solid. Phase Extraction with Pulsed Elution
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Determination of Theophylline in Serum by Molecularly Imprinted Solid. Phase Extraction with Pulsed Elution

机译:分子印迹固体法测定血清中的茶碱含量脉冲洗脱相萃取

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The technique of molecular imprinting is used to produce an extensively cross-linked poly(methacrylic acid-co-ethylene dimethacrylate) material that contains theophylline as a print molecule. After Soxhlet extraction of the theophylline, binding sites are formed in the polymer with complementary size, shape, and positioning of chemical functionalities. The molecularly imprinted polymer's (MIP) high theophylline selectivity, chemical stability, and physically robust nature make it an ideal stationary-phase material in columns for HPLC separation of theophylline from other structurally related drug compounds. Mobile-phase tests confirm that a retention mechanism typical of normal-phase chromatography governs the separation, and selectivity of the MIP column can be controlled by a combination of the mobile phase and the sample solvent. Under optimal conditions, the MIP column functions like a solid-phase sorbent for theophylline extraction. Rapid elution of the bound theophylline can be accomplished in a pulsed format through injection of 20 μL of a solvent that has the proper polarity and protic nature to disrupt the electrostatic interactions and hydrogen bonding between theophylline and binding sites. A concentration detection limit of 120 ng/mL is obtained using direct LTV absorption detection at 270 nm, which corresponds to a mass detection limit of 2.4 ng. This new technique, molecularly imprinted solid-phase extraction with pulsed elution (MISPE-PE), permits on-line preconcentration of theophylline from a large volume of dilute sample solution. Using a sample volume of 300 μL, a 40 ng/mL standard solution produces a detectable peak signal. Application of MISPE-PE in serum analysis further demonstrates the high capability of the MIP column to selectively isolate theophylline from other matrix components for fast, accurate determination.
机译:分子印迹技术被用于生产含有茶碱作为印刷分子的广泛交联的聚(甲基丙烯酸-共聚二甲基丙烯酸乙二酯)材料。在索格利特提取茶碱后,结合位点在聚合物中形成,具有互补的大小,形状和化学官能度位置。分子印迹聚合物(MIP)具有较高的茶碱选择性,化学稳定性和物理稳固性,使其成为色谱柱中理想的固定相材料,用于从其他结构相关药物化合物中进行HPLC分离茶碱。流动相测试证实了正相色谱的典型保留机理决定了分离,MIP色谱柱的选择性可以通过流动相和样品溶剂的组合来控制。在最佳条件下,MIP色谱柱的功能类似于茶碱萃取的固相吸附剂。可以通过注入20μL具有适当极性和质子性质以破坏茶碱与结合位点之间的静电相互作用和氢键的溶剂,以脉冲形式快速洗脱结合的茶碱。使用270 nm处的直接LTV吸收检测可获得120 ng / mL的浓度检测极限,这对应于2.4 ng的质量检测极限。这项新技术是采用脉冲洗脱的分子印迹固相萃取(MISPE-PE)技术,可以从大量的稀样品溶液中在线预浓缩茶碱。使用300μL的样品体积,40 ng / mL的标准溶液会产生可检测的峰信号。 MISPE-PE在血清分析中的应用进一步证明了MIP色谱柱从其他基质组分中选择性分离茶碱以进行快速,准确测定的强大能力。

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