[1] |
郑静,陈琳,张欢,等.磁性有序介孔纳米碳靶向药物载体的制备与控释性能[J].中国材料进展,2018,37(1):43-50.
|
[2] |
展佳愔,宋祥福.非病毒靶向纳米药物运载系统的研究进展[J].中国实验诊断学,2018,22(1):150-152.
|
[3] |
Pradhan P,Giri J,Rieken F,et al.Targeted temperature sensitive magnetic liposomes for thermo-chemotherapy[J].J Control Release,2010,142(1):108-121.
|
[4] |
Li L,ten Hagen TL,Hossann M,et al.Mild hyperthermia triggered doxorubicin release from optimized stealth thermosensitive liposomes improves intratumoral drug delivery and efficacy[J].J Control Release,2013,168(2):142-150.
|
[5] |
Koning G,Eggermont A,Lindner L,et al.Hyperthermia and thermosensitiveliposomesforimproveddeliveryofchemotherapeuticdrugstosolidtumors[J].Pharm Res,2010,27(8):1750-1754.
|
[6] |
郑俊民.药用高分子材料学[M].第3版.北京:中国医药科技出版社,2009,181-182.
|
[9] |
刘文主.药用高分子材料学[M].第2版.北京:中国中医药出版社,2017,58-59.
|
[12] |
方亮.药剂学[M].第 8 版.北京:人民卫生出版社,2016,333-336.
|
[13] |
李叶阔,段琬璐,唐家伟,等.载IR-780与多柔比星温敏脂质体的制备与表征[J].第二军医大学学报,2017,38(10):1336-1339.
|
[16] |
张越,瞿叶清,陈军,等.阿魏酸脂质体的体外释放度考察[J].中国实验方剂学杂志,2016,22(19):1-5.
|
[7] |
Djanashvili K,ten Hagen TLM,Blangé R,et al.Development of a liposomal delivery system for temperature-triggered release of a tumor targeting agent,Ln (Ⅲ)-DOTA-phenylboronate[J].Bioorgani Med Chem,2011,19(3):1123-1130.
|
[8] |
Morita K,Zywietz F,Kakinuma K,et al.Efficacy of doxorubicin thermosensitive liposomes and local hyperthermia on rat rhabdomyosarcoma[J].Oncol Rep,2008,20(2):365-372.
|
[10] |
Chelvi TP,Ralhan R.Designing of thermosensitive liposomes from natural lipids for multimodality cancer therapy[J].Int J Hypert,1995,11(5):685-695.
|
[11] |
Hossann M,Wiggenhorn M,Schwerdt A,et al.In vitro stability and content release properties of phosphatidylglyceroglycerol containing thermosensitive liposomes[J].BBA-Biomembranes,2007,1768(10):2491-2499.
|
[14] |
Nkanga CI,Krause RW,Noundou XS,et al.Preparation and characterization of isoniazid-loaded crude soybean lecithin liposomes[J].Int J Pharm,2017,526(2):466-473.
|
[15] |
Zhu X,Xie Y,Zhang Y,et al.Thermo-sensitive liposomes loaded with doxorubicin and lysine modified single-walled carbon nanotubes as tumor-targeting drug delivery system[J].J Biomater Appl,2014,29(5):769.
|
[17] |
陆媛媛,符旭东,邓艾平,等.K237修饰的紫杉醇热敏脂质体的制备、处方优化和体外释放度研究[J].中国医院药学杂志,2017,37(8):722-726.
|
[18] |
邹旭公,李晓群.肺恶性肿瘤射频消融治疗现状[J].介入放射学杂志,2016,25(7):646-650.
|
[19] |
叶欣,费兴波,何申戌.高强度聚焦超声治疗肿瘤[J].国际肿瘤学杂志,2010,37(8):38-40.
|
[20] |
Meaney PM,Cahill MD,ter Haar GR.The intensity dependence of lesion position shift during focused ultrasound surgery[J].Ultrasound Med Biol,2000,26(3):441-450.
|
[21] |
Crawford BM,Shammas RL,Fales AM,et al.Photothermal ablation of inflammatory breast cancer tumor emboli using plasmonic gold nanostars[J].Int J Nanomed,2017,12:6259-6272.
|
[22] |
Sobhani Z,Behnam MA,Emami F,et al.Photothermal therapy of melanoma tumor using multiwalled carbon nanotubes[J].Int J Nanomed,2017,12:4509-4517.
|
[23] |
Nguyen VD,Zheng S,Han J,et al.Nanohybrid magnetic liposome functionalized with hyaluronic acid for enhanced cellular uptake and near-infrared-triggered drug release[J].Colloid Surface B,2017,154:104-114.
|
[24] |
Tran TH,Nguyen H T,Le NV,et al.Engineering of multifunctional temperature-sensitive liposomes for synergistic photothermal,photodynamic,andchemotherapeuticeffects[J].Int J Pharm,2017,528(1):692-704.
|
[25] |
Smith B,Lyakhov I,Loomis K,et al.Hyperthermia-triggered intracellular delivery of anticancer agent to HER2+,cells by HER2-specific affibody(ZHER2-GS-Cys)-conjugated thermosensitive liposomes (HER2+,affisomes) [J].J Control Release,2011,153(2):187-194.
|
[26] |
邱瑜,雷华,徐涛,等.紫外光引发低密度聚乙烯接枝聚N-异丙基丙烯酰胺的温敏改性[J].高分子材料科学与工程,2017,33(2):22-27.
|
[27] |
Kono K.Thermosensitive polymer-modified liposomes[J].Adv Drug Deliv Rev,2001,53(3):307-319.
|
[28] |
Yan F,Duan W,Li Y,et al.NIR-laser-controlled drug release from DOX/IR-780-Loaded temperature-sensitive-liposomes for chemo-photothermal synergistic tumor therapy[J].Theranostics,2016,6(13):2337-2351.
|