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用于顺式二醇分子特异性萃取的结构辅助硼酸植入介孔金属有机框架材料

Structure-Assisted Boronic Acid Implanted Mesoporous Metal-Organic Frameworks for Specific Extraction of cis-Diol Molecules.

作者信息

Dong Jiacheng, Huang Ailan, Wu Tianrun, Chen Yang, Bie Zijun

机构信息

School of Pharmacy, Bengbu Medical University, 2600 Donghai Avenue, Bengbu 233000, China.

Department of Chemistry, Bengbu Medical University, 2600 Donghai Avenue, Bengbu 233000, China.

出版信息

ACS Appl Mater Interfaces. 2024 Jun 12;16(23):29834-29843. doi: 10.1021/acsami.4c03964. Epub 2024 Jun 3.

Abstract

cis-Diol-containing molecules, an essential type of compounds in living organisms, have attracted intensive research interest from various fields. The analysis of cis-diol-containing molecules is still suffering from some drawbacks, including low abundance and abundant interference. Metal-organic frameworks (MOFs) have proven to be an ideal sorbent for sample preparation. However, most of the reported MOFs are mainly restricted to a microporous regime (pore size <2 nm), which greatly limits the application. Herein, a facile strategy is established to construction of boronate affinity MOFs via the postsynthetic ligand-exchange process. Owing to the fact that the ligand-exchange process was assisted by the structural integrity of the primitive metal-organic framework and the great compatibility of click chemistry, the obtained EPBA-PCN-333(Fe) is able to realize the maximum maintaining the porosity and crystallinity of the parent material. Several intriguing features of EPBA-PCN-333(Fe) (e.g., excellent selectivity, efficient diffusion, good accessibility, and size exclusion effect) are experimentally demonstrated via a series of cis-diol-containing molecules with different molecular sizes (small molecules, glycopeptides, and glycoproteins). The binding performance of EPBA-PCN-333(Fe) is evaluated by employing catechol as the test molecule (binding capacity: 0.25 mmol/g, LOD: 200 ng/mL). Finally, the real-world applications of EPBA-PCN-333(Fe) were demonstrated by the detection of nucleosides of human urine samples.

摘要

含顺式二醇的分子是生物体内一类重要的化合物,已引起各个领域的广泛研究兴趣。含顺式二醇分子的分析仍存在一些缺陷,包括丰度低和干扰多。金属有机框架(MOF)已被证明是一种理想的样品制备吸附剂。然而,大多数已报道的MOF主要局限于微孔范围(孔径<2nm),这极大地限制了其应用。在此,通过后合成配体交换过程建立了一种简便的策略来构建硼酸酯亲和MOF。由于配体交换过程得到原始金属有机框架的结构完整性和点击化学的高度兼容性的辅助,所得到的EPBA-PCN-333(Fe)能够最大程度地保持母体材料的孔隙率和结晶度。通过一系列不同分子大小的含顺式二醇分子(小分子、糖肽和糖蛋白),实验证明了EPBA-PCN-333(Fe)的几个有趣特性(例如,优异的选择性、高效的扩散、良好的可及性和尺寸排阻效应)。以邻苯二酚作为测试分子评估了EPBA-PCN-333(Fe)的结合性能(结合容量:0.25 mmol/g,检测限:200 ng/mL)。最后,通过检测人尿液样本中的核苷证明了EPBA-PCN-333(Fe)在实际中的应用。

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