El Maaiden Ezzouhra, Qarah Nagib, Ezzariai Amine, Mazar Adil, Nasser Boubker, Moustaid Khadija, Boukcim Hassan, Hirich Abdelaziz, Kouisni Lamfeddal, El Kharrassi Youssef
African Sustainable Agriculture Research Institute (ASARI), Mohammed VI Polytechnic University (UM6P), Laayoune 70000, Morocco.
Department of Chemistry, Faculty of Education-Zabid, Hodeidah University, Hodeidah P.O. Box 3114, Yemen.
Antioxidants (Basel). 2023 Mar 15;12(3):725. doi: 10.3390/antiox12030725.
Isoquercetin (ISQ) is reported to be a powerful antioxidant with extremely high bioavailability and structural stability compared to aglycone quercetin. Despite this, it is not well studied due to the limited methods for its extraction. With the growing interest in the research and analysis of ISQ-rich herbs, there is a need to optimize an efficient and rapid method for their extraction. In the present study, the ultrasound-assisted extraction of ISQ from Decne was optimized by a response surface methodology (RSM) using high-performance liquid chromatography as a separation method. The best possible ranges for extraction time (10-30 min), temperature (50-70 °C), ultrasonic power (60-90 W), solvent-to-solid ratio (50-70 mL/g), and ethanol concentration (50-70%) were determined using a single factor analysis. Subsequently, an optimization of the extraction conditions was performed with RSM using the Box-Behnken design. An ultrasonication time of 10 min, a temperature of 60 °C, a power of 75 W, a solvent-to-solid ratio of 60 mL/g, and an ethanol concentration of 70% were determined to be the optimal conditions for the highest recovery of isoquercetin (1033.96 ± 3.28 µg/g). Furthermore, powder morphology (using a scanning electron microscope), antioxidant activities, and the inhibition potential of key enzymes involved in skin aging (elastase and collagenase), hyperpigmentation (tyrosinase), diabetes (α-amylase), inflammation (hyaluronidase), and neurodegenerative disorders (cholinesterase) were determined and compared with those using the Soxhlet method. This study established a highly efficient method for ISQ extraction and suggested several potential applications of ISQ in the pharmaceutical and cosmetics industries.
据报道,异槲皮素(ISQ)是一种强大的抗氧化剂,与苷元槲皮素相比,具有极高的生物利用度和结构稳定性。尽管如此,由于其提取方法有限,对其研究并不充分。随着对富含ISQ草药的研究和分析兴趣日益浓厚,需要优化一种高效快速的提取方法。在本研究中,采用高效液相色谱作为分离方法,通过响应面法(RSM)对从Decne中超声辅助提取ISQ进行了优化。通过单因素分析确定了提取时间(10 - 30分钟)、温度(50 - 70℃)、超声功率(60 - 90瓦)、溶剂与固体比(50 - 70毫升/克)和乙醇浓度(50 - 70%)的最佳范围。随后,使用Box - Behnken设计通过RSM对提取条件进行了优化。确定超声处理时间10分钟、温度60℃、功率75瓦、溶剂与固体比60毫升/克和乙醇浓度70%是异槲皮素最高回收率(1033.96±3.28微克/克)的最佳条件。此外,还测定了粉末形态(使用扫描电子显微镜)、抗氧化活性以及参与皮肤衰老(弹性蛋白酶和胶原酶)、色素沉着过度(酪氨酸酶)、糖尿病(α -淀粉酶)、炎症(透明质酸酶)和神经退行性疾病(胆碱酯酶)的关键酶的抑制潜力,并与索氏提取法的结果进行了比较。本研究建立了一种高效的ISQ提取方法,并提出了ISQ在制药和化妆品行业的几种潜在应用。