不适合移植的大 B 细胞淋巴瘤二线使用 axicabtagene ciloleucel:ALYCANTE 最终分析
Second-line axicabtagene ciloleucel in large B-cell lymphoma ineligible for transplantation: ALYCANTE final analysis.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:CD19 CAR-macrophage suppressed the progression of DLBCL via modulating SYK/SHP2/TBK1/TFEB signaling.
CD19 CAR-macrophage suppressed the progression of DLBCL via modulating SYK/SHP2/TBK1/TFEB signaling.
分数与星级只用于站内排序 —— 不代表疗效、安全性或个人适用性。
CD19 CAR-M 通过 SYK/SHP2/TBK1/TFEB 轴介导的巨噬细胞吞噬作用杀伤 DLBCL。
探讨CD19 CAR-Macrophage(CD19 CAR-M)治疗弥漫性大B细胞淋巴瘤(DLBCL)的具体分子机制。
对GEO数据集GSE66770进行差异表达和通路富集分析,以构建SYK/SHP2/TBK1/TFEB相互作用网络。通过慢病毒转导THP-1来源的巨噬细胞样细胞生成CD19 CAR-M,并与U2932细胞共培养。采用CCK-8、集落形成和Transwell实验评估U2932的增殖、侵袭和迁移;通过ELISA检测IL-6和IFN-γ水平;通过DHE染色检测ROS。RT-qPCR定量巨噬细胞标志物CD14(M0)、CD163和CD206(M2),以及M1标志物IL-12。Western blot分析p-SYK、p-SHP2、NOX2、p-TBK1、TFEB、LC3B及磷酸化/总蛋白比值;免疫荧光评估内体标志物EEA1和LAMP1。通过荧光微球实验评估吞噬作用;在FcγR阻断后通过流式细胞术测定U2932凋亡。此外,进行流式细胞术以验证共培养后巨噬细胞表型的维持、CAR转导效率及细胞分离的纯度。对NOD-scid小鼠DLBCL异种移植瘤进行体内成像以验证治疗效果。
生物信息学分析确定TBK1是一个关键的免疫逃逸节点,与SYK正相关,与SHP2负相关。流式细胞术分析证实成功构建了CD19 CAR-M细胞模型,具有稳定的巨噬细胞表型和特异性CAR表达。CD19 CAR-M显著抑制U2932增殖、侵袭和迁移,升高IL-6、IFN-γ和ROS,并诱导M1极化。SYK/SHP2/TBK1/TFEB轴蛋白磷酸化及LC3B表达显著增加;EEA1/LAMP1荧光强度增强。荧光微球摄取增加,并可被FcγR抑制剂elsubrutinib逆转,同时伴有U2932晚期凋亡率升高。体内实验证实CD19 CAR-M通过激活SYK/SHP2/TBK1/TFEB轴降低肿瘤负荷。
To explore the specific molecular mechanisms of CD19 CAR-Macrophage (CD19 CAR-M) in treating Diffuse Large B-cell Lymphoma (DLBCL).
Differential expression and pathway enrichment analyses of GEO dataset GSE66770 were performed to construct a SYK/SHP2/TBK1/TFEB interaction network. CD19 CAR-M were generated by lentiviral transduction of THP-1-derived macrophage-like cells and co-cultured with U2932 cells. CCK-8, colony formation and Transwell assays were used to evaluate U2932 proliferation, invasion and migration; IL-6 and IFN-γ levels were measured by ELISA; ROS was detected by DHE staining. RT-qPCR quantified macrophage markers CD14 (M0), CD163 and CD206 (M2), and M1 marker IL-12. Western blot analyzed p-SYK, p-SHP2, NOX2, p-TBK1, TFEB, LC3B and phosphorylated/total protein ratios; immunofluorescence assessed endosomal markers EEA1 and LAMP1. Phagocytosis was evaluated by fluorescent microsphere assay; U2932 apoptosis was determined by flow cytometry after FcγR blockade. Flow cytometry was additionally performed to validate the maintenance of macrophage phenotype, CAR transduction efficiency, and the purity of cell separation after co-culture. NOD-scid mouse DLBCL xenografts were subjected to in vivo imaging for therapeutic validation.
Bioinformatic analysis identified TBK1 as a key immune-evasion node positively correlated with SYK and negatively with SHP2. Flow cytometric analysis confirmed successful construction of the CD19 CAR-M cell model, with stable macrophage phenotype and specific CAR expression. CD19 CAR-M significantly inhibited U2932 proliferation, invasion and migration, elevated IL-6, IFN-γ and ROS, and induced M1 polarization. Phosphorylation of SYK/SHP2/TBK1/TFEB axis proteins and LC3B expression were markedly increased; EEA1/LAMP1 fluorescence intensities were enhanced. Fluovrescent microsphere uptake was elevated and reversible by FcγR inhibitor elsubrutinib, accompanied by increased U2932 late-apoptosis rate. In vivo experiments confirmed that CD19 CAR-M reduced tumor burden via activation of the SYK/SHP2/TBK1/TFEB axis.
CD19 CAR-M kills DLBCL through macrophage phagocytosis mediated by the SYK/SHP2/TBK1/TFEB axis.
MEMBER ACCOUNT
登录成功会直接打开下一页。