金纳米粒子:鼻腔给药的可调特性和潜力

Aida Maaz, I. S. Blagbrough, Paul A. De Bank
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引用次数: 0

摘要

以盐酸多巴胺为还原剂,硝酸银盐(AgNO3)为形状引导剂,通过种子介导法制备纳米金海胆(GNUs)的一般程序。本研究的新颖之处在于成功地将制备的金海胆作为水悬浮液加入鼻腔加压计量吸入器(pMDI)配方中,并研究了其嗅觉靶向直接鼻脑给药(NTBDD)的潜力。所开发的 pMDI 配方由 0.025% w/w GNUs、2% w/w Milli-Q 水和 2% w/w EtOH 组成,其余为 HFA134a 推进剂。使用气溶胶暴露系统对颗粒完整性和气溶胶性能进行了检测,同时在人体鼻腔气道解剖切片复制品中对鼻腔沉积情况进行了检测。本研究还调查了金分散体与鼻腔上皮细胞系 RPMI 2650 的相容性。研究发现,胶体金在 4 °C 下储存 6 个月后,以及在利用果胶基质在水中完全再分散的冻干过程中是稳定的。通过 pMDI 雾化后,GNU 保持完整和离散,在鼻腔最狭窄的区域鼻瓣膜外检测到 13% 的输送颗粒,其中 5.6% 从嗅觉区域回收。此外,还发现该配方与人鼻上皮细胞系 RPMI 2650 兼容,并观察到细胞存活率极高。基于 GNU-HFA 的配制 pMDI 是一种很有前景的鼻内给药方法,包括在嗅觉区域的沉积,可用于 NTBDD 应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Gold Nanoparticles: Tunable Characteristics and Potential for Nasal Drug Delivery
A general procedure to prepare gold nanourchins (GNUs) via a seed-mediated method was followed using dopamine hydrochloride as a reducing agent and silver nitrate salt (AgNO3) as a shape-directing agent. The novelty of this study comes from the successful incorporation of the prepared gold urchins as an aqueous suspension in a nasal pressurized metered dose inhaler (pMDI) formulation and the investigation of their potential for olfactory targeting for direct nose-to-brain drug delivery (NTBDD). The developed pMDI formulation was composed of 0.025% w/w GNUs, 2% w/w Milli-Q water, and 2% w/w EtOH, with the balance of the formulation being HFA134a propellant. Particle integrity and aerosolization performance were examined using an aerosol exposure system, whereas the nasal deposition profile was tested in a sectioned anatomical replica of human nasal airways. The compatibility of the gold dispersion with the nasal epithelial cell line RPMI 2650 was also investigated in this study. Colloidal gold was found to be stable following six-month storage at 4 °C and during the lyophilization process utilizing a pectin matrix for complete re-dispersibility in water. The GNUs were intact and discrete following atomization via a pMDI, and 13% of the delivered particles were detected beyond the nasal valve, the narrowest region in the nasal cavity, out of which 5.6% was recovered from the olfactory region. Moreover, the formulation was found to be compatible with the human nasal epithelium cell line RPMI 2650 and excellent cell viability was observed. The formulated GNU-HFA-based pMDI is a promising approach for intranasal drug delivery, including deposition in the olfactory region, which could be employed for NTBDD applications.
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