Design and characterisation of ZIF-8/alginate composites as drug carrier systems.

Sarah V Dummert, Sylvia Dörschmidt, Theresa Bloehs, Katia Rodewald, Miriam Caviglia, Claudia Schmidt, Mian Zahid Hussain, Julien Warnan, Roland A Fischer, Angela Casini, Romy Ettlinger
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Abstract

Metal-organic frameworks (MOFs) are promising candidates for drug carrier systems due to their high porosity and tuneable structures, however, their clinical translation is restrained. Integrating MOFs into processable matrices improves mechanical properties, processability, and often drug delivery performance. Hydrogels, as soft, three-dimensional polymer networks with high flexibility and biocompatibility, are particularly favourable candidates for advanced MOF-based drug carriers. However, a lack of fundamental material studies limits full exploitation of the potential and hinders further development of such composites. To address this, this study provides a physicochemical investigation of MOF/alginate hydrogels using ZIF-8 as a benchmark MOF and thioflavin T (ThT) as a model drug. A rapid, in situ encapsulation approach enabled the fabrication of ThT@ZIF-8 (14.2 wt% loading), which was incorporated into an alginate matrix (ThT@ZIF-8@Alg) at 95 wt%, putting MOF carrier functionality in a processable form. Characterisation including X-ray diffraction, infrared and diffuse-reflectance UV/Vis spectroscopy, and electron microscopy enabled a detailed investigation of MOF properties in the composite and confirmed its retained structural integrity. Drug release studies of ThT@ZIF-8@Alg closely mirrored the pure MOF's pH-triggered behaviour. Furthermore, by comparing different methods of incorporating ThT in (ZIF-8@)Alg matrices, we demonstrate the versatility of such composites in achieving customisable release profiles. In vitro preliminary studies of the antiproliferative activity of ThT@ZIF-8@Alg in cancerous and non-tumorigenic cells support the idea of sustained controlled release of ThT over 72 h at pH 7.4. This strategy advances MOF-hydrogel-based drug delivery systems, with potential applications in topical treatments and implant coatings.

ZIF-8/海藻酸盐复合载药体系的设计与表征。
金属有机框架(mof)由于其高孔隙度和可调谐结构而成为药物载体系统的有希望的候选者,然而,它们的临床转化受到限制。将mof集成到可加工矩阵中可以提高机械性能、可加工性和药物输送性能。水凝胶是一种柔软的三维聚合物网络,具有很高的柔韧性和生物相容性,是先进的mof基药物载体的理想选择。然而,缺乏基础材料研究限制了充分开发潜力,阻碍了这种复合材料的进一步发展。为了解决这一问题,本研究以ZIF-8为基准MOF,以硫黄素T (ThT)为模型药物,对MOF/海藻酸盐水凝胶进行了理化研究。一种快速的原位封装方法使ThT@ZIF-8 (14.2 wt%负载)的制造成为可能,该方法以95 wt%的重量加入到藻酸盐基质(ThT@ZIF-8@Alg)中,使MOF载体功能处于可加工的形式。表征包括x射线衍射,红外和漫反射紫外/可见光谱,以及电子显微镜,可以详细研究复合材料中的MOF特性,并确认其保留的结构完整性。ThT@ZIF-8@Alg的药物释放研究密切反映了纯MOF的ph触发行为。此外,通过比较将ThT纳入(ZIF-8@)Alg矩阵的不同方法,我们展示了这种复合材料在实现可定制释放剖面方面的多功能性。体外对ThT@ZIF-8@Alg在癌变和非致瘤性细胞中的抗增殖活性的初步研究支持ThT在pH 7.4下持续控制释放72小时的观点。这一策略推进了mof -水凝胶为基础的药物输送系统,在局部治疗和种植体涂层方面具有潜在的应用前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of materials chemistry. B
Journal of materials chemistry. B 化学科学, 工程与材料, 生命科学, 分析化学, 高分子组装与超分子结构, 高分子科学, 免疫生物学, 免疫学, 生化分析及生物传感, 组织工程学, 生物力学与组织工程学, 资源循环科学, 冶金与矿业, 生物医用高分子材料, 有机高分子材料, 金属材料的制备科学与跨学科应用基础, 金属材料, 样品前处理方法与技术, 有机分子功能材料化学, 有机化学
CiteScore
12.00
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