首页
订购/客服:400-666-5481

大豆卵磷脂

    
分析标准品,98%

Lecithin

源叶
B28313 一键复制产品信息
8002-43-5
C42H80NO8P
758.06
大豆卵磷脂;磷脂酰胆碱;L-a-磷脂酰胆酰
货号 规格 价格 上海 北京 珠海 重庆 武汉 购买数量
B28313-5mg
分析标准品,98%

¥270.00

>10 3 - - 1
B28313-20mg
分析标准品,98%

¥720.00

>10 2 3 - -
产品介绍 参考文献(162篇) 质检证书(COA) 摩尔浓度计算器 相关产品

产品介绍

Lecithin 被认为是一种安全的常规磷脂源。磷脂可以改变动物细胞膜的脂肪酸组成和微观结构。

SMILES: JLPULHDHAOZNQI-ZTIMHPMXSA-N
熔点: 236.1ºC
外观: 黄色固体
溶解性: DMSO  :  1  mg/mL
敏感性: 稳定,但对光、热、湿、气敏感。与强氧化剂不相容
储存条件: 2-8℃,氮气保存
密度: 1.0305
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(162篇)

157. [IF=3.9] Liu Wei, et al. "Aligned electrospun porous P34HB/lecithin scaffold for bone tissue regeneration"Scientific Reports, 2026 Apr;: 156. [IF=5.4] Haowen Sun, et al. "Fabrication of water-in-oil high internal phase emulsions containing astringent compounds for enhanced oral sensation"Food & Function, 2026 Apr;: 155. [IF=6.8] Xiaoyun Fei, et al. "Hydrophobic modification of chitosan-carrageenan film with cinnamon essential oil Pickering emulsion: Improving mechanical properties and fresh-keeping effect on blueberry"Innovative Food Science & Emerging Technologies, 2026 Jul;111: 154. [IF=11.3] Hao Wang, et al. "Injectable Liposome-Anchored Hydrogel Microspheres Promote Spinal Cord Injury Repair by Modulating the Inflammatory Microenvironment and Recruiting Endogenous Stem Cells"Small Structures, 2026 Apr;7(4):e202500875 153. [IF=12.6] Guo Zhiliang, et al. "Dual-mechanism inhalable nanocomposite restores the alveolar mucus barrier and enables deep-lesion delivery for synergistic treatment of pulmonary fibrosis"JOURNAL OF NANOBIOTECHNOLOGY, 2026 Apr;: 152. [IF=5.1] Chunting Zhu, et al. "Conformation-Driven Bilayer Nanocarriers for Anthocyanins Using Shell Polysaccharides: Stabilization Mechanisms and Enhanced In Vitro Lipid-Lowering Activity"MOLECULES, 2026 May;31(10):1634 151. [IF=5.6] Zihan Lv, et al. "A Liposomal Delivery System of Blueberry Anthocyanins Ameliorates Corneal Laser Injury"Biomolecules, 2026 May;16(5):703 150. [IF=8.7] Hao Zhong, et al. "Sodium alginate-modified C3G nanoliposomes enhance their transport efficiency in 3D Caco-2 spheroid models through active transport mechanisms"INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2026 May;:152470 149. [IF=3.9] Wanping Zhang et al."Engineered Multilamellar Cationic Liposomes with High Loading Efficiency and Stability for Enhanced Transdermal Delivery."LANGMUIR.2025;XXXX(XXX):XXX-XXX 148. [IF=6.6] Jiahui Li et al."Capillary bridge-based oleogel using guar gum dispersed in soybean oil: Enhancement of gel stability by soy lecithin."LWT-FOOD SCIENCE AND TECHNOLOGY.2025 Dec;:118955 147. [IF=8] Shihao Yang et al."Stability, release behavior and bacteriostatic property of potato protein isolate-soy lecithin-based Pickering emulsions loaded with cinnamon essential oils."FOOD RESEARCH INTERNATIONAL.2026 Jan;224:117963 146. [IF=12.8] Sun Jia et al."The simultaneous targeted Inhibition of ISG15 and HMGCR disrupts cancer stemness through metabolic collapse and induces synthetic lethality in pancreatic ductal adenocarcinoma."JOURNAL OF EXPERIMENTAL & CLINICAL CANCER RESEARCH.2025 Dec;44( 145. [IF=6.4] Xu Luo et al."Encapsulating GSH/NQO1-responsive SN38 prodrug micelles with Timosaponin AIII-based multifunctional liposomes for tumor-targeted chemotherapy."International Journal of Pharmaceutics-X.2026 Jun;11:100497 144. [IF=9.8] Jie Gao et al."Structural identification and whitening activity of saponins from sea cucumber cooking liquid: development of stable liposomes to enhance transdermal ability."FOOD CHEMISTRY.2026 Jan;:148145 143. [IF=14.1] Yaosheng Li et al."Endothelial Cell-Based Vascular Bandages for Blood–Brain Barrier Repair and Targeted siRNA Delivery."Advanced