原花青素 UV≥95%

Proanthocyanidins

源叶
B21615
4852-22-6
Oligomeric Proantho Cyanidins(OPC)
品牌 货号 产品规格 价格(RMB) 库存(上海) 北京 武汉 南京 购买数量
源叶 B21615-20mg UV≥95% ¥72.00元 >10 5 4 6
源叶 B21615-100mg UV≥95% ¥260.00元 >10 1 1 1
源叶 B21615-1g UV≥95% ¥1000.00元 3 - - -
产品介绍 参考文献(134篇) 质检证书(COA) 摩尔浓度计算器 相关产品

产品介绍

Proanthocyanidins 是一类在高等植物中广泛分布的多酚化合物,由亲电子黄烷酰基单元组成。Proanthocyanidins 可用作抗氧化剂和抗癌剂。Proanthocyanidins 还显示出抗炎,保护心脏,抗菌和抗真菌的特性,可用于研究慢性静脉功能不全、毛细血管脆弱、晒伤和视网膜病变。

沸点: 986.4°Cat760mmHg
外观: 红棕色粉末
溶解性: DMSO  :  100  mg/mL  (168.20  mM;  Need  ultrasonic)

H2O  :  5  mg/mL  (8.41  mM;  ultrasonic  and  adjust  pH  to  11  with  Na2CO3)
储存条件: 2-8℃
注意: 部分产品我司仅能提供部分信息,我司不保证所提供信息的权威性,仅供客户参考交流研究之用。

参考文献(134篇)

129. [IF=8.5] Mei Su et al."Composition and antioxidant activity of flavonoids from two different species of Amomi Fructus extracted using natural deep eutectic solvents."FOOD CHEMISTRY.2025 Apr;472:142984 128. [IF=5.4] Yan Ge et al."Borate ester-crosslinked polysaccharide hydrogel reinforced by proanthocyanidins for oral ulcer therapy."COLLOIDS AND SURFACES B-BIOINTERFACES.2025 May;249:114535 127. [IF=4.2] Qiaoshuang Lu et al."Optimization of Ultrasonic-Enzyme Synergistic Extraction of Proanthocyanidins from Jujube: Purification, Characterization, and Bioactivity Study."MOLECULES.2025 Jan;30(3):619 126. [IF=11] Qi Chen et al."Self-enhanced multifunctional composite membranes based on metal-organic frameworks embedded with thymol nanoparticles for post-harvest preservation of fruits."FOOD HYDROCOLLOIDS.2025 Jul;164:111208 125. [IF=10.7] Kangning Wang et al."Effect of exogenous protein crosslinking on the physicochemical properties and in vitro digestibility of corn starch."CARBOHYDRATE POLYMERS.2025 Jun;357:123428 124. [IF=9.5] Gu Junxiang et al."Decoding the mechanism of proanthocyanidins in central analgesia: redox regulation and KCNK3 blockade."EXPERIMENTAL AND MOLECULAR MEDICINE.2025 Mar;:1-17 123. [IF=7.7] Feng Xue et al."Modification of plum seed protein isolate via enzymatic hydrolysis, polyphenol conjugation and polysaccharide complexation to enhance emulsification and encapsulation of essential oils."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.20 122. [IF=8.5] Mengqing Li et al."Three physical modifications enhanced the binding interactions of Cyperus esculentus protein with proanthocyanidins and physicochemical properties of complexes: The contribution of non-covalent interactions."FOOD CHEMISTRY.2025 Jul;479: 121. [IF=7] Lijun Qian et al."Tough, antibacterial, and antioxidant chitosan-based composite films enhanced with proanthocyanidin and carvacrol essential oil for fruit preservation."FOOD RESEARCH INTERNATIONAL.2025 May;208:116269 120. [IF=4.3] Jinlan Huang et al."Neuroprotective Effects of Peanut Skin Extract