基于肽策略产生抗尼罗罗非鱼IgT重链单克隆抗体

Janet Velázquez , Lynn Cruz , Maylin Pérez-Bernal , Onel Valdivia , Arlette Haidar , Alianet Rodríguez , Fidel Herrera , Osmany González , Antonio Morales , Lisbet Ulloa , Reinaldo Blanco , Joel Pérez , Dayamí Dorta , Yaramis Luna , Hilda Elisa Garay , David Diago Abreu , Yassel Ramos , Vladimir Besada , Yeosvany Cabrera , Mario Pablo Estrada , Yamila Carpio
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引用次数: 0

摘要

远端IgT/Z在粘膜区室和系统免疫中对感染源的防御机制中起主要作用。以前,尼罗罗非鱼(Oreochromis niloticus)IgT是在转录水平上发现和表征的。在这项工作中,我们产生了一种特异性识别尼罗罗非鱼IgT的单克隆抗体(mAb)。用三种与KLH偶联的合成肽免疫BALB/c小鼠。这些肽的序列来源于尼罗罗非鱼IgT重链的恒定区。ELISA和Western印迹证实了来自阳性杂交瘤克隆的多克隆血清和培养上清液的特异性。我们在皮肤粘液中观察到针对重组IgT片段和天然IgT的免疫反应性。抗IgT单克隆抗体与纯化的罗非鱼IgM没有交叉反应。直接ELISA分析可以定量皮肤粘液IgM和IgT的浓度。流式细胞术分析显示,青少年和成年人在外周血、头肾和脾脏淋巴细胞以及所分析的组织中IgT+B细胞群的百分比存在差异。为了进一步验证抗IgT单克隆抗体的效用,将针对海虱的重组候选疫苗(TT-P0-Ls)注射到罗非鱼幼鱼中。直接ELISA结果显示免疫刺激后皮肤粘液IgT和IgM的分泌存在差异。此外,在加强和离体刺激后7天,通过流式细胞术测定IgT+B细胞的百分比。该单克隆抗体是研究罗非鱼IgT生物学功能和结构特征的重要免疫学工具。
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Monoclonal antibody generated against Nile tilapia (Oreochromis niloticus) IgT heavy chain using a peptide-based strategy

Teleost IgT/Z plays a principal role in the defense mechanisms against infectious agents in the mucosal compartments and in systemic immunity. Previously, Nile tilapia (Oreochromis niloticus) IgT was discovered and characterized at transcription level. In this work, we generated a monoclonal antibody (mAb) that specifically recognized the Nile tilapia IgT. BALB/c mice were immunized with three synthetic peptides conjugated to KLH. The sequences of these peptides derived from the constant region of the Nile tilapia IgT heavy chain. ELISA and Western blotting confirmed the specificity of the polyclonal sera and the culture supernatant from a positive hybridoma clone. We observed immunoreactivity against a recombinant IgT fragment and native IgT in skin mucus. The anti-IgT mAb did not cross-react with purified tilapia IgM. Direct ELISA analysis allowed the quantification of skin mucus IgM and IgT concentrations. Flow cytometry analysis revealed differences in the percentage of IgT+ B cell populations between juveniles and adults in peripheral blood, head kidney and spleen lymphocytes and among the tissues analyzed. For further validation of the anti-IgT mAb utility, a recombinant vaccine candidate against sea lice (TT-P0 Ls) was injected into juvenile tilapia. Direct ELISA results revealed a differential secretion of skin mucus IgT and IgM after immunostimulation. In addition, the percentages of IgT+ B cells were determined at 7 days after booster and ex-vivo stimulation by flow cytometry. This mAb constitutes an important immunological tool to study the biological function and structural characteristics of tilapia IgT.

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