Science.2026 Jan;:e17780 142. [IF=4.6] Yu Xue et al."Preparation and Evaluation of Lactoferrin-Modified Curcumin Long-Circulating Nanoliposomes for Hypoxic Brain Injury Therapy."Nanoscale Advances.2025 Nov;: 141. [IF=5.8] Chunying Jiang et al."Dual-functional cyclodextrin-liposome system for dihydromyricetin: Bitterness masking assessed by E-tongue and enhanced bioavailability."JOURNAL OF FOOD ENGINEERING.2026 Apr;408:112886 140. [IF=12.4] Ying Liu et al."Modulation of ovalbumin gel properties via liposome incorporation: Structural and mechanistic insights."FOOD HYDROCOLLOIDS.2026 Apr;173:112257 139. [IF=2.9] Xinpei Wang et al."Improvement Effect of Soy Lecithin on the Stability and Delivery Efficiency of Ternary Interfacial Stabilized Emulsions."JOURNAL OF FOOD PROCESS ENGINEERING.2025 Oct;48(10):e70225 138. [IF=4.5] Zihao Xiong et al."Preparation and Evaluation of Upadacitinib-Loaded Binary Ethosomal Hydrogel: A Topical Delivery System with Enhanced Stratum Corneum Permeability for Improved Anti-Inflammatory Therapy in Psoriasis."MOLECULAR PHARMACEUTICS.2025;XXXX(XXX 137. [IF=8.2] Yue Wang et al."Nanometabolomics Elucidated Paclitaxel/Mo4/3B2–x Bifunctional Nanomedicine-Based Lung Cancer Therapy through Regulated Amino Acid Metabolism."ACS Applied Materials & Interfaces.2025;17(40):55833–55847 136. [IF=12.4] Ge Shi et al."Development of high internal phase emulsion utilizing guar gum and soy lecithin as co-emulsifiers and its impact on the quality of chiffon cake as a fat substitute."FOOD HYDROCOLLOIDS.2025 Sep;:112008 135. [IF=13.3] Lingxin Cai et al."Nociceptive Neurons Promote Myeloid-Derived Suppressor Cell Mobilization to Alleviate Post-Stroke Neuroinflammation."Theranostics.2025 Aug;15(17):8897 134. [IF=13.3] Lingxin Cai et al."Nociceptive Neurons Promote Myeloid-Derived Suppressor Cell Mobilization to Alleviate Post-Stroke Neuroinflammation."Theranostics.2025 Aug;15(17):8897 133. [IF=6.6] Hao Zheng et al."Revealing the variation in activities and material basis of Camellia fascicularis polyphenols during in vitro simulated digestion using widely targeted metabolomics."LWT-FOOD SCIENCE AND TECHNOLOGY.2025 Aug;229:118226 132. [IF=12.4] Xinyu Wang et al."Octenylsuccinic acid modification promotes starch lecithin complexation: Application to the preparation of oleogels."FOOD HYDROCOLLOIDS.2026 Mar;171:111787 131. [IF=19] Fei Wang et al."Targeted Inhibition of Tumor Extracellular Vesicle Secretion Improving the Anti-Tumor Immunity of Lymph Node-Targeted Vaccines."ADVANCED FUNCTIONAL MATERIALS.2025 Jul;:e04852 130. [IF=26.8] Quanwei Sun et al."Fueling IgA-Dominated Humoral Immunity with an Intranasal Hybrid Tumor Vaccine to Opsonize and Strike Epithelial Breast Cancer."ADVANCED MATERIALS.2025 Jul;:2500631 129. [IF=5.9] Yuru Yao et al."Gentler chemotherapy anti-cancer activity based on the Monascus pigment Rubropunctatin loaded in sodium deoxycholate Poloxamer 188 phospholipid micelle nanoparticle drug carrier."Food Bioscience.2025 Jun;:106985 128. [IF=6.5] Jie Zhou et al."RGD-Functionalized Ginsenoside Rg3 Liposomes for Alleviating Oxidative Stress and Choroidal Neovascularization in Age-Related Macular Degeneration."International Journal of Nanomedicine. 