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抗大鼠原血管系统单克隆抗体的制备与鉴定

Production and Characterization of Monoclonal Antibodies Against Primo Vascular System of Rat.

作者信息

Zhang Linlin, Oh Sang Wook

机构信息

Department of Science Education, Jeonbuk National University Graduate School, Jeonju, South Korea.

Department of Biology Education, Institute of Fusion Science, Jeonbuk National University, Jeonju, South Korea.

出版信息

J Acupunct Meridian Stud. 2020 Jun;13(3):110-115. doi: 10.1016/j.jams.2020.05.001. Epub 2020 May 8.

Abstract

BACKGROUND

The primo vascular system (PVS) has been difficult to detect due to its small diameter and translucent features of the threadlike network. Thus, contrast-enhancing dyes including Alcian blue, Trypan blue and Janus green B had to be used for finding and taking out PVS from rat and mouse.

OBJECTIVE

Generation of monoclonal antibodies (mAbs) against PVS of rat was intended to use as a detector for PVS and a biological tool for functional study of PVS.

MATERIALS AND METHODS

Primo vessel (PV) and Primo node (PN) were isolated from organ surfaces of rat and then their proteins were isolated and injected into mouse as an immunogen. The classical traditional method was applied for production of mAbs against PVS. The various techniques, such as cell fusion, screening of hybridoma, ELISA, Western blotting (WB), immunofluorescence microscopy (IF), and limiting dilution, were used to generate mAbs against PVS.

RESULTS

Among 16 mAbs generated, 4 representative mAbs were characterized with their specificities in ELISA, WB, and IF. α-rPVS-m1-1 and α-rPVS-m4-6 had strong binding affinities to PVS in both ELISA and WB but did not show specificities in IF at all. On the contrary, α-rPVS-m3-2 and α-rPVS-m3-4 almost did not respond in WB but had strong binding affinities in ELISA and specificities in IF. Two mAbs stained predominantly at extra cellular matrix and cell membrane of PVS of rat in IF, and they were able to discriminate PVS from blood vessel (BV) and lymphatic vessel (LV).

CONCLUSIONS

4 representative mAbs against PVS of rat were characterized by ELISA, WB, and IF. α-rPVS-m3-2 and α-rPVS-m3-4, which had strong specificities in IF, can be used as a tool in discriminating PVS from other similar tissues and in elucidate biological function of PVS.

摘要

背景

由于原始血管系统(PVS)直径小且呈丝状网络的半透明特征,一直难以检测。因此,不得不使用包括阿尔新蓝、台盼蓝和詹纳斯绿B在内的造影剂来从大鼠和小鼠体内寻找并取出PVS。

目的

制备抗大鼠PVS的单克隆抗体(mAb),用作PVS的检测剂以及PVS功能研究的生物学工具。

材料与方法

从大鼠器官表面分离出原始血管(PV)和原始节点(PN),然后分离其蛋白质并作为免疫原注射到小鼠体内。采用经典传统方法制备抗PVS的单克隆抗体。运用多种技术,如细胞融合、杂交瘤筛选、酶联免疫吸附测定(ELISA)、蛋白质印迹法(WB)、免疫荧光显微镜检查(IF)和有限稀释法,来制备抗PVS的单克隆抗体。

结果

在产生的16种单克隆抗体中,通过ELISA、WB和IF对4种代表性单克隆抗体的特异性进行了表征。α-rPVS-m1-1和α-rPVS-m4-6在ELISA和WB中对PVS具有很强的结合亲和力,但在IF中完全没有显示出特异性。相反,α-rPVS-m3-2和α-rPVS-m3-4在WB中几乎没有反应,但在ELISA中具有很强的结合亲和力,在IF中具有特异性。两种单克隆抗体在IF中主要染色大鼠PVS的细胞外基质和细胞膜,并且它们能够将PVS与血管(BV)和淋巴管(LV)区分开来。

结论

通过ELISA、WB和IF对4种抗大鼠PVS的代表性单克隆抗体进行了表征。在IF中具有强特异性的α-rPVS-m3-2和α-rPVS-m3-4可作为将PVS与其他相似组织区分开来以及阐明PVS生物学功能的工具。

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