van den Biggelaar Robin H G A, van Eden Willem, Rutten Victor P M G, Jansen Christine A
Department of Biomolecular Health Sciences, Division of Infectious Diseases and Immunology, Faculty of Veterinary Medicine, Utrecht University, Yalelaan 1, 3584CL Utrecht, The Netherlands.
Department of Veterinary Tropical Diseases, Faculty of Veterinary Science, University of Pretoria, Private bag X20, Hatfield 0028, South Africa.
Vaccines (Basel). 2020 Nov 10;8(4):671. doi: 10.3390/vaccines8040671.
High-quality vaccines are crucial to prevent infectious disease outbreaks in the poultry industry. In vivo vaccination tests are routinely used to test poultry vaccines for their potency, i.e., their capacity to induce protection against the targeted diseases. A better understanding of how poultry vaccines activate immune cells will facilitate the replacement of in vivo potency tests for in vitro assays. Using the chicken macrophage-like HD11 cell line as a model to evaluate innate immune responses, the current explorative study addresses the immunostimulatory capacity of an inactivated multivalent vaccine for infectious bronchitis, Newcastle disease, egg-drop syndrome, and infectious coryza. The vaccine stimulated HD11 cells to produce nitric oxide and to express pro-inflammatory cytokines , and chemokines and , and the anti-inflammatory cytokine , but only when inactivated , the causative agent of infectious coryza, was present. Lipopolysaccharides from were crucial for the production of nitric oxide and expression of and . The described immune parameters demonstrate the capacity of this multivalent vaccine to activate innate immune cells and may in the future, combined with antigen quantification methods, contribute to vaccine quality testing in vitro, hence the replacement of current in vivo vaccination tests.
高质量疫苗对于预防家禽业传染病暴发至关重要。体内疫苗接种试验通常用于检测家禽疫苗的效力,即其诱导针对目标疾病的保护能力。更好地了解家禽疫苗如何激活免疫细胞将有助于用体外试验取代体内效力试验。本探索性研究以鸡巨噬细胞样HD11细胞系为模型评估先天免疫反应,探讨一种针对传染性支气管炎、新城疫、产蛋下降综合征和传染性鼻炎的灭活多价疫苗的免疫刺激能力。该疫苗刺激HD11细胞产生一氧化氮并表达促炎细胞因子、趋化因子和,以及抗炎细胞因子,但仅在存在传染性鼻炎病原体灭活物时才会如此。来自的脂多糖对于一氧化氮的产生以及和的表达至关重要。所描述的免疫参数证明了这种多价疫苗激活先天免疫细胞的能力,未来与抗原定量方法相结合,可能有助于体外疫苗质量检测,从而取代当前的体内疫苗接种试验。