Department of Pharmaceutical Technology, Faculty of Chemistry and Pharmacy, University of Regensburg, 93040 Regensburg, Germany.
Department of Pharmaceutical Technology, Faculty of Chemistry and Pharmacy, University of Regensburg, 93040 Regensburg, Germany.
Eur J Pharm Biopharm. 2019 Jun;139:23-32. doi: 10.1016/j.ejpb.2019.03.007. Epub 2019 Mar 7.
Lipid nanocapsules (LNCs) are extensively used as drug carrier systems, due to their small size distribution, biocompatibility and ease of preparation. They are especially useful for lipophilic drugs to overcome physicochemical constraints that limit their efficacy, such as low solubility in aqueous media. The aim of this work was to investigate the relationship between the intracellular availability of poorly soluble drugs delivered via LNCs and their biological efficacy in cells in vitro. Cyclosporin A (CsA) with a logP = 4.3 (Lucangioli et al., 2003) and Itraconazole (It) with a logP = 6.2 (Bhardwaj et al., 2013) served as model lipophilic compounds, as they are highly promising candidates for the treatment of neovascular ocular diseases. Due to their lipophilic properties and the resulting preference for the oily core of LNCs, high encapsulation efficiencies were achieved. Drug-loaded LNCs with particle sizes around 50 nm were grafted with an αvβ3 integrin ligand (RGD) to optimize cellular uptake by human dermal microvascular endothelial cells. Even though RGD-LNCs showed excellent internalization, they exhibited insufficient inhibitory effects in vitro regarding endothelial cell proliferation, vascular endothelial growth factor expression, and tube formation in contrast to free drugs. This loss of efficacy could be explained by negligible intracellular availability of the poorly soluble drugs from LNCs.
脂质纳米胶囊 (LNCs) 因其粒径分布小、生物相容性好和易于制备而被广泛用作药物载体系统。对于脂溶性药物,它们特别有用,可以克服限制其疗效的物理化学限制,例如在水介质中的低溶解度。本工作旨在研究通过 LNCs 递送的疏水性药物的细胞内可用性与其在体外细胞中的生物学功效之间的关系。环孢素 A (CsA) 的 logP 值为 4.3(Lucangioli 等人,2003 年)和伊曲康唑 (It) 的 logP 值为 6.2(Bhardwaj 等人,2013 年)用作模型疏水性化合物,因为它们是治疗新生血管性眼病的很有前途的候选药物。由于其疏水性和对 LNCs 油核的偏好,实现了高包封效率。粒径约为 50nm 的载药 LNCs 接枝了 αvβ3 整合素配体 (RGD),以优化人皮肤微血管内皮细胞的摄取。尽管 RGD-LNCs 表现出出色的内化作用,但与游离药物相比,它们在体外对内皮细胞增殖、血管内皮生长因子表达和管形成的抑制作用不足。这种功效丧失可以用 LNCs 中疏水性药物的细胞内可用性可以忽略不计来解释。