Department of Dermatology, Zhuji Affiliated Hospital of Shaoxing University, Zhuji City, Zhejiang Province 31180, P.R. China.
J Microbiol Biotechnol. 2024 Mar 28;34(3):681-688. doi: 10.4014/jmb.2312.12042. Epub 2024 Feb 19.
The accurate and rapid detection of methicillin-resistance of (SA) holds significant clinical importance. However, the methicillin-resistance detection strategies commonly require complicated cell lysis and gene extraction. Herein, we devised a novel colorimetric approach for the sensitive and accurate identification of methicillin-resistance of SA by combining allosteric probe-based target recognition with self-primer elongation-based target recycling. The PBP2a aptamer in the allosteric probe successfully identified the target MRSA, leading to the initiation of self-primer elongation based-cascade signal amplification. The peroxidase-like hemin/G-quadruplex undergo an isothermal autonomous process that effectively catalyzes the oxidation of ABTS- and produces a distinct blue color, enabling the visual identification of MRSA at low concentrations. The method offers a shorter duration for bacteria cultivation compared to traditional susceptibility testing methods, as well as simplified manual procedures for gene analysis. The overall amplification time for this test is 60 min, and it has a detection limit of 3 CFU/ml. In addition, the approach has exceptional selectivity and reproducibility, demonstrating commendable performance when tested with real samples. Due to its advantages, this colorimetric assay exhibits considerable potential for integration into a sensor kit, thereby offering a viable and convenient alternative for the prompt and on-site detection of MRSA in patients with skin and soft tissue infections.
金黄色葡萄球菌(SA)耐甲氧西林的准确快速检测具有重要的临床意义。然而,耐甲氧西林的检测策略通常需要复杂的细胞裂解和基因提取。在此,我们通过结合变构探针靶标识别和自引物延伸靶标循环,设计了一种用于敏感和准确鉴定 SA 耐甲氧西林的新型比色法。变构探针中的 PBP2a 适体成功识别了目标 MRSA,从而引发了基于自引物延伸的级联信号放大。过氧化物酶样血红素/G-四链体经历等温自主过程,有效地催化 ABTS-的氧化,并产生明显的蓝色,从而可以在低浓度下目视鉴定 MRSA。与传统药敏试验方法相比,该方法缩短了细菌培养时间,简化了基因分析的手动操作。该测试的总扩增时间为 60 分钟,检测限为 3 CFU/ml。此外,该方法具有出色的选择性和重现性,在使用实际样本进行测试时表现出良好的性能。由于其优势,这种比色测定法在集成到传感器套件中具有很大的潜力,从而为皮肤和软组织感染患者中快速和现场检测 MRSA 提供了一种可行且方便的替代方法。