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Integrated Nanoplasmonic Sensing for Cellular Functional Immunoanalysis Using Human Blood

机译:集成纳米等离子体传感技术用于使用人血进行细胞功能免疫分析

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摘要

Localized surface plasmon resonance (LSPR) nanoplasmonic effects allow for label-free, real-time detection of biomolecule binding events on a nanostructured metallic surface with simple optics and sensing tunability. Despite numerous reports on LSPR bionanosensing in the past, no study thus far has applied the technique for a cytokine secretion assay using clinically relevant immune cells from human blood. Cytokine secretion assays, a technique to quantify intercellular-signaling proteins secreted by blood immune cells, allow determination of the functional response of the donor’s immune cells, thus providing valuable information about the immune status of the donor. However, implementation of LSPR bionanosensing in cellular functional immunoanalysis based on a cytokine secretion assay poses major challenges primarily owing to its limited sensitivity and a lack of sufficient sample handling capability. In this paper, we have developed a label-free LSPR biosensing technique to detect cell-secreted tumor necrosis factor (TNF)-α cytokines in clinical blood samples. Our approach integrates LSPR bionanosensors in an optofluidic platform that permits trapping and stimulation of target immune cells in a microfluidic chamber with optical access for subsequent cytokine detection. The on-chip spatial confinement of the cells is the key to rapidly increasing a cytokine concentration high enough for detection by the LSPR setup, thereby allowing the assay time and sample volume to be significantly reduced. We have successfully applied this approach first to THP-1 cells and then later to CD45 cells isolated directly from human blood. Our LSPR optofluidics device allows for detection of TNF-α secreted from cells as few as 1000, which translates into a nearly 100 times decrease in sample volume than conventional cytokine secretion assay techniques require. We achieved cellular functional immunoanalysis with a minimal blood sample volume (3 μL) and a total assay time 3 times shorter than that of the conventional enzyme-linked immunosorbent assay (ELISA).
机译:局部表面等离振子共振(LSPR)纳米等离激元效应可通过简单的光学器件和感应可调性,对无标记的纳米结构金属表面上的生物分子结合事件进行实时检测。尽管过去有许多关于LSPR生物纳米传感的报道,但迄今为止,尚无研究将这种技术用于人血临床相关免疫细胞的细胞因子分泌测定。细胞因子分泌测定是一种量化血液免疫细胞分泌的细胞间信号蛋白的技术,可以确定供体免疫细胞的功能反应,从而提供有关供体免疫状态的宝贵信息。然而,基于细胞因子分泌测定法在细胞功能免疫分析中实施LSPR生物纳米传感提出了主要挑战,这主要是由于其灵敏度有限和缺乏足够的样品处理能力。在本文中,我们开发了一种无标记的LSPR生物传感技术,用于检测临床血液样本中的细胞分泌肿瘤坏死因子(TNF)-α细胞因子。我们的方法将LSPR生物传感器整合到光流体平台中,该平台允许在微流体腔室中捕获和刺激靶免疫细胞,并通过光学通道进行随后的细胞因子检测。细胞的片上空间限制是快速增加足够高的细胞因子浓度以通过LSPR装置进行检测的关键,从而可以显着减少测定时间和样品量。我们已经成功地将此方法首先应用于THP-1细胞,然后应用于直接从人血中分离的CD45细胞。我们的LSPR光流控设备可检测少至1000个细胞分泌的TNF-α,这意味着样品量的减少是传统细胞因子分泌测定技术所需的近100倍。我们以最小的血液样本量(3μL)实现了细胞功能免疫分析,总检测时间比常规酶联免疫吸附测定(ELISA)缩短了3倍。

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