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分子膨胀、磨损和五规则。

Molecular inflation, attrition and the rule of five.

机构信息

Paul Leeson Consulting Ltd, The Malt House, Main Street, Congerstone, Nuneaton, Warks CV13 6LZ, UK.

出版信息

Adv Drug Deliv Rev. 2016 Jun 1;101:22-33. doi: 10.1016/j.addr.2016.01.018. Epub 2016 Feb 1.

Abstract

Physicochemical properties underlie all aspects of drug action and are critical for solubility, permeability and successful formulation. Specific physicochemical properties shown to be relevant to oral drugs are size, lipophilicity, ionisation, hydrogen bonding, polarity, aromaticity and shape. The rule of 5 (Ro5) and subsequent studies have raised awareness of the importance of compound quality amongst bioactive molecules. Lipophilicity, probably the most important physical property of oral drugs, has on average changed little over time in oral drugs, until increases in drugs published after 1990. In contrast other molecular properties such as average size have increased significantly. Factors influencing property inflation include the targets pursued, where antivirals frequently violate the Ro5, risk/benefit considerations, and variable drug discovery practices. The compounds published in patents from the pharmaceutical industry are on average larger, more lipophilic and less complex than marketed oral drugs. The variation between individual companies' patented compounds is due to different practices and not to the targets pursued. Overall, there is demonstrable physical property attrition in moving from patents to candidate drugs to marketed drugs. The pharmaceutical industry's recent poor productivity has been due, in part, to progression of molecules that are unable to unambiguously test clinical efficacy, and attrition can therefore be improved by ensuring candidate drug quality is 'fit for purpose.' The combined ligand efficiency (LE) and lipophilic ligand efficiency (LLE) values of many marketed drugs are optimised relative to other molecules acting at the same target. Application of LLE in optimisation can help identify improved leads, even with challenging targets that seem to require lipophilic ligands. Because of their targets, some projects may need to pursue 'beyond Ro5' physicochemical space; such projects will require non-standard lead generation and optimisation and should not dominate in a well-balanced portfolio. Compound quality is controllable by lead selection and optimisation and should not be a cause of clinical failure.

摘要

理化性质是药物作用的基础,对药物的溶解性、渗透性和成功制剂至关重要。与口服药物相关的特定理化性质包括大小、亲脂性、离解度、氢键、极性、芳香性和形状。“五规则”(Rule of 5,Ro5)和后续研究提高了人们对生物活性分子中化合物质量的重要性的认识。亲脂性可能是口服药物最重要的物理性质,在口服药物中,其平均值在一段时间内变化不大,直到 1990 年后发表的药物有所增加。相比之下,其他分子性质(如平均大小)则显著增加。影响性质膨胀的因素包括所追求的目标,抗病毒药物经常违反 Ro5,风险/收益考虑以及可变的药物发现实践。制药行业专利中公布的化合物平均比已上市的口服药物更大、更亲脂、更简单。个别公司专利化合物之间的差异是由于不同的实践,而不是所追求的目标。总体而言,从专利到候选药物再到上市药物,物理性质明显下降。制药行业最近生产力低下的部分原因是,进展中的分子无法明确测试临床疗效,因此通过确保候选药物质量“适合目的”,可以改善衰减。许多已上市药物的联合配体效率(LE)和疏水性配体效率(LLE)值相对于同一靶标作用的其他分子进行了优化。在优化中应用 LLE 可以帮助识别改进的先导化合物,即使是具有挑战性的靶标,似乎需要亲脂性配体。由于其目标,一些项目可能需要追求“超出 Ro5”的理化空间;这些项目将需要非标准的先导化合物生成和优化,并且不应在平衡良好的组合中占主导地位。通过先导化合物选择和优化可以控制化合物质量,而不应成为临床失败的原因。

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