Against Oxidative Injury in HT-22 Neuronal Cells."Pharmaceuticals.2025 Apr;18(4):544 119. [IF=3.7] Yaoyao Ji et al."Development and Characterization of a High Internal Phase Pickering Emulsion Stabilized by Whey Protein-based Nanoparticles with Excellent Antioxidant Activity for 3D Printing."JOURNAL OF DAIRY SCIENCE.2025 Apr;: 118. [IF=3.5] Jie Wei et al."Anthocyanins Delay D-Galactose–Induced Mouse Liver Aging by Regulating the NF-κB/IKK Signaling Pathway."Food Science & Nutrition.2025 Apr;13(4):e70161 117. [IF=8.5] Heting Qi et al."Electron beam irradiation coupled ultrasound-assisted natural deep eutectic solvents extraction: A green and efficient extraction strategy for proanthocyanidin from walnut green husk."FOOD CHEMISTRY.2025 Jan;463:141279 116. [IF=11] Yongchao Yin et al."Noncovalent interaction between proanthocyanidins and soy protein isolate fibers: structure, functionality and interaction mechanism."FOOD HYDROCOLLOIDS.2024 Sep;:110663 115. [IF=5.7] Pengkui Xia et al."Proanthocyanidins and β-Glucan Synergistically Regulate Intestinal Inflammation in Dextran Sulfate Sodium-Induced Colitis Mice."JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY.2024;XXXX(XXX):XXX-XXX 114. [IF=8.5] Yafang Wang et al."A rich-nutritious cultured meat via bovine myocytes and adipocytes co-culture: Novel Prospect for cultured meat production techniques."FOOD CHEMISTRY.2024 Jul;:140696 113. [IF=3.7] Mingxin Guo et al."Pharmacological Components and Mechanism Research on the Treatment of Myelosuppression after Chemotherapy with Danggui Jixueteng Decoction Based on Spectrum-Effect Relationships and Transcriptome Sequencing."ACS Omega.2024;9(26):28926–2 112. [IF=7.7] Shouyan Lin et al."Stability enhancement of proanthocyanidin-loaded liposomes via surface decoration with oxidized konjac glucomannan."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2024 Jun;:133230 111. [IF=8.6] Changqing Miao et al."Fast fabricating superhydrophilic PVDF membrane via proanthocyanidins crosslinking at room temperature."SEPARATION AND PURIFICATION TECHNOLOGY".2024 Oct;345:127346 110. [IF=4.4] Gengsheng Yu et al."Oligomeric proanthocyanidins ameliorates osteoclastogenesis through reducing OPG/RANKL ratio in chicken's embryos."POULTRY SCIENCE".2024 Mar;:103706 109. [IF=4.6] Ting Zhang et al."Egg White Protein–Proanthocyanin Complexes Stabilized Emulsions: Investigation of Physical Stability, Digestion Kinetics, and Free Fatty Acid Release Dynamics."MOLECULES".2024 Jan;29(3):743 108. [IF=6] Cunhui Wu et al."Amorphous iron-catecholates featuring efficient peroxidase-like activity for quick colorimetric detection of tannic acid."LWT-FOOD SCIENCE AND TECHNOLOGY".2024 Apr;197:115896 107. [IF=6.1] Jiachang Xiao et al."Proanthocyanidins delay