Analysis of Four Solvatomorphs of Betulin by TG–DTA–EI/PI–MS System Equipped with the Skimmer-Type Interface

Author:

Yuan Peng-HuiORCID,Bi Yan-Cai,Su Bin,Yang De-Zhi,Gong Ning-Bo,Zhang LiORCID,Lu Yang,Du Guan-Hua

Abstract

AbstractBetulin (BE) has exceedingly become a potential natural product, providing multiple pharmacological and biological activities, including anti-cancer, anti-viral, and anti-inflammatory benefits. Previous research indicated that the solvatomorphism of BE can easily occur through crystallization with different organic solvents. This property of BE can directly affect its extraction, isolation, and preparation process. In this study, a system of thermogravimetry (TG)–differential thermal analysis (DTA) coupled with mass spectrometry (MS) with electron ionization (EI) and photoionization (PI) capability, equipped with the skimmer-type interface (i.e., skimmer-type interfaced TG–DTA–EI/PI–MS system), as a real-time and onsite analysis technique, was employed. Then, four solvatomorphs of BE, namely, with pyridine and water (A), sec-butanol (B), n,n-dimethylformamide (DMF) (C), and isopropanol (V), were analyzed for the first time. Finally, five kinds of the main volatile gaseous species, including H2O, pyridine, sec-butanol, DMF, and isopropanol, were identified clearly. Furthermore, the multi-step desolvation processes of the four solvatomorphs of BE were revealed by this system for the first time. This system showed great potential for the rapid and accurate analysis of various solvatomorphs of natural products. Graphic Abstract

Funder

National Key R&D Program of China

National Major Science and Technology Projects of China

National Natural Science Foundation of China

CAMS Innovation Fund for Medical Sciences

Publisher

Springer Science and Business Media LLC

Subject

Organic Chemistry,Plant Science,Pharmacology,Toxicology,Biochemistry,Food Science,Analytical Chemistry

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