2,439
Views
28
CrossRef citations to date
0
Altmetric
Research Article

Hyaluronic acid-modified didecyldimethylammonium bromide/ d-a-tocopheryl polyethylene glycol succinate mixed micelles for delivery of baohuoside I against non-small cell lung cancer: in vitro and in vivo evaluation

, , &
Pages 30-39 | Received 02 Jun 2016, Accepted 22 Aug 2016, Published online: 03 Feb 2017

References

  • Chen Y, Jia X, Tan X, et al. (2009). Absorption and metabolism of flavonoids in Herba Epimedii via rat intestinal perfusion model. Zhongguo Zhong Yao Za Zhi 34:2928–31
  • Chen Y, Zhao YH, Jia XB, Hu M. (2008). Intestinal absorption mechanisms of prenylated flavonoids present in the heat-processed Epimedium koreanum Nakai (Yin Yanghuo). Pharm Res 25:2190–9
  • Choi HJ, Eun JS, Kim DK, et al. (2008). Icariside II from Epimedium koreanum inhibits hypoxia-inducible factor-1alpha in human osteosarcoma cells. Eur J Pharmacol 579:58–65
  • Fang J, Nakamura H, Maeda H. (2011). The EPR effect: unique features of tumor blood vessels for drug delivery, factors involved, and limitations and augmentation of the effect. Adv Drug Deliv Rev 63:136–51
  • Guerry A, Cottaz S, Fleury E, et al. (2014). Redox-stimuli responsive micelles from DOX-encapsulating polycaprolactone-g-chitosan oligosaccharide. Carbohydr Polym 112:746–52
  • Jeong EJ, Liu X, Jia X, et al. (2005). Coupling of conjugating enzymes and efflux transporters: impact on bioavailability and drug interactions . Curr Drug Metab 6:455–68
  • Jin X, Zhang ZH, Sun E, et al. (2012a). Preparation of a nanoscale baohuoside I-phospholipid complex and determination of its absorption: in vivo and in vitro evaluations. Int J Nanomedicine 7:4907–16
  • Jin X, Zhang ZH, Sun E, et al. (2012b). A novel drug-phospholipid complex loaded micelle for baohuoside I enhanced oral absorption: in vivo and in vivo evaluations. Drug Dev Ind Pharm 39:1421–30
  • Kim SH, Ahn KS, Jeong SJ, et al. (2011). Janus activated kinase 2/signal transducer and activator of transcription 3 pathway mediates icariside II-induced apoptosis in U266 multiple myeloma cells. Eur J Pharmacol 1:10–16
  • Koide H, Asai T, Hatanaka K, et al. (2008). Particle size-dependent triggering of accelerated blood clearance phenomenon. Int J Pharm 362:197–200
  • Koide H, Asai T, Kato H, et al. (2012). Size-dependent induction of accelerated blood clearance phenomenon by repeated injections of polymeric micelles. Int J Pharm 432:75–9
  • Kumar CS, Raja MD, Sundar DS, et al. (2015). Hyaluronic acid co-functionalized gold nanoparticle complex for the targeted delivery of metformin in the treatment of liver cancer (HepG2 cells). Carbohydr Polym 128:63–74
  • Kusumoto K, Ishikawa T. (2010). Didodecyldimethylammonium bromide (DDAB) induces caspase-mediated apoptosis in human leukemia HL-60 cells. J Control Release 147:246–52
  • Liu B, Yang M, Li R, et al. (2008). The antitumor effect of novel docetaxel-loaded thermosensitive micelles. Eur J Pharm Biopharm 69:527–34
  • Liu YQ, Yang QX, Cheng MC, Xiao HB. (2014). Synergistic inhibitory effect of Icariside II with Icaritin from Herba Epimedii on pre-osteoclastic RAW264.7 cell growth. Phytomedicine 21:1633–7
  • Martinez-Perez C, Ward C, Cook G, et al. (2014). Novel flavonoids as anti-cancer agents: mechanisms of action and promise for their potential application in breast cancer. Biochem Soc Trans 42:1017–23
  • Orlikova B, Menezes JC, Ji S, et al. (2014). Methylenedioxy flavonoids: assessment of cytotoxic and anti-cancer potential in human leukemia cells. Eur J Med Chem 84:173–80
