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传统种植系统和雾培系统中生长的L.果实的化学特征及生物活性

Chemical Profile and Bioactivity of L. Fruits Grown in Conventional and Aeroponic Systems.

作者信息

La Torre Chiara, Loizzo Monica Rosa, Frattaruolo Luca, Plastina Pierluigi, Grisolia Antonio, Armentano Biagio, Cappello Maria Stella, Cappello Anna Rita, Tundis Rosa

机构信息

Department of Pharmacy, Health and Nutritional Sciences, University of Calabria, 87036 Rende, Italy.

Azienda Agricola Grisolia A., Contrada Campotenese sn, 87016 Morano Calabro, Italy.

出版信息

Plants (Basel). 2024 Apr 16;13(8):1115. doi: 10.3390/plants13081115.

Abstract

Raspberry ( L.) is a fruit of great interest due to its aroma, nutritional properties, and the presence of many bioactive compounds. However, differences among cultivation systems can affect its composition and, consequently, its potential bioactivity. Herein, for the first time, raspberries grown in an aeroponic system were investigated for their chemical profile and antioxidant and anti-inflammatory activity, as well as their enzyme (α-glucosidase and pancreatic lipase) inhibitory properties in comparison to wild and conventionally cultivated fruits. High-performance liquid chromatography coupled with diode array detection (HPLC-DAD) analyses revealed the presence of gallic acid, caffeic acid, chlorogenic acid, -coumaric acid, ferulic acid, rutin, and catechin in all the samples. The extracts exhibited in vitro anti-inflammatory activity (inhibition of nitric oxide production) regardless of the cultivation method. Of particular interest is the ability of raspberries to inhibit pancreatic lipase. With the exception of the β-carotene bleaching test, the raspberries grown in conventional and aeroponic systems were more active in terms of antioxidants than wild fruits, as evidenced by the ABTS (IC in the range 1.6-3.4 μg/mL), DPPH (IC in the range 8.9-28.3 μg/mL), and FRAP tests (24.6-44.9 μM Fe(II)/g). The raspberries from aeroponic cultivation were generally able to exert the same bioactivity as those obtained from both conventionally cultivated and wild fruits, supporting the consideration that in the future, this technology could reshape agriculture by mitigating resource constraints, fostering sustainable practices and increasing yields.

摘要

树莓(L.)因其香气、营养特性以及多种生物活性化合物的存在而备受关注。然而,不同种植系统之间的差异会影响其成分,进而影响其潜在的生物活性。在此,首次对气培系统中种植的树莓进行了化学特征、抗氧化和抗炎活性以及与野生和传统种植果实相比的酶(α-葡萄糖苷酶和胰脂肪酶)抑制特性的研究。高效液相色谱-二极管阵列检测(HPLC-DAD)分析表明,所有样品中均存在没食子酸、咖啡酸、绿原酸、对香豆酸、阿魏酸、芦丁和儿茶素。无论种植方法如何,提取物均表现出体外抗炎活性(抑制一氧化氮生成)。特别值得关注的是树莓抑制胰脂肪酶的能力。除β-胡萝卜素漂白试验外,传统种植和气培系统中种植的树莓在抗氧化方面比野生果实更具活性,ABTS(IC在1.6 - 3.4 μg/mL范围内)、DPPH(IC在8.9 - 28.3 μg/mL范围内)和FRAP试验(24.6 - 44.9 μM Fe(II)/g)证明了这一点。气培种植的树莓通常能够发挥与传统种植和野生果实相同的生物活性,这支持了这样一种观点,即未来这项技术可以通过缓解资源限制、促进可持续实践和提高产量来重塑农业。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/806f/11053529/e6177d819d02/plants-13-01115-g001.jpg

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