卡波波尔涂覆的黏附PLGA纳米颗粒在口腔中持续递送匹罗卡平

V. Valkanioti, A. Kapourani, Melina Chatzitheodoridou, Maria-Emmanouela Anagnostaki, Ioannis Gkougkourelas, K. Kontogiannopoulos, A. Assimopoulou, P. Barmpalexis
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引用次数: 0

摘要

本研究研究研究了一种新的纳米颗粒(NP)制剂,用于局部口腔给药毛果芸香碱(PIL)治疗口腔干燥症,旨在提高患者的依从性并减少副作用。使用聚乳酸(PLGA)作为基质/载体,卡波姆(CRB)作为粘膜粘合剂,以0.05%、0.10%和0.15%w/v的比例制备PIL负载的NP。对纳米颗粒的大小、形态、载药量、热物理和物理化学性质、体外溶出性能和粘膜粘附性进行了表征。在所有情况下都制备了光滑的球形载药NP(200-300nm)。CRB涂层不影响颗粒尺寸或多分散指数(PDI),但增加了NP的负表面电荷。在所有情况下,都获得了良好的储存稳定性、高产量(72.0%-83.7%)和足够的载药效率(9.0%-9.7%)。DSC和pXRD测量证实了无定形药物分散体,而ATR-FTIR研究揭示了基质/载体与粘膜粘合剂之间的强烈分子相互作用。体外药物释放研究显示,所有NP都具有缓释特性,而CRB涂层的应用通过形成静电离子相互作用和与粘蛋白的物理纠缠来增强粘膜粘附性能。一种新的基于PLGA的NP制剂的制备可能是PIL口腔给药的一种有前途的策略,而CRB涂层的使用可以被认为是增强NP粘液粘附的一种有用方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Carbopol coated mucoadhesive PLGA nanoparticles for the sustained delivery of pilocarpine in the buccal cavity
This study investigates a new nanoparticulate (NP) formulation for local buccal administration of pilocarpine (PIL) to treat xerostomia, aiming to improve patient compliance and reduce side effects. PIL-loaded NPs were prepared using poly (d,l-lactic-co-glycolic acid) (PLGA) as a matrix/carrier and carbopol (CRB) as a mucoadhesive agent at various concentrations at ratios of 0.05%, 0.10% and 0.15% w/v. The NPs were characterized in terms of size, morphology, drug loading, thermophysical and physicochemical properties, in vitro dissolution performance, and mucoadhesion. Smooth spherical drug-loaded NPs (200-300 nm) were prepared in all cases. CRB coating did not impact particle size or polydispersity index (PDI) but increased NPs’ negative surface charges. Good storage stability, high production yields (72.0%-83.7%), and adequate drug loading efficiencies (9.0%-9.7%) were achieved, in all cases. DSC and pXRD measurements confirmed the amorphous drug dispersion, while ATR-FTIR studies revealed strong molecular interactions between the matrix/carrier and the mucoadhesive agent. In vitro drug release studies showed sustained release profiles for all NPs, whereas the application of a CRB-coating enhanced mucoadhesion performance through the formation of electrostatic ionic interactions and physical entanglement with mucin. The preparation of a new PLGA-based NP formulation may present itself as a promising strategy for the buccal administration of PIL, while the use of CRB coating could be considered as a useful approach for enhancing the mucus adhesion of NPs.
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