首页> 外文期刊>Journal of Medicinal Chemistry >Synthesis, X-ray Crystal Structures, Stabilities, and in Vitro Cytotoxic Activities of New Heteroarylacrylonitriles
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Synthesis, X-ray Crystal Structures, Stabilities, and in Vitro Cytotoxic Activities of New Heteroarylacrylonitriles

机译:新杂芳基丙烯腈的合成,X射线晶体结构,稳定性和体外细胞毒活性

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摘要

Twenty-three acrylonitriles, substituted at position 2 with either triazoles or benzimidazoles and at position 3 with various substituted furan, thiophene, or phenyl rings, were prepared by Knoevenagel condensation and tested for in vitro cytotoxic potency on 11 human cancer cell lines. X-ray crystal analysis of two representative compounds showed that the olfenic bond is E-configured. Structure-activity-relationships (SAR) indicated that position 2 is flexible for substituents with various nitrogen heterocyclics while position 3 is very sensitive to change; the most potent compounds contained a 5-nitrothiophen-2-yl ring at position 3 and either benzimidazol-2-yl (11) or a 5-benzyl-1H-[1,2,4]-triazol-3-yl (7) group at position 2 of acrylonitrile. SARs for the thiophen-2-yl-benzimidazoles show the following trend for position 5: NO_2 H > Cl = CH_3. Compound 11 was on average 10- and 3-fold more potent than cisplatin and etoposide, respectively. However, the acrylonitrile functionality is not an absolute requirement for cytotoxic activity because replacement of the nitrile group for either a hydrogen or a methyl group also gave active compounds. The acrylonitriles caused delayed cell death characterized by giant cells with multilobed nuclei. Compound 11 was found to bring about the increase in the activities of caspases 3 and 9 in the HL-60 cell line in a manner similar to etoposide, strongly indicating that apoptosis is the mechanism of cell death. The selectivity of various compounds toward cancer cells was estimated by comparing the IC50 values obtained from a noncancerous epithelial cell line, h-TERT-RPE1, with the average IC50 value from the cancer cell lines; 11 showed an average 1.7-fold greater activity toward cancer cells. The stabilities of the new compounds under cell culture conditions, estimated by HPLC, indicated that a major fraction of the compounds were lost from the medium over the first 24 h.
机译:通过Knoevenagel缩合反应制备了23个丙烯腈,它们在2位被三唑或苯并咪唑和在3位被各种取代的呋喃,噻吩或苯环取代,并在11种人类癌细胞系上进行了体外细胞毒性测试。两种代表性化合物的X射线晶体分析表明,该烯键是E-构型的。结构活性关系(SAR)表明,位置2对于具有各种氮杂环的取代基是灵活的,而位置3对变化非常敏感。最有效的化合物在3位上含有一个5-硝基噻吩-2-基环和苯并咪唑-2-基(11)或一个5-苄基-1H- [1,2,4]-三唑-3-基(7 )丙烯腈2位的基团。噻吩-2-基-苯并咪唑的SAR在位置5处显示以下趋势:NO_2 H> Cl = CH_3。化合物11的效力分别平均比顺铂和依托泊苷高10倍和3倍。然而,丙烯腈官能度不是细胞毒性活性的绝对要求,因为用氢或甲基取代腈基也可得到活性化合物。丙烯腈导致细胞死亡延迟,其特征是具有多裂核的巨细胞。发现化合物11以类似于依托泊苷的方式引起HL-60细胞系中胱天蛋白酶3和9的活性增加,强烈表明凋亡是细胞死亡的机制。通过比较从非癌上皮细胞系h-TERT-RPE1获得的IC50值与从癌细胞系获得的平均IC50值,估算了各种化合物对癌细胞的选择性。 11显示出对癌细胞的平均活性高1.7倍。通过HPLC估计,新化合物在细胞培养条件下的稳定性表明,在最初的24小时内,大部分化合物从培养基中损失了。

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