Laboratory of Electrochemistry and PATLAB, National Institute of Research for Electrochemistry and Condensed Matter, 202 Splaiul Independentei Str., 060021, Bucharest-6, Romania.
Faculty of Applied Chemistry and Material Science, Politehnica University of Bucharest, Bucharest, Romania.
Anal Bioanal Chem. 2018 Nov;410(29):7723-7737. doi: 10.1007/s00216-018-1386-y. Epub 2018 Sep 25.
Two stochastic sensors based on the modification of graphite paste with the complexes formed by phthalocyanine (PhCN) with Ni and Cu were designed and used for molecular recognition of IL-8, IL-10, IL-12, and IL-15. The four interleukins were recognized according to their signatures-called t (qualitative parameter) from the diagrams obtained after measurements. The limit of determination for IL-8 was 1 × 10μg mL when both stochastic sensors were used; for IL-10, the determination limit was 4.5 × 10μg mL for the Ni complex-based sensor, and 4.5 × 10μg mL for the Cu complex-based sensor, respectively; for IL-12, the determination limit was 5 × 10μg mL for the Ni complex-based sensor, and 5 × 10μg mL for the Cu complex-based sensor, respectively; while for IL-15, the determination limit was 5 × 10μg/mL for the Ni complex-based sensor, and 5 × 10μg/mL for the Cu complex-based sensor, respectively. The stochastic method used was validated using the following biological fluids: nasal lavage, saliva, serum, and whole blood. Graphical abstract ᅟ.
基于与镍和铜形成的酞菁(PhCN)配合物修饰的石墨糊的两种随机传感器被设计并用于白细胞介素-8(IL-8)、白细胞介素-10(IL-10)、白细胞介素-12(IL-12)和白细胞介素-15(IL-15)的分子识别。根据测量后获得的图谱中的特征(称为 t 值,定性参数)来识别这四种白细胞介素。当使用两种随机传感器时,IL-8 的检测限为 1×10μg mL;对于 Ni 络合物基传感器,IL-10 的检测限为 4.5×10μg mL,对于 Cu 络合物基传感器,检测限为 4.5×10μg mL;对于 Ni 络合物基传感器,IL-12 的检测限为 5×10μg mL,对于 Cu 络合物基传感器,检测限为 5×10μg mL;对于 Ni 络合物基传感器,IL-15 的检测限为 5×10μg mL,对于 Cu 络合物基传感器,检测限为 5×10μg mL。所使用的随机方法使用以下生物流体进行了验证:鼻洗液、唾液、血清和全血。图摘要 ᅟ。