127. [IF=13.3] Caixia Yang et al."Autophagy inhibitor-sensitized artificially activated neutrophils against hepatocellular carcinoma."Theranostics.2025 Jun;15(14):7197 126. [IF=9.7] Haoran Zhu et al."Ultrasonication-mediated fabrication of artificial oleosomes from hemp seed oil-body proteins and rose essential oil for banana preservation."ULTRASONICS SONOCHEMISTRY.2025 Aug;119:107407 125. [IF=13.2] Kai Lv et al."Bacterial-targeting liposomes for synergistic nitric oxide/methicillin therapy in MRSA-infected osteomyelitis."CHEMICAL ENGINEERING JOURNAL.2025 Jul;515:163649 124. [IF=3.8] Huiyi Shang et al."Immobilization of Phospholipase D on Magnetic Graphene Oxide for Efficient Phosphatidylserine Production."Catalysts.2024 Nov;14(11):765 123. [IF=8.5] Zengliu Song et al."Enhancing supersaturation maintenance of hydrophobic ingredients using nanostructured lipid carriers: The role of solid lipid type and level."FOOD CHEMISTRY.2025 Feb;465:142057 122. [IF=6.6] Lili Zhou et al."A Novel Triptolide Nano-Liposome with Mitochondrial Targeting for Treatment of Hepatocellular Carcinoma."International Journal of Nanomedicine. 121. [IF=2.3] Xuena Zhang et al."Development and evaluation of a liposome hydrogel system for enhanced delivery of drospirenone at higher doses."JOURNAL OF BIOMATERIALS APPLICATIONS.;(): 120. [IF=10] Yinghan Guo et al."Biomimetic Membrane Vesicles Reprogram Microglia Polarization and Remodel the Immunosuppressive Microenvironment of Glioblastoma via PERK/HIF-1α/Glycolysis Pathway."Advanced Healthcare Materials.2025 Jan;:2404782 119. [IF=2.6] Li Zemin et al."Improved ability of liposomes to encapsulate ascorbic acid via coating with xanthan gum."INTERNATIONAL JOURNAL OF FOOD SCIENCE AND TECHNOLOGY.2025 Jan;: 118. [IF=5.3] Yao Chen et al."Biomimetic metal-phenolic nanocarrier for co-delivery of multiple phytomedical bioactive components for anti-atherosclerotic therapy."INTERNATIONAL JOURNAL OF PHARMACEUTICS.2025 Jan;:125228 117. [IF=7.2] Lili Zhou et al."Aptamer-conjugated dual-loaded liposomes exhibit synergistic effects in hepatic tumor treatment."Applied Materials Today.2025 Apr;43:102659 116. [IF=1.5] Di Zhang et al."Multifunctional Natural Herbal Extracts Liposomal Loaded Hybrid Hydrogel for Skin Improvement and Repair."Natural Product Communications.;(): 115. [IF=14.7] Siqi Wu et al."Targeting stem-property and vasculogenic mimicry for sensitizing paclitaxel therapy of triple-negative breast cancer by biomimetic codelivery."Acta Pharmaceutica Sinica B.2025 Apr;: 114. [IF=8.5] Yan Xiang et al."Insights into structure-antioxidant activity relationships of polyphenol-phospholipid complexes: The effect of hydrogen bonds formed by phenolic hydroxyl groups."FOOD CHEMISTRY.2025 Apr;:144471 113. [IF=4.8] Zhouliang Sun et al."Investigation on the structure and properties of nanostructured lipid carriers loaded with different contents of phytosterols and their impact on lipid oxidation."Food Bioscience.2024 Dec;62:105033 112. [IF=5.4] Ju Liang et al."Novel targeting liposomes with enhanced endosomal escape for co-delivery of doxorubicin and curcumin."COLLOIDS AND SURFACES B-BIOINTERFACES.2025 Jan;245:114267 111. [IF=8.3] Jiawei Chen et al."Biomimetic Nanosensitizer Potentiates Efficient Glioblastoma Gene-Radiotherapy through Synergistic Hypoxia Mitigation and PLK1 Silencing."ACS Applied Materials & Interfaces.2024;XXXX(XXX):XXX-XXX 110. [IF=3.9] Jian-jun Zhang et al."Fabrication and characterization of TPGS-modified chlorogenic acid liposomes and its bioavailability in rats."RSC Advances.2024 Aug;14(35):25289-25300 109. [IF=4] Bobo Lin et al."Extraction and structural analysis of polysaccharides from Shatian pomelo peel."JOURNAL OF MOLECULAR STRUCTURE.2024 Dec;1318:139564 108. [IF=7.2] Li Huang et al."Development of cantharidin/baicalin co-delivery system based on mitochondrial targeting strategy for enhanced hepatocellular carcinoma therapy."Applied Materials Today.2024 Oct;40:102374 107. [IF=7.7] Jinhui Gu et al."Enhanced stability of Pickering emulsions through co-stabilization with nanoliposomes and thermally denatured ovalbumin."