the senescence of young asparagus stems by regulating antioxidant capacity and synthesis of phytochemicals."Food Chemistry-X".2024 Mar;21:101222 106. [IF=13.3] Xing Li et al."A facile Immunoregulatory Constructional Design by Proanthocyanidin Optimizing Directional Chitosan Microchannel."Small".2024 Feb;:2310689 105. [IF=8.2] Yafang Wang et al."3D edible scaffolds with yeast protein: A novel alternative protein scaffold for the production of high-quality cell-cultured meat."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2024 Feb;259:129134 104. [IF=13.3] Taisong Fang et al."Metal-Phenolic Network Directed Coating of Single Probiotic Cell Followed by Photoinitiated Thiol-Ene Click Fortification to Enhance Oral Therapy."Small.2023 Dec;:2308146 103. [IF=3.5] Weigang Zhong et al."Co-assembled whey protein and proanthocyanidins as promising biocarrier for hydrophobic pterostilbene: Fabrication, characterization and cellular antioxidant potential."JOURNAL OF DAIRY SCIENCE.2023 Nov;: 102. [IF=6] Zeru Xu et al."Targeted screening of baicalein inhibitor with controlling lipid and protein oxidation for quality preservation of grass carp fillets."LWT-FOOD SCIENCE AND TECHNOLOGY.2023 Nov;:115526 101. [IF=8.1] Yafang Wang et al."Production of green-natural and “authentic” cultured meat based on proanthocyanidins-dialdehyde chitosan-collagen ternary hybrid edible scaffolds."FOOD RESEARCH INTERNATIONAL.2024 Jan;175:113757 100. [IF=3.1] Ying Nie et al."Physicochemical Properties of Geographical Indication (GI) Sweet Cherries in China and Their Influencing Factors of Cultivar, Climate Type, and Soil Condition."Horticulturae.2023 Oct;9(10):1118 99. [IF=5.2] Yixuan Yan et al."NaCl stress enhances pigment accumulation and synthesis in red rice during the germination stage."Food Bioscience.10.1016/j.fbio.2023.103224 98. [IF=5.6] Jieni Li et al."Identification of key genes responsible for green and white colored spathes in Anthurium andraeanum (Hort.)."Frontiers in Plant Science.10.3389/fpls.2023.1208226 97. [IF=8.8] Xiaoying Zhang et al."The biological activity, functionality, and emulsion stability of soybean meal hydrolysate–proanthocyanidin conjugates."FOOD CHEMISTRY.2024 Jan;432:137159 96. [IF=2] Yang Xin et al."Establishment of TRV-mediated Gene Silencing and Application for Elucidating Functions of Anthocyanidin Reductase Gene HcANR in Kenaf (Hibiscus cannabinus L.)."Tropical Plant Biology.2023 Jul;:1-10 95. [IF=2.5] Hong ZHANG et al."Fracture strength and bonding interface morphology of CAD/CAM-fabricated ceramic laminate veneers on bleached enamel treated with two different antioxidants."DENTAL MATERIALS JOURNAL. 