Metal-organic frameworks as anchors for giant unilamellar vesicle immobilization.

Aroosha Faheem, Mason C Lawrence, Gazi A Bushra, M-Vicki Meli, Barry A Blight
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Abstract

Giant unilamellar vesicles (GUVs) are ideal for studying cellular mechanisms due to their cell-mimicking morphology and size. The formation, stability, and immobilization of these vesicles are crucial for drug delivery and bioimaging studies. Separately, metal-organic frameworks (MOFs) are actively researched owing to their unique and varied properties, yet little is known about the interaction between MOFs and phospholipids. This study investigates the influence of the metal-phosphate interface on the formation, size distribution, and stability of GUVs with different lipid compositions. GUVs were electroformed in the presence of a series of MOFs. The results show Al, Zn, Cu, Fe, Zr, and Ca metal centers of MOFs can coordinate to phospholipids on the surface of GUVs, leading to the formation of functional GUV@MOF constructs, with stablilities over 12 hours. Macroscopically, society has seen biology (people, plants, microbes) interacting with inorganic materials regularly. We now explore how microscopic biological models behave in the presence of inorganic constructs. This research opens new avenues for advanced biomedical applications interacting tailored frameworks with liposomes.

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金属有机框架在巨型单层囊泡固定中的锚定作用。
巨型单层囊泡(GUVs)由于其细胞模拟的形态和大小而成为研究细胞机制的理想材料。这些囊泡的形成、稳定性和固定化对于药物传递和生物成像研究至关重要。另外,金属有机骨架(MOFs)由于其独特而多样的性质而受到积极的研究,但其与磷脂的相互作用知之甚少。本研究探讨了金属-磷酸盐界面对不同脂质组成的guv的形成、大小分布和稳定性的影响。在一系列mof存在下电铸guv。结果表明,mof的Al, Zn, Cu, Fe, Zr和Ca金属中心可以与guv表面的磷脂配合,形成功能性GUV@MOF结构,并具有超过12小时的稳定性。从宏观上看,社会已经看到生物(人、植物、微生物)与无机材料有规律地相互作用。我们现在探索微观生物模型在无机结构存在下的行为。这项研究为高级生物医学应用与脂质体相互作用的定制框架开辟了新的途径。
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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
自引率
0.00%
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0
审稿时长
1 months
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