Analytical Division, Department of Chemistry, Institute of Science, Banaras Hindu University, Varanasi-221005, India.
Analytical Division, Department of Chemistry, Institute of Science, Banaras Hindu University, Varanasi-221005, India.
Biosens Bioelectron. 2018 Jul 15;111:82-89. doi: 10.1016/j.bios.2018.03.068. Epub 2018 Apr 3.
Double layered one-by-one imprinted hollow core-shells@ pencil graphite electrode was fabricated for sequential sensing of anti-HIV drugs. For this, two eccentric layers were developed on the surface of vinylated silica nanospheres to obtain double layered one-by-one imprinted solid core-shells. This yielded hollow core-shells on treatment with hydrofluoric acid. The modified hollow core-shells (single layered dual imprinted) evolved competitive diffusion of probe/analyte molecules. However, the corresponding double layered one-by-one imprinted hollow core-shells (outer layer imprinted with Zidovudine, and inner layer with Lamivudine) were found relatively better owing to their bilateral diffusions into molecular cavities, without any competition. The entire work is based on differential pulse anodic stripping voltammetry at double layered one-by-one imprinted hollow core-shells. This resulted in indirect detection of electro inactive targets with limits of detection as low as 0.91 and 0.12 (aqueous sample), 0.94 and 0.13 (blood serum), and 0.99 and 0.20 ng mL (pharmaceutics) for lamivudine and zidovudine, respectively in anti-HIV drug combination.
双层逐一印迹中空核壳@铅笔状石墨电极用于顺序感测抗 HIV 药物。为此,在乙烯基化硅纳米球的表面上开发了两个偏心层,以获得双层逐一印迹的实心核壳。用氢氟酸处理后,得到了中空核壳。修饰后的中空核壳(单层双重印迹)实现了探针/分析物分子的竞争扩散。然而,相应的双层逐一印迹中空核壳(外层印迹齐多夫定,内层印迹拉米夫定)由于其双侧扩散进入分子腔,没有任何竞争,因此表现相对更好。整个工作基于双层逐一印迹中空核壳的差分脉冲阳极溶出伏安法。这导致了对电非活性靶标的间接检测,检测限低至 0.91 和 0.12(水溶液样品)、0.94 和 0.13(血清)和 0.99 和 0.20 ng mL(药物制剂),分别用于齐多夫定和拉米夫定的抗 HIV 药物组合。