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材料导报  2021, Vol. 35 Issue (z2): 612-615    
  高分子与聚合物基复合材料 |
Pluronic修饰脂质体的研究进展
李文娟, 廖璇, 熊向源, 龚妍春, 李资玲
江西科技师范大学生命科学学院,南昌 330013
Research Progress of Pluronic Modified Liposomes
LI Wenjuan, LIAO Xuan, XIONG Xiangyuan, GONG Yanchun, LI Ziling
School of Life Science, Jiangxi Science & Technology Normal University, Nanchang 330013, China
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摘要 采用不同材料对脂质体表面进行修饰已成为脂质体的研究热点。Pluronic是非离子表面活性剂,具有很好的生物相容性,常用作药物载体。本文从Pluronic修饰脂质体的制备工艺,理化性质及其载体的运用三方面进行综述,为修饰脂质体的进一步开发提供一定的参考。
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李文娟
廖璇
熊向源
龚妍春
李资玲
关键词:  Pluronic  脂质体  理化性质  载体    
Abstract: The surface modification of liposomes with different materials has been hot in liposomal research. Pluronic is a nonionic surfactant with good biocompatibility and is commonly used as drug carrier. The preparation method of Pluronic modified liposomes, physicochemical properties and carrier application were reviewed in this paper, which will provide some references for the further development of Pluronic modified liposomes.
Key words:  pluronic    liposomes    physicochemical properties    carrier
                    发布日期:  2021-12-09
ZTFLH:  TB324  
基金资助: 国家自然科学基金(21766008);江西省自然科学基金(20202BAB205012);江西科技师范大学博士科研启动基金(2019BSQD012);江西科技师范大学研究生创新专项资金(YC2021-X16)
通讯作者:  lzlowen2010@gmail.com   
作者简介:  李文娟,2020年毕业于济宁学院生物制药专业,现为江西科技师范大学生命科学学院硕士研究生,主要从事高分子生物医药材料的研究。
李资玲,博士,江西科技师范大学副教授,主要从事纳米级高分子药物载体的研究。在Journal of Controlled Release、Food Research Internatio-nal等期刊上发表了10余篇 SCI 论文。获得2013年度江西省高等学校科技成果奖二等奖,2009 年度江西省自然科学奖三等奖。
引用本文:    
李文娟, 廖璇, 熊向源, 龚妍春, 李资玲. Pluronic修饰脂质体的研究进展[J]. 材料导报, 2021, 35(z2): 612-615.
LI Wenjuan, LIAO Xuan, XIONG Xiangyuan, GONG Yanchun, LI Ziling. Research Progress of Pluronic Modified Liposomes. Materials Reports, 2021, 35(z2): 612-615.
链接本文:  
http://www.mater-rep.com/CN/  或          http://www.mater-rep.com/CN/Y2021/V35/Iz2/612
1 Khanniri E, Bagheripoor-Fallah N, Sohrabvandi S, et al. Critical Reviews in Food Science and Nutrition, 2016, 56(3), 484.
2 Samad A, Sultana Y, Aqil M. Current Drug Delivery, 2007, 4(4), 297.
3 Bangham A D, Horne R W. Journal of Molecular Biology, 1964, 8(5), 660.
4 Torchilin, Vladimir P.Nature Reviews Drug Discovery, 2005, 4(2), 145.
5 Goyal P, Goyal K, Kumar S V, et al.Acta Pharm, 2005, 55(1), 1.
6 Al-Jamal, Wafa,T, Kostarelos K. Accounts of Chemical Research, 2011, 44(10), 1094.
7 Senior J, Gregoriadis G. FEBS Letters, 1982, 145(1), 109.
8 Blume G, Cevc G.Biochim Biophys Acta, 1993, 1146(2), 157.
9 Nguyen T X, Huang L, Gauthier M, et al.Nanomedicine, 2016, 1169.
10 Kaminski G A, Sierakowski M R, Pontarolo R, et al.Carbohydrate Polymers, 2016, 140, 129.
11 Jøraholmen M W, Vanic Ž, Tho I, et al. International Journal of Pharmaceutics, 2014, 472(1-2), 94.
12 Mura C, Manconi M, Valenti D, et al.Carbohydrate Polymers, 2011, 85(3), 578.
13 Frenzel M, Krolak E, Wagner A, et al.LWT-Food Science and Technology, 2015, 63(1), 527.
14 Toniazzo T, Berbel I F, Cho S, et al.LWT-Food Science and Technology, 2014, 59(2), 1265.
15 Lee S M, Chen H, Dettmer C M, et al. Journal of the American Chemical Society, 2007, 129(49), 15096.
16 Manconi M, Marongiu F, Castangia I, et al.Colloids and Surfaces B: Biointerfaces, 2016, 146, 910.
17 Rowe R C, Sheskey P J, Qwen S C.Handbook of pharmaceutical exci-pients, Pharmacological Press and American Pharmacists Association Washington, DC, 2006,535.
