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鲸类和海豚的免疫学

Immunology of whales and dolphins.

作者信息

Beineke Andreas, Siebert Ursula, Wohlsein Peter, Baumgärtner Wolfgang

机构信息

Department of Pathology, University of Veterinary Medicine, Bünteweg 17, 30559 Hannover, Germany.

出版信息

Vet Immunol Immunopathol. 2010 Feb 15;133(2-4):81-94. doi: 10.1016/j.vetimm.2009.06.019. Epub 2009 Aug 3.

Abstract

The increasing disease susceptibility in different whale and dolphin populations has led to speculation about a possible negative influence of environmental contaminants on the immune system and therefore on the health status of marine mammals. Despite current efforts in the immunology of marine mammals several aspects of immune functions in aquatic mammals remain unknown. However, assays for evaluating cellular immune responses, such as lymphocyte proliferation, respiratory burst as well as phagocytic and cytotoxic activity of leukocytes and humoral immune responses have been established for different cetacean species. Additionally, immunological and molecular techniques enable the detection and quantification of pro- and anti-inflammatory cytokines in lymphoid cells during inflammation or immune responses, respectively. Different T and B cell subsets as well as antigen-presenting cells can be detected by flow cytometry and immunohistochemistry. Despite great homologies between marine and terrestrial mammal lymphoid organs, some unique anatomical structures, particularly the complex lymphoepithelial laryngeal glands in cetaceans represent an adaptation to the marine environment. Additionally, physiological changes, such as age-related thymic atrophy and cystic degeneration of the "anal tonsil" of whales have to be taken into account when investigating these lymphoid structures. Systemic morbillivirus infections lead to fatalities in cetaceans associated with generalized lymphoid depletion. Similarly, chronic diseases and starvation are associated with a loss of functional lymphoid cells and decreased resistance against opportunistic infections. There is growing evidence for an immunotoxic effect of different environmental contaminants in whales and dolphins, as demonstrated in field studies. Furthermore, immunomodulatory properties of different persistent xenobiotics have been confirmed in cetacean lymphoid cells in vitro as well as in animal models in vivo. However, species-specific differences of the immune system and detoxification of xenobiotics between cetaceans and laboratory rodents have to be considered when interpreting these toxicological data for risk assessment in whales and dolphins.

摘要

不同鲸类和海豚种群中疾病易感性的增加引发了人们对环境污染物可能对免疫系统产生负面影响,进而对海洋哺乳动物健康状况产生负面影响的猜测。尽管目前在海洋哺乳动物免疫学方面做出了努力,但水生哺乳动物免疫功能的几个方面仍然未知。然而,已经为不同的鲸类物种建立了评估细胞免疫反应的检测方法,如淋巴细胞增殖、呼吸爆发以及白细胞的吞噬和细胞毒性活性,还有体液免疫反应。此外,免疫和分子技术能够分别在炎症或免疫反应期间检测和定量淋巴样细胞中的促炎和抗炎细胞因子。通过流式细胞术和免疫组织化学可以检测不同的T细胞和B细胞亚群以及抗原呈递细胞。尽管海洋哺乳动物和陆地哺乳动物的淋巴器官之间有很大的同源性,但一些独特的解剖结构,特别是鲸类动物复杂的淋巴上皮喉腺代表了对海洋环境的一种适应。此外,在研究这些淋巴结构时,必须考虑生理变化,如与年龄相关的胸腺萎缩和鲸鱼“肛门扁桃体”的囊性变性。全身性麻疹病毒感染会导致鲸类动物死亡,并伴有全身性淋巴样细胞耗竭。同样,慢性疾病和饥饿与功能性淋巴样细胞的丧失以及对机会性感染的抵抗力下降有关。实地研究表明,越来越多的证据表明不同环境污染物对鲸鱼和海豚具有免疫毒性作用。此外,不同持久性异生素的免疫调节特性已在鲸类淋巴样细胞体外实验以及体内动物模型中得到证实。然而,在解释这些毒理学数据以评估鲸鱼和海豚的风险时,必须考虑鲸类动物和实验室啮齿动物之间免疫系统的物种特异性差异以及异生素的解毒情况。

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