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中文摘要
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描述(由申请人提供):CD4+ t淋巴细胞表面存在cc趋化因子共受体CCR5是成功感染HIV-1的必要条件。然而,CCR5与其配体CCL3L1的相互作用提供了对HIV-1感染的强大拮抗。越来越多的证据表明,CCL3L1基因拷贝数在不同的个体和种族群体中存在遗传变异。CCL3L1的高基因组拷贝数及其与CCR5的遗传相互作用与HIV-1易感性降低和艾滋病进展缓慢相关。这一发现提出了一种简单、敏感、准确地定量CD4+ t淋巴细胞表面CCR5和CCL3L1分子的可能策略,这可能为评估个体感染HIV-1的风险或易感性提供一种诊断标记。此外,它还可能提供一种预测hiv感染患者疾病进展的预后工具,并可能作为检测未来基于ccr5的抗hiv治疗疗效的替代标记物。本研究的目的是开发一种新的单细胞成像策略,利用荧光金属纳米颗粒作为探针来研究CD4+ t淋巴细胞表面CCR5和CCL3L1分子的数量、分布和相互作用。将CCR5或CCL3L1特异性单克隆抗体(mAb)偶联在荧光金属纳米颗粒上,或先荧光标记,然后结合在没有荧光团的金属纳米颗粒上。已知单克隆抗体结合的金属颗粒具有更强的发射、不同于细胞自身荧光的寿命、更好的光稳定性和较少的光闪烁,将作为荧光成像试剂与靶细胞CCR5和/或CCL3L1在CD4+ T-淋巴细胞表面免疫偶联。通过共聚焦显微镜记录细胞荧光图像,通过单细胞水平细胞图像上的发射强度或寿命估计细胞表面CCR5或CCL3L1的数量和分布。将发展一种合理的统计方法来分析实证数据。结果将通过基因组拷贝数法、流式细胞术和免疫金属电子显微镜图像,以及与表面已知量的CCR5和CCL3L1结合的合成珠的荧光图像进行校准。CCR5和CCL3L1的相互作用将被研究。建立的荧光图像方法将用于研究从快速和缓慢进展的hiv感染者中分离的CD+ t淋巴细胞表面的CCR5和CCL3L1分子,进一步使我们能够评估个体对HIV-1感染的易感性和hiv感染患者疾病进展的相关性。公共卫生相关性:CD4+ t淋巴细胞表面cc趋化因子共受体CCR5的存在是HIV-1感染成功的必要条件。CCR5与它的配体CCL3L1的保护性相互作用抵消了病毒的入侵。越来越多的证据表明,CCR5和CCL3L1的拷贝数与HIV-1感染的个体易感性和HIV感染患者的疾病进展有关。本研究的目的是利用金属等离子体偶联探针(pcp)的单细胞荧光图像,建立一种新的方法来定量和定位CCR5和CCL3L1在细胞表面的靶分子。将CCR5和/或CCL3L1特异性单克隆抗体(mAb)偶联在标记的金属颗粒上,或在与金属颗粒结合之前用荧光团标记。单克隆抗体金属颗粒会与CD4+ t淋巴细胞表面的CCR5或/和CCL3L1结合。共聚焦显微镜将被用来记录荧光强度和寿命图像的标记细胞。CCR5或CCL3L1分子在细胞表面的数量将从单细胞水平的细胞图像中检测到。CCR5和CCL3L1的定量将通过分析模拟模型进行校准,以确保准确性,并使用已知CCR5拷贝数的已建立的CCR5阳性细胞系进一步验证。验证后的方法将与流式细胞术等其他常用方法进行比较,并应用于检测从已确定的快进展和慢进展患者中分离的hiv感染CD4+ t淋巴细胞上CCR5的分子水平及其与CCL3L1的相互作用。
英文摘要
DESCRIPTION (provided by applicant): Presence of the CC-chemokine co-receptors CCR5 on the cell surface of CD4+ T-lymphocytes is necessary for successful HIV-1 infection. However, the interaction of CCR5 by its ligand CCL3L1 provides strong counteraction against HIV-1 infection. Increasing evidence suggests that there is a genetic variability of the CCL3L1 gene copy number among different individuals and racial populations. High genomic copy number of CCL3L1 and its genetic interaction with CCR5 are associated with a reduced susceptibility to HIV-1 and slow progression to AIDS. This finding raises a possible strategy with easy, sensitive, and accurate quantification of CCR5 and CCL3L1 molecules on the surface of CD4+ T-lymphocytes that may provide a diagnostic marker for assessing individual risk or susceptibility to HIV-1 infection. In addition, it may also provide a prognostic tool to predict disease progression of HIV-infected patients and a possible surrogate marker for testing efficacy of future CCR5-based anti-HIV therapies. Objective of this proposal is to develop a new strategy about the single cell imaging using fluorescent metal nanoparticles as probes to investigate the number, distribution, and interaction of CCR5 and CCL3L1 molecules on the surfaces of CD4+ T-lymphocytes. Specific monoclonal antibodies (mAb) to CCR5 or CCL3L1 will be conjugated on the fluorescent metal nanoparticles or first fluorescently labeled and then bound on the metal nanoparticles without fluorophores. The mAb- bound metal particles, which are known to have stronger emission, different lifetime from the cellular autofluorescence, better photostability, and less photoblinking, will be used as fluorescence imaging reagents to immuno-conjugate with the target CCR5 and/or CCL3L1 on the surfaces of CD4+ T- lymphocytes. The cell