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短链脂肪酸酰化柔红霉素-GnRH-III 生物缀合物增强了细胞摄取和体外抗肿瘤活性。

Enhanced cellular uptake and in vitro antitumor activity of short-chain fatty acid acylated daunorubicin-GnRH-III bioconjugates.

机构信息

Research Group of Peptide Chemistry, Hungarian Academy of Sciences, Eötvös Loránd University, 1117 Budapest, Hungary.

出版信息

Eur J Med Chem. 2012 Oct;56:155-65. doi: 10.1016/j.ejmech.2012.08.014. Epub 2012 Aug 23.

DOI:10.1016/j.ejmech.2012.08.014
PMID:22967796
Abstract

Here we report on the synthesis and biochemical characterization (enzymatic stability, cellular uptake, in vitro antitumor activity, membrane interaction and GnRH-receptor binding affinity) of novel short-chain fatty acid (SCFA) acylated daunorubicin-GnRH-III bioconjugates, which may serve as drug delivery systems for targeted cancer chemotherapy. Ser in position 4 of GnRH-III was replaced by Lys, followed by the acylation of its ε-amino group with various fatty acids. SCFAs are potentially chemoprotective agents by suppressing the growth of cancer cells and therefore may enhance the antitumor activity of the bioconjugates. We found that all synthesized bioconjugates had high cytostatic effect in vitro, were stable in cell culture medium for 6 h and degraded in the presence of rat liver lysosomal homogenate leading to the formation of an oxime bond-linked daunorubicin-Lys as the smallest active metabolite. In the presence of α-chymotrypsin, all compounds were digested, the degradation rate strongly depending on the type of fatty acid. The bioconjugate containing Lys(nBu) in position 4 was taken up most efficiently by the cancer cells and exerted higher in vitro cytostatic effect than the previously developed GnRH-III((4)Lys(Ac), (8)Lys(Dau = Aoa)) or the parent GnRH-III(Dau = Aoa) bioconjugate. Our results could be explained by the increased binding affinity of the newly developed compound containing Lys(nBu) to the GnRH receptors.

摘要

在这里,我们报告了新型短链脂肪酸(SCFA)酰化柔红霉素-GnRH-III 生物缀合物的合成和生化特性(酶稳定性、细胞摄取、体外抗肿瘤活性、膜相互作用和 GnRH 受体结合亲和力),它们可能作为靶向癌症化疗的药物递送系统。GnRH-III 中的 Ser 在位置 4 被 Lys 取代,然后其 ε-氨基被各种脂肪酸酰化。SCFAs 通过抑制癌细胞的生长,可能具有化学保护作用,从而增强生物缀合物的抗肿瘤活性。我们发现所有合成的生物缀合物在体外均具有高细胞抑制作用,在细胞培养基中 6 小时内稳定,并且在存在大鼠肝溶酶体匀浆时降解,导致肟键连接的柔红霉素-Lys 作为最小的活性代谢物形成。在α-糜蛋白酶存在下,所有化合物均被消化,降解速率强烈取决于脂肪酸的类型。在位置 4 含有 Lys(nBu)的生物缀合物被癌细胞最有效地摄取,并表现出比先前开发的 GnRH-III((4)Lys(Ac), (8)Lys(Dau = Aoa))或母体 GnRH-III(Dau = Aoa)生物缀合物更高的体外细胞抑制作用。我们的结果可以通过新开发的含有 Lys(nBu)的化合物与 GnRH 受体的结合亲和力增加来解释。

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