94. [IF=5.2] Haocheng Liu et al."Boosting the Antioxidant Potential of Polymeric Proanthocyanidins in Litchi (Litchi chinensis Sonn.) Pericarp via Biotransformation of Utilizing Lactobacillus Plantarum."Foods.2023 Jan;12(12):2384 93. [IF=8.2] Yafang Wang et al."Effects of proanthocyanidins and dialdehyde chitosan on the proliferation and differentiation of bovine myoblast for cultured meat production."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2023 Aug;246:125618 92. [IF=3.693] Mengyue Zhao et al."Effects of different drying methods on the properties, stability, and controlled release of Cornus officinalis flavonoids microparticles."JOURNAL OF FOOD SCIENCE.2023 May;: 91. [IF=5.561] Yaochang Li et al."Preparation, Characterization and Antioxidant Activity of Glycosylated Whey Protein Isolate/Proanthocyanidin Compounds."Foods.2023 Jan;12(11):2153 90. [IF=1.967] ke Zunli et al."Physicochemical characteristics, polyphenols and antioxidant activities of Dimocarpus longan grown in different geographical locations."ANALYTICAL SCIENCES.2023 Apr;:1-8 89. [IF=2.434] Liu Kedong et al."Preparation and characterization of CS/γ-PGA/PC complex nanoparticles for insulin oral delivery."COLLOID AND POLYMER SCIENCE.2023 Mar;:1-10 88. [IF=9.231] Sheng Geng et al."Formation mechanism of Pickering emulsion gels stabilized by proanthocyanidin particles: Experimental and molecular dynamics studies."FOOD CHEMISTRY.2023 Mar;:135904 87. [IF=9.231] Yue Yuan et al."Fabrication and Characterization of Natural Polyphenol and ZnO Nanoparticles Loaded Protein-based Biopolymer Multifunction Electrospun Nanofiber Films, and Application in Fruit Preservation."FOOD CHEMISTRY.2023 Mar;:135851 86. [IF=16.744] Shuhua Yin et al."Regulatable and reversible native paramyosin hydrogels promote the wound healing of the skin in mice."CHEMICAL ENGINEERING JOURNAL.2023 Mar;:142294 85. [IF=8.025] Xiaowen Pi et al."The alteration of composition, conformation, IgE-reactivity and functional attributes in proanthocyanidins-soy protein 7S conjugates formed by alkali-heating treatment: Multi-spectroscopic and proteomic analyses."INTERNATIONAL JOURNAL OF 84. [IF=6.78] Yi-wen Lv et al."Proanthocyanidins attenuates ferroptosis against influenza-induced acute lung injury in mice by reducing IFN-γ."LIFE SCIENCES.2022 Dec;:121279 83. [IF=6.269] Mengyu Cai et al."Nutritional supplements formulated to prevent cognitive impairment in animals."Current Research in Food Science.2022 Jan;5:2294 82. [IF=9.231] Yaxin Zhao et al."Electrospun natural polypeptides based nanofabrics enriched with antioxidant polyphenols for active food preservation."FOOD CHEMISTRY.2023 Mar;405:134991 81. [IF=3.898] Huan-Huan Yin et al."Proanthocyanidins prevent tau protein aggregation and disintegrate tau filaments."CHINESE JOURNAL OF CHEMICAL ENGINEERING.2022 Oct;: 80. [IF=11.504] Zijuan Yu et al."Ultrasound-reinforced encapsulation of proanthocyanidin by chitosan-chondroitin sulfate nanosystem."FOOD HYDROCOLLOIDS.2022 Nov;132:107872 79. [IF=6.953] Yan Kong et al."Electrospinning porcine decellularized nerve matrix scaffold for peripheral nerve regeneration."