Shien Yeoh Tzi, Yusof Hazrina Hamdani, Bukari Bakhtiar A, Tang Thean-Hock, Citartan Marimuthu
Department of Biomedical Science, Advanced Medical & Dental Institute (AMDI), Universiti Sains Malaysia, Bertam, 13200 Kepala Batas, Penang, Malaysia.
School of Medicine, Deakin University, 3216 Geelong, Victoria, Australia.
Bioorg Med Chem. 2023 Mar 1;81:117186. doi: 10.1016/j.bmc.2023.117186. Epub 2023 Feb 2.
Leptospirosis is a potentially life-threatening zoonosis caused by pathogenic Leptospira. The major hurdle of the diagnosis of Leptospirosis lies in the issues associated with current methods of detection, which are time-consuming, tedious and the need for sophisticated, special equipments. Restrategizing the diagnostics of Leptospirosis may involve considerations of the direct detection of the outer membrane protein, which can be faster, cost-saving and require fewer equipments. One such promising marker is LipL32, which is an antigen with high amino acid sequence conservation among all the pathogenic strains. In this study, we endeavored to isolate an aptamer against LipL32 protein via a modified SELEX strategy known as tripartite-hybrid SELEX, based on 3 different partitioning strategies. In this study, we also demonstrated the deconvolution of the candidate aptamers by using in-house Python-aided unbiased data sorting in examining multiple parameters to isolate potent aptamers. We have successfully generated an RNA aptamer against LipL32 of Leptospira, LepRapt-11, which is applicable in a simple direct ELASA for the detection of LipL32. LepRapt-11 can be a promising molecular recognition element for the diagnosis of leptospirosis by targeting LipL32.
钩端螺旋体病是一种由致病性钩端螺旋体引起的潜在致命性人畜共患病。钩端螺旋体病诊断的主要障碍在于当前检测方法存在的问题,这些方法耗时、繁琐且需要精密的特殊设备。重新规划钩端螺旋体病的诊断方法可能需要考虑直接检测外膜蛋白,这种方法可能更快、成本更低且所需设备更少。一种这样有前景的标志物是LipL32,它是一种在所有致病菌株中具有高氨基酸序列保守性的抗原。在本研究中,我们努力通过一种称为三方杂交SELEX的改良SELEX策略,基于3种不同的分区策略,分离出一种针对LipL32蛋白的适体。在本研究中,我们还通过使用内部Python辅助的无偏数据分类来检查多个参数以分离有效的适体,从而证明了候选适体的去卷积。我们成功地生成了一种针对钩端螺旋体LipL32的RNA适体LepRapt - 11,它适用于一种简单的直接ELISA法来检测LipL32。LepRapt - 11通过靶向LipL32可能成为钩端螺旋体病诊断中有前景的分子识别元件。