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具有强抗癌活性的 Sphaeropsidin A C15-C16 交叉复分解类似物。

Sphaeropsidin A C15-C16 Cross-Metathesis Analogues with Potent Anticancer Activity.

机构信息

Department of Chemistry and Biochemistry, Texas State University, San Marcos, Texas, 78666, USA.

Department of Chemistry and Polymer Sciences, Stellenbosch University, Stellenbosch, Matieland, 7602, Western Cape, South Africa.

出版信息

ChemMedChem. 2024 Sep 16;19(18):e202400288. doi: 10.1002/cmdc.202400288. Epub 2024 Aug 23.

Abstract

We recently discovered that sphaeropsidin A (SphA), a fungal metabolite from Diplodia cupressi, overcomes apoptosis resistance in cancer cells by inducing cellular shrinkage by impairing regulatory volume increase. Previously, we prepared a pyrene-conjugated derivative of SphA by a cross-metathesis reaction involving the phytotoxin's C15,C16-alkene. This derivative's evaluation in a cancer cell panel revealed a significant increase in potency, with the IC values 5-10× lower than those displayed by the original natural product. Herein, we describe the preparation and anticancer evaluation of fifteen novel C15,C16-alkene cross-metathesis analogues in which the pyrene moiety was replaced with other aromatic or non-aromatic hydrophobic groups. The idea for this replacement was to prepare a family of compounds that would not be predicted to be mutagenic compared with the original pyrene analogue. We predict several of our new compounds to be non-mutagenic, while retaining the high potency of the original pyrene-containing analogues. Examples of these potential lead compounds included those containing pentamethylphenyl and triphenylethylene pendant groups. As an additional feature of the current investigation, we prepared several deuterated pyrene-containing compounds to overcome intellectual property issues associated with non-patentability of the original pyrene derivative.

摘要

我们最近发现,来自拟盘多毛孢的真菌代谢产物球腔菌素 A(SphA)通过损害调节性体积增加来诱导细胞收缩,从而克服癌细胞中的凋亡抵抗。此前,我们通过涉及植物毒素 C15、C16-烯烃的交叉复分解反应制备了 SphA 的芘结合衍生物。该衍生物在癌细胞中的评估显示出显著的活性增强,IC 值比原始天然产物低 5-10 倍。在此,我们描述了十五种新型 C15、C16-烯烃交叉复分解类似物的制备和抗癌评估,其中芘部分被其他芳香族或非芳香族疏水性基团取代。这种取代的想法是制备一组不会比原始芘类似物更具突变性的化合物。我们预测我们的一些新化合物是非突变性的,同时保留原始含芘类似物的高活性。这些潜在的先导化合物包括那些含有五甲基苯基和三苯乙烯侧基的化合物。作为当前研究的一个额外特点,我们制备了几种含有氘的芘化合物,以克服与原始芘衍生物不可专利性相关的知识产权问题。

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