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用于肝素的电化学传感器:进一步表征及生物分析应用

Electrochemical sensor for heparin: further characterization and bioanalytical applications.

作者信息

Ma S C, Yang V C, Fu M, Meyerhoff M E

机构信息

College of Pharmacy, University of Michigan, Ann Arbor 48109-1065.

出版信息

Anal Chem. 1993 Aug 1;65(15):2078-84. doi: 10.1021/ac00063a024.

DOI:10.1021/ac00063a024
PMID:8372971
Abstract

Further studies regarding the potentiometric response to heparin of polymeric membranes doped with lipophilic quaternary ammonium salts are reported. Among a wide range of membrane formulations examined, optimum response toward macromolecular heparin is achieved using tridodecylmethylammonium chloride as the active membrane component within poly(vinyl chloride) or poly(vinyl chloride)/(vinyl acetate) films plasticized with dioctyl sebacate. Although such membranes are shown to exhibit a typical Hofmeister potentiometric selectivity pattern toward small inorganic and organic anions, a very large and reproducible response to heparin at submicromolar levels is observed in the presence of physiological saline (0.12-0.15 M NaCl), as well as in citrated whole blood. Equal response on a mass basis occurs with fragments of heparin's as small as 2500 Da. Complexation of heparin's anionic sites by macromolecules that bind heparin with high affinity (e.g., protamine and poly(L-lysine)) reduces the membrane electrode's heparin response, indicating that the electrode detects biologically available (unbound) heparin levels in solution. Quantitative potentiometric titrations of protamine with porcine mucosa heparin followed by the sensor yield stoichiometric values in good agreement with the literature. The biomedical utility of the sensor is demonstrated by measuring its response in whole blood from patients undergoing open heart surgery before and after heparin therapy and correlating such response to conventional blood clotting time measurements.

摘要

报道了关于掺杂亲脂性季铵盐的聚合物膜对肝素的电位响应的进一步研究。在所研究的广泛膜配方中,以氯化三十二烷基甲基铵作为活性膜组分,在以癸二酸二辛酯增塑的聚氯乙烯或聚氯乙烯/(醋酸乙烯酯)薄膜中,可实现对大分子肝素的最佳响应。尽管此类膜对小的无机和有机阴离子表现出典型的霍夫迈斯特电位选择性模式,但在生理盐水(0.12 - 0.15 M NaCl)存在下以及在枸橼酸化全血中,观察到对亚微摩尔水平的肝素具有非常大且可重复的响应。肝素小至2500 Da的片段在质量基础上产生相同的响应。与肝素具有高亲和力结合的大分子(如鱼精蛋白和聚(L - 赖氨酸))对肝素阴离子位点的络合会降低膜电极对肝素的响应,这表明该电极检测溶液中生物可利用(未结合)的肝素水平。用猪黏膜肝素对鱼精蛋白进行定量电位滴定,随后通过传感器得到的化学计量值与文献结果吻合良好。通过测量接受心脏直视手术患者在肝素治疗前后全血中的响应,并将这种响应与传统凝血时间测量结果相关联,证明了该传感器的生物医学实用性。

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