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:Reference gene selection for clinical chimeric antigen receptor T-cell product vector copy number assays.
Reference gene selection for clinical chimeric antigen receptor T-cell product vector copy number assays.
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参考基因是液滴数字聚合酶链反应(ddPCR)等临床检测的重要组成部分,这些检测用于测量整合到基因工程细胞中的载体拷贝数,以及临床细胞治疗中使用的重编程细胞中质粒的丢失。选择参考基因时应谨慎,因为已发现不同个体之间基因组片段的拷贝数可能存在数千种变异。此外,在同一个人体内,在癌症和其他增殖性疾病的背景下,患病者与健康人细胞之间基因组的大部分区域也可能存在拷贝数差异。本研究的目的是鉴定可用于使用ddPCR对转导的CAR-T 细胞进行拷贝数变异分析以及用于诱导多能干细胞中质粒丢失分析的参考基因。
我们使用癌症基因组图谱(TCGA)来评估候选参考基因。如果TCGA发现某个候选基因在癌症中具有低拷贝数变异,则使用ddPCR测量该潜在参考基因在健康受试者、癌细胞系以及急性淋巴细胞白血病、淋巴瘤、多发性骨髓瘤和人乳头瘤病毒相关癌症患者细胞中的拷贝数。
除了我们一直在拷贝数检测中使用的 rPP30 基因外,我们还利用 TCGA 评估了另外三个候选参考基因,该分析发现,在我们机构目前正在用细胞疗法治疗的所有癌细胞类型中,这四个基因区域(AGO1、AP3B1、MKL2 和 rPP30)均未发生扩增或缺失。通过 ddPCR 测得的 AP3B1、AGO1、rPP30 和 MKL2 基因拷贝数在健康受试者的细胞之间相似。我们发现 AGO1 在一些临床样本中存在拷贝数改变,而通过 ddPCR 测得的 AP3B1、MKL2 和 rPP30 基因拷贝数在我们机构目前正在用基因工程 T 细胞疗法治疗的那些癌细胞类型患者的细胞之间相似。
根据我们目前的结果,AP3B1、MKL2和rPP30这三个基因适合作为参考基因,用于检测急性白血病、淋巴瘤、多发性骨髓瘤和人类乳头瘤病毒相关癌症患者产生的CAR-T 细胞中载体拷贝数的测定。我们将在未来的样本中继续评估AGO1。
We used The Cancer Genome Atlas (TCGA) to evaluate candidate reference genes. If TCGA found a candidate gene to have low copy number variance in cancer, ddPCR was used to measure the copy numbers of the potential reference gene in cells from healthy subjects, cancer cell lines and patients with acute lymphocytic leukemia, lymphoma, multiple myeloma and human papillomavirus-associated cancers.
In addition to the rPP30 gene, which we have has been using in our copy number assays, three other candidate reference genes were evaluated using TCGA, and this analysis found that none of the four gene regions (AGO1, AP3B1, MKL2 and rPP30) were amplified or deleted in all of the cancer cell types that are currently being treated with cellular therapies by our facility. The number of copies of the genes AP3B1, AGO1, rPP30 and MKL2 measured by ddPCR was similar among cells from healthy subjects. We found that AGO1 had copy number alteration in some of the clinical samples, and the number of copies of the genes AP3B1, MKL2 and rPP30 measured by ddPCR was similar among cells from patients with the cancer cell types that are currently being treated with genetically engineered T-cell therapies by our facility.
Based on our current results, the three genes, AP3B1, MKL2 and rPP30, are suitable for use as reference genes for assays measuring vector copy number in chimeric antigen receptor T cells produced from patients with acute leukemia, lymphoma, multiple myeloma and human papillomavirus-associated cancers. We will continue to evaluate AGO1 on our future samples.
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