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES. 2022 Jun;209:1867 78. [IF=5.875] Yutong Wang et al."Extra virgin olive oil-based phospholipid complex/self-microemulsion enhances oral absorption of salvianolic acid B through inhibition of catechol-O-methyltransferase-mediated metabolism."Int J Pharmaceut. 2022 Jan;611:121330 77. [IF=5.396] Kangliang Sheng et al."Alleviation effects of grape seed proanthocyanidin extract on inflammation and oxidative stress in a D-galactose-induced aging mouse model by modulating the gut microbiota."Food Funct. 2022 Feb;13(3):1348-1359 76. [IF=1.984] Xinye Liu et al."Comparative studies on physicochemical properties of gluten- And glutenin-based films functionalized by polyphenols."Cereal Chemistry. 2022 Jan 18 75. [IF=5.268] Hedi Wen et al."Stability of oil-in-water emulsions improved by ovalbumin-procyanidins mixture: A promising substrate with emulsifying and antioxidant activity."Colloid Surface B. 2022 Jul;215:112473 74. [IF=2.649] Hong Zhang et al."Comparative Evaluation of Two Antioxidants on Reversing the Immediate Bond Strength of Bleached Enamel: In Vitro Study."Med Sci Monitor. 2020; 26: e920481-1–e920481-8 73. [IF=3.167] Tisong Liang et al."Molecular interaction between pectin and catechin/procyanidin in simulative juice model: Insights from spectroscopic, morphology, and antioxidant activity."J Food Sci. 2021 Jun;86(6):2445-2456 72. [IF=3.361] Rong Wang et al."Resonant waveguide grating based assays for colloidal aggregate detection and promiscuity characterization in natural products."Rsc Adv. 2019 Nov;9(65):38055-38064 71. [IF=4.24] Wancai Zheng et al."Proanthocyanidins extracted from grape seeds inhibit the growth of hepatocellular carcinoma cells and induce apoptosis through the MAPK/AKT pathway."Food Biosci. 2021 Aug;:101337 70. [IF=4.546] Yue Zhao et al."Walnut Polyphenol Extract Protects against Malathion- and Chlorpyrifos-Induced Immunotoxicity by Modulating TLRx-NOX-ROS."Nutrients. 2020 Mar;12(3):616 69. [IF=4.759] Yi Zhang et al."Screening of inhibitors against histone demethylation jumonji domain-containing protein 3 by capillary electrophoresis."J Chromatogr A. 2020 Feb;1613:460625 68. [IF=4.952] Feng Xue et al."Prevention of frozen-dough from deterioration with incorporation of glutenin-polyphenols conjugates prepared by ultrasound."Lwt Food Sci Technol. 2021 Nov;151:112141 67. [IF=5.396] Haiping Du et al."Grape seed proanthocyanidins reduced the overweight of C57BL/6J mice through modulating adipose thermogenesis and gut microbiota."Food Funct. 