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新橙皮苷 分析標準品,HPLC≥98%

Neohesperidin

源葉
B21390
13241-33-3
C28H34O15
610.568
MFCD16661259
品牌 貨號 產品規格 價格(RMB) 庫存(上海) 北京 武漢 南京 購買數量
源葉 B21390-20mg 分析標準品,HPLC≥98% ¥180.00元 >10 3 2 6
源葉 B21390-100mg 分析標準品,HPLC≥98% ¥700.00元 >10 - - -
產品介紹 參考文獻(78篇) 質檢證書(COA) 摩爾濃度計算器 相關產品

產品介紹

熔點: 239-243°C
沸點: 933.7°C at 760 mmHg
比旋光度: -100 (c, 0.5 in Py)
外觀: 白色針狀晶體
敏感性: 對光敏感
儲存條件: 2-8℃
注意: 部分產品我司僅能提供部分信息,我司不保證所提供信息的權威性,僅供客戶參考交流研究之用。

參考文獻(78篇)

73. [7] Xin Huang et al."The effects of core microorganism community on flavor compounds and active substances during the aging process of Citri Reticulatae Pericarpium."FOOD RESEARCH INTERNATIONAL.2024 Jun;:114707 72. [8.5] Yunyi Chen et al."Hepatoprotective potential of four fruit extracts rich in different structural flavonoids against alcohol-induced liver injury via gut microbiota-liver axis."FOOD CHEMISTRY.2024 Dec;460:140460 71. [1.8] Na Li et al."Ultra-high-performance liquid chromatography–mass spectrometry combined with molecular docking and molecular dynamics simulation reveals the source of bitterness in the traditional Chinese medicine formula Runchang-Tongbian."BIOMEDICAL CHROMA 70. [IF=3.4] Zhao Xiaona et al."Investigation the differences in key taste-contributing substances between Shitougan(Citrus reticulata Blanco Cv. Manau Gan) and other citrus varieties."Journal of Food Measurement and Characterization".2024 May;:1-13 69. [IF=4.3] Nawei Zhang et al."Factors affecting the formation of delayed bitterness in sweet orange (Citrus sinensis (L.) Osbeck) juice."JOURNAL OF FOOD COMPOSITION AND ANALYSIS".2024 Aug;132:106298 68. [IF=3.9] Qijian Xu et al."Comprehensive quality evaluation of fermented-steaming Fructus Aurantii based on chemical composition, flavor characteristics, and intestinal microbial community."JOURNAL OF FOOD SCIENCE".2024 Apr;: 67. [IF=4.6] Wang Hong-Ping et al."Comprehensive identifying flavonoids in Citri Reticulatae Pericarpium using a novel strategy based on precursor ions locked and targeted MS/MS analysis."Scientific Reports".2024 Apr;14(1):1-9 66. [IF=2.7] Tong Wang et al."Flavonoids from Citrus reticulata: Inhibitory activity against pathogenic fungi and biocontrol potential."PHYSIOLOGICAL AND MOLECULAR PLANT PATHOLOGY".2024 May;131:102250 65. [IF=6] Jianping Jiang et al."The optimization of extraction process on Quzhou Fructus Aurantii flavonoids with natural deep eutectic solvents: A comparative study between orthogonal analysis and genetic neural network."LWT-FOOD SCIENCE AND TECHNOLOGY".2024 Apr;1 64. [IF=6.1] Yu Liang et al."Scavenging Glyoxal and Methylglyoxal by Synephrine Alone or in Combination with Neohesperidin at High Temperatures."JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY".2024;XXXX(XXX):XXX-XXX 63. [IF=4.6] Yu Yan et al."Antibacterial Activity and Mechanisms of Plant Flavonoids against Gram-Negative Bacteria Based on the Antibacterial Statistical Model."Pharmaceuticals".2024 Mar;17(3):292 62. [IF=5.2] Dan Wu et al."Optimizing the Solvent Selection of the Ultrasound-Assisted Extraction of Sea Buckthorn (Hippophae rhamnoides L.) Pomace: Phenolic Profiles and Antioxidant Activity."Foods".2024 Jan;13(3):482 61. [IF=6.1] Yu Liang et al."Scavenging Glyoxal and Methylglyoxal by Synephrine and Neohesperidin from Flowers of Citrus aurantium L. var. amara Engl. in Mice and Humans."JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY".2024;72(14):8027–8038 