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Evaluation of a nanobody phage display library constructed from a Brucella-immunised camel

机译:由布鲁氏菌免疫的骆驼构建的纳米抗体噬菌体展示文库的评估

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Brucella are invasive gram-negative bacteria that multiply and survive within eukaryotic cells causing brucellosis. Syrian (and Middle East) health and economy sectors are still affected by this disease causing a serious national problem that needs to be solved. Here, a strategy was developed to introduce a new generation of binders, known as Nanobodies (Nbs) in our combat against Brucella. These Nbs, recombinant single-domain variable fragments derived from camelid heavy-chain antibodies are very stable and highly soluble, making them a useful tool in numerous biotechnological and medical applications.In this work and without having access to purified antigens (Ags), a camel was immunised successfully with heat-killed Brucella melitensis strain Riv1 as demonstrated by the high titer of Ag-specific heavy-chain antibodies in the serum. Lymphocytes of the immunised camel were isolated and their Nb genes were cloned in a relatively large library of 108 individual transformants, of which 81% contained an insert with the proper size of a Nb gene. Phage display expression of the Nbs from this library and pannings on the Brucella lysate resulted in a clear enrichment of three distinct Nb-displaying phages (phage-Nbs), referred to as NbBruc01, 02 and 03, with specificity for Brucella. Producing these binders in a pure, soluble form, as well as identifying their specific targets, which are likely to be immunodominant Ags in Brucella, is expected to open wide perspectives for following the vaccination, diagnosis and treatment of brucellosis
机译:布鲁氏菌是革兰氏阴性细菌,在真核细胞内繁殖并存活,从而引起布鲁氏菌病。叙利亚(和中东)的卫生和经济部门仍然受到这种疾病的影响,造成了严重的民族问题,需要解决。在这里,我们制定了一种策略,在我们对抗布鲁氏菌的过程中引入了新一代的粘合剂,称为纳米抗体(Nbs)。这些来自骆驼科重链抗体的Nbs重组单结构域可变片段非常稳定且高度可溶,使其成为众多生物技术和医学应用中的有用工具。在这项工作中,无需获得纯化抗原(Ags),骆驼用热灭活的布鲁氏布鲁氏菌菌株Riv1成功免疫,如血清中高滴度的Ag特异性重链抗体所证明。分离了免疫骆驼的淋巴细胞,并将其Nb基因克隆到一个相对较大的库中,该库包含108个单独的转化体,其中81%包含具有Nb基因适当大小的插入片段。 Nbs在该文库中的噬菌体展示表达以及布鲁氏菌裂解液淘选导致了三种不同的Nb展示噬菌体(phage-Nbs)的明显富集,分别称为NbBruc01、02和03,对布鲁氏菌具有特异性。以纯净,可溶的形式生产这些结合剂,并确定它们的特定靶标(可能是布鲁氏菌中的免疫优势抗原),有望为疫苗接种,诊断和治疗布鲁氏菌病打开广阔的前景。

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