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2024 Aug;:134561 106. [IF=8.5] Zhaoyang Song et al."Tapioca starch/konjac gum-based composite film incorporated with nanoliposomes encapsulated grape seed oil: Structure, functionality, controlled release and its preservation role for chilled mutton."FOOD CHEMISTRY.2024 Aug;:141081 105. [IF=10.6] Jin Jiale et al."GAPDH-Silence Microsphere via Reprogramming Macrophage Metabolism and eradicating Bacteria for Diabetic infection bone regeneration."JOURNAL OF NANOBIOTECHNOLOGY.2024 Dec;22(1):1-18 104. [IF=15.8] Xing Wang et al."Impact of Physiological Characteristics on Chylomicron Pathway-Mediated Absorption of Nanocrystals in the Pediatric Population."ACS Nano.2024;18(34):23136–23153 103. [IF=5.3] Gang Wang et al."Prediction and verification of targets for α-hederin/oxaliplatin dual-loaded rHDL modified liposomes: Reversing effector T-cells dysfunction and improving anti-COAD efficiency in vitro and in vivo."INTERNATIONAL JOURNAL OF PHARMACEUTICS.2 102. [IF=4.3] Sun Yang et al."Genetically engineered electrospinning contributes to spinal cord injury repair by regulating the immune microenvironment."Frontiers in Bioengineering and Biotechnology.2024 Jun;12: 101. [IF=4.7] Shuanghe Ren et al."Commercial Production of Highly Rehydrated Soy Protein Powder by the Treatment of Soy Lecithin Modification Combined with Alcalase Hydrolysis."Foods.2024 Jan;13(12):1800 100. [IF=5.3] Fei Wang et al."Low-dose doxorubicin loaded extracellular vesicles combined Fas/FasL pathway-mediated chemo-sensitization and immunotherapy against tumor."INTERNATIONAL JOURNAL OF PHARMACEUTICS.2024 Jul;660:124349 99. [IF=8.5] Yuan Rao et al."Preparation and characterization of bionics Oleosomes with high loading efficiency: The enhancement of hydrophobic space and the effect of cholesterol."FOOD CHEMISTRY.2024 Nov;457:140181 98. [IF=10.5] Yun-Fei Dong et al."Precisely targeted drug delivery by mesenchymal stem cells-based biomimetic liposomes to cerebral ischemia-reperfusion injured hemisphere."JOURNAL OF CONTROLLED RELEASE.2024 Jul;371:484 97. [IF=4.6] Ali Korin et al."Whey Protein Sodium-Caseinate as a Deliverable Vector for EGCG: In Vitro Optimization of Its Bioaccessibility, Bioavailability, and Bioactivity Mode of Actions."MOLECULES".2024 Jan;29(11):2588 96. [IF=6] Rui Cai et al."Antimicrobial activity and mechanism of chitosan-coated epsilon-poly-lysine nanoliposomes against Alicyclobacillus spp. in apple juice."FOOD CONTROL".2024 May;:110589 95. [IF=6.6] Liqian Su et al."Colon-targeted oral nanoliposomes loaded with psoralen alleviate DSS-induced ulcerative colitis."Biomaterials Science".2024 May;: 94. [IF=8.2] Mengzhen Han et al."Layer-by-layer coated probiotics with chitosan and liposomes exhibit enhanced therapeutic effects for DSS-induced colitis in mice."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES".2024 Jun;269:132063 93. [IF=18.9] An Shao et al."C176-loaded and phosphatidylserine-modified nanoparticles treat retinal neovascularization by promoting M2 macrophage polarization."Bioactive Materials".2024 Sep;39:392 92. [IF=3.4] Kunpeng Liu et al."Liposomal Neostigmine Bromide: A Localized Therapeutic Approach for Detrusor Underactivity."Advanced NanoBiomed Research".2024 Apr;:2300109 91. [IF=6] Xinping Zhang et al."Surface modification by chitosan for improving stability and antioxidative activity of astaxanthin-loaded liposomes."LWT-FOOD SCIENCE AND TECHNOLOGY".2024 Apr;198:116033 90. [IF=8.1] Lang Liu et al."Novel Pickering bigels stabilized by whey protein microgels: Interfacial properties, oral sensation and gastrointestinal digestive profiles."FOOD RESEARCH INTERNATIONAL".2024 Jul;188:114352 89. [IF=8.2] Kunyu Ren et al."Liposomes decorated with β-glycine and glycine: Construction, structure and in vitro digestive stability."