2021 Sep;12(18):8467-8477 66. [IF=6.953] Chao Jiang et al."Three flavanols delay starch digestion by inhibiting α-amylase and binding with starch."Int J Biol Macromol. 2021 Mar;172:503 65. [IF=6.953] Yu Xiao et al."Physicochemical properties and in vitro digestibility of proso millet starch after addition of Proanthocyanidins."Int J Biol Macromol. 2021 Jan;168:784 64. [IF=7.514] Li Zhao et al."Comprehensive analysis of the anti-glycation effect of peanut skin extract."Food Chem. 2021 Nov;362:130169 63. [IF=7.514] Balarabe B. Ismail et al."High-intensity ultrasound processing of baobab fruit pulp: Effect on quality, bioactive compounds, and inhibitory potential on the activity of α-amylase and α-glucosidase."Food Chem. 2021 Nov;361:130144 62. [IF=9.147] Hai Chen et al."The development of natural and designed protein nanocages for encapsulation and delivery of active compounds."Food Hydrocolloid. 2021 Dec;121:107004 61. [IF=2.356] Zheng Zhang et al."Ozone-Induced Changes in Phenols and Antioxidant Capacities of Peanut Skins."J Food Process Eng. 2014 Oct;37(5):506-514 60. [IF=2.72] Suwen Liu et al."Protective effects of hawthorn (Crataegus pinnatifida) polyphenol extract against UVB-induced skin damage by modulating the p53 mitochondrial pathway in vitro and in vivo."J Food Biochem. 2019 Feb;43(2):e12708 59. [IF=3.616] Mei Liu et al."Inhibition study of red rice polyphenols on pancreatic α-amylase activity by kinetic analysis and molecular docking."J Cereal Sci. 2017 Jul;76:186 58. [IF=3.679] Ya-Nan Zhao et al."Zero-order release of polyphenolic drugs from dynamic, hydrogen-bonded LBL films."Soft Matter. 2016 Jan;12(4):1085-1092 57. [IF=3.701] Xiaopeng Li et al."A-type procyanidins from litchi pericarp ameliorate hyperglycaemia by regulating hepatic and muscle glucose metabolism in streptozotocin (STZ)-induced diabetic mice fed with high fat diet."J Funct Foods. 2016 Dec;27:711 56. [IF=3.757] Shihui Wang et al."Effects of proanthocyanidins on porcine pancreatic lipase: Conformation, activity, kinetics and thermodynamics."Process Biochem. 2014 Feb;49:237 55. [IF=4.192] Xiaopeng Li et al."Attenuated mTOR Signaling and Enhanced Glucose Homeostasis by Dietary Supplementation with Lotus Seedpod Oligomeric Procyanidins in Streptozotocin (STZ)-Induced Diabetic Mice."J Agr Food Chem. 2017;65(19):3801–3810 54. [IF=4.451] Xiaopeng Li et al."Dietary supplementation of A-type procyanidins from litchi pericarp improves glucose homeostasis by modulating mTOR signaling and oxidative stress in diabetic ICR mice."J Funct Foods. 