Polyphenols and Alkaloids in Byproducts of Longan Fruits (Dimocarpus Longan Lour.) and Their Bioactivities
The longan industry produces a large amount of byproducts such as pericarp and seed, resulting in environmental pollution and resource wastage. The present study was performed to systematically evaluate functional components, i.e., polyphenols (phenolics and flavonoids) and alkaloids, in longan bypr...
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Published in | Molecules (Basel, Switzerland) Vol. 24; no. 6; p. 1186 |
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Abstract | The longan industry produces a large amount of byproducts such as pericarp and seed, resulting in environmental pollution and resource wastage. The present study was performed to systematically evaluate functional components, i.e., polyphenols (phenolics and flavonoids) and alkaloids, in longan byproducts and their bioactivities, including antioxidant activities, nitrite scavenging activities in simulated gastric fluid and anti-hyperglycemic activities in vitro. Total phenolic and total flavonoid contents in pericarp were slightly higher than those in seeds, but seeds possessed higher alkaloid content than pericarp. Four polyphenolic substances, i.e., gallic acid, ethyl gallate, corilagin and ellagic acid, were identified and quantified using high-performance liquid chromatography. Among these polyphenolic components, corilagin was the major one in both pericarp and seed. Alkaloid extract in seed showed the highest DPPH radical scavenging activity and oxygen radical absorbance capacity. Nitrite scavenging activities were improved with extract concentration and reaction time increasing. Flavonoids in seed and alkaloids in pericarp had potential to be developed as anti-hyperglycemic agents. The research result was a good reference for exploring longan byproducts into various valuable health-care products. |
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AbstractList | The longan industry produces a large amount of byproducts such as pericarp and seed, resulting in environmental pollution and resource wastage. The present study was performed to systematically evaluate functional components, i.e., polyphenols (phenolics and flavonoids) and alkaloids, in longan byproducts and their bioactivities, including antioxidant activities, nitrite scavenging activities in simulated gastric fluid and anti-hyperglycemic activities in vitro. Total phenolic and total flavonoid contents in pericarp were slightly higher than those in seeds, but seeds possessed higher alkaloid content than pericarp. Four polyphenolic substances, i.e., gallic acid, ethyl gallate, corilagin and ellagic acid, were identified and quantified using high-performance liquid chromatography. Among these polyphenolic components, corilagin was the major one in both pericarp and seed. Alkaloid extract in seed showed the highest DPPH radical scavenging activity and oxygen radical absorbance capacity. Nitrite scavenging activities were improved with extract concentration and reaction time increasing. Flavonoids in seed and alkaloids in pericarp had potential to be developed as anti-hyperglycemic agents. The research result was a good reference for exploring longan byproducts into various valuable health-care products. The longan industry produces a large amount of byproducts such as pericarp and seed, resulting in environmental pollution and resource wastage. The present study was performed to systematically evaluate functional components, i.e., polyphenols (phenolics and flavonoids) and alkaloids, in longan byproducts and their bioactivities, including antioxidant activities, nitrite scavenging activities in simulated gastric fluid and anti-hyperglycemic activities in vitro. Total phenolic and total flavonoid contents in pericarp were slightly higher than those in seeds, but seeds possessed higher alkaloid content than pericarp. Four polyphenolic substances, i.e., gallic acid, ethyl gallate, corilagin and ellagic acid, were identified and quantified using high-performance liquid chromatography. Among these polyphenolic components, corilagin was the major one in both pericarp and seed. Alkaloid extract in seed showed the highest DPPH radical scavenging activity and oxygen radical absorbance capacity. Nitrite scavenging activities were improved with extract concentration and reaction time increasing. Flavonoids in seed and alkaloids in pericarp had potential to be developed as anti-hyperglycemic agents. The research result was a good reference for exploring longan byproducts into various valuable health-care products.The longan industry produces a large amount of byproducts such as pericarp and seed, resulting in environmental pollution and resource wastage. The present study was performed to systematically evaluate