Department of Chemistry, School of Sciences, Gujarat University, Ahmedabad, 380009, India.
Department of Biological Sciences and Bioengineering, Indian Institute of Technology Kanpur, Kanpur, Uttar Pradesh, 208016, India.
Sci Rep. 2022 Oct 12;12(1):17119. doi: 10.1038/s41598-022-21407-w.
Globally 3 billion people are consuming water with moderately high concentrations of fluoride and arsenic. The development of a simple point of care (PoC) device or home device for the detection of fluoride/arsenic ensures safety before consuming water. Till date, lateral flow assay (LFA) based PoC devices can detect nucleic acids, viruses and diseases. An aluminium complex of rhodamine B functionalized oxacalix[4]arene (L) was designed to execute the LFA-based PoC device. Initially, Al and Fe ions were involved in complexation with the rhodamine B functionalized oxacalix[4]arene (L), resulting C (L-Al) and C (L-Fe) complexes respectively. The receptor L, as well as the probes (C, C), were characterized thoroughly using mass spectroscopy, FTIR, NMR, and EA. C and C were further utilized as recyclable probes for the detection of aqueous fluoride (21 ppb) and arsenate (1.92 ppb) respectively. The computational calculation indicates that upon complexation, the spirolactam ring opening at the rhodamine B site leads to optoelectronic changes. The consistency of LFA-based portable sensing device has been tested with water samples, synthetic fluoride standards and dental care products like toothpaste and mouthwash with concentrations ≥ 3 ppm. Moreover, fixed cell imaging experiments were performed to ascertain the in-vitro sensing phenomena.
全球有 30 亿人正在饮用氟和砷含量适中的水。开发一种简单的即时护理(PoC)设备或家庭设备来检测氟/砷,可确保在饮用水之前的安全。迄今为止,基于横向流动分析(LFA)的 PoC 设备可以检测核酸、病毒和疾病。一种罗丹明 B 功能化氧杂杯[4]芳烃(L)的铝配合物被设计用于执行基于 LFA 的 PoC 设备。最初,Al 和 Fe 离子参与与罗丹明 B 功能化氧杂杯[4]芳烃(L)的络合,分别得到 C(L-Al)和 C(L-Fe)配合物。受体 L 以及探针(C、C)都经过了质谱、FTIR、NMR 和 EA 的充分表征。C 和 C 进一步被用作分别检测水氟(21 ppb)和砷酸盐(1.92 ppb)的可回收探针。计算表明,在络合后,罗丹明 B 位的螺环内酰胺开环导致光电变化。已经使用水样、合成氟标准和牙膏和漱口水等牙科护理产品(浓度≥3 ppm)对基于 LFA 的便携式传感设备的一致性进行了测试。此外,还进行了固定细胞成像实验以确定体外传感现象。