Weninger Alexander, Sagasser Jessica, Obermoser Victoria, Egger Josef, Wisboeck Susanna, Qiu Qianqian, Ladstaetter Miriam, Cucchiaro Andrea, Wurst Klaus, Baecker Daniel, Gust Ronald
Department of Pharmaceutical Chemistry, Institute of Pharmacy, CMBI-Center for Molecular Biosciences Innsbruck, CCB-Center for Chemistry and Biomedicine, University of Innsbruck, Innrain 80-82, 6020 Innsbruck, Austria.
Department of General, Inorganic and Theoretical Chemistry, University of Innsbruck, Innrain 80-82, 6020 Innsbruck, Austria.
Pharmaceutics. 2023 May 23;15(6):1573. doi: 10.3390/pharmaceutics15061573.
Zeise's salt derivatives of the potassium trichlorido[η-((prop-2-en/but-3-en)-1-yl)-2-acetoxybenzoate]platinate(II) type (ASA-Prop-PtCl/ASA-But-PtCl derivatives) were synthesized and characterized regarding their structure, stability, and biological activity. It is proposed that the leads ASA-Prop-PtCl and ASA-But-PtCl interfere with the arachidonic acid cascade as part of their mode of action to reduce the growth of COX-1/2-expressing tumor cells. With the aim to increase the antiproliferative activity by strengthening the inhibitory potency against COX-2, F, Cl, or CH substituents were introduced into the acetylsalicylic acid (ASA) moiety. Each structural modification improved COX-2 inhibition. Especially compounds with F substituents at ASA-But-PtCl reached the maximum achievable inhibition of about 70% already at 1 µM. The PGE formation in COX-1/2-positive HT-29 cells was suppressed by all F/Cl/CH derivatives, indicating COX inhibitory potency in cellular systems. The CH-bearing complexes showed the highest cytotoxicity in COX-1/2-positive HT-29 cells with IC values of 16-27 µM. In COX-negative MCF-7 cells, they were 2-3-fold less active. These data clearly demonstrate that it is possible to increase the cytotoxicity of ASA-Prop-PtCl and ASA-But-PtCl derivatives by enhancing COX-2 inhibition.
合成了三氯[η-((丙烯/丁-3-烯)-1-基)-2-乙酰氧基苯甲酸酯]铂酸钾(II)型的蔡氏盐衍生物(ASA-Prop-PtCl/ASA-But-PtCl衍生物),并对其结构、稳定性和生物活性进行了表征。有人提出,先导化合物ASA-Prop-PtCl和ASA-But-PtCl干扰花生四烯酸级联反应,这是它们降低表达COX-1/2的肿瘤细胞生长的作用模式的一部分。为了通过增强对COX-2的抑制效力来提高抗增殖活性,将F、Cl或CH取代基引入乙酰水杨酸(ASA)部分。每种结构修饰都提高了对COX-2的抑制作用。特别是在ASA-But-PtCl上带有F取代基的化合物在1μM时就达到了约70%的最大可实现抑制率。所有F/Cl/CH衍生物均抑制了COX-1/2阳性HT-29细胞中PGE的形成,表明在细胞系统中具有COX抑制效力。带有CH的配合物在COX-1/2阳性HT-29细胞中显示出最高的细胞毒性,IC值为16-27μM。在COX阴性的MCF-7细胞中,它们的活性低2-3倍。这些数据清楚地表明,通过增强对COX-2的抑制作用,可以提高ASA-Prop-PtCl和ASA-But-PtCl衍生物的细胞毒性。