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES".2024 Apr;:131900 88. [IF=15.1] Rong-Rong Lin et al."Hybrid Membrane-Coated Nanoparticles for Precise Targeting and Synergistic Therapy in Alzheimer's Disease."Advanced Science".2024 Apr;:2306675 87. [IF=5.8] Xiaxia Liu et al."Synergistic therapeutic effect of ginsenoside Rg3 modified minoxidil transfersomes (MXD-Rg3@TFs) on androgenic alopecia in C57BL/6 mice."INTERNATIONAL JOURNAL OF PHARMACEUTICS".2024 Apr;654:123963 86. [IF=6] Xixiang Shuai et al."Effect of different oleogelation mechanisms on physical properties and oxidative stability of macadamia oil-based oleogels and its application."LWT-FOOD SCIENCE AND TECHNOLOGY".2024 Apr;198:115978 85. [IF=3.3] Jinhui Gu et al."Improving the encapsulation of β-carotene by nanoliposomes via potato starch/whey protein coating."INTERNATIONAL JOURNAL OF FOOD SCIENCE AND TECHNOLOGY".2024 Feb;: 84. [IF=8.2] Xi Yin et al."Precision targeting of CuET overload to disrupt mitochondrial unfolded protein response by integrated liposome."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES".2024 Mar;262:129974 83. [IF=5.2] Yue Pan et al."Enhancing the physical stability and bioaccessibility of curcumin emulsions through the interaction of whey protein isolate and soybean lecithin."Food Bioscience.2024 Apr;58:103676 82. [IF=10.7] Xuefeng Wang et al."Preparation, characterization, and stability of nano-emulsions loaded with the Moringa oleifera seed hypoglycemic peptide MoHpP-2."FOOD HYDROCOLLOIDS.2024 Jun;151:109800 81. [IF=12.4] Linfeng Fan et al."Neutrophil-like pH-responsive pro-efferocytic nanoparticles improve neurological recovery by promoting erythrophagocytosis after intracerebral hemorrhage."Theranostics.2024; 14(1): 283–303 80. [IF=29.4] Quanwei Sun et al."Breaking-down Tumoral Physical Barrier by Remotely Unwrapping Metal-Polyphenol-Packaged Hyaluronidase for Optimizing Photothermal/Photodynamic Therapy-Induced Immune Response."ADVANCED MATERIALS.2024 Jan;:2310673 79. [IF=3.7] Shujing Zhang et al."Immobilization of Phospholipase D for Production of Phosphatidylserine via Enzyme-Inorganic Hybrid Nanoflower Strategy."Fermentation-Basel.2023 Dec;9(12):1016 78. [IF=8.8] Zhaoju Yan et al."The effect of octenyl succinic anhydride-modified chitosan coating on DHA-loaded nanoemulsions: Physichemical stability and in vitro digestibility."FOOD CHEMISTRY.2024 May;441:138289 77. [IF=4.7] Yu Xiao et al."Mechanistic understanding of the effects of nanoliposome-soybean protein isolate interactions on soybean protein isolate emulsifying properties."Food Structure-Netherlands.2024 Jan;39:100357 76. [IF=8.8] Peiye Liu et al."p-Coumaric acid-loaded nanoliposomes: Optimization, characterization, antimicrobial properties and preservation effects on fresh pod pepper fruit."FOOD CHEMISTRY.2024 Mar;435:137672 75. [IF=3.8] Huimin Shi et al."Extraction, purification and antioxidant activity of polysaccharides from different parts of Hibiscus manihot L.."JOURNAL OF MOLECULAR STRUCTURE.10.1016/j.molstruc.2023.136598 74. [IF=3.9] Hui Sun et al."Immobilization of Phospholipase D for Production of Phosphatidylserine by a Pickering Emulsion Strategy."Catalysts.10.3390/catal13101318 73. [IF=8.2] Xiangzhou Yi et al."Interaction between liposome and myofibrillar protein in surimi: Effect on gel structure and digestive characteristics."