Verma Monika, Thakur Ajay, Sharma Renu, Bharti Ruchi
Department of Chemistry, University Institute of Sciences, Chandigarh University, Ludhiana Highway, Mohali, Punjab, India.
Curr Org Synth. 2022;19(1):86-114. doi: 10.2174/1570179418666210910105342.
The history of tri-substituted methanes (TRSMs) in chemical industries is much older. Tri-substituted methanes were previously used as dyes in the chemical industries. Still, there is a significant surge in researchers' interest in them due to their wide range of bioactivities. Trisubstituted methane derivatives show a wide range of biological activities like anti-tumor, antimicrobial, antibiofilm, antioxidant, anti-inflammatory, anti-arthritic activities. Due to the wide range of medicinal applications shown by tri-substituted methanes, most of the methodologies reported in the literature for the synthesis of TRSMs are focused on the one-pot method. This review explored the recently reported one-pot processes for synthesizing trisubstituted methanes and their various medicinal applications. Based on the substitution attached to the -CH carbon, this review categorizes them into two major classes: (I) symmetrical and (II) unsymmetrical trisubstituted methanes. In addition, this review gives an insight into the growing opportunities for the construction of trisubstituted scaffolds via one-pot methodologies. To the best of our knowledge, no one has yet reported a review on the one-pot synthesis of TRSMs. Therefore, here we present a brief literature review of the synthesis of both symmetrical and unsymmetrical TRSMs covering various one-pot methodologies along with their medicinal applications.
三取代甲烷(TRSMs)在化学工业中的历史更为悠久。三取代甲烷曾在化学工业中用作染料。然而,由于其广泛的生物活性,研究人员对它们的兴趣显著激增。三取代甲烷衍生物表现出广泛的生物活性,如抗肿瘤、抗菌、抗生物膜、抗氧化、抗炎、抗关节炎活性。由于三取代甲烷显示出广泛的药用应用,文献中报道的大多数三取代甲烷合成方法都集中在一锅法上。本综述探讨了最近报道的合成三取代甲烷的一锅法工艺及其各种药用应用。基于连接在 -CH 碳上的取代基,本综述将它们分为两大类:(I)对称三取代甲烷和(II)不对称三取代甲烷。此外,本综述还深入探讨了通过一锅法构建三取代骨架的日益增长的机会。据我们所知,尚未有人报道过关于三取代甲烷一锅法合成的综述。因此,在此我们简要介绍一下对称和不对称三取代甲烷合成的文献综述,涵盖各种一锅法工艺及其药用应用。