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日本語AIでPubMedを検索

日本語AIでPubMedを検索

PubMedの提供する医学論文データベースを日本語で検索できます。AI(Deep Learning)を活用した機械翻訳エンジンにより、精度高く日本語へ翻訳された論文をご参照いただけます。
Molecules.2020 May;25(11). E2560. doi: 10.3390/molecules25112560.Epub 2020-05-31.

コンブレッタスタチン類。構造、作用機序、および応用の可能性の概要

Combretastatins: An Overview of Structure, Probable Mechanisms of Action and Potential Applications.

  • Gökçe Şeker Karatoprak
  • Esra Küpeli Akkol
  • Yasin Genç
  • Hilal Bardakci
  • Çiğdem Yücel
  • Eduardo Sobarzo-Sánchez
PMID: 32486408 PMCID: PMC7321081. DOI: 10.3390/molecules25112560.

抄録

Combretastatins are a class of closely related stilbenes (combretastatins A), dihydrostilbenes (combretastatins B), phenanthrenes (combretastatins C) and macrocyclic lactones (combretastatins D) found in the bark of (Eckl. & Zeyh.) Kuntze, commonly known as the South African bush willow. Some of the compounds in this series have been shown to be among the most potent antitubulin agents known. Due to their structural simplicity many analogs have also been synthesized. Combretastatin A4 phosphate is the most frequently tested compounds in preclinical and clinical trials. It is a water-soluble prodrug that the body can rapidly metabolize to combretastatin A4, which exhibits anti-tumor properties. In addition in vitro and in vivo studies on combretastatins have determined that these compounds also have antioxidant, anti-inflammatory and antimicrobial effects. Nano-based formulations of natural or synthetic active agents such as combretastatin A4 phosphate exhibit several clear advantages, including improved low water solubility, prolonged circulation, drug targeting properties, enhanced efficiency, as well as fewer side effects. In this review, a synopsis of the recent literature exploring the combretastatins, their potential effects and nanoformulations as lead compounds in clinical applications is provided.