Mohajeri Sahar, Moayedi Saeed, Azimi Leila, Akrami Mohammad, Rad-Malekshahi Mazda, Fazeli Mohammad Reza, Fallah Fatemeh, Haririan Ismaeil
Department of Pharmaceutical Biomaterials, Faculty of Pharmacy, Tehran University of Medical Sciences, Tehran, Iran.
Pediatric Infections Research Center, Research Institute for Children's Health, Shahid Beheshti University of Medical Sciences, Tehran, Iran.
Front Bioeng Biotechnol. 2022 Jul 22;10:957271. doi: 10.3389/fbioe.2022.957271. eCollection 2022.
Streptococcal pharyngitis is mainly caused by (GAS), which if left untreated can lead to rheumatic heart disease. The accurate diagnosis of streptococcal pharyngitis is a challenge for clinicians because several symptoms of streptococcal pharyngitis are similar to viral pharyngitis. There are some commercially available biosensors for the rapid diagnosis of streptococcal pharyngitis. Nevertheless, they are not widely used by physicians, mainly because of their high price and dependence on the instrument. Serotype M1 GAS is the most prevalent cause of streptococcal pharyngitis and binds to H-1 antigen, a sugar code found on oral epithelial cells. Here, we present a nanobiosensor based on aggregation of H-1 antigen-conjugated gold nanoparticles for the rapid, qualitative, and quantitative detection of M1 GAS, which is inspired by the sugar code-lectin interaction. It is noteworthy that M1 GAS was detected in a wide concentration range (1 × 10-1×10 CFU/ml) with a linear response and a short detection time of 20 min. Good reproducibility, easy-to-use, and relatively low production cost are among other attractive features of this nanobiosensor. This work provides a strategic roadmap for developing a new generation of biosensors via targeting the sugar code-lectin interaction in future studies.
链球菌性咽炎主要由A组链球菌(GAS)引起,若不治疗可导致风湿性心脏病。链球菌性咽炎的准确诊断对临床医生来说是一项挑战,因为链球菌性咽炎的一些症状与病毒性咽炎相似。有一些市售的生物传感器可用于快速诊断链球菌性咽炎。然而,它们未被医生广泛使用,主要是因为价格高昂且依赖仪器。M1型GAS是链球菌性咽炎最常见的病因,它与H-1抗原结合,H-1抗原是一种在口腔上皮细胞上发现的糖代码。在此,我们展示了一种基于H-1抗原偶联金纳米颗粒聚集的纳米生物传感器,用于快速、定性和定量检测M1型GAS,其灵感来源于糖代码-凝集素相互作用。值得注意的是,M1型GAS在宽浓度范围(1×10 - 1×10 CFU/ml)内被检测到,具有线性响应且检测时间短,仅20分钟。良好的重现性、易于使用以及相对较低的生产成本是这种纳米生物传感器的其他吸引人的特点。这项工作为未来研究中通过靶向糖代码-凝集素相互作用开发新一代生物传感器提供了战略路线图。