现在的位置:主页 > 期刊导读 >

超临界流体技术制备生物可降解聚合物药物纳米(8)

来源:中国药物经济学 【在线投稿】 栏目:期刊导读 时间:2021-05-03 05:23

【作者】:网站采编

【关键词】:

【摘要】[26] Rosenblum D, Joshi N, Tao W, et al. Progress and challenges towards targeted delivery of cancer therapeutics[J]. Nature Communications,2018,9(1):1410-1421. [27] Brunner G. Gas extraction: an intr

[26] Rosenblum D, Joshi N, Tao W, et al. Progress and challenges towards targeted delivery of cancer therapeutics[J]. Nature Communications,2018,9(1):1410-1421.

[27] Brunner G. Gas extraction: an introduction to fundamentals of supercritical fluids and the application to separation processes[M]//Topics in Physical York:Springer,1994.

[28] Knez ?, Marko?i? E, Leitgeb M, et al. Industrial applications of supercritical fluids:a review[J].Energy,2014,77(12):235-243.

[29] Kankala R K, Zhang Y S, Wang S B, et al. Supercritical fluid technology: an emphasis on drug delivery and related biomedical applications[J]. Advanced Healthcare Materials, 2017, 6(16):.

[30] Knez ?, Knez-Hrn?i? M, ?kerget M. Particle formation and product formulation using supercritical fluids[J]. Annual Review of Chemical and Biomolecular Engineering,2015,6(1):379-407.

[31] 陈震,周进莉,陶钰婷,等.超临界CO2抗溶剂法制备卡维地洛固体分散体[J].中国新药杂志,2019,28(7): Z, Zhou J L, Tao Y T, et al. Preparation of carvedilol solid dispersions by supercritical CO2anti-solvent technology [J].Chinese Journal of New Drugs,2019,28(7):256-262.

[32] ?kerget M, Knez ?, Knez-Hrn?i? M. Solubility of solids in suband supercritical fluids: a review[J]. Journal of Chemical and Engineering Data,2011,56(4):694-719.

[33] Zhang X, Heinonen S, Lev?nen E. Applications of supercritical carbon dioxide in materials processing and synthesis[J]. RSC Advances,2014,4(105):-.

[34] Frerich S C. Biopolymer foaming with supercritical CO2-thermodynamics, foaming behaviour and mechanical characteristics[J]. Journal of Supercritical Fluids, 2015, 96(1):349-358.

[35] Chauvet M, Sauceau M, Fages J. Extrusion assisted by supercritical CO2: a review on its application to biopolymers[J].Journal of Supercritical Fluids,2017,120(2):408-420.

[36] Barros A A,Silva J,Craveiro R,et al.Green solvents for enhanced impregnation processes in biomedicine[J]. Current Opinion Green and Sustainable Chemistry,2017,5(6):82-87.

[37] Tsivintzelis I, Sanxaridou G, Pavlidou E, et al. Foaming of polymers with supercritical fluids: a thermodynamic investigation[J].Journal of Supercritical Fluids,2016,110(4):240-250.

[38] Smith R D, Udseth H R. Mass spectrometry with direct supercritical fluid injection[J]. Analytical Chemistry, 1983, 55(14):2266-2272.

[39] Matson D W,Petersen R C,Smith R of powders and films by the rapid expansion of supercritical solutions[J]. Journal of Materials Science,1987,22(6):1919-1928.

[40] Pasquali I, Bettini R. Are pharmaceutics really going supercritical?[J]. International Journal of Pharmaceutics, 2008,364(2):176-187.

[41] Türk M, Hils P, Helfgen B, et al. Micronization of pharmaceutical substances by the rapid expansion of supercritical solutions(RESS): a promising method to improve bioavailability of poorly soluble pharmaceutical agents[J]. Journal of Supercritical Fluids,2002,22(1):75-84.

[42] Paisana M C, Müllers K C, Wahl M A, et al. Production and stabilization of olanzapine nanoparticles by rapidexpansion of supercritical solutions (RESS)[J]. Journal of Supercritical Fluids,2016,109(3):124-133.

[43] Türk M. Manufacture of submicron drug particles with enhanced dissolution behaviour by rapid expansion processes[J]. Journal of Supercritical Fluids,2009,47(3):537-545.

[44] Debenedetti P G. Homogeneous nucleation in supercritical fluids[J].AIChE Journal,1990,36(9):1289-1298.

[45] Pasquali I, Bettini R, Giordano F. Supercritical fluid technologies:an innovative approach for manipulating the solid-state of pharmaceuticals[J]. Advanced Drug Delivery Reviews, 2008, 60(3):399-410.

[46] Pando C, Caba?as A, Cuadra I A. Preparation of pharmaceutical co-crystals through sustainable processes using supercritical carbon dioxide: a review[J]. RSC Advances, 2016, 6(75): -.

[47] Wolff S, Beuermann S, Türk M. Impact of rapid expansion of supercritical solution process conditions on the crystallinity of poly(vinylidene fluoride) nanoparticles[J]. Journal of Supercritical Fluids,2016,117(11):18-25.

[48] Jiao Z, Wang X, Han S, et al. Preparation of vitamin C liposomes by rapid expansion of supercritical solution process: experiments and optimization[J]. Journal of Drug Delivery Science and Technology,2019,51(6):1-6.

[49] Satvati H R, Lotfollahi M N. Effects of extraction temperature,extraction pressure and nozzle diameter on micronization of cholesterol by RESS process[J].Powder Technology,2011,210(2):109-114.

[50] Gholamhossein S, Ali S S, Sahar D. Preparation of aprepitant,nanoparticles (efficient drug for coping with the effects of cancer treatment) by rapid expansion of supercritical solution with solid cosolvent(RESS-SC)[J].Journal of Supercritical Fluids,2018,140(10):72-84.

[51] Prosapio V, De Marco I, Reverchon E. Supercritical antisolvent coprecipitation mechanisms[J]. Journal of Supercritical Fluids,2018,138(8):247-258.

[52] Jin H,Hemingway M,Gupta R B,et of thalidomide nano-flakes by supercritical antisolvent with enhanced mass transfer[J].Particuology,2012,10(1):17-23.

文章来源:《中国药物经济学》 网址: http://www.zgywjjx.cn/qikandaodu/2021/0503/821.html

上一篇:高灵敏瑞利光散射法测定药物及人血中美司那
下一篇:共结晶分离技术研究进展