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用于肺部给药的荧光聚乳酸-羟基乙酸共聚物纳米载体:表面电荷的影响

Fluorescent PLGA Nanocarriers for Pulmonary Administration: Influence of the Surface Charge.

作者信息

Areny-Balagueró Aina, Mekseriwattana Wid, Camprubí-Rimblas Marta, Stephany Andrea, Roldan Ariana, Solé-Porta Anna, Artigas Antonio, Closa Daniel, Roig Anna

机构信息

Institut d'Investigació i Innovació Parc Taulí (I3PT), 08208 Sabadell, Spain.

Faculty of Medicine, Universitat Autònoma de Barcelona, 08193 Bellaterra, Spain.

出版信息

Pharmaceutics. 2022 Jul 11;14(7):1447. doi: 10.3390/pharmaceutics14071447.

Abstract

Nearly four million yearly deaths can be attributed to respiratory diseases, prompting a huge worldwide health emergency. Additionally, the COVID-19 pandemic's death toll has surpassed six million, significantly increasing respiratory disease morbidity and mortality rates. Despite recent advances, it is still challenging for many drugs to be homogeneously distributed throughout the lungs, and specifically to reach the lower respiratory tract with an accurate sustained dose and minimal systemic side effects. Engineered nanocarriers can provide increased therapeutic efficacy while lessening potential biochemical adverse reactions. Poly(lactic-co-glycolic acid) (PLGA), a biodegradable polymer, has attracted significant interest as an inhalable drug delivery system. However, the influence of the nanocarrier surface charge and its intratracheal instillation has not been addressed so far. In this study, we fabricated red fluorescent PLGA nanocapsules (NCs)-Cy5/PLGA-with either positive (Cy5/PLGA+) or negative surface charge (Cy5/PLGA-). We report here on their excellent colloidal stability in culture and biological media, and after cryo-storage. Their lack of cytotoxicity in two relevant lung cell types, even for concentrations as high as 10 mg/mL, is also reported. More importantly, differences in the NCs' cell uptake rates and internalization capacity were identified. The uptake of the anionic system was faster and in much higher amounts-10-fold and 2.5-fold in macrophages and epithelial alveolar cells, respectively. The in vivo study demonstrated that anionic PLGA NCs were retained in all lung lobules after 1 h of being intratracheally instilled, and were found to accumulate in lung macrophages after 24 h, making those nanocarriers especially suitable as a pulmonary immunomodulatory delivery system with a marked translational character.

摘要

每年有近400万人死于呼吸系统疾病,这引发了一场全球性的巨大卫生紧急事件。此外,新冠疫情的死亡人数已超过600万,显著提高了呼吸系统疾病的发病率和死亡率。尽管近年来取得了进展,但许多药物要在肺部均匀分布,尤其是以准确的持续剂量到达下呼吸道并使全身副作用最小化,仍然具有挑战性。工程纳米载体可以提高治疗效果,同时减少潜在的生化不良反应。聚乳酸-羟基乙酸共聚物(PLGA)是一种可生物降解的聚合物,作为一种可吸入药物递送系统引起了广泛关注。然而,纳米载体表面电荷及其气管内滴注的影响迄今尚未得到研究。在本研究中,我们制备了具有正(Cy5/PLGA+)或负表面电荷(Cy5/PLGA-)的红色荧光PLGA纳米胶囊(NCs)-Cy5/PLGA。我们在此报告它们在培养物、生物介质以及冷冻保存后的优异胶体稳定性。还报告了它们在两种相关肺细胞类型中即使浓度高达10 mg/mL也没有细胞毒性。更重要的是,我们确定了NCs的细胞摄取率和内化能力存在差异。阴离子系统的摄取更快,摄取量更高——在巨噬细胞和肺泡上皮细胞中分别高出10倍和2.5倍。体内研究表明,阴离子PLGA NCs在气管内滴注1小时后保留在所有肺叶中,并在24小时后在肺巨噬细胞中积累,这使得这些纳米载体特别适合作为具有显著转化特征的肺部免疫调节递送系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/51e1/9322090/6596e15f3128/pharmaceutics-14-01447-g001.jpg

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