菇娘果酚类物质提取工艺优化及其抗氧化和稳定性分析

    Optimization of Extraction Process of Phenolic Compounds from Physalis alkekengi and Analysis of Their Antioxidant Activity and Stability

    • 摘要: 为优化两个品种菇娘果果实及宿萼酚类物质的超声辅助提取工艺,并明确其体外抗氧化活性、降糖相关酶抑制活性及胃肠消化稳定性。以挂金灯(红果)、灯笼果(黄果)的成熟果实与宿萼为试材,通过单因素结合正交试验优化提取工艺,通过DPPH法、ABTS法及α-淀粉酶、α-葡萄糖苷酶抑制试验评价各部位酚类物质的生物活性,并基于INFOGEST国际标准化模型分析其消化稳定性。结果表明:红果宿萼总酚浓度最高,达62.25 mg GAE·g−1。最优提取条件为:红果果实、黄果果实及黄果宿萼以70%甲醇为提取溶剂,红果宿萼以60%甲醇为提取溶剂,料液比均为1∶20(g·mL−1),超声时间为20~30 min。其中,料液比是影响提取效果的主要因素。各部位酚类提取物均表现出良好的体外生物活性,红果宿萼对ABTS阳离子自由基清除活性最强(IC50=0.375 mg·mL−1),黄果果实对DPPH自由基清除活性最强(IC50=0.302 mg·mL−1),红果果实对α-葡萄糖苷酶(IC50=0.472 mg·mL−1)和α-淀粉酶(IC50=0.0677 mg·mL−1)抑制作用最显著。体外模拟消化后,胃消化阶段酚类活性保留率显著高于肠消化阶段,各样品经完整胃肠消化后仍维持较好的生物活性。

       

      Abstract: To optimize the ultrasound-assisted extraction of phenolic compounds from the fruits and persistent calyces of two Physalis cultivars and clarify their in vitro antioxidant activity, hypoglycemic enzyme inhibitory activity and gastrointestinal digestive stability, mature fruits and calyces of Alkekengi officinarum(red-fruited)and Physalis peruviana(yellow-fruited)were used as materials. The extraction process was optimized by single-factor experiments combined with orthogonal array design. The biological activities were evaluated via DPPH, ABTS assays, α-amylase and α-glucosidase inhibition tests, and in vitro digestive stability was analyzed based on the standardized INFOGEST model.The results showed that the total phenolic content of red-fruited calyces was the highest(62.25 mg GAE·g1). The optimal extraction conditions were as follows: 70% methanol for red fruits, yellow fruits and yellow-fruited calyces, 60% methanol for red-fruited calyces, solid-to-liquid ratio of 1∶20 g·mL1, and ultrasonic treatment for 20–30 min. Solid-to-liquid ratio was the dominant factor affecting extraction efficiency. All phenolic extracts exhibited favorable in vitro bioactivities: red-fruited calyces showed the strongest ABTS+ scavenging activity(IC50 = 0.375 mg·mL1), yellow fruits had the strongest DPPH· scavenging activity(IC50 = 0.302 mg·mL1), and red fruits exerted the most significant inhibition on α-glucosidase(IC50 = 0.472 mg·mL1)and α-amylase(IC50 = 0.0677 mg·mL1). After simulated digestion, the activity retention rate in the gastric phase was significantly higher than that in the intestinal phase, and all samples maintained favorable bioactivity after complete gastrointestinal digestion.This study provides the first evidence of the synergistic effect of fruit color and persistent calyx on the functional activity of Physalis, which offers a scientific basis for the high-value utilization of Physalis calyx by-products and the development of natural glycemic-control functional foods.

       

    /

    返回文章
    返回