  • Park JH, Cho HJ, Termsarasab U, et al. (2014). Interconnected hyaluronic acid derivative-based nanoparticles for anticancer drug delivery. Colloids Surf B Biointerfaces 121:380–7
  • Park JS, Yi SW, Kim HJ, Park KH. (2016). Receptor-mediated gene delivery into human mesenchymal stem cells using hyaluronic acid-shielded polyethylenimine/pDNA nanogels. Carbohydr Polym 136:791–802
  • Pooja D, Kulhari H, Singh MK, et al. (2014). Dendrimer-TPGS mixed micelles for enhanced solubility and cellular toxicity of taxanes. Colloids Surf B Biointerfaces 121:461–8
  • Potluri P, Betageri GV. (2006). Mixed-micellar proliposomal systems for enhanced oral delivery of progesterone. Drug Deliv 13:227–32
  • Qi X, Fan Y, He H, Wu Z. (2015). Hyaluronic acid-grafted polyamidoamine dendrimers enable long circulation and active tumor targeting simultaneously. Carbohydr Polym 126:231–9
  • Qian Q, Li SL, Sun E, et al. (2012). Metabolite profiles of icariin in rat plasma by ultra-fast liquid chromatography coupled to triple-quadrupole/time-of-flight mass spectrometry. J Pharm Biomed Anal 66:392–8
  • Rajebahadur M, Zia H, Nues A, Lee C. (2006). Mechanistic study of solubility enhancement of nifedipine using vitamin E TPGS or solutol HS-15. Drug Deliv 13:201–6
  • Ravishankar D, Rajora AK, Greco F, Osborn HM. (2013). Flavonoids as prospective compounds for anticancer therapy. Int J Biochem Cell Biol 45:2821–31
  • Sarika PR, James NR, Kumar PR, et al. (2015). Gum arabic-curcumin conjugate micelles with enhanced loading for curcumin delivery to hepatocarcinoma cells. Carbohydr Polym 134:167–74
  • Song J, Shu L, Zhang Z, et al. (2012). Reactive oxygen species-mediated mitochondrial pathway is involved in Baohuoside I-induced apoptosis in human non-small cell lung cancer. Chem Biol Interact 199:9–17
  • Surace C, Arpicco S, Dufaÿ-Wojcicki A, et al. (2009). Lipoplexes targeting the CD44 hyaluronic acid receptor for efficient transfection of breast cancer cells. Mol Pharm 6:1062–73
  • Tong SW, Xiang B, Dong DW, Qi XR. (2012). Enhanced antitumor efficacy and decreased toxicity by self-associated docetaxel in phospholipid-based micelles. Int J Pharm 434:413–19
  • Tran TH, Choi JY, Ramasamy T, et al. (2014). Hyaluronic acid-coated solid lipid nanoparticles for targeted delivery of vorinostat to CD44 overexpressing cancer cells. Carbohydr Polym 114:407–15
  • Wang AT, Liang DS, Liu YJ, Qi XR. (2015). Roles of ligand and TPGS of micelles in regulating internalization, penetration and accumulation against sensitive or resistant tumor and therapy for multidrug resistant tumors. Biomaterials 53:160–72
  • Witting M, Boreham A, Brodwolf R, et al. (2015). Interactions of hyaluronic acid with the skin and implications for the dermal delivery of biomacromolecules. Mol Pharm 12:1391–401
  • Xiao HH, Fung CY, Mok SK, et al. (2014). Flavonoids from Herba epimedii selectively activate estrogen receptor alpha (ERα) and stimulate ER-dependent osteoblastic functions in UMR-106 cells. J Steroid Biochem Mol Biol 143:141–51
  • Yu X, Tong Y, Han XQ, et al. (2013). Anti-angiogenic activity of Herba Epimedii on zebrafish embryos in vivo and HUVECs in vitro. Phytother Res 27:1368–75
  • Zhai YK, Guo X, Pan YL, et al. (2013). A systematic review of the efficacy and pharmacological profile of Herba Epimedii in osteoporosis therapy. Pharmazie 68:713–22
  • Zhang H, Zhao L, Chu L, et al. (2014). Preparation, optimization, characterization and cytotoxicity in vitro of Baicalin-loaded mixed micelles. J Colloid Interface Sci 434:40–7
  • Zhang ZP, Tan SW, Feng SS. (2012). Vitamin E TPGS as a molecular biomaterial for drug delivery. Biomaterials 33:4889–906