fluorescence images will be recorded by confocal microscopy, and the number and distribution of CCR5 or CCL3L1 on the cell surfaces will be estimated from the emission intensity or lifetime over the cell images at single cell level. A reasonable statistic approach will be developed to analyze the empirical data. The results will be calibrated with the genomic copy number method, flow cytometry, and immunometal electron microscopy images, as well as the fluorescent images of synthetic beads bound with known amounts of CCR5 and CCL3L1 on surfaces. The interaction of CCR5 and CCL3L1 will be investigated. The established fluorescence images approach will be used to study the CCR5 and CCL3L1 molecules on the surfaces of CD+ T-lymphocytes isolated from the fast and slow disease progressing HIV-infected patients, and furthermore allow us to evaluate individual susceptibility to HIV-1 infection and correlate disease progression of HIV-infected patients. PUBLIC HEALTH RELEVANCE: Presence of the CC-chemokine co-receptors CCR5 on the cell surface of CD4+ T-lymphocytes is necessary for successful HIV-1 infection. The protective interaction of CCR5 by its ligand CCL3L1 counteracts viral invasion. Increasing evidence suggests that copy numbers of CCR5 and CCL3L1 are associated with individual susceptibility to HIV-1 infection and disease progression of HIV- infected patients. Objective of this proposal is to develop a novel approach to quantify and map the target molecules of CCR5 and CCL3L1 on the cell surface by the fluorescence image of single cell using metal plasmon-coupled probes (PCPs). Specific monoclonal antibodies (mAb) to CCR5 and/or CCL3L1 will be conjugated on the labeled metal particles or labeled with the fluorophores before binding to the metal particles. The mAb-metal particles will be bound with the CCR5 or/and CCL3L1 on the surfaces of CD4+ T-lymphocytes. Confocal microscopy will be utilized to record fluorescence intensity and lifetime images of the labeled cells. The amount of the CCR5 or CCL3L1 molecules on the cell surfaces will be detected from the cell images at single cell level. Quantification of CCR5 and CCL3L1 will be calibrated by using an analytic simulation model to ensure accuracy and further validated using established CCR5-positive cell lines with known copy numbers of CCR5. The validated method will be compared with other commonly used methods such as flow cytometric analysis and applied to measure the molecular level of CCR5 and its interaction with CCL3L1 on HIV-infected CD4+ T-lymphocytes isolated from the established fast and slow disease progressing patients.
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Role of Protein Ubiquitination in Sepsis
  • 批准号:
    9551775
  • 项目类别:
  • 资助金额:
    $28.74万
  • 财政年份:
    2017
  • 负责人:
    JIAN ZHANG
  • 依托单位:
NEDD4 IN T HELPER CELL DEVELOPMENT AND AUTOIMMUNITY
  • 批准号:
    9547050
  • 项目类别:
  • 资助金额:
    $51.41万
  • 财政年份:
    2017
  • 负责人:
    JIAN ZHANG
  • 依托单位:
Regulation of Innate Immune System Sensing of C. albicans Infection
  • 批准号:
    9262609
  • 项目类别:
  • 资助金额:
    $1.32万
  • 财政年份:
    2016
  • 负责人:
    JIAN ZHANG
  • 依托单位:
Role of Protein Ubiquitination in Sepsis
  • 批准号:
    9303271
  • 项目类别:
  • 资助金额:
    $5.27万
  • 财政年份:
    2016
  • 负责人:
    JIAN ZHANG
  • 依托单位:
海外基金