Mareş Cătălina, Udrea Ana-Maria, Şuţan Nicoleta Anca, Avram Speranţa
Department of Anatomy, Animal Physiology and Biophysics, University of Bucharest, 91-95 Splaiul Independentei, 050095 Bucharest, Romania.
Laser Department, National Institute for Laser, Plasma and Radiation Physics, Atomistilor 409, 077125 Magurele, Romania.
Pharmaceuticals (Basel). 2023 Jun 5;16(6):842. doi: 10.3390/ph16060842.
The chemical compounds from extracts of three Ranunculaceae species, Rchb., L. and Waldst. & Kit. ex Willd., respectively, were isolated using the HPLC purification technique and analyzed from a bioinformatics point of view. The classes of compounds identified based on the proportion in the rhizomes/leaves/flowers used for microwave-assisted extraction and ultrasound-assisted extraction were alkaloids and phenols. Here, the quantifying of pharmacokinetics, pharmacogenomics and pharmacodynamics helps us to identify the actual biologically active compounds. Our results showed that (i) pharmacokinetically, the compounds show good absorption at the intestinal level and high permeability at the level of the central nervous system for alkaloids; (ii) regarding pharmacogenomics, alkaloids can influence tumor sensitivity and the effectiveness of some treatments; (iii) and pharmacodynamically, the compounds of these Ranunculaceae species bind to carbonic anhydrase and aldose reductase. The results obtained showed a high affinity of the compounds in the binding solution at the level of carbonic anhydrases. Carbonic anhydrase inhibitors extracted from natural sources can represent the path to new drugs useful both in the treatment of glaucoma, but also of some renal, neurological and even neoplastic diseases. The identification of natural compounds with the role of inhibitors can have a role in different types of pathologies, both associated with studied and known receptors such as carbonic anhydrase and aldose reductase, as well as new pathologies not yet addressed.
分别采用高效液相色谱纯化技术,从毛茛科三种植物(分别为Rchb.、L.和Waldst. & Kit. ex Willd.)的提取物中分离出化合物,并从生物信息学的角度进行分析。根据用于微波辅助萃取和超声辅助萃取的根茎/叶/花中的比例确定的化合物类别为生物碱和酚类。在此,药代动力学、药物基因组学和药效学的量化有助于我们识别实际的生物活性化合物。我们的结果表明:(i)在药代动力学方面,这些化合物在肠道水平具有良好的吸收,生物碱在中枢神经系统水平具有高渗透性;(ii)关于药物基因组学,生物碱可影响肿瘤敏感性和某些治疗的有效性;(iii)在药效学方面,这些毛茛科植物的化合物与碳酸酐酶和醛糖还原酶结合。所得结果表明化合物在碳酸酐酶水平的结合溶液中具有高亲和力。从天然来源提取的碳酸酐酶抑制剂可能是开发新药的途径,这些新药可用于治疗青光眼,也可用于治疗某些肾脏、神经甚至肿瘤疾病。鉴定具有抑制剂作用的天然化合物可能在不同类型的病理学中发挥作用,既与已研究和已知的受体如碳酸酐酶和醛糖还原酶相关,也与尚未解决的新病理学相关。