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.
CAR-T(CAR-T)细胞在血液系统恶性肿瘤中的应用推动了这种免疫治疗形式的显著进展。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:A stem cell epigenome is associated with primary nonresponse to CD19 CAR T cells in pediatric acute lymphoblastic leukemia.
A stem cell epigenome is associated with primary nonresponse to CD19 CAR T cells in pediatric acute lymphoblastic leukemia.
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CD19CAR-T 细胞(CD19-CAR)疗法改变了前B细胞急性淋巴细胞白血病(B-ALL)患者的治疗格局和结局。遗憾的是,约20%的患者会出现原发无应答(PNR)、CD19阳性疾病持续存在以及CD19-CAR同时扩增,且预后不良。部分治疗失败可归因于CD19丢失,但与CD19无关、由白血病本身决定的CD19-CAR耐药机制仍不清楚。研究者假设,PNR白血病与原发敏感(PS)白血病存在差异,且这些差异在治疗前已存在。研究使用多组学方法,分析西雅图儿童医院PLAT-02试验中的14例患者(PNR和PS各7例)。PacBio长读长测序发现,1例PNR患者有47%的CD19转录本发生外显子2跳跃,但其他样本未见CD19转录本异常。表观遗传分析发现,胚胎干细胞中由多梳抑制复合体2(PRC2)靶向的基因存在DNA高甲基化。转座酶可及染色质测序也显示,这些PRC2靶基因的可及性降低;同时,PNR样本中造血干细胞和多谱系祖细胞特征区域的可及性增加。单细胞RNA测序和飞行时间质谱流式分析发现,PNR中存在表达多谱系标志物、抗原呈递能力降低的白血病亚群。
因此,本研究揭示干细胞表观基因组与CD19-CAR原发耐药相关。未来临床试验可纳入这些生物标志物,并考虑使用靶向白血病干细胞或髓系抗原的多特异性CAR-T 细胞,和/或联合表观遗传治疗以破坏这种特殊干细胞表观基因组,从而改善B-ALL患者结局。
CD19 chimeric antigen receptor T-cell therapy (CD19-CAR) has changed the treatment landscape and outcomes for patients with pre-B-cell acute lymphoblastic leukemia (B-ALL). Unfortunately, primary nonresponse (PNR), sustained CD19+ disease, and concurrent expansion of CD19-CAR occur in 20% of the patients and is associated with adverse outcomes. Although some failures may be attributable to CD19 loss, mechanisms of CD19-independent, leukemia-intrinsic resistance to CD19-CAR remain poorly understood.
We hypothesize that PNR leukemias are distinct compared with primary sensitive (PS) leukemias and that these differences are present before treatment.
We used a multiomic approach to investigate this in 14 patients (7 with PNR and 7 with PS) enrolled in the PLAT-02 trial at Seattle Children's Hospital. Long-read PacBio sequencing helped identify 1 PNR in which 47% of CD19 transcripts had exon 2 skipping, but other samples lacked CD19 transcript abnormalities. Epigenetic profiling discovered DNA hypermethylation at genes targeted by polycomb repressive complex 2 (PRC2) in embryonic stem cells.
Similarly, assays of transposase-accessible chromatin-sequencing revealed reduced accessibility at these PRC2 target genes, with a gain in accessibility of regions characteristic of hematopoietic stem cells and multilineage progenitors in PNR. Single-cell RNA sequencing and cytometry by time of flight analyses identified leukemic subpopulations expressing multilineage markers and decreased antigen presentation in PNR.
We thus describe the association of a stem cell epigenome with primary resistance to CD19-CAR therapy. Future trials incorporating these biomarkers, with the addition of multispecific CAR T cells targeting against leukemic stem cell or myeloid antigens, and/or combined epigenetic therapy to disrupt this distinct stem cell epigenome may improve outcomes of patients with B-ALL.
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