Abstract

Schefflera octophylla (Lour.) Harms, a kind of traditional Chinese medicine (TCM), is commonly used for anti-inflammatory, analgesic, rheumatism, fever, and hemostasis therapy. In our previous studies, two major triterpenoids were isolated and identified from leaves of S. octophylla, and evaluated for their inhibitory effects on lipopolysaccharide (LPS)-induced nitric oxide production in RAW264.7 cells; both of them displayed significant anti-inflammatory activities at their noncytotoxic concentrations. Therefore, it is very useful to establish an efficient and green extraction method to isolated the two major triterpenoids from leaves of S. octophylla. In this paper, ionic liquid based ultrasonic-assisted extraction (ILUAE) was successfully applied to extract the two major triterpenoids from leaves of S. octophylla. Four single factors (ionic liquids (ILs) concentration, solid–liquid ratio, centrifugal speed, mesh number), with a greater impact on extraction rate, were selected from a variety of influencing factors, and the optimal conditions were obtained by Box–Behnken response surface methodology (RSM). Under optimal conditions, the total extraction yield and extraction rate of two triterpenoids were 288.03 mg/g and 28.80%, respectively, which was 6.80% higher than that of 70% Ethanol (220 mg/g and 22%, respectively).

Highlights

  • Schefflera octophylla (Lour.) Harms, belonging to the Araliaceae family, is distributed mainly in Guangxi, Guangdong, Fujian, and Yunnan provinces in China

  • Effects of Compound A and Compound B on Cells Viability was performed for 24 h, and RAW264.7 cell viability was decreased at 100 μmol/mL (p < 0.01) and 50

  • A preliminary was established, wherein experiments compound Awere and compound treatment was performed for 24 h, and RAW264.7 cell viability was decreased at 100 μmol/mL (p < 0.01)

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Summary

Introduction

Schefflera octophylla (Lour.) Harms, belonging to the Araliaceae family, is distributed mainly in Guangxi, Guangdong, Fujian, and Yunnan provinces in China. Thecould extraction of the bioactive components from plants using ILs is[18], promising as successfully a green method, which reduce pollution of environment and using. ILsthe is promising a green method, could reduce ILs the as pollution of environment and improve selectivity as and extraction yieldswhich of target analytes. All them, these combined technologies negative exhibitedpressure marked cavitation-assisted improvements in the fields of(IL-NPCE). Extraction our study aimed develop develop a rapid and compound efficient ionic liquids-based ultrasonic methodto(IL-UAE). Acombined rapid andwith efficient ionic liquids-based ultrasonic assisted extraction method (IL-UAE) combined high performance liquid chromatography (HPLC). Thewere effects of seven single factors extraction of factors on

Effects of Compound
Effects ofofCompound
Selection
Single
Single Factor Experiments
Selection of Mesh Number
Selection of Ultrasonic Time
Selection of Centrifugal Speed
Selection of Ultrasonic Power
F Value p-Value
Chemicals and Materials
Plant Materials
Cell Culture and Treatment
Cell Viability Assay
Preparation of the Standard Solution and Test Sample Solution
Graphic Conditions
Statistical Analysis
Conclusions
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