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一种基于DNA适配体的检测可溶性ST2的分析方法,可溶性ST2是用于监测心力衰竭的一种预后生物标志物。

A DNA aptamer-based assay for the detection of soluble ST2, a prognostic biomarker for monitoring heart failure.

作者信息

Gupta Ankit, Mathew Roshan, Anand Anjali, Bhardwaj Tanu, Singh Aakriti, Singh Krishna, Kumar Amit, Mishra Prakash Ranjan, Sharma Tarun Kumar

机构信息

Aptamer Technology and Diagnostics Laboratory, Multidisciplinary Clinical and Translational Research, Translational Health Science and Technology Institute, Faridabad, Haryana 121001, India.

All India Institute of Medical Sciences (AIIMS), New Delhi, Delhi 110029, India.

出版信息

Int J Biol Macromol. 2024 Jan;256(Pt 1):128295. doi: 10.1016/j.ijbiomac.2023.128295. Epub 2023 Nov 21.

Abstract

Heart failure (HF) is emerging as a leading cause of death worldwide. Estimation of BNP levels is a routine diagnosis in these patients. However, in patients having high body-mass index (BMI), renal disease or in geriatric patients, BNP level is reported to be noisy and leads to incongruous conclusion. Thus, for better risk stratification among heart failure patients, it is imperative to look for a superior biomarker. In recent times, sST2 has shown promise as a biomarker. Identifying such biomarkers in peripheral blood of HF patients, need an affine and selective molecular recognition element. Thus, in the current study an aptamer (sS9_P) against sST2 was identified from an aptamer library. Systematic Evolution of Ligands through Exponential enrichment (SELEX) derived aptamer evinced role of its primer binding domains in maintaining its selectivity. This aptamer candidate demonstrated dissociation constant (Kd) in low nanomolar range, and the Limit of Detection (LOD) was 4 ng. Circular dichroism confirms the formation of complex stem-loop like structure. The well characterized sS9_P aptamer was used in an Aptamer Linked Immobilized Sorbent Assay (ALISA) to detect sST2 level in patients' serum (n = 99). Aptamer sS9_P has shown significant discrimination to differentiate HF patients and healthy volunteers with a reasonable specificity (83 %) with a modest sensitivity of 64 %. While sST-2 antibody has shown poor specificity of ~44% but good sensitivity (87%). The insight obtained from this study indicates that a combination of aptamer and antibody-based assay can be used to design a point-of-care assay for the rapid detection of HF patients in emergency settings.

摘要

心力衰竭(HF)正成为全球主要的死亡原因。BNP水平的测定是这些患者的常规诊断方法。然而,在体重指数(BMI)较高、患有肾脏疾病的患者或老年患者中,BNP水平据报道存在干扰,会导致不一致的结论。因此,为了在心力衰竭患者中进行更好的风险分层,寻找一种更优的生物标志物势在必行。近年来,sST2已显示出作为生物标志物的潜力。在HF患者的外周血中鉴定此类生物标志物,需要一种亲和且选择性的分子识别元件。因此,在本研究中,从适配体文库中鉴定出一种针对sST2的适配体(sS9_P)。通过指数富集的配体系统进化(SELEX)获得的适配体表明其引物结合结构域在维持其选择性方面的作用。该适配体候选物的解离常数(Kd)处于低纳摩尔范围,检测限(LOD)约为4 ng。圆二色性证实形成了复杂的茎环样结构。将表征良好的sS9_P适配体用于适配体连接固定吸附测定(ALISA)以检测患者血清(n = 99)中的sST2水平。适配体sS9_P在区分HF患者和健康志愿者方面表现出显著差异,具有合理的特异性(约83%)和适度的敏感性(约64%)。而sST-2抗体的特异性较差(约44%)但敏感性良好(约87%)。从本研究中获得的见解表明,适配体和基于抗体的测定相结合可用于设计一种即时检测方法,以便在紧急情况下快速检测HF患者。

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