首页> 美国卫生研究院文献>Vaccines >Low-Energy Electron Irradiation Efficiently Inactivates the Gram-Negative Pathogen Rodentibacter pneumotropicus—A New Method for the Generation of Bacterial Vaccines with Increased Efficacy
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Low-Energy Electron Irradiation Efficiently Inactivates the Gram-Negative Pathogen Rodentibacter pneumotropicus—A New Method for the Generation of Bacterial Vaccines with Increased Efficacy

机译:低能量电子辐照有效地灭活了革兰氏阴性病原性嗜气性杆状芽孢杆菌-一种新的具有更高功效的细菌疫苗生成方法

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摘要

Bacterial pathogens cause severe infections worldwide in livestock and in humans, and antibiotic resistance further increases the importance of prophylactic vaccines. Inactivated bacterial vaccines (bacterins) are usually produced via incubation of the pathogen with chemicals such as formaldehyde, which is time consuming and may cause loss of immunogenicity due to the modification of structural components. We evaluated low-energy electron irradiation (LEEI) as an alternative method to generate a bacterin. , an invasive Gram-negative murine pathogen, was inactivated with LEEI and formaldehyde. LEEI resulted in high antigen conservation, and LPS activity was significantly better maintained when compared with formaldehyde treatment. Immunization of mice with LEEI-inactivated elicited a strong immune response with no detectable bacterial burden upon sublethal challenge. The results of this study suggest the inactivation of bacteria with LEEI as an alternative, fast and efficient method to generate bacterial vaccines with increased efficacy.
机译:细菌病原体在全世界范围内在牲畜和人类中引起严重的感染,并且抗生素抗性进一步增加了预防性疫苗的重要性。灭活的细菌疫苗(细菌素)通常是通过将病原体与甲醛等化学物质一起温育来生产的,这很耗时,并且由于结构成分的修饰而可能导致免疫原性丧失。我们评估了低能电子辐射(LEEI)作为产生细菌素的替代方法。 ,革兰氏阴性鼠源性入侵病原体,用LEEI和甲醛灭活。 LEEI导致高度的抗原保守性,与甲醛处理相比,LPS活性显着更好地保持。 LEEI灭活的小鼠免疫引起强烈的免疫反应,在致死性攻击后无可检测的细菌负担。这项研究的结果表明,使用LEEI灭活细菌是一种替代的,快速而有效的方法,可以产生效力更高的细菌疫苗。

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