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Preparation, in vitro and in vivo evaluation of polymeric nanoparticles based on hyaluronic acidpoly(butyl cyanoacrylate) and D-alpha-tocopheryl polyethylene glycol 1000 succinate for tumor-targeted delivery of morin hydrate
被引:77
作者:
Abbad, Sarra
[1
,2
]
Wang, Cheng
[1
]
Waddad, Ayman Yahia
[1
]
Lv, Huixia
[1
]
Zhou, Jianping
[1
]
机构:
[1] China Pharmaceut Univ, Dept Pharmaceut, Nanjing 210009, Jiangsu, Peoples R China
[2] Abou Bekr Belkaid Univ, Dept Pharm, Tilimsen, Algeria
关键词:
anti-tumor effect;
hyaluronic acid;
TPGS;
morin hydrate;
nanoparticles;
CELL-PENETRATING PEPTIDE;
VITAMIN-E TPGS;
DRUG-DELIVERY;
MIXED MICELLES;
CANCER CELLS;
ASSEMBLED NANOPARTICLES;
INTRACELLULAR DELIVERY;
PHOSPHOLIPID COMPLEX;
COPOLYMER MICELLES;
BLOCK-COPOLYMER;
D O I:
10.2147/IJN.S73971
中图分类号:
TB3 [工程材料学];
学科分类号:
082905 [生物质能源与材料];
摘要:
Herein, we describe the preparation of a targeted cellular delivery system for morin hydrate (MH), based on a low-molecular-weight hyaluronic acid-poly(butyl cyanoacrylate) (HA-PBCA) block copolymer. In order to enhance the therapeutic effect of MH, D-alphatocopheryl polyethylene glycol 1000 succinate (TPGS) was mixed with HA-PBCA during the preparation process. The MH-loaded HA-PBCA "plain" nanoparticle (MH-PNs) and HA-PBCA/TPGS "mixed" nanoparticles (MH-MNs) were concomitantly characterized in terms of loading efficiency, particle size, zeta potential, critical aggregation concentration, and morphology. The obtained MH-PNs and MH-MNs exhibited a spherical morphology with a negative zeta potential and a particle size less than 200 nm, favorable for drug targeting. Remarkably, the addition of TPGS resulted in about 1.6-fold increase in drug-loading. The in vitro cell viability experiment revealed that MH-MNs enhanced the cytotoxicity of MH in A549 cells compared with MH solution and MH-PNs. Furthermore, blank MNs containing TPGS exhibited selective cytotoxic effects against cancer cells without diminishing the viability of normal cells. In addition, the cellular uptake study indicated that MNs resulted in 2.28-fold higher cellular uptake than that of PNs, in A549 cells. The CD44 receptor competitive inhibition and the internalization pathway studies suggested that the internalization mechanism of the nanoparticles was mediated mainly by the CD44 receptors through a clathrin-dependent endocytic pathway. More importantly, MH-MNs exhibited a higher in vivo antitumor potency and induced more tumor cell apoptosis than did MH-PNs, following intravenous administration to S180 tumor-bearing mice. Overall, the results imply that the developed nanoparticles are promising vehicles for the targeted delivery of lipophilic anticancer drugs.
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页码:305 / 320
页数:16
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