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基于双金属有机骨架的无标记电化学生物传感器用于检测癌抗原 19-9。

A label-free electrochemical biosensor based on a bimetallic organic framework for the detection of carbohydrate antigen 19-9.

机构信息

Department of Chemistry, Anhui University, Hefei 230601, China.

出版信息

Anal Methods. 2024 Sep 19;16(36):6173-6182. doi: 10.1039/d4ay01432d.

DOI:10.1039/d4ay01432d
PMID:39189647
Abstract

Carbohydrate antigen 19-9 (CA19-9) is an important marker for pancreatic cancer, ovarian cancer and other tumors, and its rapid and stable detection is the basis for early diagnosis and treatment. In this paper, a label-free electrochemical immunosensor for the sensitive detection of CA19-9 has been developed. First, the synthesis of two novel core-shell bimetallic nanomaterials, namely Ce-MOF-on-Fe-MOF and Fe-MOF-on-Ce-MOF, was accomplished using the MOF-on-MOF approach. The poor electrical conductivity of MOF materials was addressed by incorporating polyethylenimide (PEI) functionalized rGO with Ce-MOF-on-Fe-MOF and Fe-MOF-on-Ce-MOF nanomaterials. Simultaneously, toluidine blue (Tb) was employed as a redox probe and physically adsorbed onto the synthesized materials, resulting in the formation of two nanomaterials: rGO@Ce-MOF-on-Fe-MOF@Tb and rGO@Fe-MOF-on-Ce-MOF@Tb. The fundamental characterization reveals that the sensing performance of the rGO@Ce-MOF-on-Fe-MOF@TB-based immune sensor surpasses that of the rGO@Fe-MOF-on-Ce-MOF@TB-based immune sensor, which is attributed to the fact that, unlike the interlayer-constrained structure of Fe-MOF-on-Ce-MOF, in Ce-MOF-on-Fe-MOF, Ce-MOF penetrates into Fe-MOF to form a heterogeneous structure due to the relatively large pore size of Fe-MOF, which better combines the excellent biocompatibility and strong anchoring effect of Fe MOFs on antibodies, as well as the high electrochemical activity and conductivity of Ce-MOF, to enhance sensing performance. The proposed label-free immunosensor based on rGO@Ce-MOF-on-Fe-MOF@Tb has a wide linear range (1-100 000 mU mL), a low detection limit (0.34 mU mL), good stability, reproducibility, and repeatability, and satisfactory applicability, which provides a potential platform for clinical applications.

摘要

糖链抗原 19-9(CA19-9)是胰腺癌、卵巢癌等肿瘤的重要标志物,其快速稳定的检测是早期诊断和治疗的基础。本文构建了一种用于 CA19-9 灵敏检测的无标记电化学免疫传感器。首先,采用 MOF-on-MOF 方法合成了两种新型核壳双金属纳米材料,Ce-MOF-on-Fe-MOF 和 Fe-MOF-on-Ce-MOF。通过将聚乙二胺功能化的还原氧化石墨烯(rGO)与 Ce-MOF-on-Fe-MOF 和 Fe-MOF-on-Ce-MOF 纳米材料复合,解决了 MOF 材料导电性差的问题。同时,将甲苯胺蓝(Tb)作为氧化还原探针物理吸附在合成材料上,形成两种纳米材料:rGO@Ce-MOF-on-Fe-MOF@Tb 和 rGO@Fe-MOF-on-Ce-MOF@Tb。基础表征结果表明,基于 rGO@Ce-MOF-on-Fe-MOF@Tb 的免疫传感器的传感性能优于基于 rGO@Fe-MOF-on-Ce-MOF@Tb 的免疫传感器,这是因为与 Fe-MOF-on-Ce-MOF 的层间受限结构不同,在 Ce-MOF-on-Fe-MOF 中,Ce-MOF 由于 Fe-MOF 的孔径较大,穿透 Fe-MOF 形成异质结构,更好地结合了 Fe-MOF 对抗体的优异生物相容性和强锚固效应,以及 Ce-MOF 的高电化学活性和导电性,从而增强了传感性能。基于 rGO@Ce-MOF-on-Fe-MOF@Tb 的无标记免疫传感器具有较宽的线性范围(1-100000 mU mL)、较低的检测限(0.34 mU mL)、良好的稳定性、重现性和重复性,以及令人满意的适用性,为临床应用提供了一个潜在的平台。

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