León Guillermo, Vargas Mariángela, Segura Álvaro, Herrera María, Villalta Mauren, Sánchez Andrés, Solano Gabriela, Gómez Aarón, Sánchez Melvin, Estrada Ricardo, Gutiérrez José María
Instituto Clodomiro Picado, Facultad de Microbiología, Universidad de Costa Rica, San José, Costa Rica.
Instituto Clodomiro Picado, Facultad de Microbiología, Universidad de Costa Rica, San José, Costa Rica.
Toxicon. 2018 Sep 1;151:63-73. doi: 10.1016/j.toxicon.2018.06.084. Epub 2018 Jun 28.
Snake antivenoms are formulations of animal immunoglobulins used in the treatment of snakebite envenomation. The general scheme for producing snake antivenoms has undergone few changes since its development more than a century ago; however, technological innovations have been introduced in the manufacturing process. These medicines must comply with identity, purity, safety and efficacy profiles, as requested by the current Good Manufacturing Practices (GMPs) applied to modern biopharmaceutical drugs. Industrial production of snake antivenoms comprises several stages, such as: 1) production of reference venom pools, 2) production of hyperimmune plasma, 3) purification of the antivenom immunoglobulins, 4) formulation of the antivenom, 5) stabilization of the formulation, and 6) quality control of in-process and final products. In this work, a general review of the existing technology used for the industrial manufacture of snake antivenoms is presented.
蛇毒抗毒素是用于治疗蛇咬伤中毒的动物免疫球蛋白制剂。自一个多世纪前开发以来,生产蛇毒抗毒素的总体方案几乎没有变化;然而,制造过程中引入了技术创新。这些药物必须符合适用于现代生物制药的现行良好生产规范(GMP)所要求的鉴别、纯度、安全性和有效性标准。蛇毒抗毒素的工业化生产包括几个阶段,例如:1)参考毒液库的生产,2)超免疫血浆的生产,3)抗毒素免疫球蛋白的纯化,4)抗毒素的配制,5)制剂的稳定化,以及6)中间产品和最终产品的质量控制。在这项工作中,对用于蛇毒抗毒素工业化生产的现有技术进行了全面综述。