能够诱导特异性抗体检测2B型血管性血友病主要改变的抗原肽

International Journal of Peptides Pub Date : 2013-01-01 Epub Date: 2013-07-18 DOI:10.1155/2013/590329
Marina de Oliveira Paro, Cyntia Silva Ferreira, Fernanda Silva Vieira, Marcos Aurélio de Santana, William Castro-Borges, Maria Sueli Silva Namen-Lopes, Sophie Yvette Leclercq, Cibele Velloso-Rodrigues, Milton Hércules Guerra de Andrade
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摘要

血管性血友病(VWD)是一种遗传性出血性疾病,由血管性血友病因子(VWF)的定量或定性缺陷引起。这种疾病是最常见的人类凝血病,占人口的1.3%。定性缺陷被细分为四个亚型,并根据VWF的分子功能障碍进行分类。VWD的鉴别诊断是一项艰巨的任务,依赖于一组旨在评估VWF血浆水平和功能的测试。在这里,我们提出了生物化学方法来识别VWF的结构变异。通过生物信息学分析设计了7个多肽,其中3个是属于正常VWF的特定氨基酸序列的代表,4个包含在最常见的VWD亚型2B中发现的序列。这些肽被用来免疫小鼠,之后,纯化肽特异性免疫球蛋白。这导致了四种能够检测2B亚型VWD变化的Ig制剂以及另外三种针对正常VWF的抗体组分。该抗体组可用于多种用途,其中包括(1)VWF的评估:抗原相互作用,(2)VWF的多聚体分析,以及(3)针对VWF的单克隆抗体的生产,用于治疗血栓性血小板减少性紫癜。
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Antigenic Peptides Capable of Inducing Specific Antibodies for Detection of the Major Alterations Found in Type 2B Von Willebrand Disease.

Von Willebrand disease (VWD) is an inherited hemorrhagic disorder promoted by either quantitative or qualitative defects of the von Willebrand factor (VWF). The disease represents the most common human coagulopathy afflicting 1.3% of the population. Qualitative defects are subdivided into four subtypes and classified according to the molecular dysfunction of the VWF. The differential diagnosis of the VWD is a difficult task, relying on a panel of tests aimed to assess the plasma levels and function of the VWF. Here, we propose biochemical approaches for the identification of structural variants of the VWF. A bioinformatic analysis was conducted to design seven peptides among which three were representatives of specific amino acid sequences belonging to normal VWF and four encompassed sequences found in the most common VWD subtype 2B. These peptides were used to immunize mice, after which, peptide-specific immunoglobulins were purified. This resulted in four Ig preparations capable of detecting alterations in the subtype 2B VWD plus additional three antibody fractions targeting the normal VWF. The panel of antibodies could serve many applications among them (1) assessment of VWF: antigen interaction, (2) VWF multimer analysis, and (3) production of monoclonal antibodies against VWF for therapeutic purposes as in thrombotic thrombocytopenic purpura.

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