不适合移植的大 B 细胞淋巴瘤二线使用 axicabtagene ciloleucel:ALYCANTE 最终分析
Second-line axicabtagene ciloleucel in large B-cell lymphoma ineligible for transplantation: ALYCANTE final analysis.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Vitamin D Enhances Immune Effector Pathways of NK Cells Thus Providing a Mechanistic Explanation for the Increased Effectiveness of Therapeutic Monoclonal Antibodies.
Vitamin D Enhances Immune Effector Pathways of NK Cells Thus Providing a Mechanistic Explanation for the Increased Effectiveness of Therapeutic Monoclonal Antibodies.
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几种 IFN-α亚型的表达增加可能解释了在补充维生素 D 且其他方面健康的受试者中 NK 细胞 ADCC 增强的现象。其他干扰素产生和 ADCC 的调节因子在代偿中 compensatory 上调,如 Toll 样受体和泛素连接酶,并在维生素 D 补充后恢复正常。
维生素D缺乏的健康个体被补充维生素D至充足水平。在维生素D饱和前后从血液样本中分离NK细胞。对于转录组分析,我们使用了Affymetrix Gene-Chip 2.0™。进行了基因表达分析以及有监督和无监督的通路分析。
其中,补充维生素 D 后“NK 细胞相关细胞毒性通路”等通路增强。5 种 IFN-α 亚型(2、4、6、7 和 10)和 IFN-κ 表达更高,并且主要在这些通路中发挥作用。相反,“干扰素-γ 反应”通路以及细胞因子产生和趋化性中的其他集合则显示减少。Toll 样受体基因(TLR-8、TLR-7、TLR-2)下调,因此是这些通路下降的原因。对于“泛素连接酶”通路也可显示相同情况。
Healthy individuals with vitamin D deficiency were supplemented with vitamin D to sufficient levels. NK cells were isolated from blood samples before and after vitamin D saturation. For transcriptome analysis, we used the Affymetrix Gene-Chip 2.0™. Gene expression analysis as well as supervised and unsupervised pathway analysis were performed.
Among others the "NK cell-associated cytotoxicity pathway" increased after vitamin D substitution. Five IFN-α subtypes (2, 4, 6, 7 and 10) and IFN-κ were more highly expressed and are mainly responsible in these pathways. In contrast, the pathway "interferon-gamma response", as well as other sets in cytokine production and chemotaxis showed a reduction. Toll-like receptor genes (TLR-8, TLR-7, TLR-2) were downregulated and, therefore, are responsible for the decline of these pathways. The same could be shown for the "ubiquitin-ligase" pathway.
Increased expression of several IFN-α subtypes may explain the increased ADCC of NK cells in vitamin D-replenished and otherwise healthy subjects. Other regulators of interferon production and ADCC are compensatory upregulated in compensation, such as Toll-like receptors and those of the ubiquitin ligase, and normalize after vitamin D substitution.
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