首页> 外文期刊>Acta Neuropathologica >Llama VHH antibody fragments against GFAP: better diffusion in fixed tissues than classical monoclonal antibodies.
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Llama VHH antibody fragments against GFAP: better diffusion in fixed tissues than classical monoclonal antibodies.

机译:抗GFAP的骆驼VHH抗体片段:在固定组织中的扩散比经典单克隆抗体更好。

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摘要

Camelids produce antibodies made of homodimeric heavy chains, and the antigen-binding region being composed of a single domain called VHH. These VHHs are much smaller than complete IgG. They are also more thermostable and more soluble in water; they should, therefore, diffuse more readily in the tissues. VHHs, expressed in bacteria, are easier to produce than conventional monoclonal antibodies. Because of these special characteristics, these antibody fragments could have interesting developments in immunohistochemistry and in the development of biomarkers. To test the possibility of their use in immunohistochemistry (IHC), we selected the glial fibrillary acidic protein (GFAP), a well-known marker of astrocytes. One alpaca (Lama pacos) was immunized against GFAP. Lymphocytes were isolated; the DNA was extracted; the VHH-coding sequences were selectively amplified. Three VHHs with a high affinity for GFAP and their corresponding mRNA were selected by ribosome display. Large quantities of the recombinant VHHs coupled with different tags were harvested from transfected bacteria. One of them was shown to immunolabel strongly and specifically to GFAP of human astrocytes in tissue sections. The quality of the IHC was comparable or, in some aspects, superior to the quality obtained with conventional IgG. The VHH was shown to diffuse on a longer distance than conventional monoclonal antibodies in fixed cortical tissue: a property that may be useful in immunolabeling of thick sections.
机译:骆驼产生由同型二聚体重链组成的抗体,抗原结合区由称为VHH的单个结构域组成。这些VHH比完整的IgG小得多。它们也更热稳定并且更易溶于水。因此,它们应更容易在组织中扩散。在细菌中表达的VHH比常规单克隆抗体更易于生产。由于这些特殊的特性,这些抗体片段可能在免疫组织化学和生物标志物的开发中具有有趣的发展。为了测试其在免疫组织化学(IHC)中使用的可能性,我们选择了神经胶质纤维酸性蛋白(GFAP),这是星形胶质细胞的著名标记。一只羊驼(美洲驼)免疫了GFAP。分离淋巴细胞; DNA被提取; VHH编码序列被选择性地扩增。通过核糖体展示选择了三个对GFAP具有高亲和力的VHH及其相应的mRNA。从转染细菌中收获了大量带有不同标签的重组VHH。已显示其中之一对组织切片中的人类星形胶质细胞的GFAP进行了强烈且特异性的免疫标记。 IHC的质量与传统IgG相当,或者在某些方面优于传统IgG。已显示,VHH在固定皮层组织中的扩散距离比常规单克隆抗体更长,这在厚切片的免疫标记中可能有用。

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