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In vitro and in vivo application of anti-cotinine antibody and cotinine-conjugated compounds

机译:体外和体内施用抗cotinine抗体和胞苷缀合的化合物

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The combination of a high-affinity antibody to a hapten, and hapten-conjugated compounds, can provide an alternative to the direct chemical cross-linking of the antibody and compounds. An optimal hapten for in vitro use is one that is absent in biological systems. For in vivo applications, additional characteristics such as pharmacological safety and physiological inertness would be beneficial. Additionally, methods for cross-linking the hapten to various chemical compounds should be available. Cotinine, a major metabolite of nicotine, is considered advantageous in these aspects. A high-affinity anti-cotinine recombinant antibody has recently become available, and can be converted into various formats, including a bispecific antibody. The bispecific anti-cotinine antibody was successfully applied to immunoblot, enzyme immunoassay, immunoaffinity purification, and pre-targeted in vivo radioimmunoimaging. The anti-cotinine IgG molecule could be complexed with aptamers to form a novel affinity unit, and extended the in vivo half-life of aptamers, opening up the possibility of applying the same strategy to therapeutic peptides and chemical compounds.
机译:高亲和力抗体对半抗原和霍普森顿缀合化合物的组合可以提供抗体和化合物的直接化学交联的替代方法。用于体外使用的最佳HAPTEN是生物系统中不存在的。对于体内应用,药理安全和生理惰性等额外特征将是有益的。另外,可以使用用于将Hapten交联到各种化合物的方法。 Cotinine是尼古丁的主要代谢物,在这些方面被认为是有利的。最近可用的高亲和力抗cotinine重组抗体,并且可以转化为各种形式,包括双特异性抗体。双特异性抗胞苷抗体成功地应用于免疫印迹,酶免疫分析,免疫亲和性纯化,并在体内放射免疫杂种中预先靶向。抗cotinine IgG分子可以与适体复合,以形成新的亲和单元,并延伸体内适体半衰期,开启施加与治疗肽和化学化合物相同的策略的可能性。

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