Department of Bioorganic Chemistry Faculty of Chemistry, Adam Mickiewicz University, Uniwersytetu Poznańskiego 8, 61-614, Poznań, Poland.
Department of Biochemistry and Molecular Biology, University of Arkansas for Medical Sciences, Little Rock, AR 72205, USA.
ChemMedChem. 2020 Jan 17;15(2):236-246. doi: 10.1002/cmdc.201900593. Epub 2019 Nov 27.
The polyether ionophore salinomycin (SAL) has captured much interest because of its potent activity against cancer cells and cancer stem cells. Our previous studies have indicated that C1/C20 double-modification of SAL is a useful strategy to generate diverse agents with promising biological activity profiles. Thus, herein we describe the synthesis of a new class of SAL analogues that combine key modifications at the C1 and C20 positions. The activity of the obtained SAL derivatives was evaluated using primary acute lymphoblastic leukemia, human breast adenocarcinoma and normal mammary epithelial cells. One single- [N,N-dipropyl amide of salinomycin (5 a)] and two novel double-modified analogues [N,N-dipropyl amide of C20-oxosalinomycin (5 b) and piperazine amide of C20-oxosalinomycin (13 b)] were found to be more potent toward the MDA-MB-231 cell line than SAL or its C20-oxo analogue 2. When select analogues were tested against the NCI-60 human tumor cell line panel, 4 a [N,N-diethyl amide of salinomycin] showed particular activity toward the ovarian cancer cell line SK-OV-3. Additionally, both SAL and 2 were found to be potent ex vivo against human ER/PR , Her2 invasive mammary carcinoma, with 2 showing minimal toxicity toward normal epithelial cells. The present findings highlight the therapeutic potential of SAL derivatives for select targeting of different cancer types.
聚醚离子载体盐霉素(SAL)因其对癌细胞和癌症干细胞的强大活性而备受关注。我们之前的研究表明,SAL 的 C1/C20 双重修饰是生成具有有前途的生物学活性谱的各种药物的有用策略。因此,本文描述了一类新的 SAL 类似物的合成,该类似物结合了 C1 和 C20 位置的关键修饰。使用原代急性淋巴细胞白血病、人乳腺癌腺癌细胞和正常乳腺上皮细胞评估获得的 SAL 衍生物的活性。一种单 [SAL 的 N,N-二丙酰胺(5a)]和两种新型双修饰类似物 [C20-氧代盐霉素的 N,N-二丙酰胺(5b)和 C20-氧代盐霉素的哌嗪酰胺(13b)]被发现对 MDA-MB-231 细胞系比 SAL 或其 C20-氧代类似物 2 更有效。当对 NCI-60 人类肿瘤细胞系谱进行测试时,4a [SAL 的 N,N-二乙酰胺]对卵巢癌细胞系 SK-OV-3 表现出特别的活性。此外,SAL 和 2 都被发现对人 ER/PR、Her2 浸润性乳腺癌具有强大的体外活性,而 2 对正常上皮细胞的毒性最小。本研究结果突出了 SAL 衍生物针对不同癌症类型的选择性靶向治疗的潜力。