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Evaluation of Cytotoxicity and α-Glucosidase Inhibitory Activity of Amide and Polyamino-Derivatives of Lupane Triterpenoids

机译:甘蔗三萜酰胺和聚氨基衍生物的细胞毒性和α-葡糖苷酶抑制活性的评价

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摘要

A series of two new and twenty earlier synthesized branched extra-amino-triterpenoids obtained by the direct coupling of betulinic/betulonic acids with polymethylenpolyamines, or by the cyanoethylation of lupane type alcohols, oximes, amines, and amides with the following reduction were evaluated for cytotoxicity toward the NCI-60 cancer cell line panel, α-glucosidase inhibitory, and antimicrobial activities. Lupane carboxamides, conjugates with diaminopropane, triethylenetetramine, and branched C3-cyanoethylated polyamine methyl betulonate showed high cytotoxic activity against most of the tested cancer cell lines with GI50 that ranged from 1.09 to 54.40 µM. Betulonic acid C28-conjugate with triethylenetetramine and C3,C28-bis-aminopropoxy-betulin were found to be potent micromolar inhibitors of yeast α-glucosidase and to simultaneously inhibit the endosomal reticulum α-glucosidase, rendering them as potentially capable to suppress tumor invasiveness and neovascularization, in addition to the direct cytotoxicity. Plausible mechanisms of cytotoxic action and underlying disrupted molecular pathways were elucidated with CellMinner pattern analysis and Gene Ontology enrichment analysis, according to which the lead compounds exert multi-target antiproliferative activity associated with oxidative stress induction and chromatin structure alteration. The betulonic acid diethylentriamine conjugate showed partial activity against methicillin-resistant S. aureus and the fungi C. neoformans. These results show that triterpenic polyamines, being analogs of steroidal squalamine and trodusquemine, are important substances for the search of new drugs with anticancer, antidiabetic, and antimicrobial activities.
机译:评价了通过与聚甲基多胺的直接偶联,或通过兰丹型醇,肟,胺和酰胺的氰基甲基化的直接偶联的两种新的和二十个较早的合成分支蛋白质,或通过兰丹型醇,肟,胺和随后进行以下还原的酰胺的糖醇。细胞毒性对NCI-60癌细胞系面板,α-葡糖苷酶抑制和抗微生物活性。甘蔗羧酰胺,与二氨基丙烷,三亚乙二胺和支链C3-氰基甲基化多胺甲基雌肽的缀合物显示出对大多数测试癌细胞系的高细胞毒性活性,GI50从1.09〜54.40μm。发现与三乙基甲胺和C3,C28-BIS-氨基丙氧基 - 桦木蛋白的丁醛酸C28-缀合物是酵母α-葡糖苷酶的有效的微摩尔抑制剂,并同时抑制内体网α-葡糖苷酶,使它们潜在能够抑制肿瘤侵袭性和抑制肿瘤侵袭性除了直接细胞毒性之外,新生血管化。通过Cellminner模式分析和基因本体学富集分析,阐明了细胞毒性作用和潜在的分子途径的可粘性机制,铅化合物施加与氧化应激诱导和染色质结构改变相关的多目标抗增殖活性。甲状腺酸二甲基丙胺缀合物显示出对甲氧西林的耐金黄色葡萄球菌和真菌新族裔的部分活性。这些结果表明,Triterpenic多胺是甾体粒峰和Trodusquemine的类似物,是寻找新药物的抗癌,抗糖尿病和抗微生物活动的重要物质。

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