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Antigens of Actinobacillus pleuropneumoniae and their use in the design of vaccines, especially glycoconjugates

机译:胸膜肺炎放线杆菌的抗原及其在疫苗设计中的用途,尤其是糖缀合物

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Actinobacillus pleuropneumoniae (further: A. pleuropneumoniae) is microaerophilic, Gram-negative bacteria belonging to the Pasteurellaceae family. This pathogenic microorganism is a major cause of porcine pleuropneumonia and fibrinous pleurisy, highly contagious diseases of the respiratory tract, affecting predominantly young pigs. Pleuropneumonia and fibrinous pleurisy can be diagnosed due to cough combined with a high mortality and the common infection route is direct transfer of bacteria by aerosol. A. pleuropneumoniae is a significant factor for economic losses in the swine industry all over the world. Progress made in research concerning a new potential vaccine enables the development of technology for designing safe, new candidates which could provide full protection against most of A. pleuropneumoniae serotypes. Several immunogenic factors of A. pleuropneumoniae have been found, including carbohydrate antigens, protein molecules and lipostructures. Carbohydrate antigens, as capsular polysaccharides (CPS) and lipopolysaccharides (LPS), have a special place due to their properties and wide potential. Some of these microbial structures were used to create subunit vaccines containing polysaccharide-protein conjugates, which seem to be a promising solution. The prevention methods, such as vaccines, should minimize medical expenses and financial losses. This article shows a wide repertoire of A. pleuropneumoniae antigens and focuses on one of the most promising strategies in vaccine design – glycoconjugate vaccines.
机译:胸膜肺炎放线杆菌(进一步:A. pleuropneumoniae)是属于巴斯德氏菌科的微需氧性革兰氏阴性细菌。这种病原微生物是猪胸膜肺炎和纤维状胸膜炎(呼吸道的高传染性疾病)的主要原因,主要感染幼猪。由于咳嗽并伴有高死亡率,可以诊断出胸膜肺炎和纤维性胸膜炎,常见的感染途径是通过气溶胶直接转移细菌。胸膜肺炎链球菌是造成全世界养猪业经济损失的重要因素。在有关一种新的潜在疫苗的研究中取得的进展使设计安全,新的候选药物的技术得以发展,该技术可以为大多数胸膜肺炎链球菌血清型提供全面保护。已发现胸膜肺炎链球菌的几种免疫原性因子,包括碳水化合物抗原,蛋白质分子和脂质结构。碳水化合物抗原,如荚膜多糖(CPS)和脂多糖(LPS),由于其特性和广泛的潜力而具有特殊的地位。这些微生物结构中的一些被用来制造含有多糖-蛋白质结合物的亚单位疫苗,这似乎是一个有前途的解决方案。预防方法,例如疫苗,应使医疗费用和经济损失最小化。本文展示了胸膜肺炎链球菌抗原的广泛种类,并着重介绍了疫苗设计中最有希望的策略之一-糖缀合物疫苗。

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