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Ordered Mesoporous Metal-Phenolic Network Particles

机译:有序介孔金属-酚醛网络颗粒

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Mesoporous metal—organic networks have attracted widespread interest owing to their potential applications in diverse fields including gas storage, separations, catalysis, and drug delivery. Despite recent advances, the synthesis of metal-organic networks with large and ordered mesochannels (>20 nm), which are important for loading, separating, and releasing macromolecules, remains a challenge. Herein, we report a templating strategy using sacrificial double cubic network polymer cubosomes (Im3m) to synthesize ordered mesoporous metal—phenolic particles (meso-MPN particles) with a large-pore (~40 nm) single cubic network (Pm3m). We demonstrate that the large-pore network and the phenolic groups in the meso-MPN particles enable high loadings of various proteins (e.g., horseradish peroxidase (HRP), bovine hemoglobin, immunoglobulin G, and glucose oxidase (GOx)), which have different shapes, charges, and sizes (i.e., molecular weights spanning 44—160 kDa). For example, GOx loading in the meso-MPN particles was 362 mg g~(-1), which is ~6-fold higher than the amount loaded in commercially available SiO_2 particles with an average pore size of 50 nm. Furthermore, we show that HRP, when loaded in the meso-MPN particles (486 mg g~(-1)), retained ~82% activity of free HRP in solution and can be recycled at least five times with a minimal (~13%) decrease in HRP activity, which exceeds HRP performance in 50 nm pore SiO_2 particles (~36% retained activity and ~30% activity loss when recycled five times). Considering the wide selection of naturally abundant polyphenols (>8000 species) and metal ions available, the present cubosome-enabled strategy is expected to provide new avenues for designing a range of meso-MPN particles for various applications.
机译:介孔金属有机网络因其在各种领域的潜在应用而引起了广泛的兴趣,包括气体存储,分离,催化和药物输送。尽管有最新进展,但是具有大且有序的介观通道(> 20 nm)的金属有机网络的合成对负载,分离和释放大分子非常重要,仍然是一个挑战。本文中,我们报告了一种使用牺牲性双立方网络聚合物立方体(Im3m)合成具有大孔(〜40 nm)单立方网络(Pm3m)的有序介孔金属-酚醛颗粒(介孔MPN颗粒)的模板化策略。我们证明,中孔MPN颗粒中的大孔网络和酚基能够实现各种蛋白质(例如辣根过氧化物酶(HRP),牛血红蛋白,免疫球蛋白G和葡萄糖氧化酶(GOx))的高负载形状,电荷和大小(即分子量范围为44-160 kDa)。例如,中-MPN颗粒中的GOx负载量为362mg g·(-1),比平均孔径为50nm的市售SiO 2颗粒中负载的量高约6倍。此外,我们表明,当HRP负载在mes-MPN颗粒(486 mg g〜(-1))中时,其在溶液中的游离HRP活性保持〜82%,并且可以最少回收5次(最少13次)。 %)的HRP活性下降,超过了50 nm孔隙SiO_2颗粒中的HRP性能(当循环5次时,保留活性约为36%,活性损失约为30%)。考虑到自然丰富的多酚(> 8000种)和可用的金属离子的广泛选择,目前的支持立方体的策略有望为设计用于各种应用的一系列中观MPN颗粒提供新途径。

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