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Synthesis and biological activity of stable branched neurotensin peptides for tumor targeting.

机译:用于肿瘤靶向的稳定支化神经降压肽的合成及其生物学活性。

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Receptors for endogenous regulatory peptides, like the neuropeptide neurotensin, are overexpressed in several human cancers and can be targets for peptide-mediated tumor-selective therapy. Peptides, however, have the main drawback of an extremely short half-life in vivo. We showed that neurotensin and other endogenous peptides, when synthesized as dendrimers, retain biological activity and become resistant to proteolysis. Here, we synthesized the neurotensin functional fragment NT(8-13) in a tetrabranched form linked to different units for tumor therapy or diagnosis. Fluorescent molecules were used to monitor receptor binding and internalization in HT29 human adenocarcinoma cells and receptor binding in HT29 tumor xenografts in nude mice. Linking of chemotherapic molecules like chlorin e6 and methotrexate to dendrimers resulted in a dramatic increase in drug selectivity, uptake of which by target cells became dependent on peptide receptor binding. When nude mice carrying human tumor xenografts were treated with branched NT(8-13)-methotrexate, a 60% reduction in tumor growth was observed with respect to mice treated with the free drug.
机译:内源性调节肽的受体,例如神经肽神经降压素,在几种人类癌症中均过表达,可以作为肽介导的肿瘤选择性治疗的靶标。然而,肽的主要缺点是体内半衰期极短。我们显示,神经降压素和其他内源性肽在合成为树状大分子时,保留了生物学活性并变得对蛋白水解具有抗性。在这里,我们合成了四支形式的神经降压素功能片段NT(8-13),连接到不同的单元用于肿瘤治疗或诊断。荧光分子用于监测裸鼠HT29人腺癌细胞中受体的结合和内在化以及HT29肿瘤异种移植物中的受体结合。诸如二氢卟酚e6和甲氨蝶呤之类的化学治疗分子与树状聚合物的连接导致药物选择性的显着提高,靶细胞对其的吸收变得取决于肽受体的结合。当用支链NT(8-13)-甲氨蝶呤治疗携带人肿瘤异种移植物的裸鼠时,相对于用游离药物治疗的小鼠,观察到肿瘤生长减少了60%。

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