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树枝状聚合物-阿霉素缀合物与模型肺上皮细胞的相互作用及其在压力定量吸入器中无共溶剂、假溶液制剂。

The interaction of dendrimer-doxorubicin conjugates with a model pulmonary epithelium and their cosolvent-free, pseudo-solution formulations in pressurized metered-dose inhalers.

机构信息

Department of Chemical Engineering and Materials Science, College of Engineering, Wayne State University, 5050 Anthony Wayne Drive, Detroit, MI 48202, United States; Department of Pharmaceutics, College of Pharmacy, Department of Chemical and Life Science Engineering, Virginia Commonwealth University, Richmond, VA 23298, United States.

Department of Chemical Engineering and Materials Science, College of Engineering, Wayne State University, 5050 Anthony Wayne Drive, Detroit, MI 48202, United States; Institute of Research and Technology, Graduate Program in Industrial Biotechnology, Biomaterials Laboratory, Tiradentes University, Aracaju, SE 49000, Brazil.

出版信息

Eur J Pharm Sci. 2017 Nov 15;109:86-95. doi: 10.1016/j.ejps.2017.07.030. Epub 2017 Jul 31.

Abstract

Oral inhalation (OI) of nano-chemotherapeutics holds great potentials in the treatment of lung cancers as it enables direct targeting of drugs to lung tissues, spatial and temporal control of drug release, and decrease in drug-associated systemic and local lung toxicity. Therefore, the design of chemistry of the nanocarriers and their OI formulations for chemotherapeutics delivery to the peripheral lungs and extrapulmonary tissues of relevance such as lymph nodes, may thus afford new opportunities for treating such relevant diseases. In this work we investigated the effect of polyethylene glycol 1000Da (PEG1000) density and doxorubicin (DOX) payload on the interaction of poly(amidoamine) dendrimer (PAMAM) with an in vitro pulmonary epithelium model (Calu-3). DOX, which was conjugated to the PAMAM through a pH-labile bond, showed a strong time-dependent cell kill against Calu-3 cells due to sustained DOX release. The conjugation of DOX to PEGylated PAMAM dendrimers significantly enhances DOX transport across pulmonary epithelium compared to free drug, with the rate of transport increasing as PEGylation degree increases. Transient interaction of PEGylated dendrimers with cellular junctions of the polarized epithelium as probed by a reduction in transepithelial electrical resistance, faster mucus diffusion, along with reduced cellular internalization compared to the non-PEGylated counterpart promotes transport across the epithelial barrier. A cosolvent free method was developed to formulate PEGylated PAMAM-DOX conjugates in pressurized metered-dose inhalers. The resulting aerosol formulations show a very high final particle fractions (>82%). We further demonstrate that aerodynamic particle size distribution of the nanoconjugates can be tweaked with the addition of a biodegradable lactide-based copolymer, which may help tune lung deposition of PAMAM-DOX conjugates to a specific pulmonary area. The combined results suggest that conjugation to PAMAM dendrimers and their surface modification with PEG1000 can be utilized to modulate the transport of DOX across pulmonary epithelium, and also to easily formulate the conjugates in propellant-based inhalers for pulmonary administration of anticancer therapeutics.

摘要

口服吸入(OI)纳米化疗药物在肺癌治疗中有很大的潜力,因为它可以使药物直接靶向肺部组织,控制药物的时空释放,并降低药物相关的全身和局部肺部毒性。因此,设计纳米载体的化学性质及其 OI 制剂,以将化疗药物递送到外周肺和相关的 extrapulmonary 组织,如淋巴结,可能为治疗这些相关疾病提供新的机会。在这项工作中,我们研究了聚乙二醇 1000Da(PEG1000)密度和阿霉素(DOX)负载量对聚(酰胺-胺)树枝状大分子(PAMAM)与体外肺上皮模型(Calu-3)相互作用的影响。DOX 通过 pH 敏感键与 PAMAM 偶联,由于持续释放 DOX,对 Calu-3 细胞表现出很强的时间依赖性细胞杀伤作用。与游离药物相比,DOX 与 PEG 化 PAMAM 树枝状大分子的偶联显著增强了 DOX 穿过肺上皮的转运,随着 PEG 化程度的增加,转运速率增加。PEG 化树枝状大分子与极化上皮细胞连接的短暂相互作用,如跨上皮电阻的降低、粘液扩散的加快以及与非 PEG 化对应物相比细胞内化的减少,促进了跨上皮屏障的转运。开发了一种无共溶剂的方法,将 PEG 化 PAMAM-DOX 缀合物制成加压计量吸入器中的制剂。所得气溶胶制剂的最终颗粒分数非常高(>82%)。我们进一步证明,通过添加可生物降解的丙交酯基共聚物,可以调整纳米缀合物的空气动力学粒径分布,这可能有助于将 PAMAM-DOX 缀合物的肺部沉积调至特定的肺部区域。综合结果表明,与 PAMAM 树枝状大分子的缀合及其表面的 PEG1000 修饰可用于调节 DOX 穿过肺上皮的转运,并且还可以方便地将缀合物制成基于推进剂的吸入器中,用于肺部递抗癌治疗药物。

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