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.10.1016/j.ijbiomac.2023.126731 72. [IF=4.9] Hui Teng et al."Dexamethasone Liposomes Alleviate Osteoarthritis in miR-204/-211-Deficient Mice by Repolarizing Synovial Macrophages to M2 Phenotypes."MOLECULAR PHARMACEUTICS.2023;XXXX(XXX):XXX-XXX 71. [IF=7] Qi Long et al."NIR-II Fluorescence and PA Imaging Guided Activation of STING Pathway in Photothermal Therapy for Boosting Cancer Immunotherapy by Theranostic Thermosensitive Liposomes."Journal of Materials Chemistry B.2023 Aug;: 70. [IF=6.1] Yu Xiao et al."Insights from β-Conglycinin and Glycinin into the Mechanism of Nanoliposome–Soybean Protein Isolate Interactions."JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY.2023;XXXX(XXX):XXX-XXX 69. [IF=5.2] Housheng Xiong et al."Stabilization mechanism of different emulsifiers using dissipative particle dynamic simulation."COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS.2023 Jun;:131797 68. [IF=8.2] Aiyang Liu et al."Effects of N-succinyl-chitosan coating on properties of astaxanthin-loaded PEG-liposomes: Environmental stability, antioxidant/antibacterial activities, and in vitro release."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2023 Jun;:1 67. [IF=8.2] Yeke Chen et al."An injectable MB/BG@LG sustained release lipid gel with antibacterial and osteogenic properties for efficient treatment of chronic periodontitis in rats."Materials Today Bio.2023 Aug;21:100699 66. [IF=4.034] Feng Shi et al."In-vitro and in-vivo evaluation and anti-colitis activity of esculetin-loaded nanostructured lipid carrier decorated with DSPE-MPEG2000."JOURNAL OF MICROENCAPSULATION. 65. [IF=8.025] Shilong Ning et al."Lecithin/chitosan nanoparticle drug carrier improves anti-tumor efficacy of Monascus pigment rubropunctatin."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2023 May;:125058 64. [IF=9.231] Xiao Li et al."OSA-starch stabilized EPA nanoliposomes: Preparation, characterization, stability and digestion in vitro and in vivo."FOOD CHEMISTRY.2023 Sep;419:136040 63. [IF=10.761] Jun Tao et al."Reversing inflammatory microenvironment by a single intra-articular injection of multi-stimulus responsive lipogel to relieve rheumatoid arthritis and promote joint repair."Materials Today Bio.2023 Jun;20:100622 62. [IF=9.336] Junchi Li et al."Ultrasound-assisted extraction and properties of polysaccharide from Ginkgo biloba leaves."ULTRASONICS SONOCHEMISTRY.2023 Feb;93:106295 61. [IF=3.185] Wang Yunling et al."Preparation and properties of fucoxanthin-loaded liposomes stabilized by sea cucumber derived cholesterol sulfate instead of cholesterol."JOURNAL OF BIOSCIENCE AND BIOENGINEERING.2022 Dec;: 60. [IF=9.231] Hongtao Zhu et al."Anti-hardening effect and mechanism of silkworm sericin peptide in high protein nutrition bars during early storage."FOOD CHEMISTRY.2023 May;407:135168 59. [IF=4.132] Yanping Wu et al."Cosmetic-Derived Mannosylerythritol Lipid-B-Phospholipid Nanoliposome: An Acid-Stabilized Carrier for Efficient Gastromucosal Delivery of Amoxicillin for In Vivo Treatment of Helicobacter pylori."ACS Omega.2022;7(33):29086–29099 58. [IF=8.025] Yuxi Guo et al."Effect of shiitake mushrooms polysaccharide and chitosan coating on softening and browning of shiitake mushrooms (Lentinus edodes) during postharvest storage."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2022 Oct;218:816 57. [IF=15.304] Yichang Xu et al."Immunology and bioinformatics analysis of injectable organic/inorganic microfluidic microspheres for promoting bone repair."BIOMATERIALS.2022 Jul;:121685 56. [IF=2.506] Han Xiaoyan et al."Preparation, Characterization, and In Vitro Performance of Gambogic Acid-Layered Double Hydroxide/Liposome Nanocomposites."Journal of Chemistry. 2022;2022:7753864 55. [IF=11.556] Huang Yang et al."pH-responsive hybrid platelet membrane-coated nanobomb with deep tumor penetration ability and enhanced cancer thermal/chemodynamic therapy."Theranostics. 