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Journal Abstract Search
489 related items for PubMed ID: 27175803
1. Improved safety and efficacy of a lipid emulsion loaded with a paclitaxel-cholesterol complex for the treatment of breast tumors. Ye J, Liu Y, Xia X, Meng L, Dong W, Wang R, Fu Z, Liu H, Han R. Oncol Rep; 2016 Jul; 36(1):399-409. PubMed ID: 27175803 [Abstract] [Full Text] [Related]
2. Cellular uptake mechanism and comparative evaluation of antineoplastic effects of paclitaxel-cholesterol lipid emulsion on triple-negative and non-triple-negative breast cancer cell lines. Ye J, Xia X, Dong W, Hao H, Meng L, Yang Y, Wang R, Lyu Y, Liu Y. Int J Nanomedicine; 2016 Jul; 11():4125-40. PubMed ID: 27601899 [Abstract] [Full Text] [Related]
3. Paclitaxel-loaded hyaluronan solid nanoemulsions for enhanced treatment efficacy in ovarian cancer. Kim JE, Park YJ. Int J Nanomedicine; 2017 Jul; 12():645-658. PubMed ID: 28176896 [Abstract] [Full Text] [Related]
4. An optimized two-vial formulation lipid nanoemulsion of paclitaxel for targeted delivery to tumor. Chen L, Chen B, Deng L, Gao B, Zhang Y, Wu C, Yu N, Zhou Q, Yao J, Chen J. Int J Pharm; 2017 Dec 20; 534(1-2):308-315. PubMed ID: 28986321 [Abstract] [Full Text] [Related]
5. Paclitaxel loaded folic acid targeted nanoparticles of mixed lipid-shell and polymer-core: in vitro and in vivo evaluation. Zhao P, Wang H, Yu M, Liao Z, Wang X, Zhang F, Ji W, Wu B, Han J, Zhang H, Wang H, Chang J, Niu R. Eur J Pharm Biopharm; 2012 Jun 20; 81(2):248-56. PubMed ID: 22446630 [Abstract] [Full Text] [Related]
6. Free paclitaxel loaded PEGylated-paclitaxel nanoparticles: preparation and comparison with other paclitaxel systems in vitro and in vivo. Lu J, Chuan X, Zhang H, Dai W, Wang X, Wang X, Zhang Q. Int J Pharm; 2014 Aug 25; 471(1-2):525-35. PubMed ID: 24858391 [Abstract] [Full Text] [Related]
7. Hyaluronic acid-coated nanostructured lipid carriers for targeting paclitaxel to cancer. Yang XY, Li YX, Li M, Zhang L, Feng LX, Zhang N. Cancer Lett; 2013 Jul 01; 334(2):338-45. PubMed ID: 22776563 [Abstract] [Full Text] [Related]
8. PEG-derivatized octacosanol as micellar carrier for paclitaxel delivery. Chu B, Qu Y, Huang Y, Zhang L, Chen X, Long C, He Y, Ou C, Qian Z. Int J Pharm; 2016 Mar 16; 500(1-2):345-59. PubMed ID: 26794876 [Abstract] [Full Text] [Related]
9. A novel polyethylene glycol mediated lipid nanoemulsion as drug delivery carrier for paclitaxel. Jing X, Deng L, Gao B, Xiao L, Zhang Y, Ke X, Lian J, Zhao Q, Ma L, Yao J, Chen J. Nanomedicine; 2014 Feb 16; 10(2):371-80. PubMed ID: 23969104 [Abstract] [Full Text] [Related]
10. In vivo pharmacokinetics, biodistribution and antitumor effect of paclitaxel-loaded micelles based on α-tocopherol succinate-modified chitosan. Liang N, Sun S, Hong J, Tian J, Fang L, Cui F. Drug Deliv; 2016 Oct 16; 23(8):2651-2660. PubMed ID: 26165423 [Abstract] [Full Text] [Related]
11. Enhanced anti-glioblastoma efficacy by PTX-loaded PEGylated poly(ɛ-caprolactone) nanoparticles: In vitro and in vivo evaluation. Xin H, Chen L, Gu J, Ren X, Wei Z, Luo J, Chen Y, Jiang X, Sha X, Fang X. Int J Pharm; 2010 Dec 15; 402(1-2):238-47. PubMed ID: 20934500 [Abstract] [Full Text] [Related]
12. Phospholipid-Tween 80 mixed micelles as an intravenous delivery carrier for paclitaxel. Liang H, Yang Q, Deng L, Lu J, Chen J. Drug Dev Ind Pharm; 2011 May 15; 37(5):597-605. PubMed ID: 21469948 [Abstract] [Full Text] [Related]
13. Reconstituted high density lipoprotein mediated targeted co-delivery of HZ08 and paclitaxel enhances the efficacy of paclitaxel in multidrug-resistant MCF-7 breast cancer cells. Zhang F, Wang X, Xu X, Li M, Zhou J, Wang W. Eur J Pharm Sci; 2016 Sep 20; 92():11-21. PubMed ID: 27343697 [Abstract] [Full Text] [Related]
14. PEGylated poly(trimethylene carbonate) nanoparticles loaded with paclitaxel for the treatment of advanced glioma: in vitro and in vivo evaluation. Jiang X, Xin H, Sha X, Gu J, Jiang Y, Law K, Chen Y, Chen L, Wang X, Fang X. Int J Pharm; 2011 Nov 28; 420(2):385-94. PubMed ID: 21920419 [Abstract] [Full Text] [Related]
15. Hyaluronic acid decorated pluronic P85 solid lipid nanoparticles as a potential carrier to overcome multidrug resistance in cervical and breast cancer. Wang F, Li L, Liu B, Chen Z, Li C. Biomed Pharmacother; 2017 Feb 28; 86():595-604. PubMed ID: 28027535 [Abstract] [Full Text] [Related]
16. Comparative colloidal stability, antitumor efficacy, and immunosuppressive effect of commercial paclitaxel nanoformulations. Ye J, Li R, Yang Y, Dong W, Wang Y, Wang H, Sun T, Li L, Shen Q, Qin C, Xu X, Liao H, Jin Y, Xia X, Liu Y. J Nanobiotechnology; 2021 Jul 05; 19(1):199. PubMed ID: 34225762 [Abstract] [Full Text] [Related]
17. Well-Defined Redox-Sensitive Polyethene Glycol-Paclitaxel Prodrug Conjugate for Tumor-Specific Delivery of Paclitaxel Using Octreotide for Tumor Targeting. Yin T, Wu Q, Wang L, Yin L, Zhou J, Huo M. Mol Pharm; 2015 Aug 03; 12(8):3020-31. PubMed ID: 26086430 [Abstract] [Full Text] [Related]
19. Cyclic RGD conjugated poly(ethylene glycol)-co-poly(lactic acid) micelle enhances paclitaxel anti-glioblastoma effect. Zhan C, Gu B, Xie C, Li J, Liu Y, Lu W. J Control Release; 2010 Apr 02; 143(1):136-42. PubMed ID: 20056123 [Abstract] [Full Text] [Related]
20. Pharmacokinetics, biodistribution, efficacy and safety of N-octyl-O-sulfate chitosan micelles loaded with paclitaxel. Zhang C, Qu G, Sun Y, Wu X, Yao Z, Guo Q, Ding Q, Yuan S, Shen Z, Ping Q, Zhou H. Biomaterials; 2008 Mar 02; 29(9):1233-41. PubMed ID: 18093646 [Abstract] [Full Text] [Related] Page: [Next] [New Search]