首页> 外文期刊>Journal of Immunological Methods >Application of a modified version of Habeeb's trinitrophenylation method for the characterization of hapten-protein conjugates in a reversed micellar medium.
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Application of a modified version of Habeeb's trinitrophenylation method for the characterization of hapten-protein conjugates in a reversed micellar medium.

机译:Habeeb的三硝基苯基化方法的改进版本在反向胶束介质中表征半抗原-蛋白结合物的应用。

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We describe here a protocol for determining the epitope density of hapten-carrier conjugates at the nanomolar level. Conjugates of bovine serum albumin (BSA) and hen egg albumin (OVA) were prepared with two model haptens: 4-acetyl benzoic acid (ABA) as a chromophoric carboxylic hapten and cholesterol hemisuccinate (Chol HS) as a carboxylic derivative of a nonchromophoric hydroxylated hapten. Small-scale but valuable haptenization of carriers was achieved ( approximately 4.3 nmol with an input molar ratio of hapten to carrier within the range from 50:1 to 100:1) that proved yet compatible with immunogenicity and antibody detection. We used a modified version of the amide bond-generating mixed anhydride method of Erlanger performed in a reversed micellar medium. Microsample aliquots of the coupling reaction (carriers plus activated haptens) or control experiment (carriers plus nonactivated haptens) mixtures were directly subjected to trinitrophenylation in the reversed micellar medium. The results for carrier substitution were strongly correlated (r(2)=0.94; n=12) with those obtained by other methods such as UV analysis (for ABA) and chromatographic determination (for Chol HS). This method was found directly applicable to other hapten-carrier conjugates coupled by the same procedure, provided that the haptens do not absorb at about 335 and 420 nm (absorption peaks of trinitrophenyl groups). With this simple, rapid, reproducible and low-cost analysis method, the separation of uncoupled hapten and conjugate is unnecessary. This facilitates the optimization of reaction conditions. Finally, using this procedure, kinetic studies of conjugate formation can be carried out in a very simple manner.
机译:我们在这里描述了一种在纳摩尔水平确定半抗原-载体缀合物的表位密度的方案。用两种模型半抗原制备牛血清白蛋白(BSA)和鸡蛋清蛋白(OVA)的结合物:4-发色羧酸半抗原的4-乙酰基苯甲酸(ABA)和非发色羟基化的羧酸衍生物的胆固醇半琥珀酸酯(Chol HS)半抗原已经实现了载体的小规模但有价值的半抗原化(大约4.3 nmol,半抗原与载体的输入摩尔比在50:1至100:1的范围内),证明与免疫原性和抗体检测兼容。我们使用了在反向胶束介质中进行的Erlanger产生酰胺键的混合酸酐法的改进版本。将偶合反应(载体加活化的半抗原)或对照实验(载体加非活化的半抗原)混合物的微量样品等分试样在逆胶束介质中直接进行三硝基苯化反应。载体取代的结果与通过其他方法(例如,UV分析(对于ABA)和色谱测定(对于Chol HS))获得的结果高度相关(r(2)= 0.94; n = 12)。如果该半抗原在约335和420 nm(三硝基苯基的吸收峰)不吸收,则发现该方法直接适用于通过相同步骤偶联的其他半抗原-载体共轭物。使用这种简单,快速,可重现且低成本的分析方法,无需分离未偶联的半抗原和共轭物。这有助于优化反应条件。最后,使用该程序,可以以非常简单的方式进行偶联物形成的动力学研究。

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