60. [IF=5.4] Zhaoyi Ye et al."Zhi-Zi-Hou-Po decoction alleviates depressive-like behavior and promotes hippocampal neurogenesis in chronic unpredictable mild stress induced mice via activating the BDNF/TrkB/CREB pathway."JOURNAL OF ETHNOPHARMACOLOGY.2024 Jan;319:117355 59. [IF=4.3] Ye Gu et al."Using pectinase enzymatic peeling for obtaining high-quality Huyou (Citrus changshanensis) segments."JOURNAL OF FOOD COMPOSITION AND ANALYSIS.10.1016/j.jfca.2023.105706 58. [IF=4.5] Guangtao Pan et al."Dachengqi decoction ameliorates sepsis-induced liver injury by inhibiting the TGF-β1/Smad3 pathways."Journal of Traditional and Complementary Medicine.10.1016/j.jtcme.2023.09.001 57. [IF=7.9] Sheng Zhang et al."A phytomedicine extract exerts an anti-inflammatory response in the lungs by reducing STING-mediated type I interferon release."PHYTOMEDICINE.2024 Jan;:155373 56. [IF=5.6] Lihong Ye et al."Si-Ni-San alleviates early life stress-induced depression-like behaviors in adolescence via modulating Rac1 activity and associated spine plasticity in the nucleus accumbens."Frontiers in Pharmacology.2023; 14: 1274121 55. [IF=2] Huixian Zhou et al."Metabolic profiling of the flower of Citrus aurantium L. var. amara Engl. in rats using ultra-high-performance liquid chromatography coupled to quadrupole time-of-flight tandem mass spectrometry with data mining strategy."RAPID COMMUNI 54. [IF=5] Tianzhu Guan et al."In vitro and in silico perspectives on the activation of antioxidant responsive element by citrus-derived flavonoids."Frontiers in Nutrition.2023; 10: 1257172 53. [IF=5.7] Na Shang et al."Crc1,6RhaT is involved in the synthesis of hesperidin of the main bioactive substance in the Citrus reticulata ‘Chachi’ fruit."Horticultural Plant Journal.2023 Jul;: 52. [IF=2.6] Ting Yang et al."Determination of Ten Flavonoids in the Raw and Fermented Fructus Aurantii by Quantitative Analysis of Multicomponents via a Single Marker (QAMS) Based on UPLC."Journal of Analytical Methods in Chemistry.2023;2023:6067647 51. [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 50. [IF=6.317] Lufang Chen et al."3D-QSAR studies on the structure–bitterness analysis of citrus flavonoids."Food & Function.2023 Apr;: 49. [0.816] Li Han et al."Fluorescence Studies on Flavonoid Diglycosides and Corresponding Deglycosylated Monoglycosides."Journal of Applied Spectroscopy.2023 Mar;90(1):232-238 48. [6.633] Qiufang Bai et al."Enantioselective separation and simulation studies of five flavanone glycosides on a cellulose tris-(3,5-dichlorophenylcarbamate) chiral stationary phase."JOURNAL OF MOLECULAR LIQUIDS.2023 Mar;374:121260 47. [9.221] Wei Lan et al."Rapid visual discrimination of Citri Reticulatae Pericarpium from different origins by fluorescent sensors based on aluminum ions and Ag nanoclusters."SENSORS AND ACTUATORS B-CHEMICAL.2023 Apr;380:133329 46. [IF=3.654] Wenfeng Li et al."Inhibition characteristics and mechanism of tyrosinase using five citrus flavonoids: A spectroscopic and molecular dynamics simulation study."JOURNAL OF FOOD BIOCHEMISTRY.2022 Oct;:e14484 45. [IF=5.168] Pan Wang et al."Discovery and characterization of novel ATP citrate lyase inhibitors from natural products by a luminescence-based assay."CHEMICO-BIOLOGICAL INTERACTIONS.2022 Nov;367:110199 44. [IF=6.208] Pan Wang et al."Discovery of Flavonoids as Novel Inhibitors of ATP Citrate Lyase: Structure–Activity Relationship and Inhibition