内化
塔夫辛
化学
体外
肽
结合
渗透(战争)
球体
体内
离体
胶质瘤
生物物理学
血脑屏障
细胞穿透肽
细胞培养
细胞
生物化学
癌症研究
中枢神经系统
生物
运筹学
数学
数学分析
遗传学
神经科学
生物技术
工程类
作者
Zsuzsa Baranyai,Beáta Biri‐Kovács,Martin Krátký,Bálint Szeder,Márta L. Debreczeni,Johanna Budai,Bence Kovács,Lilla Borbála Horváth,Edit Pári,Zsuzsanna Németh,László Cervenak,Ferenc Zsila,Előd Méhes,Éva Kiss,Jarmila Vinšová,Szilvia Bősze
标识
DOI:10.1021/acs.jmedchem.0c01399
摘要
Most therapeutic agents used for treating brain malignancies face hindered transport through the blood–brain barrier (BBB) and poor tissue penetration. To overcome these problems, we developed peptide conjugates of conventional and experimental anticancer agents. SynB3 cell-penetrating peptide derivatives were applied that can cross the BBB. Tuftsin derivatives were used to target the neuropilin-1 transport system for selectivity and better tumor penetration. Moreover, SynB3-tuftsin tandem compounds were synthesized to combine the beneficial properties of these peptides. Most of the conjugates showed high and selective efficacy against glioblastoma cells. SynB3 and tandem derivatives demonstrated superior cellular internalization. The penetration profile of the conjugates was determined on a lipid monolayer and Transwell co-culture system with noncontact HUVEC-U87 monolayers as simple ex vivo and in vitro BBB models. Importantly, in 3D spheroids, daunomycin-peptide conjugates possessed a better tumor penetration ability than daunomycin. These conjugates are promising tools for the delivery systems with tunable features.
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