Pharmacological and Diagnostic Research Centre, Faculty of Pharmacy, Al-Ahliyya Amman University, Amman, Jordan.
Department of Pharmaceutical Chemistry, Faculty of Pharmacy, Mutah University, Al-Karak, Jordan.
Biomed Chromatogr. 2023 Nov;37(11):e5716. doi: 10.1002/bmc.5716. Epub 2023 Aug 14.
Chronic wounds have become a major concern for healthcare systems, as they have been related to diabetic foot ulcers, venous leg ulcers and pressure ulcers. Oleuropein is an active compound that is extracted from olive leaves and it has the ability to reduce injury to tissues owing to its antioxidant effect, hence improving wound healing. The poor pharmacokinetics of oleuropein have limited its use clinically. This work is aimed toward studying the impact of PEGylated and non-PEGylated nanoliposomes loaded with oleuropein, as a carrier model, on wound-healing activity. The thin film hydration method was used to compose PEGylated and non-PEGylated liposomes, both loaded with oleuropein. The results indicated that each free, PEGylated and non-PEGylated composition was within the limit of optimum nanoliposome characterization. The results showed that non-PEGylated compositions produced higher efficiency in encapsulation (47.09 ± 10.06%) than the PEGylated ones (20.97 ± 10.52%). The PEG-nanoliposomes loaded with oleuropein (PEG-oleu) had mean size, charge and polydispersity index of 129.35 nm, -9.55 mV and 0.1010, respectively. The scratch assay results proved that PEGylated liposomal compositions have a more rapid wound-healing activity than non-PEGylated ones at different time intervals at 0, 2, 24 and 28 h.
慢性伤口已成为医疗体系的一大关注点,因为它们与糖尿病足溃疡、静脉腿部溃疡和压疮有关。橄榄苦苷是一种从橄榄叶中提取的活性化合物,由于其抗氧化作用,它具有减少组织损伤的能力,从而促进伤口愈合。橄榄苦苷的药代动力学不佳限制了其在临床上的应用。这项工作旨在研究载有橄榄苦苷的 PEG 化和非 PEG 化纳米脂质体作为载体模型对伤口愈合活性的影响。薄膜水化法用于组成载有橄榄苦苷的 PEG 化和非 PEG 化脂质体。结果表明,每种游离、PEG 化和非 PEG 化的组合物都在最佳纳米脂质体特性的范围内。结果表明,非 PEG 化组合物的包封效率(47.09±10.06%)高于 PEG 化组合物(20.97±10.52%)。载有橄榄苦苷的 PEG 纳米脂质体(PEG-oleu)的平均粒径、电荷和多分散指数分别为 129.35nm、-9.55mV 和 0.1010。划痕试验结果证明,在 0、2、24 和 28h 的不同时间间隔内,PEG 化脂质体组合物比非 PEG 化脂质体具有更快的伤口愈合活性。