Kovács Ferenc, Gopisetty Mohana K, Adamecz Dóra I, Kiricsi Mónika, Enyedy Éva A, Frank Éva
Department of Organic Chemistry, University of Szeged Dóm tér 8 H-6720 Szeged Hungary
Department of Biochemistry and Molecular Biology, Doctoral School of Biology, University of Szeged Közép fasor 52 H-6726 Szeged Hungary.
RSC Adv. 2021 Apr 14;11(23):13885-13896. doi: 10.1039/d1ra01889b. eCollection 2021 Apr 13.
Hybrid systems are often endowed with completely different and improved properties compared to their parent compounds. In order to extend the chemical space toward sterane-based molecular hybrids, a number of estradiol-derived benzoxazol-2-ones with combined aromatic rings were synthesized the corresponding 2-aminophenol intermediates. 2-Aminoestradiol was first prepared from estrone by a two-step nitration/reduction sequence under mild reaction conditions. Subsequent reductive aminations with different arylaldehydes furnished secondary 2-aminoestradiol derivatives in good yields. The proton dissociation processes of the aminoestradiols were investigated in aqueous solution by UV-visible spectrophotometric titrations to reveal their actual chemical forms at physiological pH. The determined p and p values are attributed to the NH or NHR and OH moieties, and both varied by the different R substituents of the amino group. Primary and secondary 2-aminoestradiols were next reacted with carbonyldiimidazole as a phosgene equivalent to introduce a carbonyl group with simultaneous ring-closure to give A-ring-fused oxazolone derivatives in high yields. The novel aminoestradiols and benzoxazolones were subjected to cytotoxicity analysis and were found to exert cancer cell specific activity.
与它们的母体化合物相比,杂化体系通常具有完全不同且有所改善的性质。为了将化学空间扩展到基于甾烷的分子杂化物,通过相应的2-氨基苯酚中间体合成了许多具有稠合芳环的雌二醇衍生的苯并恶唑-2-酮。2-氨基雌二醇首先在温和的反应条件下通过两步硝化/还原序列由雌酮制备。随后与不同的芳基醛进行还原胺化反应,以良好的产率得到仲2-氨基雌二醇衍生物。通过紫外可见分光光度滴定法在水溶液中研究了氨基雌二醇的质子解离过程,以揭示它们在生理pH下的实际化学形式。所测定的pKa和pKb值归因于NH或NHR以及OH部分,并且两者都因氨基的不同R取代基而变化。接下来,伯和仲2-氨基雌二醇与作为光气等价物的羰基二咪唑反应,以引入羰基并同时闭环,从而以高产率得到A环稠合的恶唑酮衍生物。对新型氨基雌二醇和苯并恶唑酮进行了细胞毒性分析,发现它们具有癌细胞特异性活性。