Exploring the distinct immunological reactions of bovine neutrophils towards major and minor pathogens responsible for mastitis

微生物学 细菌 生物 乳腺炎 中性粒细胞胞外陷阱 吞噬作用 髓过氧化物酶 免疫学 效应器 炎症 遗传学
作者
Anyaphat Srithanasuwan,Laorat Tata,Warunya Tananupak,Weerin Jaraja,Witaya Suriyasathaporn,Phongsakorn Chuammitri
出处
期刊:International Journal of Veterinary Science and Medicine [Taylor & Francis]
卷期号:11 (1): 106-120 被引量:1
标识
DOI:10.1080/23144599.2023.2262250
摘要

Bovine mastitis is primarily caused by a group of bacteria known as Staphylococcus and Streptococcus. However, additional types of bacteria, such as bovine non-aureus staphylococci and mammaliicocci (NASM) as well as lactic acid bacteria (LAB), are considered minor pathogens and have less impact on cows. Modulating bovine neutrophil activities and gene expressions in response to bacterial stimuli prompted the cells to execute effector functions to combat udder infections. Although neutrophils can manage major mastitis-causing bacteria, this strategy has not been tested against minor pathogens, i.e. NASM, Weissella spp. Our main objective was to investigate how neutrophils interacted with major and minor pathogens during in vitro bacterial stimulation. The results reveal that neutrophils performed offensive duties regardless of the type of bacteria encountered. Neutrophils generated high levels of reactive oxygen species, efficiently phagocytosed both types of bacteria, and facilitated extracellular killing by releasing NET structures against all bacteria. In addition, neutrophils migrated preferentially towards the majors rather than the minors, although myeloperoxidase (MPO) degranulation did not differ substantially across bacteria. Furthermore, the killing capacity of neutrophils was not dependent on any particular bacterium. The correlation of effector functions is intimately linked to the up-regulation of genes associated with the above functions, except for IL6, which was down-regulated. Furthermore, neutrophil apoptosis can be modulated by altering apoptosis-associated genes in response to harmful stimuli. These findings provide valuable information on how neutrophils react to major and minor mastitis-causing bacteria. However, future research should explore the interplay between minor pathogens and the host's responses.
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