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.
CAR-T(CAR-T)细胞在血液系统恶性肿瘤中的应用推动了这种免疫治疗形式的显著进展。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:The loss of B7-H4 expression in breast cancer cells escaping from T cell cytotoxicity contributes to epithelial-to-mesenchymal transition.
The loss of B7-H4 expression in breast cancer cells escaping from T cell cytotoxicity contributes to epithelial-to-mesenchymal transition.
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我们的研究揭示了乳腺癌细胞通过免疫逃逸而丧失 B7-H4 的新作用,该作用促进 EMT 过程,并为乳腺癌治疗提供了新见解。
B7同源蛋白4(B7-H4)是潜在癌症治疗靶点,已知在乳腺癌早期可抑制T细胞细胞毒性;但肿瘤进展期间B7-H4如何调节乳腺肿瘤免疫微环境(TIME)尚不清楚。
研究人员构建B7-H4特异性嵌合抗原受体(CAR)T细胞,并通过T细胞共培养实验分析逃逸T细胞细胞毒作用的乳腺癌细胞中B7-H4表达水平。研究还构建B7-H4敲除(KO)和过表达(OE)乳腺癌细胞,体内外评估其上皮-间质转化(EMT)及干性特征,包括肿瘤增殖、迁移、转移和化疗耐药,并利用癌症基因组图谱乳腺癌数据库分析患者B7-H4表达与EMT特征的相关性。
部分逃逸B7-H4 CAR-T 细胞毒作用的乳腺癌细胞中,B7-H4表达显著降低。与野生型细胞相比,B7-H4 KO细胞表现出更强EMT和干性特征,包括迁移、侵袭和转移;而OE细胞则相反。KO细胞H3K27me3增加,证实癌症干细胞发生表观遗传重编程。KO细胞对多柔比星或奥沙利铂的IC50显著升高,而OE细胞中IC50下降。患者样本中,从I期到II期乳腺癌B7-H4表达呈下降趋势,提示逃离TIME的低表达B7-H4乳腺癌细胞可能已在疾病进展中扩散至邻近乳房淋巴结。
本研究揭示乳腺癌细胞通过免疫逃逸丧失B7-H4表达的新作用,该过程促进EMT,为乳腺癌治疗提供新见解。
B7 homology 4 (B7-H4), a potential target for cancer therapy, has been demonstrated to inhibit T cell cytotoxicity in the early stages of breast cancer. However, B7-H4 manipulating breast tumor immune microenvironment (TIME) in the tumor progression remains unknown.
We engineered T cells with B7-H4-specific chimeric antigen receptors (CARs) and performed a T cell co-culture assay to characterize B7-H4 expression level in breast cancer cells escaping from T cell cytotoxicity. We generated B7-H4 knockout (KO) and overexpression (OE) breast cancer cells to determine the epithelial-to-mesenchymal transition (EMT) and stemness characteristics in vitro and in vivo, including tumor proliferation, migration, metastasis and chemoresistance. The Cancer Genome Atlas breast cancer database was accessed to investigate the correlation between B7-H4 expression levels and EMT characteristics in patients with breast cancer.
Our result found that B7-H4 expression level was significantly reduced in a subset of breast cancer cells that escaped from the cytotoxicity of B7-H4 CAR-T cells. Compared with wild type cells, B7-H4 KO cells prompt EMT and stemness characteristics, including migration, invasion and metastasis, and OE cells vice versa. The increase in H3K27me3 in KO cells confirmed the epigenetic reprogramming of cancer stem cells. The IC50 of doxorubicin or oxaliplatin significantly increased in KO cells, which was in agreement with a decrease in OE cells. Moreover, a trend of downregulated B7-H4 from stage I to stage II breast cancer patients indicates that the low-expressing B7-H4 breast cancer cells escaping from TIME have spread to nearby breast lymph nodes in the cancer progression.
Our study illuminates the novel role of renouncing B7-H4 in breast cancer cells through immune escape, which contributes to EMT processes and provides new insights for breast cancer treatments.
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