Profiles."INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES.2022 Jan;23(18):10747 43. [IF=6.656] Di Deng et al."Sinisan alleviates depression-like behaviors by regulating mitochondrial function and synaptic plasticity in maternal separation rats."PHYTOMEDICINE.2022 Aug;:154395 42. [IF=3.949] Jiang Anze et al."Effects of Fruit Bagging on the Physiochemical Changes of Grapefruit (Citrus paradisi)."Food Quality and Safety.2022 Jul;: 41. [IF=6.576] Junkun Pan et al."Inhibition of Dipeptidyl Peptidase-4 by Flavonoids: Structure–Activity Relationship, Kinetics and Interaction Mechanism."Frontiers in Nutrition. 2022; 9: 892426 40. [IF=3.935] Junmao Li et al."Comprehensive chemical profiling of the flowers of Citrus aurantium L. var. amara Engl. and uncovering the active ingredients of lipid lowering."J Pharmaceut Biomed. 2022 Mar;211:114621 39. [IF=2.629] Mu Qixuan et al."Study on Closely Related Citrus CMMs based on Chemometrics and Prediction of Components-Targets-Diseases Network by Ingenuity Pathway Analysis."Evid-Based Compl Alt. 2022;2022:1106353 38. [IF=2.391] Tan Si et al."Effects of three drying methods on polyphenol composition and antioxidant activities of Litchi chinensis Sonn.."Food Sci Biotechnol. 2020 Mar;29(3):351-358 37. [IF=3.216] Shuai Yuan et al."Neohesperidin Ameliorates Steroid-Induced Osteonecrosis of the Femoral Head by Inhibiting the Histone Modification of lncRNA HOTAIR."Drug Des Dev Ther. 2020; 14: 5419–5430 36. [IF=3.361] Yanhui Zhao et al."Rapid characterization of the chemical constituents of Sanhua decoction by UHPLC coupled with Fourier transform ion cyclotron resonance mass spectrometry."Rsc Adv. 2020 Jul;10(44):26109-26119 35. [IF=4.357] Wang Si-wei et al."Neohesperidin enhances PGC-1α-mediated mitochondrial biogenesis and alleviates hepatic steatosis in high fat diet fed mice."Nutr Diabetes. 2020 Aug;10(1):1-11 34. [IF=4.411] Liuyi Yu et al."Systematic Detection and Identification of Bioactive Ingredients from Citrus aurantium L. var. amara Using HPLC-Q-TOF-MS Combined with a Screening Method."Molecules. 2020 Jan;25(2):357 33. [IF=4.534] Chuanxin Zhang et al."Neohesperidin promotes the osteogenic differentiation of human bone marrow stromal cells by inhibiting the histone modifications of lncRNA SNHG1."Cell Cycle. 2021;20(19):1953-1966 32. [IF=4.952] Yan Tian et al."Interaction between pH-shifted β-conglycinin and flavonoids hesperetin/hesperidin: Characterization of nanocomplexes and binding mechanism."Lwt Food Sci Technol. 2021 Apr;140:110698 31. [IF=4.952] Si Tan et al."The effects of drying methods on chemical profiles and antioxidant activities of two cultivars of Psidium guajava fruits."Lwt Food Sci Technol. 2020 Jan;118:108723 30. [IF=5.162] Naymul Karim et al."Surface decoration of neohesperidin-loaded nanoliposome using chitosan and pectin for improving stability and controlled release."Int J Biol Macromol. 2020 Dec;164:2903 29. [IF=5.279] Jiajing Chen et al."Primary Bitter Taste of Citrus is Linked to a Functional Allele of the 1,2-Rhamnosyltransferase Gene Originating from Citrus grandis."J Agr Food Chem. 2021;69(34):9869–9882 28. [IF=5.34] Jing Zhang et al."Application of “spider-web” mode in discovery and identification of Q-markers from Xuefu Zhuyu capsule."Phytomedicine. 2020 Oct;77:153273 27. [IF=6.529] Yuqi Ying et al."Pharmacokinetic-Pharmacodynamic Modeling of the Antioxidant Activity of Quzhou Fructus Aurantii Decoction in a Rat Model of Hyperlipidemia."Biomed Pharmacother. 