Otsuka Narumi, Ishimaru Kairi, Murakami Mami, Goto Minami, Hirata Akihiro, Sakai Hiroki
Laboratory of Veterinary Pathology, Joint Graduate School of Veterinary Sciences, Gifu University, Gifu, Japan.
Laboratory of Veterinary Pathology, Faculty of Applied Biological Sciences, Gifu University, Gifu, Japan.
J Vet Med Sci. 2022 Jul 1;84(7):914-923. doi: 10.1292/jvms.22-0102. Epub 2022 May 19.
Peroxiredoxin (PRDX) is an antioxidant enzyme family with six isoforms (PRDX1-6). The main function of PRDXs is to decrease cellular oxidative stress by reducing reactive oxygen species, such as hydrogen peroxide, to HO. Recently, it has been reported that PRDXs are overexpressed in various malignant tumors in humans, and are involved in the development, proliferation, and metastasis of tumors. However, studies on the expression of PRDXs in tumors of animals are limited. Therefore, in the present study, we immunohistochemically investigated the expression of PRDX1 and 2 in spontaneous canine hemangiosarcoma (HSA) and hemangioma (HA), as well as in selected normal tissue and granulation tissue, including newly formed blood vessels. Although there were some exceptions, immunolocalization of PRDX1 and 2 in normal canine tissues was similar to those in humans, rats, or mice. In granulation tissue, angiogenic endothelial cells were strongly positive for PRDX1 and 2, whereas quiescent endothelial cells in mature vessels were negative. Both PRDX1 and 2 were significantly highly expressed in HSA compared to HA. There were no significant differences in the expression of PRDX1 and 2 among the subtypes and primary sites of HSA. These results suggest that PRDX1 and 2 may be involved in the angiogenic phenotypes of endothelial cells in granulation tissue as well as in the behavior in the malignant endothelial tumors.
过氧化物酶(PRDX)是一个具有六种亚型(PRDX1 - 6)的抗氧化酶家族。PRDX的主要功能是通过将活性氧(如过氧化氢)还原为水来降低细胞氧化应激。最近,有报道称PRDX在人类的各种恶性肿瘤中过度表达,并参与肿瘤的发生、增殖和转移。然而,关于PRDX在动物肿瘤中表达的研究有限。因此,在本研究中,我们采用免疫组织化学方法研究了PRDX1和PRDX2在自发性犬血管肉瘤(HSA)和血管瘤(HA)以及选定的正常组织和肉芽组织(包括新形成的血管)中的表达。尽管存在一些例外情况,但PRDX1和PRDX2在正常犬组织中的免疫定位与人类、大鼠或小鼠相似。在肉芽组织中,血管生成内皮细胞对PRDX1和PRDX2呈强阳性,而成熟血管中的静止内皮细胞呈阴性。与HA相比,PRDX1和PRDX2在HSA中均显著高表达。PRDX1和PRDX2在HSA的亚型和原发部位之间的表达没有显著差异。这些结果表明,PRDX1和PRDX2可能参与肉芽组织中内皮细胞的血管生成表型以及恶性内皮肿瘤的行为。