functional components, i.e., polyphenols (phenolics and flavonoids) and alkaloids, in longan byproducts and their bioactivities, including antioxidant activities, nitrite scavenging activities in simulated gastric fluid and anti-hyperglycemic activities in vitro. Total phenolic and total flavonoid contents in pericarp were slightly higher than those in seeds, but seeds possessed higher alkaloid content than pericarp. Four polyphenolic substances, i.e., gallic acid, ethyl gallate, corilagin and ellagic acid, were identified and quantified using high-performance liquid chromatography. Among these polyphenolic components, corilagin was the major one in both pericarp and seed. Alkaloid extract in seed showed the highest DPPH radical scavenging activity and oxygen radical absorbance capacity. Nitrite scavenging activities were improved with extract concentration and reaction time increasing. Flavonoids in seed and alkaloids in pericarp had potential to be developed as anti-hyperglycemic agents. The research result was a good reference for exploring longan byproducts into various valuable health-care products. |
Author | Li, Zhi-Chun Li, Chang-Bao Li, Li Li, Jie-Min Liu, Guo-Ming Tang, Ya-Yuan Sheng, Jin-Feng Zheng, Feng-Jin Xin, Ming Ling, Dong-Ning Sun, Jian He, Xue-Mei |
AuthorAffiliation | 2 Guangxi Key Laboratory of Fruits and Vegetables Storage-processing Technology, 174 East Daxue Road, Nanning 530007, China 1 Agro-food Science and Technology Research Institute, Guangxi Academy of Agricultural Sciences, 174 East Daxue Road, Nanning 530007, China; tangyayuan@gxaas.net (Y.-Y.T.); xuemeihegx@gxaas.net (X.-M.H.); changbaoli@gxaas.net (C.-B.L.); lili@gxaas.net (L.L.); shengjinfeng@gxaas.net (J.-F.S.); xinming@gxaas.net (M.X.); lizhichun@gxaas.net (Z.-C.L.); zhengfengjin@gxaas.net (F.-J.Z.); guoming-liu@gxaas.net (G.-M.L.); lijiemin@gxaas.net (J.-M.L.); lingdongning@gxaas.net (D.-N.L.) |
AuthorAffiliation_xml | – name: 1 Agro-food Science and Technology Research Institute, Guangxi Academy of Agricultural Sciences, 174 East Daxue Road, Nanning 530007, China; tangyayuan@gxaas.net (Y.-Y.T.); xuemeihegx@gxaas.net (X.-M.H.); changbaoli@gxaas.net (C.-B.L.); lili@gxaas.net (L.L.); shengjinfeng@gxaas.net (J.-F.S.); xinming@gxaas.net (M.X.); lizhichun@gxaas.net (Z.-C.L.); zhengfengjin@gxaas.net (F.-J.Z.); guoming-liu@gxaas.net (G.-M.L.); lijiemin@gxaas.net (J.-M.L.); lingdongning@gxaas.net (D.-N.L.) – name: 2 Guangxi Key Laboratory of Fruits and Vegetables Storage-processing Technology, 174 East Daxue Road, Nanning 530007, China |
Author_xml | – sequence: 1 givenname: Ya-Yuan orcidid: 0000-0003-2334-9734 surname: Tang fullname: Tang, Ya-Yuan – sequence: 2 givenname: Xue-Mei surname: He fullname: He, Xue-Mei – sequence: 3 givenname: Jian orcidid: 0000-0001-8445-041X surname: Sun fullname: Sun, Jian – sequence: 4 givenname: Chang-Bao surname: Li fullname: Li, Chang-Bao – sequence: 5 givenname: Li orcidid: 0000-0001-7977-9632 surname: Li fullname: Li, Li – sequence: 6 givenname: Jin-Feng surname: Sheng fullname: Sheng, Jin-Feng – sequence: 7 givenname: Ming surname: Xin fullname: Xin, Ming – sequence: 8 givenname: Zhi-Chun surname: Li fullname: Li, Zhi-Chun – sequence: 9 givenname: Feng-Jin surname: Zheng fullname: Zheng, Feng-Jin – sequence: 10 givenname: Guo-Ming surname: Liu fullname: Liu, Guo-Ming – sequence: 11 givenname: Jie-Min surname: Li fullname: Li, Jie-Min – sequence: 12 givenname: Dong-Ning surname: Ling fullname: Ling, Dong-Ning |
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Keywords | functional compositions longan fruit byproducts identification quantification bioactivities |
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SubjectTerms | Alkaloids - analysis Alkaloids - pharmacology Antioxidants Antioxidants - analysis Antioxidants - pharmacology bioactivities Cancer Cardiovascular disease Chromatography, High Pressure Liquid Cultivars Ethanol Flavonoids Fruits functional compositions Herbal medicine Hypoglycemic Agents - analysis Hypoglycemic Agents - pharmacology identification longan fruit byproducts Medical research Metabolism Metabolites Molecular Structure Plant Extracts - chemistry Plant Extracts - pharmacology Polyphenols Polyphenols - analysis Polyphenols - pharmacology quantification Sapindaceae - chemistry Seeds Seeds - chemistry Traditional Chinese medicine Tumor necrosis factor-TNF |
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Title | Polyphenols and Alkaloids in Byproducts of Longan Fruits (Dimocarpus Longan Lour.) and Their Bioactivities |
URI | https://www.ncbi.nlm.nih.gov/pubmed/30917573 https://www.proquest.com/docview/2549031284 https://www.proquest.com/docview/2199183160 https://pubmed.ncbi.nlm.nih.gov/PMC6471414 https://doaj.org/article/0662ba13e5c14b2a8f99d267fa27745e |
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