Structural revision of aristol: a fresh look at the oxidative coupling of thymol under iodination conditions?
RSC Advances Pub Date: 2016-07-14 DOI: 10.1039/C6RA11296J
Abstract
Aristol, an antiseptic drug prepared by iodination of thymol under alkaline conditions, has been on the market since the 1880s. Up until 1951, a myriad of (unlikely) structures were put forward, but none of them were in full agreement with the observed chemical and physical properties of aristol. Today, according to most pharmacopoeias and commercial sources, aristol represents an iodooxybiphenyl derivative; the origin of this structure is unknown. Motivated by these facts, we decided to elucidate the structure of aristol using modern chromatographic and extensive spectrometric techniques (NMR/FTIR/MS/UV), combined with chemical transformations and quantum mechanical calculations. Based on our findings, it was revealed that aristol does not represent a single chemical entity but a complex mixture of a large number of structurally closely related iodinated dehydrodithymol molecules together with (di)iodothymols and unreacted thymol. Five products of oxidative coupling (CAr–CAr, CAr–O–CAr and CAr–CH2–CAr) were successfully isolated in a pure state and fully spectrally characterized: 3,3′-diiodo-5,5′-diisopropyl-2,2′-dimethyl-[1,1′-biphenyl]-4,4′-diol, 5,5′-diiodo-3,3′-diisopropyl-6,6′-dimethyl-[1,1′-biphenyl]-2,2′-diol, 2-iodo-4-(4-iodo-2-isopropyl-5-methylphenoxy)-6-isopropyl-3-methylphenol, 4-(5-hydroxy-2-iodo-4-isopropylbenzyl)-2-isopropyl-5-methylphenol, and 3-(4-hydroxy-5-isopropyl-2-methylbenzyl)-2,4-diiodo-6-isopropylphenol. A lateral meta-coupling (with respect to the phenoxy-radical), CAr–CH2–CAr, previously never reported for oxidative coupling of phenols, was firmly established in two aristol constituents. This provides evidence for a mechanism that involves benzyl radicals unknown to form under these conditions. An additional 16 aristol constituents were identified by the use of a QSPR model (readily available structure-derived descriptors used to predict gas chromatography retention data), in combination with mass spectrometry, directly from the aristol matrix without preparative chromatography. The herein presented results urge a revision of the currently accepted formula (composition) of aristol in both primary and secondary literature.
Recommended Literature
- [1] Evolved polymerases facilitate selection of fully 2′-OMe-modified aptamers? Zhixia Liu,Tingjian Chen,Floyd E. RomesbergChem. Sci., 2017,8, 8179-8182 10.1039/C7SC03747C
- [2] Emerging investigator series: bacteriophages as nano engineering tools for quality monitoring and pathogen detection in water and wastewater Fereshteh BayatEnviron. Sci.: Nano, 2021,8, 367-389 10.1039/D0EN00962H
- [3] Dissociation of aryl sulfonyl phthalimide radical anions: relevance to the biological activity of arylsulfonyl amides? Abdelaziz Houmam,Emad M. HamedChem. Commun., 2012,48, 11328-11330 10.1039/C2CC36835H
- [4] Excellent humidity sensor based on ultrathin HKUST-1 nanosheets? Qiaoe Wang,Meiling Lian,Xiaowen Zhu,Xu ChenRSC Adv., 2021,11, 192-197 10.1039/D0RA08354B
- [5] Dissociative dynamics of O2 on Ag(110)? Ivor Lon?ari?Phys. Chem. Chem. Phys., 2015,17, 9436-9445 10.1039/C4CP05900J
- [6] Establishing the accuracy of position-specific carbon isotope analysis of propane by GC-pyrolysis-GC-IRMS ChangjieLiu,PengLiu,XiaofengWang,XiaoqiangLi,JuskeHorita 10.1002/rcm.9494
- [7] EWOD-driven droplet microfluidic device integrated with optoelectronic tweezers as an automated platform for cellular isolation and analysis? Gaurav J. Shah,Eric P.-Y. Chiou,Ming C. Wu,Chang-Jin “CJ” KimLab Chip, 2009,9, 1732-1739 10.1039/B821508A
- [8] Evidence of field induced slow magnetic relaxation in cis-[Co(hfac)2(H2O)2] exhibiting tri-axial anisotropy with a negative axial component? Denis V. Korchagin,Elena A. Yureva,Alexander V. Akimov,Eugenii Ya. Misochko,Gennady V. Shilov,Artem D. Talantsev,Roman B. Morgunov,Alexander A. Shakin,Sergey M. Aldoshin,Boris S. TsukerblatDalton Trans., 2017,46, 7540-7548 10.1039/C7DT01236E
- [9] Enabling non-flammable Li-metal batteries via electrolyte functionalization and interface engineering? Jing Yu,Yu-Qi Lyu,Jiapeng Liu,Mohammed B. Effat,Junxiong WuJ. Mater. Chem. A, 2019,7, 17995-18002 10.1039/C9TA03784E
- [10] Enabling stable MnO2 matrix for aqueous zinc-ion battery cathodes? Yiding Jiao,Liqun Kang,Jasper Berry-Gair,Kit McColl,Jianwei Li,Haobo Dong,Hao Jiang,Ryan Wang,Furio Corà,Dan J. L. Brett,Ivan P. ParkinJ. Mater. Chem. A, 2020,8, 22075-22082 10.1039/D0TA08638J
Journal Name:RSC Advances
research_products
-
CAS no.: 89640-58-4