Phytochemistry Laboratory, Department of Botany, Faculty of Science, Aswan University, Aswan 81528, Egypt; Department of Chemistry, College of Science and Arts, Qassim University, Ar Rass, Saudi Arabia; Department of Biochemistry and Crop Quality, Institute of Soil Science and Plant Cultivation, State Research Institute, ul. Czartoryskich 8, Pulawy 24-100, Poland.
Department of Chemistry, College of Science and Arts, Qassim University, Ar Rass, Saudi Arabia; Laboratoire de Caractérisations, Applications et Modélisations des Matériaux, Faculté des Sciences de Tunis, Université Tunis El Manar, 2092, Tunis.
Biomed Pharmacother. 2022 Jun;150:112954. doi: 10.1016/j.biopha.2022.112954. Epub 2022 Apr 18.
Caralluma quadrangula (Forssk.) N.E.Br. (Syns: = Stapelia quadrangula Forssk. = Monolluma quadrangula Forssk.) is an indigenous member of the genus Caralluma and it is a rather common species on rocky hillsides in the southwestern part of Saudi Arabia. Several members of this genus have found medicinal uses in the treatment of rheumatism, diabetes, leprosy and as antiseptics and disinfectants. All parts are edible but rather more bitter and can cause diarrhea.
The present report was tentatively elucidated the structure of acylated and non-acylated polyoxypregnane glycosides from Caralluma quadrangula.
The analyses were performed using an electrospray-ionization quadrupole time-of-flight (ESI-Q-TOF) mass spectrometer in both positive and negative ionization modes to explore fragmentation pathways. The antioxidant and prooxidant properties of the different mobility portions of human plasma were evaluated in vitro using thiobarbituric acid reactive substance assay (TBARS).
The analyses showed sixty-five characteristic ion peaks which could be more efficient to assignment the aglycones and fragmentation sequences of sugar moieties. The used ionization modes provided consistent and/or complementary information for most of the pregnane glycosides, their fragmentation sequences, and their aglycones. A DFT Study was performed to elucidate the neutral loss of HO molecules sequences from aglycones and the esterification linkage.
This report could be useful to reduce material consuming and time in phytochemistry analysis of the different medicinal plants. The two portions significantly depleted TBARS were subjected to autoperoxidation assay in the presence of hydrogen peroxide.
Caralluma quadrangula(Forssk.)N.E.Br.(同义词:= Stapelia quadrangula Forssk. = Monolluma quadrangula Forssk.)是 Caralluma 属的本土成员,它是沙特阿拉伯西南部多岩石山坡上相当常见的物种。该属的几个成员在治疗风湿病、糖尿病、麻风病方面找到了药用价值,并且具有防腐和消毒剂的作用。所有部位均可食用,但苦味更浓,可能会引起腹泻。
本报告初步阐明了 Caralluma quadrangula 中的酰化和非酰化多氧孕甾烷糖苷的结构。
使用电喷雾电离四极杆飞行时间(ESI-Q-TOF)质谱仪在正离子和负离子模式下进行分析,以探索碎裂途径。使用硫代巴比妥酸反应物质测定法(TBARS)在体外评估不同流动性部分的人血浆的抗氧化和促氧化剂特性。
分析显示六十五个特征离子峰,这些离子峰可以更有效地分配糖苷配基和糖部分的碎裂序列。所使用的电离模式为大多数孕甾烷糖苷及其糖苷配基和碎裂序列提供了一致和/或互补的信息。进行了 DFT 研究以阐明从糖苷配基中 HO 分子的中性损失序列和酯化键。
本报告有助于减少不同药用植物的植物化学分析中的物质消耗和时间。两个显著减少 TBARS 的部分在过氧化氢存在下进行自动氧化测定。