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Multimodal Enzyme Delivery and Therapy Enabled by Cell Membrane-Coated Metal-Organic Framework Nanoparticles

机译:通过细胞膜涂覆的金属 - 有机骨架纳米颗粒使能多峰酶递送和治疗

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Therapeutic enzymes used for genetic disorders or metabolic diseases oftentimes suffer from suboptimal pharmacokinetics and stability. Nanodelivery systems have shown considerable promise for improving the performance of enzyme therapies. Here, we develop a cell membrane-camouflaged metal-organic framework (MOF) system with enhanced biocompatibility and functionality. The MOF core can efficiently encapsulate enzymes while maintaining their bioactivity. After the introduction of natural cell membrane coatings, the resulting nanoformulations can be safely administered in vivo. The surface receptors on the membrane can also provide additional functionalities that synergize with the encapsulated enzyme to target disease pathology from multiple dimensions. Employing uricase as a model enzyme, we demonstrate the utility of this approach in multiple animal disease models. The results support the use of cell membrane-coated MOFs for enzyme delivery, and this strategy could be leveraged to improve the usefulness of enzyme-based therapies for managing a wide range of important human health conditions.
机译:用于遗传疾病或代谢疾病的治疗酶患有次优药代动力学和稳定性。纳米送货系统对提高酶疗法的性能显示了相当大的希望。在这里,我们开发一种具有增强的生物相容性和功能性的细胞膜 - 伪装金属 - 有机框架(MOF)系统。 MOF核心可以有效地封装酶同时保持其生物活性。在引入天然细胞膜涂层之后,可以在体内安全地施用所得的纳米型环族。膜上的表面受体还可以提供与包封酶协同为靶向疾病病理到多个尺寸的额外功能。用尿组作为模型酶,我们证明了这种方法在多种动物疾病模型中的效用。结果支持使用细胞膜涂覆的MOF用于酶递送,并且可以利用该策略来改善基于酶的疗法的有用性,用于管理广泛的重要人类健康状况。

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