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PUBMED FOR HANDHELDS

Journal Abstract Search


243 related items for PubMed ID: 29882845

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  • 3. α-Tocopherol succinate-modified chitosan as a micellar delivery system for paclitaxel: preparation, characterization and in vitro/in vivo evaluations.
    Liang N, Sun S, Li X, Piao H, Piao H, Cui F, Fang L.
    Int J Pharm; 2012 Feb 28; 423(2):480-8. PubMed ID: 22183133
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  • 4. Co-delivery of paclitaxel and α-tocopherol succinate by novel chitosan-based polymeric micelles for improving micellar stability and efficacious combination therapy.
    Emami J, Rezazadeh M, Rostami M, Hassanzadeh F, Sadeghi H, Mostafavi A, Minaiyan M, Lavasanifar A.
    Drug Dev Ind Pharm; 2015 Feb 28; 41(7):1137-47. PubMed ID: 25019502
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  • 5. Synthesis and characterization of low-toxic amphiphilic chitosan derivatives and their application as micelle carrier for antitumor drug.
    Huo M, Zhang Y, Zhou J, Zou A, Yu D, Wu Y, Li J, Li H.
    Int J Pharm; 2010 Jul 15; 394(1-2):162-73. PubMed ID: 20457237
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  • 7. Supramolecular micellar nanoaggregates based on a novel chitosan/vitamin E succinate copolymer for paclitaxel selective delivery.
    Lian H, Sun J, Yu YP, Liu YH, Cao W, Wang YJ, Sun YH, Wang SL, He ZG.
    Int J Nanomedicine; 2011 Jul 15; 6():3323-34. PubMed ID: 22228999
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  • 8. Tumor-targeting micelles based on folic acid and α-tocopherol succinate conjugated hyaluronic acid for paclitaxel delivery.
    Zhang X, Liang N, Gong X, Kawashima Y, Cui F, Sun S.
    Colloids Surf B Biointerfaces; 2019 May 01; 177():11-18. PubMed ID: 30690425
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  • 10. Polymeric micelles of amphiphilic graft copolymer of α-tocopherol succinate-g-carboxymethyl chitosan for tamoxifen delivery: Synthesis, characterization and in vivo pharmacokinetic study.
    Jena SK, Sangamwar AT.
    Carbohydr Polym; 2016 Oct 20; 151():1162-1174. PubMed ID: 27474667
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  • 11. [Solubilizing and sustained-releasing abilities and safety preliminary evaluation for paclitaxel based on N-octyl-O, N-carboxymethyl chitosan polymeric micelles].
    Huo MR, Zhang Y, Zhou JP, Lü L, Liu H, Liu FJ.
    Yao Xue Xue Bao; 2008 Aug 20; 43(8):855-61. PubMed ID: 18956780
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  • 12. Redox-sensitive self-assembled nanoparticles based on alpha-tocopherol succinate-modified heparin for intracellular delivery of paclitaxel.
    Yang X, Cai X, Yu A, Xi Y, Zhai G.
    J Colloid Interface Sci; 2017 Jun 15; 496():311-326. PubMed ID: 28237749
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  • 13. Synthesis and characterization of chitosan-grafted-polycaprolactone micelles for modulate intestinal paclitaxel delivery.
    Almeida A, Silva D, Gonçalves V, Sarmento B.
    Drug Deliv Transl Res; 2018 Apr 15; 8(2):387-397. PubMed ID: 28116655
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  • 14. Synthesis and characterization of 3,6-O,O'- dimyristoyl chitosan micelles for oral delivery of paclitaxel.
    Silva DS, Almeida A, Prezotti F, Cury B, Campana-Filho SP, Sarmento B.
    Colloids Surf B Biointerfaces; 2017 Apr 01; 152():220-228. PubMed ID: 28113124
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  • 18. Immunosafety and chronic toxicity evaluation of monomethoxypoly(ethylene glycol)-b-poly(lactic acid) polymer micelles for paclitaxel delivery.
    Li C, Shen Y, Sun C, Cheraga N, Tu J.
    Drug Deliv; 2016 Apr 01; 23(3):888-95. PubMed ID: 24901209
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  • 19. Dual Receptor-Targeted and Redox-Sensitive Polymeric Micelles Self-Assembled from a Folic Acid-Hyaluronic Acid-SS-Vitamin E Succinate Polymer for Precise Cancer Therapy.
    Yang Y, Li Y, Chen K, Zhang L, Qiao S, Tan G, Chen F, Pan W.
    Int J Nanomedicine; 2020 Apr 01; 15():2885-2902. PubMed ID: 32425522
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  • 20. [Preparation of paclitaxel-loaded chitosan polymeric micelles and influence of surface charges on their tissue biodistribution in mice].
    Huo MR, Zhou JP, Wei Y, Lü L.
    Yao Xue Xue Bao; 2006 Sep 01; 41(9):867-72. PubMed ID: 17111835
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