Shaikh Sibhghatulla, Ali Shahid, Lim Jeong Ho, Ahmad Khurshid, Han Ki Soo, Lee Eun Ju, Choi Inho
Department of Medical Biotechnology, Yeungnam University, Gyeongsan 38541, Republic of Korea.
Research Institute of Cell Culture, Yeungnam University, Gyeongsan 38541, Republic of Korea.
Life (Basel). 2023 Nov 1;13(11):2152. doi: 10.3390/life13112152.
Androgenic alopecia (AGA) is a dermatological disease with psychosocial consequences for those who experience hair loss. AGA is linked to an increase in androgen levels caused by an excess of dihydrotestosterone in blood capillaries produced from testosterone by 5α-reductase type II (5αR2), which is expressed in scalp hair follicles; 5αR2 activity and dihydrotestosterone levels are elevated in balding scalps. The diverse health benefits of flavonoids have been widely reported in epidemiological studies, and research interest continues to increase. In this study, a virtual screening approach was used to identify compounds that interact with active site residues of 5αR2 by screening a library containing 241 flavonoid compounds. Here, we report two potent flavonoid compounds, eriocitrin and silymarin, that interacted strongly with 5αR2, with binding energies of -12.1 and -11.7 kcal/mol, respectively, which were more significant than those of the control, finasteride (-11.2 kcal/mol). Molecular dynamic simulations (200 ns) were used to optimize the interactions between compounds and 5αR2 and revealed that the interaction of eriocitrin and silymarin with 5αR2 was stable. The study shows that eriocitrin and silymarin provide developmental bases for novel 5αR2 inhibitors for the management of AGA.
雄激素性脱发(AGA)是一种皮肤病,会给脱发患者带来心理社会方面的影响。AGA与雄激素水平升高有关,这种升高是由Ⅱ型5α-还原酶(5αR2)将睾酮转化为双氢睾酮,导致血液中双氢睾酮过量引起的,5αR2在头皮毛囊中表达;在秃发头皮中,5αR2活性和双氢睾酮水平会升高。黄酮类化合物的多种健康益处已在流行病学研究中得到广泛报道,并且研究兴趣持续增加。在本研究中,采用虚拟筛选方法,通过筛选一个包含241种黄酮类化合物的文库,来鉴定与5αR2活性位点残基相互作用的化合物。在此,我们报告两种有效的黄酮类化合物,橙皮苷和水飞蓟宾,它们与5αR2强烈相互作用,结合能分别为-12.1和-11.7千卡/摩尔,比对照非那雄胺(-11.2千卡/摩尔)更显著。使用分子动力学模拟(200纳秒)来优化化合物与5αR2之间的相互作用,结果表明橙皮苷和水飞蓟宾与5αR2的相互作用是稳定的。该研究表明,橙皮苷和水飞蓟宾为用于治疗AGA的新型5αR2抑制剂提供了开发基础。