18 Alexandridis P, Hatton T A.Colloids and Surfaces A: Physicochemical and Engineering Aspects, 1995, 96(1-2), 1.
19 Kabanov A V, Batrakova E V, Alakhov V Y.Journal of Controlled Release, 2002, 82(2-3), 189.
20 Kabanov A V, Batrakova E V, Miller D W.Advanced Drug Delivery Reviews, 2003, 55(1), 151.
21 Wang Y, Liu E, Sun X, et al.Polymer Chemistry, 2013, 4(10), 2958.
22 Song C K, Balakrishnan P, Shim C K, et al. Journal of Microencapsulation, 2011, 28(6), 575.
23 Chandaroy P, Sen A, Alexandridis P, et al.BBA-Biomembranes, 2002, 1559(1), 32.
24 Wang C Y, Hughes K W, Huang L.Plant Physiology, 1986, 82(1), 179.
25 Maherani B, Arab-Tehrany E, Mozafari M R, et al. Current Nanoscience, 2011, 7(3), 436.
26 Akbarzadeh A, Rezaei-Sadabady R, Davaran S, et al.Nanoscale Research letters, 2013, 8(1), 1.
27 Pachis K, Blazaki S, Tzatzarakis M, et al.European Journal of Pharmaceutical Sciences: Official Journal of the European Federation for Pharmaceutical Sciences, 2017, 109, 324.
28 Liu W, Liu J, Xie M, et al. Journal of Agricultural and Food Chemistry, 2009, 57(12), 5376.
29 Van S D, Demello A.Lab on a Chip, 2013, 13(5), 752.
30 Jahn A, Vreeland W N, Devoe D L, et al.Langmuir, 2007, 23(11), 6289.
31 Ran R, Middelberg A P, Zhao C X.Colloids and Surfaces B: Biointerfa-ces, 2016, 148, 402.
32 Li Z L, Peng S F, Chen X, et al.Journal of Dispersion Science and Technology, 2018, 40(7), 982.
33 Mui B, Chow L, Hope M J.Methods in Enzymology, 2003, 367, 3.
34 Zhu Q, Guo T, Xia D, et al. Journal of Pharmacy and Pharmacology, 2013, 65(8), 1107.
35 Lin Y, He X, Zhou D, et al.RSC Advances, 2018, 8(42), 23768.
36 He C, Hu Y, Yin L, et al.Biomaterials, 2010, 31(13), 3657.
37 Andar A U, Hood R R, Vreeland W N, et al.Pharmaceutical Research, 2014, 31(2), 401.
38 Li Z L, Peng S F, Chen X, et al.Food Research International, 2018, 108, 246.
39 Li X, Chen D, Le C, et al.International Journal of Nanomedicine, 2011, 6, 3151.
40 Kostarelos K, Tadros T F, Luckham P F.Langmuir, 1999, 15(2), 369.
41 Liang X, Mao G, Ng K S.Journal of Colloid and Interface Science, 2005, 285(1), 360.
42 Johnsson M, Silvander M, Karlsson G, et al. Langmuir, 1999, 15(19), 6314.
43 Li Z, Huang Y, Peng S, et al. Journal of Dispersion Science and Techno-logy, 2019, 41(2), 207.
44 Chen D, Xia D, Li X, et al.International Journal of Pharmaceutics, 2013, 449(1-2), 1.
45 Zhou Y, Ning Q, Yu D N, et al.Journal of Pharmacy and Pharmacology, 2014, 66(7), 903.
46 Elsana H, Olusanya T O B, Carr-Wilkinson J, et al. Scientific Reports, 2019, 9(1), 15120.
47 Chen H, Hu Q, Liang W.Die Pharmazie-An International Journal of Pharmaceutical Sciences, 2004, 59(2), 131.
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