Department of Pharmaceutical Sciences and Experimental Therapeutics, College of Pharmacy, University of Iowa, Iowa City, IA, 52242, USA; Department of Pharmaceutics, Faculty of Pharmacy, Minia University, Minia, 61519, Egypt; Department of Pharmaceutics, Faculty of Pharmacy and Pharmaceutical Manufacturing, Deraya University, New Minia City, Minia, 61768, Egypt.
Department of Pharmaceutical Sciences and Experimental Therapeutics, College of Pharmacy, University of Iowa, Iowa City, IA, 52242, USA.
Biomaterials. 2021 Aug;275:120842. doi: 10.1016/j.biomaterials.2021.120842. Epub 2021 May 1.
Defective cellular metabolism, impaired mitochondrial function, and increased cell death are major problems that adversely affect donor tissues during hypothermic preservation prior to transplantation. These problems are thought to arise from accumulated reactive oxygen species (ROS) inside cells. Oxidative stress acting on the cells of organs and tissues preserved in hypothermic conditions before surgery, as is the case for cornea transplantation, is thought to be a major reason behind cell death prior to surgery and decreased graft survival after transplantation. We have recently discovered that ubiquinol - the reduced and active form of coenzyme Q10 and a powerful antioxidant - significantly enhances mitochondrial function and reduces apoptosis in human donor corneal endothelial cells. However, ubiquinol is highly lipophilic, underscoring the need for an aqueous-based formulation of this molecule. Herein, we report a highly dispersible and stable formulation comprising a complex of ubiquinol and gamma cyclodextrin (γ-CD) for use in aqueous-phase ophthalmic products. Docking studies showed that γ-CD has the strongest binding affinity with ubiquinol compared to α- or β-CD. Complexed ubiquinol showed significantly higher stability compared to free ubiquinol in different aqueous ophthalmic products including Optisol-GS® corneal storage medium, balanced salt solution for intraocular irrigation, and topical Refresh® artificial tear eye drops. Greater ROS scavenging activity was noted in a cell model with high basal metabolism and ROS generation (A549) and in HCEC-B4G12 human corneal endothelial cells after treatment with ubiquinol/γ-CD compared to free ubiquinol. Furthermore, complexed ubiquinol was more effective at lowering ROS, and at far lower concentrations, compared to free ubiquinol. Complexed ubiquinol inhibited lipid peroxidation and protected HCEC-B4G12 cells against erastin-induced ferroptosis. No evidence of cellular toxicity was detected in HCEC-B4G12 cells after treatment with complexed ubiquinol. Using a vertical diffusion system, a topically applied inclusion complex of γ-CD and a lipophilic dye (coumarin-6) demonstrated transcorneal penetrance in porcine corneas and the capacity for the γ-CD vehicle to deliver drug to the corneal endothelium. Using the same model, topically applied ubiquinol/γ-CD complex penetrated the entire thickness of human donor corneas with markedly greater ubiquinol retention in the endothelium compared to free ubiquinol. Lastly, the penetrance of ubiquinol/γ-CD complex was assayed using human donor corneas preserved for 7 days in Optisol-GS® per standard industry practices, and demonstrated higher amounts of ubiquinol retained in the corneal endothelium compared to free ubiquinol. In summary, ubiquinol complexed with γ-CD is a highly stable composition that can be incorporated into a variety of aqueous-phase products for ophthalmic use including donor corneal storage media and topical eye drops to scavenge ROS and protect corneal endothelial cells against oxidative damage.
细胞代谢功能障碍、线粒体功能受损和细胞死亡增加是低温保存供体组织在移植前的主要问题,这些问题被认为是细胞内积累的活性氧(ROS)引起的。在手术前的低温条件下保存的器官和组织的细胞中,氧化应激作用于角膜移植等情况下的细胞,被认为是手术前细胞死亡和移植后移植物存活率下降的主要原因。我们最近发现,泛醇 - 辅酶 Q10 的还原形式和一种强大的抗氧化剂 - 显著增强了人供体角膜内皮细胞的线粒体功能并减少了细胞凋亡。然而,泛醇具有很强的亲脂性,这凸显了这种分子的水性制剂的必要性。在此,我们报告了一种由泛醇和γ-环糊精(γ-CD)组成的复合物的高度分散和稳定的制剂,用于水相眼科产品。对接研究表明,与α-或β-CD 相比,γ-CD 与泛醇具有最强的结合亲和力。与游离泛醇相比,复合泛醇在不同的水性眼科产品中表现出更高的稳定性,包括 Optisol-GS®角膜储存介质、眼内冲洗用平衡盐溶液和局部 Refresh®人工泪液眼药水。在具有高基础代谢和 ROS 生成的细胞模型(A549)和 HCEC-B4G12 人角膜内皮细胞中,用泛醇/γ-CD 处理后,其 ROS 清除活性明显高于游离泛醇。此外,与游离泛醇相比,复合泛醇在更低的浓度下更有效地降低 ROS。复合泛醇抑制脂质过氧化并保护 HCEC-B4G12 细胞免受 erastin 诱导的铁死亡。在 HCEC-B4G12 细胞中,用复合泛醇处理后未检测到细胞毒性的证据。使用垂直扩散系统,亲脂性染料(香豆素-6)的 γ-CD 包合物在猪角膜中表现出角膜穿透性,并具有将药物递送至角膜内皮的 γ-CD 载体的能力。使用相同的模型,局部应用的泛醇/γ-CD 复合物穿透了整个厚度的人供体角膜,与游离泛醇相比,内皮中保留的泛醇明显更多。最后,使用在 Optisol-GS®中保存 7 天的标准行业实践保存的人供体角膜测定了泛醇/γ-CD 复合物的穿透性,并与游离泛醇相比,证明角膜内皮中保留了更多的泛醇。总之,与 γ-CD 结合的泛醇是一种高度稳定的组合物,可以掺入各种水性产品中,用于眼科用途,包括供体角膜储存介质和局部眼药水,以清除 ROS 并保护角膜内皮细胞免受氧化损伤。