2018 May;44:155 53. [IF=5.279] Suwen Liu et al."Hawthorn Polyphenol Extract Inhibits UVB-Induced Skin Photoaging by Regulating MMP Expression and Type I Procollagen Production in Mice."J Agr Food Chem. 2018;66(32):8537–8546 52. [IF=6.543] Jing Siqun et al."Antioxidant Activity, Antitumor Effect, and Antiaging Property of Proanthocyanidins Extracted from Kunlun Chrysanthemum Flowers."Oxid Med Cell Longev. 2015;2015:983484 51. Zhang, Z., Diao, E., Shen, X., Ma, W., Ji, N. and Dong, H. (2014), Ozone-Induced Changes in Phenols and antioxidant capacities of peanut skins. J Food Process Eng, 37: 506-514. https://doi.org/10.1111/jfpe.12108 50. Li, Xiaopeng, et al. "Dietary supplementation of A-type procyanidins from litchi pericarp improves glucose homeostasis by modulating mTOR signaling and oxidative stress in diabetic ICR mice." Journal of Functional Foods 44 (2018): 155-165.https://doi.org/1 49. Maimaiti, Nueraili, et al. "Ethanol shock enhances the recovery of anthocyanin from lowbush blueberry." Chinese Journal of Chemical Engineering 28.12 (2020): 3096-3102.https://doi.org/10.1016/j.cjche.2020.03.036 48. Dong, Z. Y., Wang, H. H., Li, M. Y., Liu, W., & Zhang, T. H. (2020). Optimization of high-intensity pulsed electric field-assisted extraction of procyanidins from Vitis amurensis seeds using response surface methodology. In E3S Web of Conferences (Vol. 189 47. Jing, Siqun, Xiaoming Zhang, and Liang-Jun Yan. "Antioxidant activity, antitumor effect, and antiaging property of proanthocyanidins extracted from Kunlun Chrysanthemum flowers." Oxidative medicine and cellular longevity 2015 (2015).https://doi.org/10.1155 46. Feng Xue, Mingzhe Zhao, Xinye Liu, Rui Chu, Ziyu Qiao, Chen Li, Benu Adhikari, Physicochemical properties of chitosan/zein/essential oil emulsion-based active films functionalized by polyphenols, Future Foods, Volume 3, 2021, 100033, ISSN 2666-8335, https: 45. Li, Xiaopeng, et al. "Attenuated mTOR signaling and enhanced glucose homeostasis by dietary supplementation with lotus seedpod oligomeric procyanidins in streptozotocin (STZ)-induced diabetic mice." Journal of agricultural and food chemistry 65.19 (2017): 44. Li, Xiaopeng, et al. "A-type procyanidins from litchi pericarp ameliorate hyperglycaemia by regulating hepatic and muscle glucose metabolism in streptozotocin (STZ)-induced diabetic mice fed with high fat diet." Journal of Functional Foods 27 (2016): 711-7 43. 郗艳丽,周旋,霍明洋,高锐,马一芯,杨阔,徐斌.响应面法优化女贞子原花青素提取工艺及抗氧化研究[J].食品研究与开发,2020,41(17):74-81. 42. 管敬喜,廖秋眉,黄羽,黄江流,黄竟,盘丰平,杨莹.圆叶葡萄籽原花色素稳定性及其抗氧化性研究[J].中国酿造,2020,39(12):69-73. 41. 许逸岚,徐炀,李鸿飞,沈铄恒,阮文丽,郭晓欢,赵镘娜,韩瑜颖,张衡.原花青素提高鱼藤酮诱导的帕金森模型细胞活力的研究[J].中国应用生理学杂志,2020,36(05):424-427. 40. 王新然, 刘瑶, 张晓瑞,等. 核桃瓣膜提取物组成、体外抗氧化性及其对羊肉保鲜作用分析[J]. 食品与发酵工业, 2019, 045(010):78-85. 39. 周凯文, 陈晓默, 刘慧琳,等. 多酚黄酮物质对晚期糖基化终产物的抑制研究[J]. 食品研究与开发, 2018, v.39;No.329(04):7-13. 38. 谭传波. 鲜榨山茶油中生物活性物质研究[J]. 