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鸡源抗肺炎链球菌α-烯醇化酶抗体的鉴定

Characterization of chicken-derived antibody against Alpha-Enolase of Streptococcus pneumoniae.

作者信息

Lee Chi-Hsin, Wu Chao-Jung, Yang Yi-Yuan, Wang Wei-Chu, Leu Sy-Jye, Wu Cheng-Tsang, Kao Pei-Shih, Liu Ko-Jiunn, Tsai Bor-Yu, Chiang Yu-Wei, Mao Yan-Chiao, Benedict Dlamini Nhlanhla, Chang Jungshan

机构信息

School of Medical Laboratory Science and Biotechnology, College of Medical Science and Technology, Taipei Medical University, Taipei 110301, Taiwan; Ph.D. Program in Medical Biotechnology, College of Medical Science and Technology, Taipei Medical University, Taipei 110301, Taiwan.

School of Medical Laboratory Science and Biotechnology, College of Medical Science and Technology, Taipei Medical University, Taipei 110301, Taiwan; Ph.D. Program in Medical Biotechnology, College of Medical Science and Technology, Taipei Medical University, Taipei 110301, Taiwan; Core Laboratory of Antibody Generation and Research, Taipei Medical University, Taipei 110301, Taiwan.

出版信息

Int Immunopharmacol. 2024 Feb 15;128:111476. doi: 10.1016/j.intimp.2023.111476. Epub 2024 Jan 6.

Abstract

Streptococcus pneumoniae is a clinically relevant pathogen notorious for causing pneumonia, meningitis, and otitis media in immunocompromised patients. Currently, antibiotic therapy is the most efficient treatment for fighting pneumococcal infections. However, an arise in antimicrobial resistance in S. pneumoniae has become a serious health issue globally. To resolve the problem, alternative and cost-effective strategies, such as monoclonal antibody-based targeted therapy, are needed for combating bacterial infection. S. pneumoniae alpha-enolase (spEno1), which is thought to be a great target, is a surface protein that binds and converts human plasminogen to plasmin, leading to accelerated bacterial infections. We first purified recombinant spEno1 protein for chicken immunization to generate specific IgY antibodies. We next constructed two single-chain variable fragments (scFv) antibody libraries by phage display technology, containing 7.2 × 10 and 4.8 × 10 transformants. After bio-panning, ten scFv antibodies were obtained, and their binding activities to spEno1 were evaluated on ELISA, Western blot and IFA. The epitopes of spEno1 were identified by these scFv antibodies, which binding affinities were determined by competitive ELISA. Moreover, inhibition assay displayed that the scFv antibodies effectively inhibit the binding between spEno1 and human plasminogen. Overall, the results suggested that these scFv antibodies have the potential to serve as an immunotherapeutic drug against S. pneumoniae infections.

摘要

肺炎链球菌是一种与临床相关的病原体,在免疫功能低下的患者中引起肺炎、脑膜炎和中耳炎而声名狼藉。目前,抗生素治疗是对抗肺炎球菌感染最有效的治疗方法。然而,肺炎链球菌抗菌耐药性的出现已成为全球严重的健康问题。为了解决这个问题,需要替代的、具有成本效益的策略,如基于单克隆抗体的靶向治疗,来对抗细菌感染。肺炎链球菌α-烯醇化酶(spEno1)被认为是一个很好的靶点,它是一种表面蛋白,能结合人纤溶酶原并将其转化为纤溶酶,从而加速细菌感染。我们首先纯化重组spEno1蛋白用于鸡免疫以产生特异性IgY抗体。接下来,我们通过噬菌体展示技术构建了两个单链可变片段(scFv)抗体文库,分别包含7.2×10和4.8×10个转化体。经过生物淘选,获得了10种scFv抗体,并通过ELISA、Western印迹和IFA评估了它们与spEno1的结合活性。通过这些scFv抗体鉴定了spEno1的表位,并通过竞争性ELISA测定了它们的结合亲和力。此外,抑制试验表明scFv抗体有效地抑制了spEno1与人纤溶酶原之间的结合。总体而言,结果表明这些scFv抗体有潜力作为一种抗肺炎链球菌感染的免疫治疗药物。

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