2020 Nov;131:110646 26. [IF=6.543] Wang Yue et al."Polymethoxyflavones in Citrus Regulate Lipopolysaccharide-Induced Oscillating Decay of Circadian Rhythm Genes by Inhibiting Nlrp3 Expression."Oxid Med Cell Longev. 2021;2021:8419415 25. [IF=6.953] Naymul Karim et al."Suppression of palmitic acid-induced hepatic oxidative injury by neohesperidin-loaded pectin-chitosan decorated nanoliposomes."Int J Biol Macromol. 2021 Jul;183:908 24. [IF=7.053] Mohammad Rezaul Islam Shishir et al."Pectin-chitosan conjugated nanoliposome as a promising delivery system for neohesperidin: Characterization, release behavior, cellular uptake, and antioxidant property."Food Hydrocolloid. 2019 Oct;95:432 23. [IF=7.514] Jing Zhao et al."A sensitive and practical ELISA for analyzing naringenin in pummelo and herb samples."Food Chem. 2021 Nov;362:130223 22. [IF=5.81] Zhang Xianhua et al."Pharmacokinetic Study of 7 Compounds Following Oral Administration of Fructus Aurantii to Depressive Rats."Front Pharmacol. 2018 Mar;0:131 21. Zhang, Jing, et al. "Application of “spider-web” mode in discovery and identification of Q-markers from Xuefu Zhuyu capsule." Phytomedicine 77 (2020): 153273.https://doi.org/10.1016/j.phymed.2020.153273 20. Zhang X, Han L, Liu J, et al. Pharmacokinetic Study of 7 Compounds Following Oral Administration of Fructus Aurantii to Depressive Rats. Frontiers in Pharmacology. 2018 ;9:131. DOI: 10.3389/fphar.2018.00131. PMID: 29556193; PMCID: PMC5845165. 19. Wang, Sw., Sheng, H., Bai, Yf.?et al.?Neohesperidin enhances PGC-1α-mediated mitochondrial biogenesis and alleviates hepatic steatosis in high fat diet fed mice.?Nutr. Diabetes?10,?27 (2020). https://doi.org/10.1038/s41387-020-00130-3 18. Naymul Karim, Mohammad Rezaul Islam Shishir, Wei Chen, Surface decoration of neohesperidin-loaded nanoliposome using chitosan and pectin for improving stability and controlled release, International Journal of Biological Macromolecules, Volume 164, 2020, P 17. 張雪,朱子豪,章博,郭興杰.纖維素鍵合手性固定相法分離5種黃烷酮糖苷類藥物異構體[J].沈陽藥科大學學報,2020,37(10):903-907. 16. 彭芳芳,林桂梅.枳實生制品提取液中黃酮類成分及其單體在Caco-2細胞模型中的吸收轉運研究[J].中華中醫藥學刊,2021,39(01):107-110. 15. 薛夢潔,于卉娟,王璐瑤,柴欣,楊靜,王躍飛.血府逐瘀湯提取過程中成分的量變規律研究[J].天津中醫藥,2021,38(01):109-112. 14. 劉嘉麗,劉德明,王丹,張鴻,董新榮,童建華.湖南柑橘果皮總黃酮及橙皮苷含量分析[J].湖南農業科學,2020(11):58-62. 13. ]趙衍輝,劉婷婷,滿靖怡,王淼,趙旻,趙春杰.HPLC法同時測定三化湯中7種成分的含量[J].沈陽藥科大學學報,2021,38(03):272-278. 12. 戚華文,徐鑫,溫柔,高德嵩,王超然,劉艷芳,金紅利,梁鑫淼.基于化學模式識別技術的枳實HPLC定量指紋圖譜研究[J].分析測試學報,2021,40(01):72-78. 11. 董麗萍, 趙家瑩, 詹梁,等. 經典名方溫膽湯中枳實模擬古法的炮制工藝與質量控制研究[J]. 上海中醫藥雜志, 2019, v.53;No.597(10):96-102. 10. 許守超, 陳屠夢, 包紹印,等. 基于響應面試驗設計優選衢枳殼多指標成分工藝研究[J]. 中藥材 2019年42卷11期, 2617-2621頁, MEDLINE ISTIC PKU, 2020. 9. 鄧可眾 陳虹 熊藝 等. 不同產地及不同采收期江枳實的UPLC指紋圖譜研究[J]. 中藥材 2017 040(009):2051-2054. 8. 沈虹 鄧可眾 鐘志奎 等. HPLC法同時測定酸橙花的多成分含量及不同花期的質量分析[J]. 中藥材 2018 041(008):1914-1917. 7. 郭琳 黃平情 于穎超 等. HPLC法同時測定胃康寧顆粒中5種成分的含量[J]. 中華中醫藥雜志 2020 v.35(01):139-142. 6. 黃湘 陳豐連 曹騁 等. HPLC-ELSD全成分指紋圖譜研究疏肝理脾方配伍前后化學成分的變化[J]. 化學與生物工程 2020 037(001):59-64. 5. 梁琰, 張貴民, 蘇瑞強,等. 小兒消積止咳口服液多指標成分分析及其HPLC指紋圖譜研究[J]. 中草藥, 2017(21):79-86. 4. 姚東, 孟憲生, 王帥,等. 氣滯胃痛顆粒全時段多波長融合指紋圖譜研究及多成分定量分析[J]. 中國中藥雜志, 2013, 38(10):1513. 3. 尹麗波, 趙啟苗, 林桂梅,等. 枳實軟化和切制的工藝研究[J]. 亞太傳統醫藥, 2012(01):31-35. 2. 馬雪松, 鄒兵, 尹麗波,等. 多指標優選麩炒枳實的炮制工藝研究[J]. 中國醫藥指南, 2012, 010(009):72,74. 1. 鄧可眾 鄧敏芝 熊英 等. HPLC法同時分析酸橙果實類藥材中黃酮和香豆素類成分[J]. 中藥材 2016年39卷3期 575-578頁 MEDLINE ISTIC PKU 2016.

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摩爾濃度計算器

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