课题基金 / 基金详情

Can mannosylated dendrimers inhibit HIV-1 infection of DC-SIGN expressing cells

Can mannosylated dendrimers inhibit HIV-1 infection of DC-SIGN expressing cells
甘露糖化树枝状聚合物能否抑制 DC-SIGN 表达细胞的 HIV-1 感染
批准号:
7230592
负责人:
Cara-Lynne Schengrund
金额:
$18.37万
依托单位国家:
美国
项目类别:
财政年份:
2007
资助国家:
美国
项目状态:
已结题
起止时间:
2007-09-15 至 2009-08-31

项目摘要

项目成果

Cara-Lynne Schengrund的其他基金

相似基金

相关文献

中文摘要
翻译
描述(由申请人提供):在真皮和粘膜组织中发现的树突状细胞(dc)表达凝集素,dc特异性细胞间粘附分子捕获非整合素(DC-SIGN),一种甘露糖结合,钙依赖的凝集素。由于dc存在于粘膜表面,它们是最早暴露于HIV-1的细胞类型之一,它们的细胞表面DC-SIGN通过附着在gp120上的甘露糖残基与HIV-1结合。虽然DC-SIGN介导的结合和摄取被认为在免疫反应中起重要作用,但在某些情况下它会促进病毒感染。它与HIV-1和hiv - 2的相互作用就是一个例子。已经发现DC-SIGN可以结合其他病毒,包括埃博拉病毒、丙型肝炎病毒、巨细胞病毒和登革热病毒,以及不同的细菌。在埃博拉病毒感染DC- sign表达细胞的研究中,发现一种由甘露糖残基衍生的超支化树突状聚合物(树突状聚合物)能够抑制DC凝集素的受体功能。类似的研究还没有针对艾滋病毒进行过。这是一个明显的缺陷,因为甘露糖特异性凝集素被发现可以抑制HIV-1对T淋巴细胞的感染,可能是通过结合甘露糖残基并阻断DC-SIGN与gp120的结合。这些观察结果为甘露糖基化树状大分子也可能抑制HIV感染的假设提供了坚实的基础。本实验旨在确定甘露糖基化树状大分子是否是DC-SIGN的有效配体,如果是,它们是否会抑制DC-SIGN与gp120的相互作用。一旦确定了有效的抑制剂,将进行实验以确定它是否被细胞吸收。如果如预期的那样,甘露糖基化树状大分子是表达DC-SIGN的靶细胞结合rgp120的有效抑制剂,它将为预防HIV-1提供一种新的潜在治疗方法,并将支持多价甘露糖基化化合物可能有效抑制利用DC-SIGN途径的其他病原体相互作用的假设。正是这些可能性使得这项研究值得冒险。
英文摘要
DESCRIPTION (provided by applicant): Dendritic cells (DCs) found in dermal and mucosal tissue express the lectin, DC-specific intercellular adhesion molecule-grabbing nonintegrin (DC-SIGN), a mannose binding, calcium dependent, lectin. Because DCs are found at mucosal surfaces, they are one of the first cell types exposed to HIV-1 and their cell surface DC-SIGN binds it by adhering to mannose residues present on gp120. While binding and uptake mediated by DC-SIGN is considered to play an important role in the immune response, in some instances it facilitates viral infection. Its interaction with HIV-1 and 2 is an example of this. DC-SIGN has been found to bind other viruses including Ebola, hepatitis C virus, cytomegalovirus and Dengue virus, as well as different bacteria. In studies of infection of DC-SIGN expressing cells by Ebola, it was found that a hyperbranched dendritic polymer (dendrimer) derivatized with mannose residues was able to inhibit the receptor function of the DC lectin . Similar studies have not been carried out with HIV. This is a glaring deficit since mannose- specific lectins were found to inhibit infection of T lymphocytes by HIV-1, presumably by binding the mannose residues and blocking DC-SIGN binding to gp120. These observations provide a solid base for the hypothesis that mannosylated dendrimers might inhibit infection by HIV as well. Proposed experiments are designed to determine whether mannosylated dendrimers are effective ligands for DC-SIGN and if so whether they inhibit the interaction of DC-SIGN with gp120. Once an effective inhibitor is identified, experiments will be carried out to determine whether it is taken up by cells. If as anticipated, mannosylated dendrimers are effective inhibitors of the binding of rgp120 by DC-SIGN-expressing target cells, it will provide a new potential therapeutic approach for the prevention of HIV-1, and would support the hypothesis that multivalent mannosylated compounds might be effective at inhibiting the interaction of other pathogens that utilize the DC-SIGN pathway. It is these possibilities that make this research worth the risk.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
Can mannosylated dendrimers inhibit HIV-1 infection of DC-SIGN expressing cells
ROLES(S) OF GLYCOSPHINGOLIPIDS IN NEURAL AIDS
ROLES(S) OF GLYCOSPHINGOLIPIDS IN NEURAL AIDS
ROLES(S) OF GLYCOSPHINGOLIPIDS IN NEURAL AIDS
海外基金