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首页> 外文期刊>Brazilian Journal of Medical and Biological Research >A conjugate of an anti-midkine single-chain variable fragment to doxorubicin inhibits tumor growth
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A conjugate of an anti-midkine single-chain variable fragment to doxorubicin inhibits tumor growth

机译:抗中期因子单链可变片段与阿霉素的缀合物抑制肿瘤生长

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Doxorubicin (DOX) was conjugated to a single-chain variable fragment (scFv) against human midkine (MK), and the conjugate (scFv-DOX) was used to target the chemotherapeutic agent to a mouse solid tumor model in which the tumor cells expressed high levels of human MK. The His-tagged recombinant scFv was expressed in bacteria, purified by metal affinity chromatography, and then conjugated to DOX using oxidative dextran (Dex) as a linker. The molecular formula of this immunoconjugate was scFv(Dex)1.3(DOX)20. In vitro apoptosis assays showed that the scFv-DOX conjugate was more cytotoxic against MK-transfected human adenocarcinoma cells (BGC823-MK) than untransfected cells (55.3 ± 2.4 vs 22.4 ± 3.8%) for three independent experiments. Nude mice bearing BGC823-MK solid tumors received scFv-DOX or equivalent doses of scFv + DOX for 2 weeks and tumor growth was more effectively inhibited by the scFv-DOX conjugate than by scFv + DOX (51.83% inhibition vs 40.81%). Histological analysis of the tumor tissues revealed that the highest levels of DOX accumulated in tumors from mice treated with scFv-DOX and this resulted in more extensive tumor cell death than in animals treated with the equivalent dose of scFv + DOX. These results show that the scFv-DOX conjugate effectively inhibited tumor growth in vivo and suggest that antigen-specific scFv may be competent drug-carriers.
机译:阿霉素(DOX)与抗人Midkine(MK)的单链可变片段(scFv)偶联,偶联物(scFv-DOX)用于将化疗剂靶向小鼠实体瘤模型,其中肿瘤细胞表达高水平的人类MK。 His-tagged重组scFv在细菌中表达,通过金属亲和层析纯化,然后使用氧化葡聚糖(Dex)作为接头与DOX偶联。该免疫缀合物的分子式为scFv(Dex)1.3(DOX)20。体外凋亡试验表明,在三个独立的实验中,scFv-DOX共轭物对MK转染的人腺癌细胞(BGC823-MK)的细胞毒性比未转染的细胞(55.3±2.4 vs 22.4±3.8%)高。携带BGC823-MK实体瘤的裸鼠接受了scFv-DOX或同等剂量的scFv + DOX 2周,与scFv + DOX相比,scFv-DOX结合物更有效地抑制了肿瘤的生长(抑制率分别为51.83%和40.81%)。肿瘤组织的组织学分析显示,用scFv-DOX处理的小鼠的肿瘤中积累的DOX最高,与用等剂量的scFv + DOX处理的动物相比,这导致更广泛的肿瘤细胞死亡。这些结果表明,scFv-DOX缀合物可有效抑制体内肿瘤的生长,并表明抗原特异性scFv可能是有效的药物载体。

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