Yang Liuxuan, Liu Xianbin, Yang Jing, Wang Ke, Ai Zhenghao, Shang Jinlu, Zhou Meiling
Department of Pharmacy, The Affiliated Hospital of Southwest Medical University, Luzhou, China; Department of Clinical Pharmacy, School of Pharmacy, Southwest Medical University, Luzhou, China.
Mianyang Central Hospital, School of Medicine, University of Electronic Science and Technology of China, Mianyang, 621000, China.
Biochem Biophys Res Commun. 2024 Apr 2;702:149649. doi: 10.1016/j.bbrc.2024.149649. Epub 2024 Feb 7.
Acute pancreatitis (AP) is a severe inflammatory condition with a rising incidence and high mortality rates, especially in severe cases. Emodin (ED), known for its potent anti-inflammatory properties, holds promise in addressing AP. However, its clinical application is hindered by limitations such as low bioavailability and insufficient target specificity. Herein, we developed a novel drug delivery system using macrophage membrane-coated UiO-66-NH nanoparticles loaded with ED (MVs-UiO-ED). UiO-66-NH was successfully synthesized and characterized, revealing an octahedral structure with a suitable size distribution. The successful loading of ED onto UiO-66-NH was confirmed by ultraviolet and infrared spectroscopy. Subsequently, MVs-UiO-ED was prepared by coating macrophage membrane-derived vesicles onto UiO-ED, resulting in a biomimetic delivery system. In vitro release studies demonstrated that MVs-UiO-ED exhibited a sustained-release profile, indicating its potential for prolonged drug circulation. An AP mouse model was established to evaluate the therapeutic efficacy of MVs-UiO-ED. Compared with the model group, MVs-UiO-ED significantly reduced serum levels of α-amylase and lipase, two indicators of pancreatitis severity. Furthermore, histopathological examinations revealed that MVs-UiO-ED ameliorated pancreatic tissue damage. This study underscores the potential of MVs-UiO-ED as an effective therapeutic approach for AP.
急性胰腺炎(AP)是一种严重的炎症性疾病,发病率不断上升,死亡率高,尤其是在重症病例中。大黄素(ED)以其强大的抗炎特性而闻名,有望用于治疗AP。然而,其临床应用受到生物利用度低和靶点特异性不足等限制。在此,我们开发了一种新型药物递送系统,即巨噬细胞膜包被的负载ED的UiO-66-NH纳米颗粒(MVs-UiO-ED)。成功合成并表征了UiO-66-NH,其呈现出具有合适尺寸分布的八面体结构。通过紫外和红外光谱证实了ED成功负载到UiO-66-NH上。随后,通过将巨噬细胞膜衍生的囊泡包被在UiO-ED上制备了MVs-UiO-ED,形成了一种仿生递送系统。体外释放研究表明,MVs-UiO-ED呈现出缓释特性,表明其具有延长药物循环的潜力。建立了AP小鼠模型以评估MVs-UiO-ED的治疗效果。与模型组相比,MVs-UiO-ED显著降低了血清中α-淀粉酶和脂肪酶的水平,这两种酶是胰腺炎严重程度的指标。此外,组织病理学检查显示,MVs-UiO-ED改善了胰腺组织损伤。本研究强调了MVs-UiO-ED作为AP有效治疗方法的潜力。