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首页> 外文期刊>Nanomedicine >Biomolecular engineering of antidehydroepiandrosterone antibodies: a new perspective in cancer diagnosis and treatment using single-chain antibody variable fragment
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Biomolecular engineering of antidehydroepiandrosterone antibodies: a new perspective in cancer diagnosis and treatment using single-chain antibody variable fragment

机译:抗脱发羟基酮酮抗体的生物分子工程:使用单链抗体可变片段的癌症诊断和治疗的新观点

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摘要

Aim: To develop a monoclonal antibody against dehydroepiandrosterone (DHEA) and miniaturize it, generating a single-chain antibody variable fragment (scFv) against DHEA as an adrenocortical carcinoma (ACC) marker. Material & methods: DHEA conjugated to keyhole limpet hemocyanin was used as an immunogen to obtain anti-DHEA hybridomas. Variable fragments were cloned from hybridoma 5B7 total RNA, and used to detect DHEA in normal adrenal tissue and ACC cells. Results: IgM monoclonal antibody was highly specific, and the recombinant scFv preserved parental antibody characteristics, allowing tissue localization of DHEA. Conclusion: Undefined small lesions are challenges for clinicians and impact clinical adrenocortical tumor management. Generating an anti-DHEA scFv facilitates development of imaging tests for early diagnosis of pediatric ACC.
机译:目的:开发针对脱氢贫康松(DHEA)的单克隆抗体,并小型化,以肾上腺皮质癌(ACC)标记产生单链抗体可变片段(SCFV)。 材料与方法:使用孔孔颗粒血晶蛋白的DHEA用作免疫原以获得抗DHEA杂交瘤。 可变片段从杂交瘤5B7总RNA克隆,并用于检测正常肾上腺组织和ACC细胞中的DHEA。 结果:IgM单克隆抗体具有高度特异性,重组SCFV保存的亲本抗体特征,允许DHEA的组织定位。 结论:未定义的小病变是临床医生和影响临床肾上腺皮质肿瘤管理的挑战。 产生抗DHEA SCFV有助于开发用于早期诊断儿科ACC的成像试验。

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