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地西他滨在增殖条件下对自然杀伤细胞活力、表型和功能具有双相作用。

Decitabine has a biphasic effect on natural killer cell viability, phenotype, and function under proliferative conditions.

机构信息

Division of Pediatrics, The University of Texas MD Anderson Cancer Center, Houston, TX, USA.

出版信息

Mol Immunol. 2013 Jul;54(3-4):296-301. doi: 10.1016/j.molimm.2012.12.012. Epub 2013 Jan 16.

Abstract

DNA hypermethylation resulting in aberrant epigenetic silencing plays an important role in the oncogenesis of many cancer types, including acute myelogenous leukemia (AML).(4) The modulation of NK cell receptors and their cognate ligands is a known mechanism of immune escape in AML, and some membrane proteins, such as killer immunoglobulin-like receptors (KIR), are known to be transcriptionally regulated by DNA methylation of their promoter regions. Thus, restoring proper expression of immunoreceptors or their ligands with immunosensitizing drugs is an attractive approach to improving cancer immunotherapy. The cytidine analog 5-aza-2'-deoxycytidine (decitabine, DAC) has both a hypomethylating effect at low doses when incorporated into DNA and a cytotoxic effect at higher doses as a result of interfering with translation when incorporated into RNA. Thus, decitabine has been used at higher doses for its direct anti-leukemic effect, and is being tested at low doses for its ability to correct the malignant gene expression phenotype. A known benefit of hypomethylating agents is their ability to sensitize AML blasts to lysis by NK cells. However, there is little information on the direct effect of hypomethylating agents on NK cell phenotype, proliferation, survival, or function. We recently described a method for inducing robust proliferation of NK cells, enabling us to study the hypomethylating effects of decitabine. To distinguish direct toxicity of the decitabine from its hypomethylating effect, and promote hypomethylation during proliferation, decitabine was added to human peripheral blood NK cells at concentrations from 0.02 to 5μM under either static or proliferation-inducing culture conditions. After 5 days, NK cells were assessed for viability, proliferation, cytotoxicity, expression of major activating and inhibitory receptors, and global DNA methylation. Increasing concentrations of decitabine not only causes increased expression of KIR and the activating receptor NKp44, but also causes decreased viability, proliferation, and expression of the activating receptor NKG2D. Decitabine treatment results in a biphasic effect in overall NK cell lytic function, which correlates with a biphasic pattern of global hypomethylation. Decitabine affects the expression of activating and inhibitory receptors in NK cells at low concentrations when exposed during cell proliferation. High doses of decitabine decrease NK cell proliferation and viability, likely through direct inhibition of mRNA transcription. The results of these combined effects leads to a biphasic response in hypomethylation and cytotoxicity. This suggests that optimal immunomodulation with decitabine occurs at low dose ranges and that high doses abrogate this effect through inhibition of proliferation and direct toxicity to NK cells.

摘要

DNA 过度甲基化导致表观遗传沉默异常,在多种癌症类型的发生中起重要作用,包括急性髓系白血病(AML)。(4)NK 细胞受体及其配体的调节是 AML 免疫逃逸的已知机制,一些膜蛋白,如杀伤免疫球蛋白样受体(KIR),已知其启动子区域的 DNA 甲基化转录调控。因此,用免疫敏化药物恢复免疫受体或其配体的适当表达是改善癌症免疫治疗的一种有吸引力的方法。胞嘧啶类似物 5-氮杂-2'-脱氧胞苷(地西他滨,DAC)在低剂量时具有低甲基化作用,当掺入 DNA 时,在较高剂量时具有细胞毒性作用,因为掺入 RNA 时会干扰翻译。因此,地西他滨已被用于高剂量以发挥其直接的抗白血病作用,并正在低剂量测试其纠正恶性基因表达表型的能力。低甲基化剂的一个已知益处是它们能够使 AML 细胞对 NK 细胞的裂解敏感。然而,关于低甲基化剂对 NK 细胞表型、增殖、存活或功能的直接影响的信息很少。我们最近描述了一种诱导 NK 细胞强烈增殖的方法,使我们能够研究地西他滨的低甲基化作用。为了区分地西他滨的直接毒性与其低甲基化作用,并在增殖过程中促进低甲基化,在静态或增殖诱导培养条件下,将地西他滨以 0.02 至 5μM 的浓度添加到人外周血 NK 细胞中。5 天后,评估 NK 细胞的活力、增殖、细胞毒性、主要激活和抑制受体的表达以及全基因组甲基化。地西他滨浓度的增加不仅导致 KIR 和激活受体 NKp44 的表达增加,还导致 NK 细胞活力、增殖和激活受体 NKG2D 的表达降低。地西他滨治疗导致 NK 细胞总溶解功能呈双相变化,与全基因组低甲基化呈双相模式相关。地西他滨在细胞增殖过程中暴露于低浓度时会影响 NK 细胞激活和抑制受体的表达。地西他滨的高剂量会降低 NK 细胞的增殖和活力,这可能是通过直接抑制 mRNA 转录。这些综合效应的结果导致低甲基化和细胞毒性呈双相反应。这表明,地西他滨的最佳免疫调节作用发生在低剂量范围内,而高剂量通过抑制增殖和对 NK 细胞的直接毒性来消除这种作用。

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