Zamoner Luís O B, Aragão-Leoneti Valquiria, Carvalho Ivone
School of Pharmaceutical Sciences of Ribeirão Preto, University of São Paulo, Av. do Café s/n, Monte Alegre, CEP14040-903 Ribeirão Preto, Brazil.
Pharmaceuticals (Basel). 2019 Jul 12;12(3):108. doi: 10.3390/ph12030108.
-substituted iminosugar analogues are potent inhibitors of glucosidases and glycosyltransferases with broad therapeutic applications, such as treatment of diabetes and Gaucher disease, immunosuppressive activities, and antibacterial and antiviral effects against HIV, HPV, hepatitis C, bovine diarrhea (BVDV), Ebola (EBOV) and Marburg viruses (MARV), influenza, Zika, and dengue virus. Based on our previous work on functionalized isomeric 1,5-dideoxy-1,5-imino-D-gulitol (L--piperidines, with inverted configuration at C-2 and C-5 in respect to glucose or deoxynojirimycin (DNJ)) and 1,6-dideoxy-1,6-imino-D-mannitol (D--azepane derivatives) cores -linked to different sites of glucopyranose units, we continue our studies on these alternative iminosugars bearing simple -alkyl chains instead of glucose to understand if these easily accessed scaffolds could preserve the inhibition profile of the corresponding glucose-based -alkyl derivatives as DNJ cores found in miglustat and miglitol drugs. Thus, a small library of iminosugars (14 compounds) displaying different stereochemistry, ring size, and -substitutions was successfully synthesized from a common precursor, D-mannitol, by utilizing an S2 aminocyclization reaction via two isomeric bis-epoxides. The evaluation of the prospective inhibitors on glucosidases revealed that merely D--piperidine (miglitol, ) and L--azepane () DNJ-derivatives bearing the -hydroxylethyl group showed inhibition towards α-glucosidase with IC 41 µM and 138 µM, respectively, using DNJ as reference (IC 134 µM). On the other hand, β-glucosidase inhibition was achieved for glucose-inverted configuration (C-2 and C-5) derivatives, as novel L--piperidine () and D--azepane (), preserving the -butyl chain, with IC 109 and 184 µM, respectively, comparable to miglustat with the same -butyl substituent (, IC 172 µM). Interestingly, the seven-membered ring L--azepane ( displayed near twice the activity (IC 80 µM) of the corresponding D--piperidine miglustat drug (). Furthermore, besides α-glucosidase inhibition, both miglitol () and L--azepane () proved to be the strongest β-glucosidase inhibitors of the series with IC of 4 µM.
-取代亚氨基糖类似物是葡萄糖苷酶和糖基转移酶的有效抑制剂,具有广泛的治疗应用,如治疗糖尿病和戈谢病、免疫抑制活性,以及对HIV、HPV、丙型肝炎病毒、牛腹泻病毒(BVDV)、埃博拉病毒(EBOV)和马尔堡病毒(MARV)、流感病毒、寨卡病毒和登革热病毒的抗菌和抗病毒作用。基于我们之前对功能化异构1,5 - 二脱氧 - 1,5 - 亚氨基 - D - 古洛糖醇(L - -哌啶,相对于葡萄糖或脱氧野尻霉素(DNJ)在C - 2和C - 5处具有反转构型)和1,6 - 二脱氧 - 1,6 - 亚氨基 - D - 甘露糖醇(D - -氮杂环庚烷衍生物)核心连接到吡喃葡萄糖单元不同位点的研究,我们继续对这些带有简单 - 烷基链而非葡萄糖的替代亚氨基糖进行研究,以了解这些易于获得的支架是否能保留相应基于葡萄糖的 - 烷基衍生物(如米格列醇和米格列奈药物中发现的以DNJ为核心的衍生物)的抑制谱。因此,通过利用经由两种异构双环氧化物的S2氨基环化反应,成功地从常见前体D - 甘露糖醇合成了一个展示不同立体化学、环大小和 - 取代基的亚氨基糖小文库(14种化合物)。对这些潜在抑制剂对葡萄糖苷酶的评估表明,仅带有 - 羟乙基的D - -哌啶(米格列醇, )和L - -氮杂环庚烷( )DNJ衍生物对α - 葡萄糖苷酶有抑制作用,以DNJ为参考(IC 134 μM)时,IC分别为41 μM和138 μM。另一方面,对于葡萄糖构型反转(C -
2和C - 5)的衍生物实现了对β - 葡萄糖苷酶的抑制,作为新型的L - -哌啶( )和D - -氮杂环庚烷( ),保留了 - 丁基链,IC分别为109和184 μM,与具有相同 - 丁基取代基的米格列奈相当( ,IC 172 μM)。有趣的是,七元环L - -氮杂环庚烷( )展示出相应的D - -哌啶米格列奈药物( )近两倍的活性(IC 80 μM)。此外,除了对α - 葡萄糖苷酶的抑制作用外,米格列醇( )和L - -氮杂环庚烷( )均被证明是该系列中最强的β - 葡萄糖苷酶抑制剂之一,IC为4 μM。