2022; 12(9): 4250–4268 54. [IF=4.952] Qian Wang et al."Mechanistic understanding of the effects of ovalbumin-nanoliposome interactions on ovalbumin emulsifying properties."Lwt Food Sci Technol. 2022 Mar;157:113067 53. [IF=4.411] Xian Lin et al."Storage Stability and In Vitro Bioaccessibility of Liposomal Betacyanins from Red Pitaya (Hylocereus polyrhizus)."Molecules. 2022 Jan;27(4):1193 52. [IF=3.361] Dongling Xu et al."Preparation and evaluation of a Rubropunctatin-loaded liposome anticancer drug carrier."Rsc Adv. 2020 Mar;10(17):10352-10360 51. [IF=4.952] Mengjie Ma et al."Fabrication and characterization of zein/tea saponin composite nanoparticles as delivery vehicles of lutein."Lwt Food Sci Technol. 2020 May;125:109270 50. [IF=5.875] Ruoning Wang et al."Impacts of particle size on the cytotoxicity, cellular internalization, pharmacokinetics and biodistribution of betulinic acid nanosuspensions in combined chemotherapy."Int J Pharmaceut. 2020 Oct;588:119799 49. [IF=6.165] Xiaoxue Liu et al."The palm oil-based microemulsion: Fabrication, characterization and rheological properties."J Mol Liq. 2020 Mar;302:112527 48. [IF=6.4] Yue Sun et al."Primary Studies on Construction and Evaluation of Ion-Sensitive in situ Gel Loaded with Paeonol-Solid Lipid Nanoparticles for Intranasal Drug Delivery."Int J Nanomed. 2020; 15: 3137–3160 47. [IF=6.419] Mengyu Chen et al."Ligand-modified homologous targeted cancer cell membrane biomimetic nanostructured lipid carriers for glioma therapy."Drug Deliv. 2021;28(1):2241-2255 46. [IF=6.953] Xiuxiu Li et al."Gelatin films incorporated with thymol nanoemulsions: Physical properties and antimicrobial activities."Int J Biol Macromol. 2020 May;150:161 45. [IF=7.514] Ping Sun et al."Characterization of functional chocolate formulated using oleogels derived from β-sitosterol with γ-oryzanol/lecithin/stearic acid."Food Chem. 2021 Oct;360:130017 44. [IF=7.514] Wanyi Dong et al."Preparation and characterization of egg yolk immunoglobulin loaded chitosan-liposome assisted by supercritical carbon dioxide."Food Chem. 2022 Feb;369:130934 43. [IF=7.514] Lu Han et al."Co-delivery of insulin and quercetin in W/O/W double emulsions stabilized by different hydrophilic emulsifiers."Food Chem. 2022 Feb;369:130918 42. [IF=7.79] Jiading Wang et al."Collagenase-loaded pH-sensitive nanocarriers efficiently remodeled tumor stroma matrixes and improved the enrichment of nanomedicines."Nanoscale. 2021 May;13(20):9402-9414 41. [IF=9.147] Hao Li et al."Zein/soluble soybean polysaccharide composite nanoparticles for encapsulation and oral delivery of lutein."Food Hydrocolloid. 2020 Jun;103:105715 40. [IF=12.121] Xi Kun et al."Microenvironment-responsive immunoregulatory electrospun fibers for promoting nerve function recovery."Nat Commun. 2020 Sep;11(1):1-18 39. [IF=3.361] Yan Jiao et al."Polypeptide – decorated nanoliposomes as novel delivery systems for lutein."Rsc Adv. 2018 Sep;8(55):31372-31381 38. [IF=5.268] Ruoning Wang et al."Paclitaxel-betulinic acid hybrid nanosuspensions for enhanced anti-breast cancer activity."Colloid Surface B. 2019 Feb;174:270 37. Hou, Xiaorong, et al. "Development of an immobilized liposome chromatography method for screening and characterizing α-glucosidase-binding compounds." Journal of Chromatography B 1148 (2020): 122097.https://doi.org/10.1016/j.jchromb.2020.122097 36. Yuan, Yongkai, et al. "Fabrication and characterization of lutein-loaded nanoparticles based on zein and sophorolipid: enhancement of water solubility, stability, and bioaccessibility." Journal of agricultural and food chemistry 67.43 (2019): 11977-11985.h 35. Yuan, Yongkai, et al. "Fabrication and characterization of lutein-loaded nanoparticles based on zein and sophorolipid: enhancement of water