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:Novel banana lectin CAR-T cells to target pancreatic tumors and tumor-associated stroma.
Novel banana lectin CAR-T cells to target pancreatic tumors and tumor-associated stroma.
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表达 H84T CAR 的 T 细胞在 PDAC 肿瘤模型中靶向恶性细胞及其基质。因此,将靶向聚糖的凝集素整合到 CAR 中,可将其活性扩展至同时包括恶性细胞及其支持性基质细胞,破坏 TME,而 TME 原本会削弱细胞疗法针对实体瘤的活性。
实体瘤的细胞疗法受到不利的肿瘤微环境(TME)以及肿瘤靶抗原异质性表达的阻碍。我们通过一类基于植物凝集素的新型嵌合抗原受体来解决这两个局限,该类受体可识别异常糖残基,而异常糖残基是恶性细胞及相关基质细胞共同的标志。我们已在T细胞中表达一种来自香蕉的修饰凝集素 H84T BanLec,其连接至一种嵌合抗原受体(H84T-CAR),该受体识别高甘露糖(带有5至9个甘露糖的天冬酰胺残基)。在此,我们在胰腺导管腺癌(PDAC)模型中测试了我们新型 H84T CAR 的疗效;PDAC 是一种难治性肿瘤,具有异常糖基化,并以主要由胰腺星状细胞(PSCs)形成的促结缔组织增生性基质为特征。
我们用表达 H84T BanLec 嵌合受体的第二代逆转录病毒构建体转导人 T 细胞,测量 T 细胞扩增,表征 T 细胞表型,并通过流式细胞术定量检测其针对 PDAC 肿瘤细胞系的效力。在三维(3D)球状体模型中,我们测量了 H84T CAR-T 细胞对 PSC 结构的破坏,并通过活细胞成像检测 T 细胞浸润。我们测试了 H84T CAR-T 细胞针对源自三种 PDAC 细胞系的肿瘤异种移植物的活性。通过游标卡尺测量和生物发光信号对抗肿瘤活性进行定量,并使用抗人 vimentin 测量残留 PSCs。
H84T BanLec CAR 成功转导并由 T 细胞表达,这些 T 细胞具有强劲的扩增能力,并在 CD4 和 CD8 细胞群中均保留了中央记忆表型。H84T CAR-T 细胞靶向并清除了 PDAC 肿瘤细胞系。它们还在体外 3D 模型中破坏了 PSC 结构,并在混合共培养中减少了肿瘤和基质细胞总量。H84T CAR-T 细胞在多细胞球体中表现出改善的 T 细胞浸润,并在异种移植模型中具有强效抗肿瘤作用。我们未观察到对正常组织的不良反应。
Cell therapies for solid tumors are thwarted by the hostile tumor microenvironment (TME) and by heterogeneous expression of tumor target antigens. We address both limitations with a novel class of chimeric antigen receptors based on plant lectins, which recognize the aberrant sugar residues that are a 'hallmark' of both malignant and associated stromal cells. We have expressed in T cells a modified lectin from banana, H84T BanLec, attached to a chimeric antigen receptor (H84T-CAR) that recognizes high-mannose (asparagine residue with five to nine mannoses). Here, we tested the efficacy of our novel H84T CAR in models of pancreatic ductal adenocarcinoma (PDAC), intractable tumors with aberrant glycosylation and characterized by desmoplastic stroma largely contributed by pancreatic stellate cells (PSCs).
We transduced human T cells with a second-generation retroviral construct expressing the H84T BanLec chimeric receptor, measured T-cell expansion, characterized T-cell phenotype, and tested their efficacy against PDAC tumor cells lines by flow cytometry quantification. In three-dimensional (3D) spheroid models, we measured H84T CAR T-cell disruption of PSC architecture, and T-cell infiltration by live imaging. We tested the activity of H84T CAR T cells against tumor xenografts derived from three PDAC cell lines. Antitumor activity was quantified by caliper measurement and bioluminescence signal and used anti-human vimentin to measure residual PSCs.
H84T BanLec CAR was successfully transduced and expressed by T cells which had robust expansion and retained central memory phenotype in both CD4 and CD8 compartments. H84T CAR T cells targeted and eliminated PDAC tumor cell lines. They also disrupted PSC architecture in 3D models in vitro and reduced total tumor and stroma cells in mixed co-cultures. H84T CAR T cells exhibited improved T-cell infiltration in multicellular spheroids and had potent antitumor effects in the xenograft models. We observed no adverse effects against normal tissues.
T cells expressing H84T CAR target malignant cells and their stroma in PDAC tumor models. The incorporation of glycan-targeting lectins within CARs thus extends their activity to include both malignant cells and their supporting stromal cells, disrupting the TME that otherwise diminishes the activity of cellular therapies against solid tumors.
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