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首页> 外文期刊>Journal of the Korean Society of Food Science and Nutrition >Effects of Jeju Citrus unshiu Peel Extracts Before and After Bioconversion with Cytolase on Anti-Inflammatory Activity in RAW264.7 Cells
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Effects of Jeju Citrus unshiu Peel Extracts Before and After Bioconversion with Cytolase on Anti-Inflammatory Activity in RAW264.7 Cells

机译:胞浆酶生物转化前后济州柑桔果皮提取物对RAW264.7细胞抗炎活性的影响

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摘要

Citrus and its peels, which are by-products from juice and/or jam processing, have long been used in Asian folk medicine. Citrus peels show an abundant variety of flavanones, and these flavanones have glycone and aglycone forms. Aglycones are more potent than glycones with a variety of physiological functions since aglycone absorption is more efficient than glycones. Bioconversion with cytolase converted narirutin and naringin into naringenin and hesperidin into hesperetin. Therefore, this study aimed to investigate the anti-oxidant and anti-inflammatory effects of bioconversion of Citrus unshiu (CU) peel extracts with cytolase (CU-C) in RAW264.7 cells. HPLC chromatograms showed that CU and CU-C had 23.42% and 29.39% total flavonoids, respectively.There was substantial bioconversion of narirutin to naringenin and of hesperidin to hesperetin. All citrus peel extracts showed DPPH scavenging activities in a dose-dependent manner, and CU-C was more potent than intact CU. RAW264.7 cells were pre-treated with 0 — 500 ug/mL of citrus peel extracts for 4 h and then stimulated by 1 pg/mL of lipopolysaccharide (LPS) for 8 h. All citrus peel extracts showed decreased mRNA levels and protein expression of LPS-induced inducible nitric oxide synthase (iNOS) and cyclooxygenase-2 (COX-2) in a dose-dependent manner. Especially, CU-C markedly inhibited mRNA and protein expression of iNOS and COX-2 compared to intact citrus peel extracts. All citrus peel extracts showed decreased NO production by iNOS activity. This result suggests that bioconversion of citrus peel extracts with cytolase may provide potent functional food materials for prevention of chronic diseases attributable to oxidation and inflammation by boosting the anti-inflammatory effects of citrus peels.
机译:柑橘及其果皮是果汁和/或果酱加工的副产品,长期以来一直用于亚洲民间医学。柑桔皮显示出大量的黄烷酮,这些黄烷酮具有甘氨酸和糖苷配基形式。糖苷配基比具有多种生理功能的糖苷更有效,因为糖苷配基的吸收比糖苷更有效。用纤维素酶进行生物转化将纳鲁丁和柚皮苷转化为柚皮苷,橙皮苷转化为橙皮苷。因此,本研究旨在研究未成熟柑橘皮(CU)果皮提取物与纤维素酶(CU-C)的生物转化对RAW264.7细胞的抗氧化和抗炎作用。 HPLC色谱图显示,CU和CU-C总黄酮含量分别为23.42%和29.39%.narirutin大量生物转化为naringenin,橙皮苷转化为橙皮素。所有柑桔皮提取物均显示出DPPH清除活性,且呈剂量依赖性,并且CU-C比完整CU更有效。 RAW264.7细胞用0-500 ug / mL柑橘皮提取物预处理4 h,然后用1 pg / mL脂多糖(LPS)刺激8 h。所有柑桔皮提取物均显示出LPS诱导型一氧化氮合酶(iNOS)和环氧合酶2(COX-2)的mRNA水平和蛋白质表达呈剂量依赖性。特别是,与完整的柑橘皮提取物相比,CU-C显着抑制了iNOS和COX-2的mRNA和蛋白质表达。所有柑桔皮提取物均显示iNOS活性降低了NO的产生。该结果表明,用纤维素酶对柑桔皮提取物进行生物转化可通过增强柑桔皮的抗炎作用,为预防可归因于氧化和炎症的慢性疾病提供有效的功能性食品原料。

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