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Modular nanotransporters: a versatile approach for enhancing nuclear delivery and cytotoxicity of Auger electron-emitting 125I.

机译:模块化纳米转运蛋白:用于增强俄歇电子发射125I的核递送和细胞毒性的通用方法。

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摘要

UNLABELLED: BACKGROUND: This study evaluates the potential utility of a modular nanotransporter (MNT) for enhancing the nuclear delivery and cytotoxicity of the Auger electron emitter 125I in cancer cells that overexpress the epidermal growth factor receptor (EGFR). METHODS: MNTs are recombinant multifunctional polypeptides that we have developed for achieving selective delivery of short-range therapeutics into cancer cells. MNTs contain functional modules for receptor binding, internalization, endosomal escape and nuclear translocation, thereby facilitating the transport of drugs from the cell surface to the nucleus. The MNT described herein utilized EGF as the targeting ligand and was labeled with 125I using N-succinimidyl-4-guanidinomethyl-3-[125I]iodobenzoate (SGMIB). Membrane binding, intracellular and nuclear accumulation kinetics, and clonogenic survival assays were performed using the EGFR-expressing A431 epidermoid carcinoma and D247 MG glioma cell lines. RESULTS: [125I]SGMIB-MNT bound to A431 and D247 MG cells with an affinity comparable to that of native EGF. More than 60% of internalized [125I]SGMIB-MNT radioactivity accumulated in the cell nuclei after a 1-h incubation. The cytotoxic effectiveness of [125I]SGMIB-MNT compared with 125I-labeled bovine serum albumin control was enhanced by a factor of 60 for D247 MG cells and more than 1,000-fold for A431 cells, which express higher levels of EGFR. CONCLUSIONS: MNT can be utilized to deliver 125I into the nuclei of cancer cells overexpressing EGFR, significantly enhancing cytotoxicity. Further evaluation of [125I]SGMIB-MNT as a targeted radiotherapeutic for EGFR-expressing cancer cells appears warranted.
机译:背景:这项研究评估了模块化纳米转运蛋白(MNT)在增强过表达表皮生长因子受体(EGFR)的癌细胞中增强俄歇电子发射器125I的核传递和细胞毒性的潜在效用。方法:MNT是我们开发的重组多功能多肽,用于实现将短距离治疗药物选择性递送至癌细胞中。 MNT包含用于受体结合,内在化,内体逃逸和核易位的功能模块,从而促进药物从细胞表面向细胞核的转运。本文所述的MNT利用EGF作为靶向配体,并使用N-琥珀酰亚胺基-4-胍基甲基-3- [125I]碘代苯甲酸酯(SGMIB)用125I标记。使用表达EGFR的A431表皮样癌和D247 MG胶质瘤细胞系进行膜结合,细胞内和细胞核蓄积动力学以及克隆形成存活分析。结果:[125I] SGMIB-MNT以与天然EGF相当的亲和力与A431和D247 MG细胞结合。孵育1小时后,超过60%的内在[125I] SGMIB-MNT放射性积聚在细胞核中。与125I标记的牛血清白蛋白对照相比,[125I] SGMIB-MNT的细胞毒性作用对D247 MG细胞提高了60倍,对表达较高水平EGFR的A431细胞提高了1000倍。结论:MNT可用于将125 I传递到过表达EGFR的癌细胞核中,从而显着增强细胞毒性。似乎有必要进一步评估[125I] SGMIB-MNT作为表达EGFR的癌细胞的靶向放射治疗剂。

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