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A nanoscopic multivalent antigen-presenting carrier for sensitive detection and drug delivery to T Cells

机译:纳米级多价抗原呈递载体,用于灵敏检测和将药物递送至T细胞

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摘要

Both monoclonal T cell-specific antibodies and multivalent major histocompatibility complex proteins are used as diagnostic reagents for T cell-mediated diseases.However,their widespread use as vehicles for drug delivery has been hindered by the lack of versatile methods that couple the targeting potential of these reagents with drugs of clinical relevance.To address this problem,we engineered a multivalent nanoscopic drug carrier that flexibly tethers to a variety of T-cell antigens.Our carriers bound their target T cells specifically and with enhanced sensitivities as compared with free antigen.Additionally,they consistently inhibited the proliferation of the target T cells in vitro and in vivo,whereas drug-free constructs elicited strong stimulation of the target populations.As a result of the flexibility of incorporating multivalent antigen and drug,these carriers have wide potential use as sensitive T-cell detection reagents as well as promising immunostimulatory or immunosuppressive tools.
机译:单克隆T细胞特异性抗体和多价主要组织相容性复合蛋白均被用作T细胞介导疾病的诊断试剂。然而,由于缺乏通用的方法将它们的靶向潜力耦合在一起,阻碍了它们广泛用作药物输送的载体。为了解决这个问题,我们设计了一种多价纳米药物载体,可以灵活地束缚各种T细胞抗原。与游离抗原相比,我们的载体特异性地结合了它们的靶T细胞,并具有更高的敏感性。此外,它们在体外和体内均能持续抑制靶T细胞的增殖,而无药物的构建体则可强烈刺激靶细胞。由于掺入多价抗原和药物的灵活性,这些载体具有广泛的潜在用途作为敏感的T细胞检测试剂以及有希望的免疫刺激或免疫抑制剂ive工具。

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