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以药物化学为重点的阿片类激动剂吗啡衍生物的表征

Characterization of Opioid Agonist Morphine Derivatives with Emphasis on Medicinal Chemistry.

作者信息

Malik Alaa, Hosztafi Sándor, Vincze Anna, Marton András, Kraszni Márta, Balogh György T, Noszál Béla, Mazák Károly

机构信息

Semmelweis University, Department of Pharmaceutical Chemistry, Hőgyes E. u. 9., H-1092, Budapest, Hungary.

Center for Pharmacology and Drug Research & Development, Semmelweis University, Üllői út 26, H-1085, Budapest, Hungary.

出版信息

ChemMedChem. 2025 Feb 16;20(4):e202400654. doi: 10.1002/cmdc.202400654. Epub 2024 Nov 21.

Abstract

Relieving severe pains is an unmet medical need, in which opioids are of prime importance and in the focus of pharmaceutical companies. The objective of this study is to characterize the physicochemical properties, namely basicity, lipophilicity and permeability of thirty opioid ligands, which include eleven newly synthesized compounds. pH-potentiometry and the shake-flask method were used for the characterization of species-specific basicity and lipophilicity. The effective permeability was determined using a brain-specific parallel artificial membrane permeability assay. Structural modifications, namely O-methylation in position 3, isomerization in position 6, saturation of the double bond in position 7, 14-hydroxylation, and the substitution of N-(β-phenylethyl) and N-cyclobutylmethyl side chains all have various effects on these physicochemical properties, and these are explained and compared to computationally predicted values. Computational predictions inadequately capture hydrogen bond formation with the tertiary amino group in case of 14-hydroxylation, just as the effects of hydroxy oxidation at position 6 and N-methyl substitution with N-(β-phenylethyl). The relationship between lipophilicity, permeability and potency is presented by lipophilic efficiency plots that reveal the most promising compounds. This study emphasizes the importance of experimental determination of these essential physicochemical parameters, furthermore, it can contribute to a more thorough understanding of the pharmacokinetic properties.

摘要

缓解剧痛是一项尚未满足的医疗需求,在这方面阿片类药物至关重要,也是制药公司关注的焦点。本研究的目的是表征30种阿片类配体的物理化学性质,即碱性、亲脂性和渗透性,其中包括11种新合成的化合物。采用pH电位滴定法和摇瓶法表征物种特异性碱性和亲脂性。使用脑特异性平行人工膜通透性测定法测定有效渗透率。结构修饰,即3位的O-甲基化、6位的异构化、7位双键的饱和、14-羟基化以及N-(β-苯乙基)和N-环丁基甲基侧链的取代,对这些物理化学性质都有不同的影响,并对其进行了解释,并与计算预测值进行了比较。在14-羟基化的情况下,计算预测不能充分捕捉与叔氨基形成的氢键,就像6位羟基氧化和用N-(β-苯乙基)进行N-甲基取代的影响一样。亲脂效率图展示了亲脂性、渗透性和效价之间的关系,揭示了最有前景的化合物。本研究强调了实验测定这些基本物理化学参数的重要性,此外,它有助于更全面地了解药代动力学性质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a4d5/11831872/7cc3cce8f562/CMDC-20-e202400654-g003.jpg

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