首页> 外文期刊>Biomaterials >The effect of Gd@C82(OH)22 nanoparticles on the release of Th1/Th2 cytokines and induction of TNF-alpha mediated cellular immunity.
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The effect of Gd@C82(OH)22 nanoparticles on the release of Th1/Th2 cytokines and induction of TNF-alpha mediated cellular immunity.

机译:Gd @ C82(OH)22纳米粒子对Th1 / Th2细胞因子释放和TNF-α介导的细胞免疫诱导的影响。

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摘要

It is known that down-regulation of the immune response may be associated with the progenesis, development and prognosis of cancer or infectious diseases. Up-regulating the immune response in vivo is therefore a desirable strategy for clinical treatment. Here we report that poly-hydroxylated metallofullerenol (Gd@C(82)(OH)(22)) has biomedical functions useful in anticancer therapy arising from immunomodulatory effects observed both in vivo and in vitro. We found that metallofullerenol can inhibit the growth of tumors, and shows specific immunomodulatory effects on T cells and macrophages. These effects include polarizing the cytokine balance towards Th1 (T-helper cell type 1) cytokines, decreasing the production of Th2 cytokines (IL-4, IL-5 and IL-6), and increasing the production of Th1 cytokines (IL-2, IFN-gamma and TNF-alpha) in the serum samples. Immune-system regulation by this nanomaterial showed dose-dependent behavior: at a low concentration, Gd@C(82)(OH)(22) nanoparticles slightly affected the activity of immune cells in vitro, while at a high concentration, they markedly enhanced immune responses and stimulated immune cells to release more cytokines, helping eliminate abnormal cells. Gd@C(82)(OH)(22) nanoparticles stimulated T cells and macrophages to release significantly greater quantities of TNF-alpha, which plays a key role in cellular immune processes. Gd@C(82)(OH)(22) nanoparticles are more effective in inhibiting tumor growth in mice than some clinical anticancer drugs but have negligible side effects. The underlying mechanism for high anticancer activity may be attributed to the fact that this water-soluble nanomaterial effectively triggers the host immune system to scavenge tumor cells.
机译:已知免疫应答的下调可能与癌症或传染病的发生,发展和预后有关。因此,体内上调免疫反应是临床治疗的理想策略。在这里我们报告说,多羟基化的金属富勒烯醇(Gd @ C(82)(OH)(22))具有生物医学功能,可用于体内和体外观察到的免疫调节作用,可用于抗癌治疗。我们发现金属富勒烯醇可以抑制肿瘤的生长,并显示出对T细胞和巨噬细胞的特异性免疫调节作用。这些作用包括使细胞因子平衡朝着Th1(T型辅助细胞1型)细胞因子极化,减少Th2细胞因子(IL-4,IL-5和IL-6)的产生以及增加Th1细胞因子(IL-2)的产生,IFN-γ和TNF-α)。这种纳米材料的免疫系统调节表现出剂量依赖性:在低浓度下,Gd @ C(82)(OH)(22)纳米粒子对体外免疫细胞的活性产生轻微影响,而在高浓度下,它们明显增强免疫反应和刺激的免疫细胞释放更多的细胞因子,有助于消除异常细胞。 Gd @ C(82)(OH)(22)纳米粒子刺激T细胞和巨噬细胞释放大量的TNF-α,这在细胞免疫过程中起关键作用。 Gd @ C(82)(OH)(22)纳米粒子在抑制小鼠肿瘤生长方面比某些临床抗癌药物更有效,但副作用可忽略不计。高抗癌活性的潜在机制可能归因于这种水溶性纳米材料有效触发宿主免疫系统清除肿瘤细胞的事实。

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  • 来源
    《Biomaterials》 |2009年第24期|共12页
  • 作者

    Liu Y; Jiao F; Qiu Y;

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