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Hapten Optimization for Cocaine Vaccine with Improved Cocaine Recognition

机译:可卡因识别的半抗原优化可卡因疫苗

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摘要

In the absence of any effective pharmacotherapy for cocaine addiction, immunotherapy is being actively pursued as a therapeutic intervention. While several different cocaine haptens have been explored to develop anti-cocaine antibodies, none of the hapten was successfully designed which had a protonated tropane nitrogen as is found in native cocaine under physiological conditions, including the succinyl norcocaine (SNC) hapten that has been tested in phase II clinical trials. Herein, we discuss three different cocaine haptens: hexyl-norcocaine (HNC), bromoacetamido butyl- norcocaine (BNC), and succinyl-butyl- norcocaine (SBNC), each with a tertiary nitrogen structure mimicking that of native cocaine which could optimize the specificity of anti-cocaine antibodies for better cocaine recognition. Mice immunized with these haptens conjugated to immunogenic proteins produced high titer anti-cocaine antibodies. However, during chemical conjugation of HNC and BNC haptens to carrier proteins, the 2β methyl ester group is hydrolyzed and immunizing mice with these conjugate vaccines in mice produced antibodies that bound both cocaine and the inactive benzoylecgonine metabolite. While in the case of the SBNC conjugate vaccine hydrolysis of the methyl ester did not appear to occur, leading to antibodies with high specificity to cocaine over BE. Though we observed similar specificity with a SNC hapten, the striking difference is that SBNC carries a positive charge on the tropane nitrogen atom, and therefore it is expected to have better binding of cocaine. The 50% cocaine inhibitory concentration (IC50) value for SBNC antibodies (2.8 μM) was significantly better than the SNC antibodies (9.4 μM) when respective hapten-BSA was used as a substrate. In addition, antibodies from both sera had no inhibitory effect from BE. In contrast to BNC and HNC, the SBNC conjugate was also found to be highly stable without any noticeable hydrolysis for several months at 4°C and 2-3 days in pH 10 buffer at 37°C.
机译:在没有任何可卡因成瘾的有效药物疗法的情况下,正在积极寻求免疫疗法作为治疗干预措施。虽然已经探索了几种不同的可卡因半抗原来开发抗可卡因抗体,但没有成功设计出在生理条件下天然可卡因中发现的具有质子化的托烷氮的质子化的托烷氮的半抗原,包括已被测试的琥珀酰去甲可卡因(SNC)半抗原在II期临床试验中。在本文中,我们讨论了三种不同的可卡因半抗原:己基-北可卡因(HNC),溴乙酰胺基丁基-正可卡因(BNC)和琥珀酰-丁基-正可卡因(SBNC),每种都具有类似于天然可卡因的三级氮结构,可以优化特异性。可卡因抗体可更好地识别可卡因。用与免疫原性蛋白偶联的这些半抗原免疫的小鼠产生高滴度的抗可卡因抗体。然而,在HNC和BNC与载体蛋白化学结合的过程中,2β甲酯基团被水解,并且用这些结合疫苗对小鼠进行免疫,从而在小鼠中产生了结合可卡因和非活性苯甲酰芽子碱代谢产物的抗体。尽管在SBNC缀合物疫苗的情况下,似乎没有发生甲酯的水解,导致抗体对可卡因的特异性高于BE。尽管我们观察到与SNC半抗原相似的特异性,但最大的不同在于SBNC在托烷氮原子上带有正电荷,因此可卡因具有更好的结合力。当将相应的半抗原-BSA用作底物时,SBNC抗体(2.8μM)的50%可卡因抑制浓度(IC50)值明显优于SNC抗体(9.4μM)。另外,来自两种血清的抗体都没有来自BE的抑制作用。与BNC和HNC相比,还发现SBNC共轭物非常稳定,在4°C的几个月中和在37°C的pH 10缓冲液中2-3天没有任何明显的水解。

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