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首页> 外文期刊>Journal of natural products >Taccalonolide Microtubule Stabilizers Generated Using Semisynthesis Define the Effects of Mono Acyloxy Moieties at C-7 or C-15 and Disubstitutions at C-7 and C-25
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Taccalonolide Microtubule Stabilizers Generated Using Semisynthesis Define the Effects of Mono Acyloxy Moieties at C-7 or C-15 and Disubstitutions at C-7 and C-25

机译:使用半合成产生的Tackalonolide微管稳定剂在C-7和C-7和C-25的C-7或C-15和二化合物中定义了单酰酰氧基部分的影响

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摘要

The taccalonolides are a unique class of microtubule stabilizers isolated from Tacca spp. that have efficacy against drug-resistant tumors. Our previous studies have demonstrated that a C-15 acetoxy taccalonolide, AF, has superior in vivo antitumor efficacy compared to AJ, which bears a C-15 hydroxy group. With the goal of further improving the in vivo efficacy of this class of compounds, we semisynthesized and tested the biological activities of 28 new taccalonolides with monosubstitutions at C-7 or C-15 or disubstitutions at C-7 and C-25, covering a comprehensive range of substituents from formic acid to anthraquinone-2-carbonyl chloride. The resulting taccalonolide analogues with diverse C-7/C-15/C-25 modifications exhibited IC_(50) values from 2.4 nM to >20 μM, allowing for extensive in vitro structure–activity evaluations. This semisynthetic strategy was unable to provide a taccalonolide with improved therapeutic window due to hydrolysis of substituents at C-7 or C-15 regardless of size or steric bulk. However, two of the most potent new taccalonolides, bearing isovalerate modifications at C-7 or C-15, demonstrated potent and highly persistent antitumor activity in a drug-resistant xenograft model when administered intratumorally. This study demonstrates that targeted delivery of the taccalonolides to the tumor could be an effective, long-lasting approach to treat drug-resistant tumors.
机译:Tachalonolides是从Tacca SPP分离的独特的微管稳定剂。这对耐药性肿瘤有效。我们以前的研究表明,与AJ相比,C-15乙酰氧基Tachalonolide,AF的体内抗肿瘤效果优异,其具有C-15羟基的AJ。随着进一步改善这类化合物的体内疗效的目标,我们将在C-7或C-25和C-25的C-7或C-15或二类中使用28个新的Tachalonolides的生物活性和测试的生物活性,覆盖A甲酸至蒽醌-2-羰基氯的综合取代基。由此产生的Tackalonolide类似于C-7 / C-15 / C-25修饰的类似物质,其IC_(50)值从2.4nm至>20μm显示出来,允许大量的体外结构 - 活性评估。这种半合成策略不能通过在C-7或C-15的取代基的水解,无论尺寸还是空间批量,由于尺寸或块状物质的水解而导致Tackalonolide。然而,在妥善施用时,在C-7或C-15处,在C-7或C-15的含有异戊尼醇,轴承异维醇的两种,在耐药异血模型中表现出有效和高度持续的抗肿瘤活性。该研究表明,针对肿瘤的Tachalonolides的靶向递送可能是治疗耐药性肿瘤的有效,长期的方法。

著录项

  • 来源
    《Journal of natural products》 |2018年第3期|共15页
  • 作者单位

    Department of Pharmacology and UT Health Cancer Center University of Texas Health Science Center at San Antonio San Antonio Texas 78229 United States;

    Department of Pharmacology and UT Health Cancer Center University of Texas Health Science Center at San Antonio San Antonio Texas 78229 United States;

    Department of Chemistry and Biochemistry Stephenson Life Sciences Research Center and Natural Products Discovery Group and Institute for Natural Products Applications and Research Technologies University of Oklahoma Norman Oklahoma 73019-5251 United;

    Department of Pharmacology and UT Health Cancer Center University of Texas Health Science Center at San Antonio San Antonio Texas 78229 United States;

    Department of Pharmacology and UT Health Cancer Center University of Texas Health Science Center at San Antonio San Antonio Texas 78229 United States;

    Department of Chemistry and Biochemistry Stephenson Life Sciences Research Center and Natural Products Discovery Group and Institute for Natural Products Applications and Research Technologies University of Oklahoma Norman Oklahoma 73019-5251 United;

    Department of Pharmacology and UT Health Cancer Center University of Texas Health Science Center at San Antonio San Antonio Texas 78229 United States;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生药学(天然药物学);
  • 关键词

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