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:YTHDF2 regulates the adriamycin (ADM) resistance in NKTCL by modulating the m6A modification of SLC16A9.
YTHDF2 regulates the adriamycin (ADM) resistance in NKTCL by modulating the m6A modification of SLC16A9.
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我们的研究提供了直接证据,表明 YTHDF2 通过调控 SLC16A9 的 m6A 修饰来调节 NKTCL 中的 ADM 耐药性。靶向 YTHDF2-m6A-SLC16A9 轴可能为克服 NKTCL 中的化疗耐药性提供一种新的治疗策略。
自然杀伤/T细胞淋巴瘤(NKTCL)是一种侵袭性恶性肿瘤,具有高度耐药倾向,尤其是对阿霉素(ADM)等蒽环类药物。NKTCL中ADM耐药的分子机制尚未完全阐明。
本研究旨在阐明YTHDF2在调控SLC16A9 mRNA稳定性中的作用及其在NKTCL的ADM耐药性中的意义。材料与方法:
该研究检测了不同浓度ADM下SLC16A9的表达变化,并通过过表达和敲低操作调控SLC16A9和YTHDF2的表达水平。通过分析m6A修饰水平,揭示YTHDF2通过m6A通路调控SLC16A9表达,从而影响ADM耐药性。该结论通过体内实验进一步验证。
我们的结果表明,SLC16A9 过表达增强了 ADM 耐药性,而敲低 SLC16A9 则增加了对 ADM 的敏感性。进一步研究发现,ADM 处理降低了 SLC16A9 mRNA 上的 m6A 修饰水平,这与 YTHDF2 与 SLC16A9 mRNA 结合减少相关,从而导致 SLC16A9 表达增加。我们还发现,YTHDF2 过表达降低了 SLC16A9 表达并增加了 ADM 敏感性,而敲低 YTHDF2 则产生相反效果。使用裸鼠模型的体内实验进一步证实,敲低 SLC16A9 可减少肿瘤生长并增强对 ADM 的敏感性。
In this study, we aimed to elucidate the role of YTHDF2 in the regulation of SLC16A9 mRNA stability and its implications in ADM resistance in NKTCL. MATERIALS &
The study examined the expression changes of SLC16A9 under varying concentrations of ADM and manipulated the expression levels of SLC16A9 and YTHDF2 through overexpression and knockdown. By analyzing the levels of m6A modification, it was revealed that YTHDF2 regulates SLC16A9 expression via the m6A pathway, thereby influencing ADM resistance. This conclusion was further validated by in vivo experiments.
Our results showed that overexpression of SLC16A9 enhanced ADM resistance, while knockdown of SLC16A9 increased sensitivity to ADM. Further investigation revealed that ADM treatment reduces m6A modification levels on SLC16A9 mRNA, which is associated with decreased binding of YTHDF2 to SLC16A9 mRNA, leading to increased SLC16A9 expression. We also found that overexpression of YTHDF2 reduced SLC16A9 expression and increased ADM sensitivity, whereas knockdown of YTHDF2 had the opposite effect. In vivo experiments using a nude mouse model further confirmed that SLC16A9 knockdown reduces tumor growth and enhances sensitivity to ADM.
our study provides direct evidence that YTHDF2 modulates ADM resistance in NKTCL by regulating the m6A modification of SLC16A9. Targeting the YTHDF2-m6A-SLC16A9 axis may offer a novel therapeutic strategy to overcome chemotherapy resistance in NKTCL.
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