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首页> 外文期刊>Journal of Medicinal Chemistry >Structure-activity relationship studies of novel heteroretinoids: induction of apoptosis in the HL-60 cell line by a novel isoxazole-containing heteroretinoid.
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Structure-activity relationship studies of novel heteroretinoids: induction of apoptosis in the HL-60 cell line by a novel isoxazole-containing heteroretinoid.

机译:新型异维甲酸的构效关系研究:新型含异恶唑的异维甲酸诱导HL-60细胞凋亡。

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摘要

In a search for retinoic acid receptor (RAR and RXR)-selective ligands, a series of isoxazole retinoids was synthesized and evaluated in vitro in transcriptional activation and competition binding assays for RARs and RXRs. In addition, these compounds were evaluated for their differentiating, cytotoxic, and apoptotic activities. In general, these derivatives showed scarcely any binding affinity and were not active in the transcriptional assay. However, among these isoxazole derivatives, the cis-isomer 14b was identified as a potent inducer of apoptosis, and its activity was found to be 6.5 and 4 times superior than that of 13-cis- and 9-cis-retinoic acids, respectively. On the other hand, compound 13b, which has the trans stereochemistry at the double bond, was found not to be active in the apoptotic assay, but it was endowed with appreciable differentiating activity. Therefore, it seems that the different stereochemistry of the double bond may be associated with a different biological activity: potent apoptotic activity for the cis-isomer but differentiating activity for the trans structure. This biological behavior was found, at least in part, for the 9-cis- and 13-cis-retinoic acids with respect to the all-trans-retinoic acid. Thus, structure 14b could offer an interesting model for the design of new compounds endowed with apoptotic activity.
机译:为了寻找视黄酸受体(RAR和RXR)的选择性配体,合成了一系列异恶唑类视黄醇,并在体外针对RAR和RXR的转录激活和竞争结合试验中进行了评估。此外,评估了这些化合物的分化,细胞毒性和凋亡活性。通常,这些衍生物几乎没有显示任何结合亲和力,并且在转录测定中没有活性。但是,在这些异恶唑衍生物中,顺式异构体14b被认为是凋亡的有效诱导剂,发现其活性分别比13-顺式和9-顺式视黄酸强6.5倍和4倍。另一方面,发现在双键上具有反立体化学的化合物13b在细胞凋亡测定中没有活性,但是具有明显的分化活性。因此,似乎双键的不同立体化学可能与不同的生物活性有关:顺式异构体的有效凋亡活性但反式结构的分化活性。相对于全反式视黄酸,至少部分地发现了9-顺式和13-顺式视黄酸的这种生物学行为。因此,结构14b可为设计具有凋亡活性的新化合物提供有趣的模型。

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