Sciutto Edda, Fragoso Gladis, Hernández Marisela, Rosas Gabriela, Martínez José J, Fleury Agnès, Cervantes Jacquelynne, Aluja Aline, Larralde Carlos
Instituto de Investigaciones Biomédicas, Universidad Nacional Autónoma de México, México DF, México.
J Parasitol. 2013 Aug;99(4):693-702. doi: 10.1645/GE-3101.1. Epub 2013 Feb 14.
Our work of the last 25 yr was concerned with the development of a vaccine aimed to prevent porcine Taenia solium cysticercosis and was based on cross-reacting Taenia crassiceps antigens that had proved protective against experimental intraperitoneal murine T. crassiceps cysticercosis (EIMTcC). In recent times the efficacy of the vaccine has been considered in need of confirmation, and the use of EIMTcC has been questioned as a valid tool in screening for vaccine candidates among the many antigens possibly involved. A review of our work divided in 2 parts is presented at this point, the first dealing with EIMTcC and the second with porcine T. solium cysticercosis (presented in this issue). Herein, we revise our results using EIMTcC as a measure of the protective capacity of T. crassiceps complex antigen mixtures, of purified native antigens, and of S3Pvac anti-cysticercosis vaccine composed by 3 protective peptides: GK-1, KETc1, and KETc12 either synthetic or recombinantly expressed and collectively or separately, by diverse delivery systems when administered at different doses and by different routes. Statistical analyses of the data lead confidently to the strong inference that S3Pvac is indeed an effective vaccine against EIMTcC via specific and non-specific mechanisms of protection.
我们过去25年的工作致力于研发一种旨在预防猪带绦虫囊尾蚴病的疫苗,该疫苗基于交叉反应的粗头绦虫抗原,这些抗原已被证明对实验性腹腔内小鼠粗头绦虫囊尾蚴病(EIMTcC)具有保护作用。近年来,该疫苗的有效性被认为需要确认,并且EIMTcC作为筛选众多可能涉及的抗原中候选疫苗的有效工具也受到了质疑。此时,我们将工作分为两部分进行综述,第一部分涉及EIMTcC,第二部分涉及猪带绦虫囊尾蚴病(在本期发表)。在此,我们使用EIMTcC来评估粗头绦虫复合抗原混合物、纯化的天然抗原以及由3种保护性肽(GK-1、KETc1和KETc12,它们可以是合成的或重组表达的,可单独或共同使用)组成的S3Pvac抗囊尾蚴病疫苗的保护能力,这些疫苗通过不同的递送系统,以不同剂量和不同途径给药。对数据的统计分析有力地得出了一个强有力的推断,即S3Pvac确实是一种通过特异性和非特异性保护机制有效预防EIMTcC的疫苗。