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采用计算化学方法评估4-(4-羟基苯基)-丁-2-酮(“覆盆子酮”)的物理化学性质。

Physicochemical Properties of 4-(4-Hydroxyphenyl)-butan-2-one ("Raspberry Ketone") Evaluated Using a Computational Chemistry Approach.

作者信息

McPherson Peter A C, McKenna Niamh, Johnston Ben M

机构信息

School of Pharmacy & Pharmaceutical Science, Ulster University, Coleraine BT52 1SA, U.K.

School of Pharmacy, University of North Carolina, Chapel Hill 27599, North Carolina, United States.

出版信息

ACS Omega. 2024 May 21;9(22):23963-23970. doi: 10.1021/acsomega.4c02293. eCollection 2024 Jun 4.

Abstract

Raspberry ketone (RK) is a product of the phenylpropanoid pathway in a variety of plants and is the second most expensive natural flavouring in the world. It is also widely used as a nutritional supplement due to its reported ability to promote lipolysis and fat oxidation in vivo. We have evaluated the thermodynamics of RK using the correlation consistent ccCA-CBS-2 approach which afforded calculation of (inter alia) the enthalpy of formation. To obtain p , log , electrode potential, solubility, and reactivity indices, we used TPSS/def2-TZVP geometries followed by single-point energies obtained at the M06-2X/def2-TZVPP level of theory. We obtained Δ = -299.4 ± 0.17 kJ·mol; the p and log were found to be 9.95 and 1.84, respectively, consistent with chemometric predictions. Using the enthalpy of fusion obtained from theory, we evaluated the aqueous solubility of RK to be in the region of 2.5 mg·mL which is in agreement with limited literature reports. In terms of reactivity, we obtained a formal electrode potential of 1.29 V (vs SHE) at pH 7.4 and 298.15 K. The HOMO-LUMO energy separation in an aqueous environment was found to be ca. 7.8 eV, suggesting moderate chemical reactivity. Analysis of the frontier molecular orbitals using conceptual density functional theory supported this and revealed a reactivity pattern consistent with the metabolite profile obtained in mammals, namely, a propensity for nucleophilic attack at the carbonyl carbon and electrophilic addition of the benzene ring.

摘要

覆盆子酮(RK)是多种植物中苯丙烷类途径的产物,是世界上第二昂贵的天然香料。由于其据报道具有促进体内脂肪分解和脂肪氧化的能力,它还被广泛用作营养补充剂。我们使用相关一致的ccCA-CBS-2方法评估了RK的热力学,该方法(尤其)提供了生成焓的计算。为了获得pKa、logP、电极电位、溶解度和反应性指数,我们使用了TPSS/def2-TZVP几何结构,然后在M06-2X/def2-TZVPP理论水平上获得单点能量。我们得到ΔfHm = -299.4 ± 0.17 kJ·mol⁻¹;发现pKa和logP分别为9.95和1.84,与化学计量学预测一致。利用理论得到的熔化焓,我们评估RK的水溶性在2.5 mg·mL⁻¹左右,这与有限的文献报道一致。在反应性方面,我们在pH 7.4和298.15 K下获得了1.29 V(相对于标准氢电极)的形式电极电位。在水环境中,最高占据分子轨道(HOMO)-最低未占据分子轨道(LUMO)的能量分离约为7.8 eV,表明具有中等化学反应性。使用概念密度泛函理论对前沿分子轨道的分析支持了这一点,并揭示了一种与在哺乳动物中获得的代谢物谱一致的反应模式,即在羰基碳处发生亲核攻击和苯环发生亲电加成的倾向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/826d/11154730/1373c96ce5d9/ao4c02293_0001.jpg

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