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Inside-Out Oriented Choline Phosphate-Based Biomimetic Magnetic Nanomaterials for Precise Recognition and Analysis of C-Reactive Protein

化学 纳米材料 磷酰胆碱 聚合 纳米技术 组合化学 生物物理学 生物化学 有机化学 聚合物 材料科学 生物
作者
Zhiwei Chen,Chendi Zhu,Jiawen Yang,Mengyun Zhang,Jiaming Yuan,Y. R. Shen,Jingwei Zhou,Hao Huang,Dongsheng Xu,Jacques Crommen,Zhengjin Jiang,Qiqin Wang
出处
期刊:Analytical Chemistry [American Chemical Society]
卷期号:95 (6): 3532-3543 被引量:8
标识
DOI:10.1021/acs.analchem.2c05683
摘要

Phospholipid-based materials exhibit great application potential in the fields of chemistry, biology, and pharmaceutical sciences. In this study, an inside-out oriented choline phosphate molecule, 2-{2-(methacryloyloxy)ethyldimethylammonium}ethyl n-butyl phosphate (MBP), was proposed and verified as a novel ligand of C-reactive protein (CRP) to enrich the functionality of these materials. Compared with phosphorylcholine (PC)-CRP interactions, the binding between MBP and CRP was not affected by the reverse position of phosphate and choline groups and even found more abundant binding sites. Thus, high-density MBP-grafted biomimetic magnetic nanomaterials (MBP–MNPs) were fabricated by reversible addition-fragmentation chain transfer polymerization based on thiol-ene click chemistry. The novel materials exhibited multifunctional applications for CRP including purification and ultrasensitive detection. On the one hand, higher specificity, recovery (90%), purity (95%), and static binding capacity (198.14 mg/g) for CRP were achieved on the novel materials in comparison with traditional PC-based materials, and the enriched CRP from patient serum can maintain its structural integrity and bioactivity. On the other hand, the CRP detection method combining G-quadruplex and thioflavin T developed with MBP–MNPs showed a lower detection limit (10 pM) and wider linear range (0.1–50 nM) than most PC-functionalized analytical platforms. Therefore, the inside-out oriented choline phosphate can not only precisely recognize CRP but also be combined with biomimetic nanomaterials to provide high application potential.
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