首页> 美国卫生研究院文献>Pharmaceutics >Enhanced Delivery of Imatinib into Vaginal Mucosa via a New Positively Charged Nanocrystal-Loaded in Situ Hydrogel Formulation for Treatment of Cervical Cancer
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Enhanced Delivery of Imatinib into Vaginal Mucosa via a New Positively Charged Nanocrystal-Loaded in Situ Hydrogel Formulation for Treatment of Cervical Cancer

机译:通过新型带正电荷的纳米晶原位水凝胶制剂增强伊马替尼向阴道粘膜的递送以治疗宫颈癌。

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摘要

The present study was carried out to investigate the potential of cationic functionalization on imatinib nanocrystals to improve the mucoadhesiveness and, thus, delivery to the lesion of cervicovaginal tumors. Amino-group-functionalized imatinib nanocrystals (NC@PDA-NH2) were prepared with near-spheroid shape, nanoscale size distribution, positive zeta potential, and relatively high drug content with the aid of the polydopamine-coating technique. Efficient interaction between NC@PDA-NH2 and mucin was proven by mucin adsorption which was related to the positive zeta-potential value of NC@PDA-NH2 and the change in the size distribution on mixing of NC@PDA-NH2 and mucin. Cellular uptake, growth inhibition, and apoptosis induction in cervicovaginal cancer-related cells demonstrated the superiority of NC@PDA-NH2 over unmodified nanocrystals. For practical intravaginal administration, NC@PDA-NH2 was dispersed in Pluronic F127-based thermosensitive in situ hydrogel, which showed suitable gelation temperature and sustained-release profiles. In comparison with unmodified nanocrystals, NC@PDA-NH2 exhibited extended residence on ex vivo murine vaginal mucosa, prolonged in vivo intravaginal residence, and enhanced inhibition on the growth of murine orthotopic cervicovaginal model tumors indicated by smaller tumor size, longer median survival time, and more intratumor apoptosis with negligible mucosal toxicity. In conclusion, cationic functionalization endowed NC@PDA-NH2 significant mucoadhesiveness and, thus, good potential against cervicovaginal cancer via intravaginal administration.
机译:进行本研究以研究伊马替尼纳米晶体上阳离子功能化改善粘膜粘着性并因此将其递送至宫颈阴道肿瘤的可能性。借助聚多巴胺涂层技术,制备了具有近球形,纳米级尺寸分布,正ζ电位和相对较高药物含量的氨基官能化伊马替尼纳米晶体(NC @ PDA-NH2)。粘蛋白吸附证明了NC @ PDA-NH2与粘蛋白之间的有效相互作用,这与NC @ PDA-NH2的正ζ电位值和NC @ PDA-NH2与粘蛋白混合时粒径分布的变化有关。宫颈阴道癌相关细胞中的细胞摄取,生长抑制和凋亡诱导证明了NC @ PDA-NH2优于未修饰的纳米晶体。对于实际的阴道内给药,将NC @ PDA-NH2分散在基于Pluronic F127的热敏原位水凝胶中,该凝胶具有合适的胶凝温度和缓释曲线。与未修饰的纳米晶体相比,NC @ PDA-NH2在离体小鼠阴道粘膜上的居留时间延长,在体内阴道内居留时间延长,并且对小鼠原位宫颈阴道模型肿瘤生长的抑制作用增强,这表明肿瘤尺寸较小,中位生存时间较长,以及更多的肿瘤内凋亡,黏膜毒性可忽略不计。总之,阳离子功能化赋予NC @ PDA-NH2显着的粘膜粘附性,因此,通过阴道内给药具有抗宫颈阴道癌的良好潜力。

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