[1]Shen HJ, Shi H, Ma K, et al. Polyelectrolyte capsules packaging BSA gels for pH-controlled drug loading and release and their antitumor activity[J]. Acta Biomater, 2013, 9(4):6123-6133. [2]Kozlovskaya V, Sukhishvili SA. Amphoteric hydrogel capsules:multiple encapsulation and release routes[J]. Macromolecules, 2006, 39(18):6191-6199. [3]Saurer EM, Flessner RM, Buck ME, et al. Fabrication of covalently crosslinked and amine-reactive microcapsules by reactive layer-by-layer assembly of azlactone-containing polymer multilayers on sacrificial microparticle templates[J]. J Mater Chem, 2011, 21(6):1736-1745. [4]Cavalieri F, Postma A, Lee L, et al. Assembly and functionalization of DNA-polymer microcapsules[J]. ACS Nano, 2009, 3(1):234-240. [5]Caruso F. Hollow capsule processing through colloidal templating and self-assembly[J]. Chem Eur J, 2000, 6(3):413-419. [6]Wang XL, Shi JF, Jiang ZY, et al. Preparation of ultrathin, robust protein microcapsules through template-mediated interfacial reaction between amine and catechol groups[J]. Biomacromolecules, 2013, 14(11):3861-3869. [7] Volodkin DV, Larionova NI, Sukhorukov GB. Protein encapsulation via porous CaCO3 microparticles templating[J]. Biomacromolecu-les, 2004, 5(5):1962-1972. [8]Volodkin DV, Petrov AI, Prevot M, et al. Matrix polyelectrolyte microcapsules:new system for macromolecule encapsulation[J]. Langmuir, 2004, 20(8):3398-3406. [9]Endo Y, Sato K, Anzai J. Preparation of avidin-containing polyelectrolyte microcapsules and their uptake and release properties[J]. Polym Bull, 2011, 66(5):711-720. [10]Petrov AI, Volodkin DV, Sukhorukov GB. Protein-calcium carbonate coprecipitation:a tool for protein encapsulation[J]. Biotechnol Prog, 2005, 21(3):918-925. [11]Labala S, Mandapalli PK, Bhatnagar S, et al. Encapsulation of albumin in self-assembled layer-by-layer microcapsules:comparison of co-precipitation and adsorption techniques[J]. Drug Dev Ind Pharm, 2015, 41(8):1302-1310. [12]占英英. 可控制释放微胶囊的制备和释放性能研究[D]. 哈尔滨:东北农业大学, 2010. [13]Simsek-Ege FA, Bond GM, Stringer J. Polyelectrolyte complex formation between alginate and chitosan as a function of pH[J]. J Appl Polym Sci, 2003, 88(2):346-351. [14]Shu SJ, Zhang XG, Wu ZM, et al. Gradient cross-linked biodegradable polyelectrolyte nanocapsules for intracellular protein drug delivery[J]. Biomaterials, 2010, 31(23):6039-6049. [15]Tripathy J, Raichur AM. Designing carboxymethyl cellulose based layer-by-layer capsules as a carrier for protein delivery[J]. Colloids Surf B Biointerfaces, 2013, 101:487-492. [16]Shutava TG, Lvov YM. Nano-engineered microcapsules of tannic acid and chitosan for protein encapsulation[J]. J Nanosci Nanotechnol, 2006, 6(6):1655-1661. [17]Studer D, Palankar R, Bédard M, et al. Retrieval of a metabolite from cells with polyelectrolyte microcapsules[J]. Small, 2010, 6(21):2412-2419. [18]Zheng C, Ding YJ, Liu XQ, et al. Highly magneto-responsive multilayer microcapsules for controlled release of insulin[J]. Int J Pharm, 2014, 475(1-2):17-24. [19] Yang WH, He KL, Zhang J, et al. pH-controlled Bacillus thuringie-nsis Cry1Ac protoxin loading and release from polyelectrolyte microcapsules[J]. PLoS One, 2012, 7(9):e45233. [20]Zhao QH, Li BY. pH-controlled drug loading and release from biodegradable microcapsules[J]. Nanomed-Nanotechnol, 2008, 4(4):302-310. [21]Endo Y, Sato K, Sugimoto K, et al. Avidin/PSS membrane microcapsules with biotin-binding activity[J]. J Colloid Interf Sci, 2011, 360(2):519-524. [22]An ZH, Lu G, M?hwald H, et al. Self-assembly of human serum albumin(HAS)and L-α-dimyristoylphosphatidic