通过 in silico 药物发现,在多个目标导向的配体方面取得了近期的进展
Krishnaiah Maddeboina1, Bharath Yada2, Shikha Kumari3
1Molecular Targeted Therapeutics Laboratory, Levine Cancer Institute/Atrium Health, Charlotte, NC 28204, USA; Department of Biochemistry, Atrium Health Wake Forest Baptist Comprehensive Cancer Center, Wake Forest University School of Medicine, Winston Salem, NC 27157, USA.
Drug discovery today
|January 27, 2024
概括
本综述探讨了针对癌症等复杂疾病的多向药物,重点是设计抑制多个向的小分子,以克服药物耐药性和增强功效. 它涵盖了形设计,结构-活性关系以及双重向疗法的临床更新.
科学领域:
- 药用化学 医学化学
- 药物发现 药物发现 药物发现
- 计算生物学 计算生物学
背景情况:
- 诸如癌症和神经退行性疾病之类的多因子性疾病带来了重大的治疗挑战.
- 耐药性机制需要新的治疗策略,包括多目标方法.
- 合成致死性 (SL) 为开发有效治疗抗药性疾病提供了一个有前途的途径.
研究的目的:
- 审查用于对抗多因素疾病的双重和三重向配体的in silico设计.
- 探索开发具有多目标抑制活性的小分子的策略.
- 分析结构-活性关系 (SARs),物理化学性质和多向药物的临床状态.
主要方法:
- 双重和三重向的连接体的形设计.
- 将特定的"战头"组纳入母脚手架.
- 对SARs,物理化学性质和多药理学的分析.
- 从FDA批准的多酶抑制剂 (MKIs) 中提取的脚手架特征.
主要成果:
- 讨论创建抑制两个或三个分子标的单个分子的策略.
- 突出了多目标连接体的潜力,以增加对复杂疾病的效力.
- 检查SARs和物理化学性质的分析探索,以优化药物设计.
结论:
- 多向药物是克服多因素疾病中耐药性的有希望的战略.
- 在形设计和SAR分析对于开发有效的双重和三重向配体至关重要.
- 进一步的研究和对多目标化学型的临床评估对于治疗进步至关重要.
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