Kaan Kumas, Bahram Sayyaf Dezfuli, Emanuela Franchella, Yajiao Duan, Per Walter Kania, Kurt Buchmann
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引用次数: 0
摘要
野生和养殖种群中的鱼类可能感染多种类型的病原体,但宿主的反应因宿主和寄生虫种类而异。本研究揭示了单纯性异尖线虫(Anisakis simplplex)幼虫的实验性感染如何诱导虹鳟鱼的细胞和体液免疫反应。经口服给药后,线虫幼虫侵入鱼的腹腔,并被一系列宿主细胞包裹,包括巨噬细胞、中性粒细胞、肥大细胞、成纤维细胞和淋巴细胞。主要分布在体腔内(92.7%),沿幽门盲肠分布(51.3%),胃、肝、脾、鱼鳔和肌肉组织分布较少。透射电镜(TEM)和组织化学记录细胞反应。实时定量PCR (Real - time quantitative PCR, qPCR)结果显示,宿主脾脏中一系列免疫相关基因受到感染的调控。因此,单纯a诱导免疫基因(编码IgD和溶菌酶)的下调和编码免疫调节细胞因子IL-10的基因的上调。讨论了线虫分子对宿主抗寄生反应的影响。
Cellular responses in rainbow trout Oncorhynchus mykiss to experimental Anisakis simplex infection.
Fish in wild and cultured populations may be infected with numerous types of pathogens but the host responses vary dependent on both host and parasite species. The present study demonstrates how an experimental infection with endoparasitic nematode larvae (Anisakis simplex) induces cellular and humoral immune responses in rainbow trout Oncorhynchus mykiss. The nematode larvae invaded the peritoneal cavity of the fish following oral administration and became encapsulated by a range of host cells including macrophages, neutrophils, mast cells, fibroblasts, and lymphocytes. The main part (92.7%) of the recovered larvae was located in the body cavity and 51.3% along the pyloric caeca with only few in or on the stomach, liver, spleen, swim bladder, and musculature. The cellular reaction was documented by transmission electron microscopy (TEM) and histochemistry. Real time quantitative PCR (qPCR) showed that a series of immune-relevant genes in the host spleen became regulated by the infection. Thus, A. simplex induced downregulation of immune-genes (encoding IgD and lysozyme) and upregulation of the gene encoding the immune-regulating cytokine IL-10. Nematode molecules influencing the antiparasitic host reactions are discussed.
期刊介绍:
The journal Parasitology Research covers the latest developments in parasitology across a variety of disciplines, including biology, medicine and veterinary medicine. Among many topics discussed are chemotherapy and control of parasitic disease, and the relationship of host and parasite.
Other coverage includes: Protozoology, Helminthology, Entomology; Morphology (incl. Pathomorphology, Ultrastructure); Biochemistry, Physiology including Pathophysiology;
Parasite-Host-Relationships including Immunology and Host Specificity; life history, ecology and epidemiology; and Diagnosis, Chemotherapy and Control of Parasitic Diseases.