Kennedy Brandon J, Lato Ashley M, Fisch Alexander R, Burke Susan J, Kirkland Justin K, Prevatte Carson W, Dunlap Lee E, Smith Russell T, Vogiatzis Konstantinos D, Collier J Jason, Campagna Shawn R
Department of Chemistry, University of Tennessee, Knoxville, Tennessee 37996, United States.
Pennington Biomedical Research Center, Baton Rouge, Louisiana 70808, United States.
ACS Med Chem Lett. 2021 Sep 15;12(10):1568-1577. doi: 10.1021/acsmedchemlett.1c00379. eCollection 2021 Oct 14.
Glucocorticoids (GCs) are widely used in medicine for their role in the treatment of autoimmune-mediated conditions, certain cancers, and organ transplantation. The transcriptional activities GCs elicit include transrepression, postulated to be responsible for the anti-inflammatory activity, and transactivation, proposed to underlie the undesirable side effects associated with long-term use. A GC analogue that could elicit only transrepression and beneficial transactivation properties would be of great medicinal value and is highly sought after. In this study, a series of 1-(4-substituted phenyl)pyrazole-based GC analogues were synthesized, biologically screened, and evaluated for SARs leading to the desired activity. Activity observed in compounds bearing an electron deficient arylpyrazole moiety showed promise toward a dissociated steroid, displaying transrepression while having limited transactivation activity. In addition, compounds and were found to have anti-inflammatory efficacy comparable to that of dexamethasone at 10 nM, with minimal transactivation activity and no reduction of insulin secretion in cultured rat 832/13 beta cells.
糖皮质激素(GCs)因其在治疗自身免疫介导的疾病、某些癌症和器官移植中的作用而在医学中广泛应用。GCs引发的转录活性包括反式抑制(推测其负责抗炎活性)和顺式激活(被认为是长期使用相关不良副作用的基础)。一种仅能引发反式抑制和有益顺式激活特性的GC类似物将具有巨大的药用价值,并且备受追捧。在本研究中,合成了一系列基于1-(4-取代苯基)吡唑的GC类似物,进行了生物学筛选,并评估了导致所需活性的构效关系。在带有缺电子芳基吡唑部分的化合物中观察到的活性显示出有望成为一种解离型甾体,表现出反式抑制作用,同时顺式激活活性有限。此外,发现化合物 和 在10 nM时具有与地塞米松相当的抗炎功效,具有最小的顺式激活活性,并且在培养的大鼠832/13β细胞中不会降低胰岛素分泌。