CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Human endogenous retroviruses as epigenetic therapeutic targets in TP53-mutated diffuse large B-cell lymphoma.
Human endogenous retroviruses as epigenetic therapeutic targets in TP53-mutated diffuse large B-cell lymphoma.
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TP53突变(TP53 mut)发生于10-20%的弥漫性大B细胞淋巴瘤(DLBCL)病例中,是DLBCL进展的不良生物标志物。它导致对免疫化疗、大剂量化疗、自体干细胞移植和抗CD19CAR-T 细胞治疗的耐药。靶向治疗TP53 mut在DLBCL治疗中仍是一项重大挑战。
在此,我们评估了667例新诊断DLBCL患者中的TP53 mut,包括576例接受免疫化疗利妥昔单抗、环磷酰胺、多柔比星、长春新碱和泼尼松(R-CHOP)治疗的患者以及91例接受地西他滨联合R-CHOP(DR-CHOP,NCT02951728和NCT04025593)治疗的患者。TP53 mut独立预测R-CHOP治疗的DLBCL预后较差,尽管DR-CHOP治疗可减轻这一影响。在TP53 mut患者中,基因集富集分析显示多个病毒调控通路受到抑制,导致免疫调节受抑。TP53 mut DLBCL表现出甲基转移酶SUV39H1表达增加和H3K9三甲基化(H3K9me3)增强,促进内源性逆转录病毒(ERVs)的抑制和免疫抑制性肿瘤微环境。在TP53 mut DLBCL细胞系中,地西他滨下调SUV39H1,抑制H3K9me3在ERVs上的占据,并触发ERV表达,从而释放干扰素程序及CD4 + T/CD8 + T细胞活化。SUV39H1的分子沉默显著消除了地西他滨诱导的H3K9me3抑制和ERV表达。在TP53 mut患者来源的异种移植模型和TP53 mut患者中,通过SUV39H1-H3K9me3-ERVs轴,使用地西他滨和多柔比星联合治疗改善了抗肿瘤效果。
总体而言,我们的发现突出了TP53突变型DLBCL中的ERV调控回路,以及ERV在表观遗传重编程肿瘤微环境以治疗TP53突变驱动型癌症中的关键作用。
TP53 mutation (TP53 mut ) occurs in 10-20% of diffuse large B-cell lymphoma (DLBCL) cases and serves as an unfavorable biomarker of DLBCL progression. It confers resistance to immunochemotherapy, high-dose chemotherapy, autologous stem cell transplantation, and anti-CD19 chimeric antigen receptor T-cell therapy. Therapeutic targeting of TP53 mut remains a significant challenge in DLBCL treatment.
Here we assessed TP53 mut in 667 patients with newly diagnosed DLBCL, including 576 patients treated with immunochemotherapy rituximab, cyclophosphamide, doxorubicin, vincristine, and prednisone (R-CHOP) and 91 patients with decitabine plus R-CHOP (DR-CHOP, NCT02951728 and NCT04025593). TP53 mut independently predicted an inferior prognosis in R-CHOP-treated DLBCL, although this could be mitigated by DR-CHOP treatment. In TP53 mut patients, multiple viral regulation pathways were repressed, resulting in the inhibition of immune modulation, as revealed by gene set enrichment analysis. TP53 mut DLBCL exhibited increased methyltransferase SUV39H1 expression and H3K9 trimethylation (H3K9me3), contributing to repression of endogenous retroviruses (ERVs) and immunosuppressive tumor microenvironment.
In TP53 mut DLBCL cell lines, decitabine down-regulated SUV39H1, inhibited H3K9me3 occupancy on ERVs, and triggered ERV expression, thereby unleashing interferons program and CD4 + T/CD8 + T cell activation. Molecular silencing of SUV39H1 significantly abrogated decitabine-induced H3K9me3 inhibition and ERV expression.
In TP53 mut patient-derived xenograft models and TP53 mut patients, the anti-tumor effect was improved upon the use of combined treatment of decitabine and doxorubicin via SUV39H1-H3K9me3-ERVs axis. Collectively, our findings highlight an ERV regulatory circuitry in TP53 mut DLBCL and the crucial roles ERVs for epigenetically reprogramming tumor microenvironment for treating TP53 mut -driven cancers.
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