acid(DMPA)microcapsules for controlled drug release[J]. Chem Eur J, 2004, 10(22):5848-5852. [23]Zheng C, Zhang XG, Sun L, et al. Biodegradable and redox-responsive chitosan/poly(L-aspartic acid)submicron capsules for transmucosal delivery of proteins and peptides[J]. J Mater Sci:Mater Med, 2013, 24(4):931-939. [24]Balabushevich NG, Tiourina OP, Volodkin DV, et al. Loading the multilayer dextran sulfate/protamine microsized capsules with peroxidase[J]. Biomacromolecules, 2003, 4(5):1191-1197. [25]Li F, Yan Y, Wang DD, et al. Cry8Ca2-containing layer-by-layer microcapsules for the pH-controlled release of crystal protein[J]. J Microencapsul, 2014, 31(6):567-572. [26]Zhi ZL, Haynie DT. High-capacity functional protein encapsulation in nanoengineered polypeptide microcapsules[J]. Chem Commun(Camb), 2006, 14(2):147-149. [27]Yu AM, Wang YJ, Barlow E, et al. Mesoporous silica particles as templates for preparing enzyme-loaded biocompatible microcapsules[J]. Adv Mater, 2005, 17(14):1737-1741. [28]Pessi J, Santos HA, Miroshnyk I, et al. Microfluidics-assisted engineering of polymeric microcapsules with high encapsulation efficiency for protein drug delivery[J]. Int J Pharm, 2014, 472(1-2):82-87. [29]Ma GH. Microencapsulation of protein drugs for drug delivery:Strategy, preparation, and applications[J]. J Control Release, 2014, 193:324-340. [30]Zhou JH, Hyun DC, Liu H, et al. Protein capsules with cross-linked, semipermeable, and enzyme-degradable surface barriers for controlled release[J]. Macromol Rapid Commun, 2014, 35(16):1436-1442. [31]Chen XT, Lv GY, Zhang J, et al. Preparation and properties of BSA-loaded microspheres based on multi-(amino acid)copolymer for protein delivery[J]. Int J Nanomed, 2014, 9(1):1957-1965. [32]阮传清, 刘芸, 张明政, 等. Bt杀虫晶体蛋白-肠溶性微囊制备方法的初步研究[J]. 中国农学通报, 2008, 24(11):374-378. [33]黄珊珊, 刘荣, 马光辉, 等. 膜乳化法与复乳法结合制备粒径均一的载溶菌酶微胶囊[J]. 过程工程学报, 2006, 6(4):603-607. [34] Morlock M, Koll H, Winter G, et al. Microencapsulation of rh-eryt-hropoietin, using biodegradable poly(d, l-lactide-co-glycolide):protein stability and the effects of stabilizing excipients[J]. Eur J Pharm Biopharm, 1997, 43(1):29-36. [35]Meng FT, Zhang WZ, Ma GH, et al. The preparation and characterization of monomethoxy-poly(ethylene glycol)-b-poly-DL-lactide microcapsules containing bovine hemoglobin[J]. Artif Cells Blood Substit Immobil Biotechnol, 2003, 31(3):279-292. [36]Gombotz WR, Wee SF. Protein release from alginate matrices[J]. Adv Drug Deliv Rev, 1998, 31(3):267-285. [37]Silva CM, Ribeiro AJ, Ferreira D, et al. Insulin encapsulation in reinforced alginate microspheres prepared by internal gelation[J]. Eur J Pharm Sci, 2006, 29(2):148-159. [38]García-Gutiérrez K, Poggi-Varaldo HM, Esparza-García F, et al. Small microcapsules of crystal proteins and spores of Bacillus thuringiensis by an emulsification/internal gelation method[J]. Bioprocess Biosyst Eng, 2011, 34(6):701-708. [39]Manojlovic V, Djonlagic J, Obradovic B, et al. Immobilization of cells by electrostatic droplet generation:a model system for potential application in medicine[J]. Int J Nanomedicine, 2006, 1(2):163-171. [40]Mi Y, Su R, Fan DD, et al. Preparation of N, O-carboxymethyl chitosan coated alginate microcapsules and their application to Bifidobacterium longum BIOMA 5920[J]. Mater Sci Eng C Mater Biol Appl, 2013, 33(5):3047-3053. [41]王春蕾, 闫俊涛, 钟双玲, 等. 磁性蛋白质微胶囊的声化学法构筑[J]. 高等学校化学学报, 2013, 34(2):462-466. [42]Cui XJ, Li ZF, Zhong SL, et al. A facile sonochemical route for the fabrication of magnetic protein microcapsules for targeted delivery[J]. Chem Eur J, 2013, 19(29):9485-9488.
|