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用于可靠代谢物检测的仿生等离子体纳米反应器

A Biomimetic Plasmonic Nanoreactor for Reliable Metabolite Detection.

作者信息

Liu Jiangang, Cai Chenlei, Wang Yuning, Liu Yu, Huang Lin, Tian Tongtong, Yao Yuanyuan, Wei Jia, Chen Ruoping, Zhang Kun, Liu Baohong, Qian Kun

机构信息

Department of Neurosurgery Shanghai Children's Hospital Med-X Research Institute and School of Biomedical Engineering Shanghai Jiao Tong University Shanghai 200062 China.

Department of Medical Oncology Shanghai Pulmonary Hospital Tongji University School of Medicine Shanghai 200433 China.

出版信息

Adv Sci (Weinh). 2020 Mar 11;7(10):1903730. doi: 10.1002/advs.201903730. eCollection 2020 May.

Abstract

Reliable monitoring of metabolites in biofluids is critical for diagnosis, treatment, and long-term management of various diseases. Although widely used, existing enzymatic metabolite assays face challenges in clinical practice primarily due to the susceptibility of enzyme activity to external conditions and the low sensitivity of sensing strategies. Inspired by the micro/nanoscale confined catalytic environment in living cells, the coencapsulation of oxidoreductase and metal nanoparticles within the nanopores of macroporous silica foams to fabricate all-in-one bio-nanoreactors is reported herein for use in surface-enhanced Raman scattering (SERS)-based metabolic assays. The enhancement of catalytical activity and stability of enzyme against high temperatures, long-time storage or proteolytic agents are demonstrated. The nanoreactors recognize and catalyze oxidation of the metabolite, and provide ratiometric SERS response in the presence of the enzymatic by-product HO, enabling sensitive metabolite quantification in a "sample in and answer out" manner. The nanoreactor makes any oxidoreductase-responsible metabolite a candidate for quantitative SERS sensing, as shown for glucose and lactate. Glucose levels of patients with bacterial infection are accurately analyzed with only 20 µL of cerebrospinal fluids, indicating the potential application of the nanoreactor in vitro clinical testing.

摘要

生物流体中代谢物的可靠监测对于各种疾病的诊断、治疗和长期管理至关重要。尽管现有酶促代谢物检测方法被广泛使用,但在临床实践中仍面临挑战,主要原因是酶活性易受外部条件影响,且传感策略灵敏度较低。受活细胞中微纳尺度受限催化环境的启发,本文报道了将氧化还原酶和金属纳米颗粒共包封在大孔二氧化硅泡沫的纳米孔内,以制备用于基于表面增强拉曼散射(SERS)的代谢物检测的一体化生物纳米反应器。结果表明,该纳米反应器提高了酶的催化活性以及对高温、长期储存或蛋白水解剂的稳定性。纳米反应器识别并催化代谢物的氧化反应,并在酶促副产物HO存在的情况下提供比率型SERS响应,从而能够以“进样即出结果”的方式对代谢物进行灵敏定量。如对葡萄糖和乳酸的检测所示,该纳米反应器使任何由氧化还原酶负责的代谢物都成为定量SERS传感的候选对象。仅用20微升脑脊液就能准确分析细菌感染患者的葡萄糖水平,这表明该纳米反应器在体外临床检测中具有潜在应用价值。

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