生产特异性抗EGFR单链抗体:表达EGFR的肿瘤组织免疫治疗的一个有前途的策略

S. Mohammadi, F. Hosseinzadeh, Foroogh Nejatollahi
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引用次数: 6

摘要

背景:EGFR(表皮生长因子受体)在许多癌症中过表达,并在一些现象中发挥重要作用,如肿瘤的侵袭性、患者生存率下降以及对激素治疗、化疗和放疗等治疗的耐药性。目的:本研究的目的是产生针对EGFR的特异性人单链抗体,并评估其对免疫显性表位的特异性,为治疗表达EGFR的肿瘤组织提供一种新的有效方法。方法:构建单链抗体(scFv)噬菌体抗体展示库,筛选EGFR免疫显性表位。为了选择特定的克隆,进行DNA指纹分析并区分常见的模式。进行ELISA(酶联免疫吸附测定)以确认筛选结果并显示所选克隆的特异性。结果:分化出两个频率分别为55%和30%的特异性克隆。克隆显示出具有相应表位的阳性ELISA,而阴性对照(不相关肽、M13KO7(辅助噬菌体)、不相关scFv和无肽)未观察到阳性反应。结论:癌症免疫治疗是近年来新的治疗策略。小而高亲和力的单链抗体在这方面发挥了至关重要的作用。在本研究中选择并与相应表位反应的特异性人抗EGFR单链抗体具有作为阻断抗体应用于干扰表达EGFR的肿瘤中的肿瘤生长的潜力。需要进一步的研究来评估这些抗体在体外和体内的作用。
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Production of Specific Anti-EGFR Single Chain Antibodies: A Promising Strategy in the Immunotherapy of EGFR Expressing Tumor Tissues
Background: EGFR (Epidermal growth factor receptor) is overexpressed in a number of cancers and plays an important role in several phenomena such as aggressiveness of tumor, decreased survival of the patient, and resistance to treatments such as hormone therapy, chemotherapy, and also radiation. Objectives: The aim of this study is to produce specific human single-chain antibodies against EGFR and evaluate its specificity against the immunodominant epitope in order to offer a new and efficient way in the treatment of EGFR-expressing tumor tissues. Methods: A phage antibody display library of scFv (single chain fragment variable) was panned against an immunodominant epitope of EGFR. In order to select the specific clones, DNA fingerprinting was performed and the common patterns were differentiated. ELISA (Enzyme linked immunosorbent assay) was done to confirm the panning results and show the specificity of the selected clones. Results: Two specific clones with the frequencies of 55% and 30% were differentiated. The clones showed positive ELISA with the corresponding epitope while no positive reaction was observed for negative controls: unrelated peptide, M13KO7 (helper phage), unrelated scFv and no peptide. Conclusions: Immunotherapy against cancer has been a new treatment strategy in the recent years. Small and high affinity scFvs have had a crucial role in this regard. The specific human anti-EGFR scFvs that were selected in this study and reacted with the corresponding epitopehave the potential to be applied as a blocking antibody for interfering with tumor growth in EGFR-expressing tumors. Further studies are needed to evaluate the effects of these antibodies in vitro and in vivo.
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