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PPARγ激活使 MSS 胃肠道癌细胞对 PD1 阻断敏感

英文原题:PPARγ activation sensitizes MSS gastrointestinal cancer cells to PD1 blockage.

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PPARγ activation sensitizes MSS gastrointestinal cancer cells to PD1 blockage.

PubMed 2026/07/10(内容时间) Cancer Treat Res Commun Q2 · IF 3.5(JCR 2025)

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研究概要

PPARγ的药理学激活增强了 PD1 阻断的抗肿瘤疗效。因此,代谢调节剂可能被开发为免疫增敏剂,用于针对 MSS 肿瘤的临床检查点治疗。

研究思路结论见上方概要

针对免疫检查点程序性细胞死亡1(PD1)的抗体在微卫星不稳定(MSI)、免疫“热”胃肠道(GI)癌症患者中取得获益,但在“冷”微卫星稳定(MSS)肿瘤病例中失败。治疗失败的一个潜在机制是激活型KRAS突变,其在免疫抑制微环境中上调PD1。过氧化物酶体增殖物激活受体γ(PPARγ)是一种可成药的抗糖尿病和免疫调节转录因子,可抑制RAS信号传导。因此,我们评估了PPARγ是否减弱免疫细胞上PD1的表达和/或功能,并增强PD1阻断的疗效。

对结直肠癌和胃癌患者的组织样本,以及野生型(WT)和KRASG12V转基因C57BL6/J小鼠在富含PPARγ激动剂(罗格列酮,rosi,约25 mg/kg*天)的饮食喂养3个月后的组织样本,进行了PCR和免疫组化分析。将人MSS胃肠道癌细胞系(AGS、HT29、SW480)与来自健康供体外周血的“淋巴因子激活的NK/T杀伤细胞”(LAK)共培养,并进行了PCR微阵列、免疫印迹、流式细胞术和活力检测。

KRASG12V小鼠肠道组织中的PD1多于WT同窝小鼠,且PD1在人GI癌症中与PPARγ共表达。在LAK和PD1阻断抗体(pembrolizumab)存在下,rosi与干扰素-γ(IFNγ)联合降低了人KRAS/BRAF突变MSS肿瘤细胞的活力。机制上,LAK中PD1蛋白下调,PP60和信号转导及转录激活因子-1(STAT1)的酪氨酸磷酸化增强。共培养的肿瘤细胞上MHCclassI和PD1配体(PDL1)上调,使其具有更高的免疫原性。

展开英文摘要原文

Antibodies (Abs) against immune checkpoint "programmed-cell-death-1" (PD1) achieve benefit in patients with microsatellite instable (MSI), immunologically "hot" gastrointestinal (GI) cancers, but fail in cases with "cold" microsatellite stable (MSS) tumors. One underlying mechanism of therapy failure are activating KRAS mutations which up-regulate PD1 within an immunosuppressive microenvironment. Peroxisome-proliferator-activated-receptor-gamma (PPARγ) is a drugable anti-diabetic and immune-regulatory transcription factor which inhibits RAS signaling. We therefore assessed if PPARγ attenuates PD1 expression and/or function on immune cells and augments efficacy of PD1-blockage.

Tissue samples of patients with colorectal and gastric cancers, wildtype (WT) and KRASG12V transgenic C57BL6/J mice on a 3-months diet enriched with PPARγ-agonist (rosiglitazone, rosi, ∼25 mg/kg*day) were analysed by PCR and immunohistochemistry. Cocultures of human MSS GI cancer cell lines (AGS, HT29, SW480) with "lymphokine-activated NK/T killer cells" (LAK) from peripheral blood of healthy donors were subjected to PCR microarray, immunoblot, flow cytometry and viability assays.

KRASG12V mouse intestinal tissues had more PD1 than WT littermates, and PD1 was co-expressed with PPARγ in human GI cancers. Combination of rosi and interferon-gamma (IFNγ) reduced the viability of human KRAS/BRAF mutant MSS tumor cells in presence of LAK and PD1 blocking Ab (pembrolizumab). Mechanistically, PD1 protein was down-regulated and tyrosine phosphorylation of PP60 and signal-transducer-and-activator-of-transcription-1 (STAT1) enhanced in LAK. MHCclassI and PD1-ligand (PDL1) were up-regulated on cocultured tumor cells, endowing them with higher immunogenicity.

Pharmacological activation of PPARγ enhanced anti-tumor efficacy of PD1-blockage. Thus, metabolic modifiers might be developed as immunosensitizers for clinical checkpoint therapies against MSS tumors.

论文信息

作者
Reichling J、Li B、Yu Y、Gutting T、Weidner P、Sticht C、Ebert MP、Burgermeister E
第一作者单位
Dept. of Medicine II, University Medical Center Mannheim, Medical Faculty Mannheim, Heidelberg University, Mannheim, Germany.Germany
通讯作者单位
Dept. of Medicine II, University Medical Center Mannheim, Medical Faculty Mannheim, Heidelberg University, Mannheim, Germany; Mannheim Institute for Innate Immunoscience (MI3), Medical Faculty Mannheim, Heidelberg University, Mannheim, Germany. Electronic address: elke.burgermeister@medma.uni-heidelberg.de.Germany
期刊
Cancer treatment and research communications2026
原文标识
PubMed 42430889 · DOI 10.1016/j.ctarc.2026.101309