粮食与油脂, 年度湖南省科技重大专项(2018NK1030). 37. 张丹, 任洁, 刘红梅,等. 干旱胁迫对红松主要次生代谢产物的含量及其DPPH清除能力的影响[J]. 植物研究, 2016(4):542-548. 36. 毛雪, 刘玉梅. 葡萄枝蔓中原花色素的不同分析方法比较及含量分析[J]. 食品科学, 2016, 37(12):169-175. 35. 杨代晓, 陈晓静, 胡秋菊,等. 液相色谱-质谱联用法分析葡萄籽提取物中的5种多酚类成分[J]. 药物分析杂志, 2016(8):1330-1337. 34. 张丽, 陈冠华, 方柔,等. 毛细管电泳法测定过氧化氢酶与天然抗氧化剂协同清除羟自由基作用[J]. 分析化学, 2013(10):1571-1576. 33. 汪洪涛. 三种石榴副产物提取液中活性成分的组成及性质比较[J]. 食品科技 2016 v.41;No.291(01):175-180. 32. 谭传波, 田华, 赖琼玮,等. 不同工艺山茶油中生物活性物质含量的比较[J]. 中国油脂, 2018, 43(12):48-51+56. 31. 徐杰, 李新光, 王建中,等. 黑果腺肋花楸果汁的酶解制备工艺优化及其功能性质[J]. 食品工业科技, 2020. 30. 于培良, 田可, 王倩倩,等. 黑果枸杞中原花青素的提取及其咀嚼片的研制[J]. 食品工业, 2020, v.41;No.280(01):158-163. 29. 史经略. 麦冬果皮原花青素超声辅助提取研究[J]. 食品研究与开发, 2015(7):38-41. 28. 李彦, 李鑫, 刘景玲,等. 鸡血藤原花青素的纯化及活性评价[J]. 食品科学, 37(17). 27. 郭芳, 高倩倩, 陈沛海,等. 铬革屑制备有机肥对荞麦中原花青素的影响[J]. 皮革与化工, 2017(2). 26. 陈茵茹, 康健, 赵芙蓉. 超声微波双辅助提取葡萄籽低聚原花青素的研究[J]. 中国酿造, 2012, 031(008):23-28. 25. 邓兆雯, 杨继国. 超声-微波协同法提取荔枝皮原花青素及其高聚体组成分析[J]. 中国食品添加剂, 2020, v.31;No.194(04):85-94. 24. 韩雪, 孟玉彩, 马蕾,等. 蔷薇红景天低聚体原花青素的稳定性和抗衰老研究[J]. 食品工业科技, 2017, 38(005):120-123. 23. 夏晓雨, 王凤娟, 符群,等. 蓝莓果汁饮料原花青素的热稳定性及降解动力学模型[J]. 南京林业大学学报(自然科学版), 2019, v.43;No.203(05):92-98. 22. 杨健, 袁春龙, 任亚梅,等. 葡萄籽原花青素的提取及其抗紫外线活性测定[J]. 食品科学, 2014. 21. 毛雪, 张养灼, 刘玉梅. 葡萄枝蔓中原花青素的提取分离及其抗氧化活性研究[J]. 保鲜与加工, 2018, 018(001):82-89. 20. 闵瑶瑶, 周梦舟, 柳志杰,等. 莲原花青素低聚体在模拟生理环境下对非酶糖化末端产物的抑制作用[J]. 食品科学, 2018, v.39;No.577(12):126-132. 19. 李彦, 张治海, 邓凯航,等. 石楠不同部位提取物抗氧化活性[J]. 东北林业大学学报, 2017, 05(v.45):93-97. 18. 摆玉芬, 刘莎, 刘玉梅. 番茄红素与葡萄籽油、VE、原花青素的协同抗氧化活性研究[J]. 食品科技, 2014(9):222-227. 17. 张永忠, 黄满, 刘嵩. 火棘果中原花青素的提取及抗氧化作用[J]. 亚太传统医药, 2014, 10(003):26-28. 16. 包立军. 桑椹中原花青素超声波提取工艺研究[J]. 安康学院学报, 2012, 24(006):81-84. 15. 贾孟军, 刘雅洁, 吕月标,等. 新疆地产葡萄酒和果酒总酚与其抗氧化活性的相关性研究[J]. 酿酒科技, 2015, 000(007):41-45,50. 14. 袁琳, 袁春龙, 胡立志,等. 快速溶剂萃取仪提取葡萄籽中原花青素条件优化[J]. 食品科学, 2013(14):157-162. 13. 李彦, 李鑫, 刘景玲,等. 大血藤原花色素抗氧化活性及酶抑制活性研究[J]. 林产化学与工业, 2017(3). 12. 刘景玲, 张治海, 李鑫,等. 大孔树脂法分离纯化大血藤中原花青素[J]. 食品工业科技, 2017(01):112-115. 11. 刘琼 王仁才 吴小燕 等. 响应面法优化超声波提取鸡蛋枣原花青素工艺[J]. 食品工业科技 2017 16(v.38;No.384):188-194. 10. 房一明 初众 谷风林 等. 响应面法优化海南可可豆中原花青素的提取工艺[J]. 热带作物学报 2020 041(004):779-786. 9. 刘景玲 王梦涵 曹翠玲 等. 响应面优化超声辅助提取珊瑚树叶原花青素工艺[J]. 食品研究与开发 2018 39(23):51-56. 8. 龚频 张梦璇 李晓凡 王兰 陈福欣.原花青素对糖尿病大鼠肾的保护作用[J].现代食品科技 2018 34(09):1-5+11. 7. 林琨 陈佳濠 方泽浩 等. 原花青素对磷酸三钙磨损颗粒所致小鼠颅骨溶解的干预作用及其机制[J]. 中国应用生理学杂志 2019 35(003):250-255. 6. 胡亚美 刘斌 孙敬春 等. 原花青素对猪精液常温保存效果的影响[J]. 中国畜牧杂志 2016 054(005):54-57 96. 5. 金晶晶 楼佳琪 王脉 等. 原花青素减轻TCP磨损颗粒诱导的骨细胞氧化损伤[J]. 中国病理生理杂志 2019年35卷9期 1676-1682页 ISTIC PKU CSCD CA 2019. 4. 汪玉玲 陈星蓉 陆婷婷 等. 保健品中原花青素含量检测方法的比较研究[J]. 检验检疫学刊 2019(3):9-14. 3. 刘冉 王振宇 卢静 欧阳乐.两种松科植物松多酚体外抗氧化活性评价[J].食品工业科技 2013 34(04):159-163. 2. 毛雪 贾孟军 刘玉梅. 不同品种葡萄枝蔓中原花青素含量及其活性的比较研究[J]. 中国酿造 2016(10):72-77. 1. 李三省 许丹丹 张富粟 等. AB-8大孔树脂纯化黑果枸杞原花青素及其稳定性研究[J]. 中国食品添加剂 2018 000(003):106-114.

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