Multidisciplinary Laboratory of Food and Health (LabMAS), School of Applied Sciences (FCA), University of Campinas (UNICAMP), Rua Pedro Zaccaria, 1300, 12383-250 Limeira, SP, Brazil.
Laboratory of Pharmaceutical Research and Chemometrics (LabFarQui), Institute of Chemistry, University of Campinas (UNICAMP), Rua Josué de Castro s/n, 13083-970 Campinas, São Paulo, Brazil.
Food Res Int. 2024 Apr;182:114134. doi: 10.1016/j.foodres.2024.114134. Epub 2024 Feb 17.
Hesperidin is a phenolic compound usually found in citrus fruits, which is known for its anti-inflammatory and antioxidant properties. This bioactive compound has already been used to formulate medications to treat chronic venous insufficiency. In this work, through a system which allows the in-line coupling of the pressurized liquid extraction (PLE) and high-intensity ultrasound (HIUS) with solid phase extraction (SPE), and analysis by high-performance liquid chromatography with UV-Vis detector (HPLC-UV) in on-line mode, a method was developed to obtain, separate, and quantify hesperidin from the industrial waste of lime. An eco-friendly approach with water and ethanol as extraction solvents was used. Parameters such as temperature (80, 100, and 120 °C) and HIUS power (0, 200, and 400 W) were evaluated regarding hesperidin yield. In this context, the higher hesperidin yield (18.25 ± 1.52 mg/g) was achieved using water at a subcritical state (120 °C and 15 MPa). The adsorbent Sepra C-18-E isolated hesperidin from the other extracted compounds employing 50% ethanol in the SPE elution. The possibility ofon-lineanalysis coupling a high-performance liquid chromatograph to an ultraviolet detector (HPLC-UV) system was studied and shown to be a feasible approach for developing integrated technologies. Conventional extractions and their antioxidant capacities were evaluated, highlighting the advantages of the HIUS-PLE-SPE extractive method. Furthermore, the on-linechromatographic analysis showed the potential of the HIUS-PLE-SPE- HPLC-UV system to quantify the extracted compounds in real time.
橙皮苷是一种常见于柑橘类水果的酚类化合物,具有抗炎和抗氧化特性。这种生物活性化合物已被用于配制药物来治疗慢性静脉功能不全。在这项工作中,通过允许加压液体提取 (PLE) 和高强度超声 (HIUS) 与固相萃取 (SPE) 在线耦合的系统,并通过高效液相色谱与紫外可见检测器 (HPLC-UV) 进行在线分析,开发了一种从石灰工业废料中获取、分离和定量橙皮苷的方法。使用水和乙醇作为提取溶剂的环保方法。考察了温度(80、100 和 120°C)和 HIUS 功率(0、200 和 400W)等参数对橙皮苷产率的影响。在这种情况下,使用水在亚临界状态(120°C 和 15MPa)下获得了较高的橙皮苷产率(18.25±1.52mg/g)。Sepra C-18-E 吸附剂在 SPE 洗脱中使用 50%乙醇从其他提取化合物中分离出橙皮苷。研究了将高效液相色谱仪与紫外检测器(HPLC-UV)系统在线分析耦合的可能性,并证明这是开发集成技术的一种可行方法。评估了常规提取及其抗氧化能力,突出了 HIUS-PLE-SPE 提取方法的优势。此外,在线色谱分析显示 HIUS-PLE-SPE-HPLC-UV 系统具有实时定量提取化合物的潜力。