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:Do we need B7-H3 immunohistochemistry for the inclusion of children with high-grade central nervous system tumors in clinical trials targeting B7-H3?
Do we need B7-H3 immunohistochemistry for the inclusion of children with high-grade central nervous system tumors in clinical trials targeting B7-H3?
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我们迄今在最大的 pHG-CNS 肿瘤样本集中开展的 B7-H3 表达研究显示,患者间存在显著差异,并有大量阴性病例。
儿童高级别中枢神经系统(pHG-CNS)肿瘤是儿童癌症相关死亡的首要原因之一,部分原因是其对标准治疗应答不佳。研究报道B7-H3在pHG-CNS肿瘤中表达,使靶抗原治疗(包括抗B7-H3CAR-T 细胞[CAR-T]疗法)具有潜力。然而,CNS肿瘤不同患者间蛋白表达差异明显,哪些患者可能获益尚不清楚。因此,本研究在大型pHG-CNS肿瘤队列中评估B7-H3表达。
回顾性分析Princess Máxima儿科肿瘤中心的136例pHG-CNS肿瘤,包括胚胎性肿瘤44例、高级别神经上皮肿瘤4例、室管膜瘤30例和高级别胶质瘤58例。检测编码B7-H3的CD276 mRNA及B7-H3免疫组化(IHC)蛋白表达,并与临床及分子数据进行关联分析。
不同肿瘤类型之间及同一类型内部的B7-H3 mRNA和蛋白表达均存在很大差异。许多肿瘤表达B7-H3,但30%的H3K27改变型弥漫性中线胶质瘤和A型后颅窝室管膜瘤无表达或仅有极低表达。该差异与患者年龄、肿瘤位置、表观遗传亚类或分子驱动因素无关。B7-H3阴性病例中肿瘤细胞比例较高,排除了因肿瘤细胞占比低导致染色阴性的解释。
迄今最大规模pHG-CNS肿瘤队列的研究显示,B7-H3表达存在显著个体差异,且有不少阴性病例。研究提示,应在B7-H3靶向治疗试验(包括CAR-T 试验)入组时获取肿瘤组织,以全面评估IHC B7-H3表达的生物标志物价值,最终实现更个体化的治疗。
Pediatric high-grade central nervous system (pHG-CNS) tumors are the leading cause of childhood cancer-related deaths, partly due to poor response to standard treatments. B7-H3 is reportedly expressed in pHG-CNS tumors, making antigen-targeting therapies, including anti-B7-H3 chimeric antigen receptor T-cell (CAR-T) therapy, promising. However, given substantial inter-tumoral protein expression diversity in CNS tumors, it's unclear which patients might benefit from these treatments. Therefore, we studied B7-H3 expression in a large set of pHG-CNS tumors.
We retrospectively analyzed 136 pHG-CNS tumors (embryonal tumors (n = 44), high-grade neuroepithelial tumors (n = 4), ependymomas (n = 30),high-grade gliomas (HGGs, n = 58)) from the Princess M xima Center for Pediatric Oncology. CD276 mRNA (encoding B7-H3) and immunohistochemical (IHC) protein expression of B7-H3 was measured and correlated to clinical-molecular data.
Large variability of B7-H3 mRNA and protein expression was observed both between and within tumor types. Many tumors expressed B7-H3, but 30% of diffuse midline glioma H3K27-altered and ependymomas posterior fossa type A showed no or minimal expression. This variability was unrelated to patient age, tumor location, epigenetic subclass, or molecular tumor driver. B7-H3 negative cases were high in tumor cells, ruling out low tumor cell percentage as an explanation for negative staining.
Our study of B7-H3-expression in the largest pHG-CNS tumor set to date revealed significant interpatient variability and numerous negative cases. Our results urge for tumor tissue acquisition at enrollment in B7-H3 targeting therapeutic trials (including CAR-T cells) in order to thoroughly assess the value of IHC B7-H3 expression as biomarker and, ultimately, to allow for more tailored therapy.
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