Department of Organic Chemistry, University of Valencia, Doctor Moliner 50, 46100 Burjassot, Valencia, Spain.
Spanish Council for Scientific Research, Institute of Agrochemistry and Food Technology, Agustí Escardino 7, 46980 Paterna, Valencia, Spain.
Toxins (Basel). 2021 Dec 10;13(12):883. doi: 10.3390/toxins13120883.
Immunochemical methods for mycotoxin analysis require antigens with well-defined structures and antibodies with outstanding binding properties. Immunoreagents for the mycotoxins alternariol and/or alternariol monomethyl ether have typically been obtained with chemically uncharacterized haptens, and antigen conjugates have most likely been prepared with mixtures of functionalized molecules. For the first time, total synthesis was performed, in the present study, to obtain two haptens with opposite linker attachment locations. The functionalized synthetic haptens were purified and deeply characterized by different spectrometric methods, allowing the preparation of bioconjugates with unequivocal structures. Direct and indirect competitive enzyme-linked immunosorbent assays, using homologous and heterologous conjugates, were employed to extensively evaluate the generated immunoreagents. Antibodies with high affinity were raised from conjugates of both haptens, and a structure-activity relationship between the synthetic haptens and the specificity of the generated antibodies could be established. These results pave the way for the development of novel highly sensitive immunoassays selective of one or two of these mycotoxins.
免疫化学方法分析真菌毒素需要具有明确结构的抗原和具有出色结合特性的抗体。用于分析 alternariol 和/或 alternariol monomethyl ether 真菌毒素的免疫试剂通常是用未进行化学表征的半抗原获得的,并且抗原缀合物很可能是用功能化分子的混合物制备的。在本研究中,首次进行了全合成,以获得具有相反连接位置的两种半抗原。对功能化的合成半抗原进行了纯化和深入的光谱表征,允许制备具有明确结构的生物缀合物。使用同源和异源缀合物进行了直接和间接竞争酶联免疫吸附分析,以广泛评估所产生的免疫试剂。从两种半抗原的缀合物中都产生了具有高亲和力的抗体,可以建立合成半抗原与所产生抗体的特异性之间的结构-活性关系。这些结果为开发新型高度敏感的免疫分析方法选择性地分析这些真菌毒素中的一种或两种奠定了基础。