solubility, stability, and bioaccessibility." Journal of agricultural and food chemistry 67.43 (2019): 11977-11985.h 34. Yuan, Yongkai, et al. "Fabrication and characterization of lutein-loaded nanoparticles based on zein and sophorolipid: enhancement of water solubility, stability, and bioaccessibility." Journal of agricultural and food chemistry 67.43 (2019): 11977-11985.h 33. Huang, Wenquan, et al. "Development of a resveratrol–zein–dopamine–lecithin delivery system with enhanced stability and mucus permeation." Journal of Materials Science 54.11 (2019): 8591-8601.https://doi.org/10.1007/s10853-019-03465-0 32. Wang, Ruoning, et al. "Impacts of particle size on the cytotoxicity, cellular internalization, pharmacokinetics and biodistribution of betulinic acid nanosuspensions in combined chemotherapy." International Journal of Pharmaceutics 588 (2020): 119799.https 31. Zhao, Xiaoqing, et al. "In Situ Template Polymerization to Prepare Liposome‐Coated PDMAEMA Nanogels with Controlled Size, High Stability, Low Cytotoxicity, and Responsive Drug Release for Intracellular DOX Release." Macromolecular Chemistry and Physics 219 30. Ruoning Wang, Mengmeng Yang, Guoyuan Li, Xin Wang, Zhenhai Zhang, Hongzhi Qiao, Jun Chen, Zhipeng Chen, Xiaobin Cui, Junsong Li, Paclitaxel-betulinic acid hybrid nanosuspensions for enhanced anti-breast cancer activity, Colloids and Surfaces B: Biointerfac 29. 陈函,廉婷,杜远东,陈程,马宝.鼻用葛根素脂质体温敏凝胶剂的制备与质量评价[J].化工科技,2020,28(05):41-46. 28. 冀渤海,梁靓靓.柴枳夏及汤对胆汁反流性胃炎大鼠血清及血浆中胃动素、血管活性肠肽、生长抑素表达的影响[J].陕西中医,2021,42(01):12-17. 27. 胡艳秋, 于莲, 胡俊华,等. 肺靶向吡非尼酮脂质体的制备及体外释药性质研究[J]. 黑龙江医药科学, 2012, 35(3):28-30. 26. 王玉真, 高爽, 孙越,等. 菊苣酸脂质体制备工艺研究[J]. 山东科学, 2020(1):8-15. 25. 朱国贝, 丁保淼. 脂质体对玉米直链淀粉流变特性的影响[J]. 食品科技, 2020, v.45;No.339(01):322-327. 24. 邢永娜, 冯进, 李春阳. 姜黄素与白首乌蛋白以及大豆分离蛋白相互作用的比较[J]. 食品科学, 2020, v.41;No.623(10):62-69. 23. 刘建, 康建平, 张星灿,等. 鲜湿米粉品质改良研究[J]. 粮油食品科技, 2019(6):57-61. 22. 阙慧卿, 陈洪, 彭华毅,等. 雷公藤内酯醇纳米脂质体温敏凝胶的制备与鼻腔黏膜渗透性考察[J]. 中草药, 2017, 48(017):3517-3522. 21. 沈丽萍, 颜冬雪, 赵善科,等. 重复注射掺入不同形式PEG的大黄素脂质体对ABC现象的影响[J]. 中国新药杂志, 2017, 026(007):818-824. 20. 段炼, 卢钧雄, 钟询龙,等. 辣椒素固体脂质纳米粒的制备及初步修饰研究[J]. 中国药学杂志, 2016, v.51(05):54-58. 19. 朱潇潇, 张兴德, 谢辉,等. 蟾酥固体脂质纳米粒处方的Box-Behnken响应面法优化[J]. 时珍国医国药, 2018, 29(10):2381-2385. 18. 王诗琪, 钟照恬, 易阳,等. 莲藕多酚-多糖复合脂质体的制备及稳定性评价[J]. 食品工业科技, 2019, 040(017):154-160. 17. 王秀海, 赵震宇, 刘平怀,等. 胶网藻化学成分及其体外抗氧化,抗菌活性研究[J]. 食品工业, 2018, v.39;No.262(07):211-216. 16. 尹美林, 赵善科, 郑岩,等. 羟基磷灰石纳米晶体的制备,表征及补钙效能研究[J]. 化学试剂, 2018, 03(v.40):17-21. 15. 王安斌, 张渊, 张艳,等. 纳米碳酸钙及脂质体包覆提高淫羊藿苷生物利用度的研究[J]. 中华中医药学刊, 2017(07):1860-1863. 14. 刘峻屹, 刘炎峻, 李兆杰,等. 磷脂酰果糖的合成方法研究[J]. 中国油脂, 2017, 42(012):99-102. 13. 王安斌, 李群芳, 周旭美. 淫羊藿苷脂固体质纳米粒制备工艺的优化及其体外释放研究[J]. 遵义医学院学报, 2014, 37(006):605-608. 12. 张忠山. 浒苔多糖脂质体的制备及其抗肿瘤活性研究[J]. 粮食与油脂, v.29;No.246(10):82-84. 11. 雷润梅, 旦增诺宗, 刘睿,等. 油菜蜂花粉酚类物质的抗氧化能力比较[J]. 食品科技, 2017, 042(010):223-229. 10. 尧蓓, 邹义龙, 梁靓靓. 柴枳夏及汤对胆汁反流性胃炎大鼠胃黏膜的保护作用及机制研究[J]. 药物评价研究, 2017(8). 9. 沈丽萍, 吕芳, 颜冬雪,等. 掺入不同形式聚乙二醇的大黄素脂质体的制备与评价[J]. 中国医院药学杂志, 2017, 37(002):121-125. 8. 沈丽萍, 颜冬雪, 赵善科,等. 掺入不同形式PEG的大黄素脂质体大鼠体内药动学过程[J]. 中国新药杂志, 2017(06):90-95. 7. 关延彬, 韩冰, 田雨冬,等. 姜黄素脂质体的制备及质量评价[J]. 中药材, 2019, 042(002):385-389. 6. 田勋, 连天雁, 凌旺,等. 四草克银凝胶的微生物限度检查方法[J]. 中国医药工业杂志, 2020, v.51(05):96-99. 5. 付咪 俞佳丽 郭亮 et al. 乳酸链球菌素脂质体在不同pH值条件下的稳定性及其抑菌效果[J]. 食品科学 2019 v.40;No.610(21):15-21. 4. 李雪梅 张羽飞 孙延斌 等. 中药新藤黄酸纳米囊的制备研究[J]. 化工管理 2019 510(03):208-208. 3. 李杨 徐静雯 于静雯 等. 不同蛋白微射流喷雾干燥制备鱼油微胶囊性能研究[J]. 农业机械学报 2020 v.51(03):357-364. 2. 马莎莎 赵震宇 刘平怀 等. 丁香不同提取方法提取物的抗氧化活性[J]. 精细化工 2018 035(002):218-227. 1. 黄琳 马杰莹 王爽 等. Streptomyces septatus磷脂酶D在毕赤酵母中的重组表达及酶学性质分析[J]. 食品科学 2020(8):100-107.

质检证书(COA)

如何获取质检证书(COA)?
请输入货号和一个与之匹配的批号。
例如:
批号:JS298415 货号:S20001-25g
在货品标签上如何找到货号和批号?

摩尔浓度计算器

质量 (mg) = 浓度 (mM) x 体积 (mL) x 分子摩尔量 (g/mol)

=
×
×