← 返回

脂多糖通过 TGF-β 介导的干性增强诱导结直肠癌细胞对 CAR-T 细胞治疗耐药

英文原题:Lipopolysaccharide Induces Resistance to CAR-T Cell Therapy of Colorectal Cancer Cells through TGF-β-Mediated Stemness Enhancement.

查看英文原题

Lipopolysaccharide Induces Resistance to CAR-T Cell Therapy of Colorectal Cancer Cells through TGF-β-Mediated Stemness Enhancement.

PubMed 2025/03/21(内容时间) Mol Pharm Q1 · IF 4.9(JCR 2025)

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。

中文摘要

CAR-T(CAR-T)细胞疗法是一种近年来出现的细胞免疫疗法,越来越多研究显示结直肠癌患者会对 CAR-T 治疗产生耐药。脂多糖(LPS)是革兰阴性菌细胞壁成分,已知在结肠中维持较高浓度;LPS 是否促使结直肠癌细胞对 CAR-T 治疗产生耐药仍不清楚。体内实验中,研究者先用 LPS 处理结直肠癌 COLO205 细胞 24 小时,再经尾静脉注入裸鼠,并于次日移植 CAR-T 细胞,随后观察小鼠肺组织中的肿瘤数目。体外实验使用经 LPS 处理 24 小时的 COLO205 细胞。通过集落形成和球体形成实验观察 LPS 对 COLO205 和 SW620 细胞干性的影响;通过 qRT-PCR、Western 印迹和免疫荧光染色,检测 LPS 对干性相关基因 CD44、SOX2 和 NANOG 表达的影响。

研究还使用 TGF-β 抑制剂和 MYD88 抑制剂,探讨 LPS 如何诱导 COLO205 细胞干性增强及 CAR-T 耐药;并利用 TCGA 数据库分析 MYD88 与 TGFB1,以及 TGFB1 与干性相关基因之间的相关性。体内裸鼠实验和体外实验均显示,LPS 预处理可诱导结直肠癌细胞对 CAR-T 治疗耐药。LPS 可通过上调 CD44、SOX2 和 NANOG 增强 COLO205 和 SW620 细胞的干性。使用 TGF-β 抑制剂进行反向干预的实验提示,LPS 诱导的 TGF-β 自分泌在增强结直肠癌细胞干性方面发挥关键作用。TCGA 分析显示 MYD88 与 TGFB1 强正相关;此外,TGFB1 可上调干性相关基因表达。

进一步机制研究显示,LPS 诱导的 TGF-β 表达由 TLR4/MYD88 通路介导。研究结果提示,LPS 通过增强干性诱导结直肠癌细胞对 CAR-T 治疗耐药;依赖 TLR4/MYD88 信号通路的 TGF-β 表达参与干性增强和 CAR-T 耐药。

总之,这些发现有助于理解 CAR-T 耐药的潜在机制,并提示 TGF-β 和 MYD88 抑制剂是临床中提高结直肠癌 CAR-T 治疗效果的潜在靶向候选药物。

展开英文摘要原文

Chimeric antigen receptor-T (CAR-T) cell therapy is a cellular immunotherapy that has emerged in recent years, and increasing studies showed that therapeutic resistance to CAR-T cell therapy presents in colorectal cancer patients. Lipopolysaccharide (LPS), a component of the cell wall of Gram-negative bacteria, is known to preserve a high concentration in the colon. Whether LPS is a contributing factor to the development of resistance in colorectal cancer cells against CAR-T cell therapy remains unclear. For in vivo experiments, colorectal cancer cells COLO205 were pretreated with LPS for 24 h and then were injected into nude mice through the tail vein, followed by CAR-T cells transplantation one day later. Later, the number of tumors in the lung tissues of the mice was observed. The in vitro experiments were performed on COLO205 cells, which were treated with LPS for 24 h. The effect of LPS on the stemness of COLO205 and SW620 cells was observed by using the colony formation assay and spheroidization experiments.

The effect of LPS on the expression of stemness-related genes, including CD44, SOX2, and NANOG, was observed by qRT-PCR assay, Western blotting assay, and immunofluorescence staining. Inhibitors of TGF- and the MYD88 inhibitor were used to study the mechanisms by which LPS induces the stemness enhancement and resistance to CAR-T cell therapy of COLO205 cells. The correlation between MYD88 and TGFB1 , as well as the correlation between TGFB1 and stemness-related genes was analyzed using the TCGA database.

Both the in vivo assay of nude mice and the in vitro assay showed that LPS pretreatment could induce resistance to CAR-T cell therapy of colorectal cancer cells. LPS could enhance COLO205 and SW620 cells stemness presented by upregulation of CD44, SOX2, and NANOG. The reverse interfering assay using the TGF- inhibitor indicated that the autosecretion of TGF- induced by LPS played a critical role in the stemness enhancement of colorectal cancer cells. The TCGA database analysis revealed a strong positive correlation between MYD88 and TGFB1 .

Additionally, TGFB1 has been found to upregulate the expression of genes associated with stemness.

Further mechanism studies showed that the TLR4/MYD88 pathway medicates LPS-induced TGF- expression.

Our results suggested that LPS-induced resistance to CAR-T cell therapy of colorectal cancer cells through stemness enhancement. TLR4/MYD88 signal pathway-dependent TGF- expression was involved in stemness enhancement and CAR-T cell therapy resistance.

In conclusion, our findings help us to understand the underlying mechanisms of CAR-T cell therapy resistance and indicate that inhibitors of TGF- and MYD88 are promising targeting candidates to promote a therapeutic effect of CAR-T cell therapy in colorectal cancer in the clinic.

论文信息

作者
Tao M、Xue M、Zhou D、Zhang L、Hou X、Zhu X、Feng S、Yan H
单位
School of Pharmacy, Anhui Medical University, Hefei 230032, China.China
文献类型
非美国政府资助研究
期刊
Molecular pharmaceutics2025 Apr 7
原文标识
PubMed 40116228 · DOI 10.1021/acs.molpharmaceut.4c00264