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Multiplexed single cell cytokine secretion assay

Multiplexed single cell cytokine secretion assay
多重单细胞细胞因子分泌测定
批准号:
7109048
负责人:
LAWRENCE Michael KAUVAR
金额:
$61.24万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2004
资助国家:
美国
项目状态:
已结题
起止时间:
2004-06-15 至 2008-08-31

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中文摘要
翻译
描述(由申请人提供):免疫细胞使用信号来协调它们对感染因子的攻击或在危险过去后降低它们的攻击。它们使用的信号是一种叫做细胞因子的蛋白质,大约有25种。在免疫性疾病中,细胞因子可以发出信号或控制对身体的自我导向攻击,因此在自身免疫性疾病中细胞因子受到了很多关注。然而,很少有方法可以查询单个细胞的细胞因子表达,直到现在,还没有办法在从皮肤和其他发炎组织中分离的免疫细胞的小样本上这样做。 Trellis测量单细胞细胞因子表达的方法是捕获单细胞在平坦塑料表面上产生的细胞因子。这些细胞“足迹”可以通过多色纳米级珠子探测,每种珠子类型连接到不同的抗细胞因子抗体。这种方法已经揭示了免疫细胞的语言并不像有时描绘的那样简单。正常样品中免疫细胞的高水平多样性可能在疾病中大大减少,或者正常组织中罕见的细胞类型可能变得显著扩增。这是一个可以用Trellis的CellSpot-CK技术探索的问题。其他问题涉及基于直接探索疾病表现的细胞特征的疾病分期。这些信息应该是非常有用的,在选择治疗方案,这些慢性,进行性疾病,以及监测病人的反应。 在向世界各地的细胞免疫学家介绍CellSpot-CK之前,Trellis需要使用于读取CellSpots的仪器更加强大,更容易使用和更快。这是第二阶段提案的一个具体目标。其他具体目标涉及表征健康和疾病中免疫细胞的细胞因子语言。 CellSpot-CK的成功开发将为研究人员提供一种新的工具,用于了解免疫系统在湿疹,牛皮癣,关节炎和哮喘等许多慢性疾病中的作用。它还将提供一种工具,用于了解免疫细胞如何对正在开发的治疗这些疾病的药物作出反应。从长远来看,它可能提供一个重要的临床“治疗诊断”分析(基于诊断程序的治疗选择)。
英文摘要
DESCRIPTION (provided by applicant): Immune cells use signals to coordinate their attack on an infectious agent or to downgrade their attack after danger has past. The signals that they use are proteins called cytokines, of which there are about 25. During immunological disorders, cytokines can either signal or control a self-directed attack on the body, and therefore much attention has been paid to cytokines during autoimmune conditions. Yet there are few ways to query individual cells for cytokine expression and until now there have been no ways to do so on the small samples of immune cells isolated from skin and other inflamed tissues. Trellis' approach to measuring single cell cytokine expression is to capture the cytokines produced by single cells while they lie on a flat plastic surface. These cell "footprints" can then be probed by multihued nanoscale beads, each bead type linked to a different anti-cytokine antibody. This method has already revealed that the language of immune cells is not as simple as it is sometimes portrayed. The high level of diversity of immune cells in normal samples may be much diminished in disease or cell types that are rare in normal tissue may become significantly amplified. This is one question that can be explored with Trellis' CellSpot-CK technology. Other questions relate to staging disease based on direct exploration of the cellular profiles that underlie disease manifestation. Such information should be very useful in selecting treatment regimens for these chronic, progressive diseases as well as for monitoring patient responses. Before introducing CellSpot-CK to cellular immunologists throughout the world, Trellis will need to make the instrument used to read CellSpots more robust, easier to use, and faster. This is one Specific Aim in this Phase II proposal. The other Specific Aims relate to characterizing the cytokine language of immune cells in both health and disease. The successful development of CellSpot-CK will make available to researchers a new tool for understanding the role of the immune system in many chronic conditions like eczema, psoriasis, arthritis, and asthma. It will also provide a tool to learn how immune cells respond to drugs under development as cures for these diseases. Longer term, it may provide an important clinical "theranostic" assay (therapy selection based on a diagnostic procedure).
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