Institut Lavoisier de Versailles, CNRS, UVSQ, Université Paris-Saclay, 78035 Versailles, France.
Faculté de Médecine Simone Veil, Université de Versailles St Quentin, INSERM UMR U1173, 2 Avenue de la Source de la Bièvre, 78180 Montigny le Bretonneux, France.
Int J Mol Sci. 2022 Dec 16;23(24):16067. doi: 10.3390/ijms232416067.
Establishing the rapid and accurate diagnosis of sepsis is a key component to the improvement of clinical outcomes. The ability of analytical platforms to rapidly detect pathogen-associated molecular patterns (PAMP) in blood could provide a powerful host-independent biomarker of sepsis. A novel concept was investigated based on the idea that a pre-bound and fluorescent ligand could be released from lectins in contact with high-affinity ligands (such as PAMPs). To create fluorescent ligands with precise avidity, the kinetically followed TEMPO oxidation of yeast mannan and carbodiimide coupling were used. The chemical modifications led to decreases in avidity between mannan and human collectins, such as the mannan-binding lectin (MBL) and human surfactant protein D (SP-D), but not in porcine SP-D. Despite this effect, these fluorescent derivatives were captured by human lectins using highly concentrated solutions. The resulting fluorescent beads were exposed to different solutions, and the results showed that displacements occur in contact with higher affinity ligands, proving that two-stage competition processes can occur in collectin carbohydrate recognition mechanisms. Moreover, the fluorescence loss depends on the discrepancy between the respective avidities of the recognized ligand and the fluorescent mannan. Chemically modulated fluorescent ligands associated with a diversity of collectins may lead to the creation of diagnostic tools suitable for multiplex array assays and the identification of high-avidity ligands.
建立快速准确的脓毒症诊断是改善临床结果的关键组成部分。分析平台快速检测血液中病原体相关分子模式(PAMP)的能力,可以提供一种强大的宿主非依赖性脓毒症生物标志物。本研究基于这样一种理念,即与高亲和力配体(如 PAMP)接触的凝集素可以释放预先结合的荧光配体,提出了一个新概念。为了创建具有精确亲和力的荧光配体,使用了动力学跟踪的 TEMPO 氧化酵母甘露聚糖和碳二亚胺偶联。化学修饰导致甘露聚糖与甘露聚糖结合凝集素(MBL)和人表面活性剂蛋白 D(SP-D)等人类凝集素之间的亲和力降低,但与人 SP-D 之间的亲和力没有降低。尽管如此,这些荧光衍生物仍被高浓度溶液中的人凝集素捕获。将得到的荧光珠暴露于不同的溶液中,结果表明在与高亲和力配体接触时会发生置换,证明了凝集素碳水化合物识别机制中可以发生两步竞争过程。此外,荧光损失取决于所识别配体和荧光甘露聚糖各自亲和力的差异。与多种凝集素相关的化学调节荧光配体可能会导致创建适合多重阵列分析的诊断工具,并识别高亲和力配体。