决定异体 CAR T 细胞排斥与扩增的细胞和分子机制
Cellular and molecular mechanisms determining allogeneic CAR T cell rejection and expansion.
我们评估了11例接受单一批次cemacabtagene ansegedleucel(cema-cel)治疗的大B细胞淋巴瘤患者,cemacabtagene ansegedleucel是一种异体抗CD19 CAR T产品。
英文原题:Pediatric Hemispheric High-Grade Gliomas and H3.3-G34 Mutation: A Review of the Literature on Biological Features and New Therapeutic Strategies.
Pediatric Hemispheric High-Grade Gliomas and H3.3-G34 Mutation: A Review of the Literature on Biological Features and New Therapeutic Strategies.
近50%的pHGG存在编码组蛋白3的基因突变,包括携带H3.3-G34突变的亚型。
儿童高级别胶质瘤(pHGG)包括一系列具有不同基因组、表观基因组和转录组特征的胶质瘤。近50%的pHGG在编码组蛋白3的基因中存在突变,包括携带H3.3-G34突变的亚型。在这一背景下,组蛋白突变常与TP53和ATRX突变相关,同时伴有PDGFRA和NOTCH2NL扩增。此外,H3.3-G34组蛋白突变诱导免疫相关基因的表观遗传改变,并对微环境发挥调节功能。同时,血脑屏障(BBB)的功能对治疗反应也有影响。传统治疗的预后仍然较差,因此促使人们研究其他和替代疗法。有前景的分子靶点包括PDGFRA扩增、BRAF突变、EGFR扩增、NF1缺失和IDH突变。考虑到携带H3.3-G34R突变的pHGG似乎对免疫疗法(ITs)更敏感,近期已探索了不同选择,包括免疫检查点抑制剂、抗体介导的IT和Car-T细胞。本综述旨在总结关于这组儿童胶质瘤的癌症生物学和癌症-免疫细胞相互作用的知识,并重点关注可能的治疗选择。
Pediatric high-grade glioma (pHGG) encompasses a wide range of gliomas with different genomic, epigenomic, and transcriptomic features. Almost 50% of pHGGs present a mutation in genes coding for histone 3, including the subtype harboring the H3.3-G34 mutation. In this context, histone mutations are frequently associated with mutations in TP53 and ATRX , along with PDGFRA and NOTCH2NL amplifications. Moreover, the H3.3-G34 histone mutation induces epigenetic changes in immune-related genes and exerts modulatory functions on the microenvironment. Also, the functionality of the blood-brain barrier (BBB) has an impact on treatment response. The prognosis remains poor with conventional treatments, thus eliciting the investigation of additional and alternative therapies. Promising molecular targets include PDGFRA amplification, BRAF mutation, EGFR amplification, NF1 loss, and IDH mutation. Considering that pHGGs harboring the H3.3-G34R mutation appear to be more susceptible to immunotherapies (ITs), different options have been recently explored, including immune checkpoint inhibitors, antibody mediated IT, and Car-T cells. This review aims to summarize the knowledge concerning cancer biology and cancer-immune cell interaction in this set of pediatric gliomas, with a focus on possible therapeutic options.
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