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:Immunotherapy in Neuroblastoma: Mini-review of Novel Directions and Challenges.
神经母细胞瘤(NB)是最常见的儿童颅外实体瘤,起源于神经嵴细胞,由发育蛋白的异常表达和调控驱动。
神经母细胞瘤(NB)是最常见的儿童颅外实体瘤,源自神经嵴细胞,其发生由发育蛋白异常表达和调控驱动。驱动NB的核心调控网络由正常人类蛋白组成,这些蛋白在胚胎发育期表达,但在正常组织中出生后大多关闭。适应性免疫系统被认为无法靶向这些癌胚抗原,因为高亲和力自身反应性T细胞会在胸腺发育过程中被清除。目前高危NB标准治疗包括强化方案:诱导化疗、手术切除肿瘤、自体骨髓移植巩固治疗,随后使用维甲酸促分化治疗,可将生存率提高至约50%。加入免疫治疗后,生存率进一步改善,包括单克隆抗体(抗GD2单抗/地努妥昔单抗)和细胞因子(如IL-2及GM-CSF)。CAR-T细胞由经基因工程改造、表达CAR的自体T细胞制备。体外工程化方法已可在不必从肿瘤组织分离T细胞的情况下制备抗原特异性T细胞。通过白细胞单采从患者外周血中分离非特异性T细胞,再进行基因修饰,使其表达肿瘤特异性识别构建体(如肿瘤特异性TCR或CAR);随后在符合药品生产质量管理规范(GMP)的条件下,于含细胞因子的培养体系中扩增、富集,并通过载体转导,从而制备靶向肿瘤特异性抗原的CAR-T产品。患者接受预处理化疗后,再输注CAR-T细胞产品。
Neuroblastoma (NB) is the most frequent pediatric extracranial solid tumor that derives from neural crest cells, driven by aberrant expression and regulation of developmental proteins. The core regulatory circuitry driving NB consists of normal human proteins that are expressed in embryonic development but largely turned off postnatally in normal tissues. The adaptive immune system is thought to be unable to target these oncofetal antigens because high-affinity self-reactive T cells are deleted during thymopoiesis. Current treatment standard in patients with HR-NB consists of an intense treatment protocol with induction chemotherapy, surgical tumor resection, consolidation therapy with autologous bone marrow transplantation, followed by retinoid as differentiating therapy, significantly increasing survival rates to about 50%. Immunotherapy further improved survival rates that included monoclonal antibody (Anti-GD2 MoAb/Dinutuximab) and cytokines (ie, IL-2 and GM-CSF, [33-37]). CAR T cells are made from autologous T cells that engineered genetically to express a CAR. In vitro engineering methods have been developed to create antigen-specific T cells without the need for isolation from tumor tissues. Leukapheresis is used to separate unspecific T cells from the patient's peripheral blood, then genetically modified with a tumor-specific recognition construct (eg, tumor-specific TCR, CAR), expanded, and enriched in culture in the presence of cytokines under good manufacturing practice (GMP) conditions, and transduced with a vector. This allowed them to produce a CAR that targets a tumor-specific antigen. Following preparatory chemotherapy, the CAR T cell product is administered into the patient.
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