研究概要
本研究鉴定出D-ser是一种此前未被认识的免疫抑制性代谢物,它通过增加巨噬细胞和降低CD8+ T细胞效应功能来促进肿瘤免疫逃逸,从而将肿瘤微环境转向免疫抑制表型。在临床上,D-ser是一种有潜力预测癌症进展和免疫治疗耐药的代谢物。
研究思路结论见上方概要
背景
d-氨基酸(D-AAs)是蛋白质源性l-氨基酸的对映异构体,在哺乳动物中可被检测到,但其在癌症免疫中的生物学作用在很大程度上仍未被探索。特定的D-AAs是否调节肿瘤进展或影响胃肠道癌症对免疫治疗的应答尚不清楚。我们旨在确定D-AAs,特别是d-丝氨酸(D-ser),如何塑造肿瘤免疫微环境并影响胃肠道癌症的临床结局。
方法
机制研究使用小鼠 MC38 肿瘤和原位胃癌(GC)类器官同种移植模型,在补充或不补充 D-AAs 的条件下进行。通过肿瘤浸润免疫细胞的单细胞 RNA 测序、流式细胞术、离体巨噬细胞-T 细胞共培养实验以及微生物组操作实验,评估免疫景观改变。在健康对照(HCs;n = 87)和三个队列的 GC 患者(队列 1,n = 14;队列 2,n = 108;队列 3,n = 28)中定量检测血浆、尿液和粪便中的 D-AAs 浓度。分析血浆 D-ser 水平、疾病分期、免疫细胞浸润与抗 PD-1 抗体治疗后临床结局之间的关联。
结果
D-丝氨酸通过抑制CD8+ T细胞免疫并增强小鼠模型中SPP1相关免疫抑制性巨噬细胞信号传导,促进肿瘤进展。在所有临床队列中,与HCs相比,GC患者的血浆、尿液和粪便中几种D-AAs水平显著升高,其中以D-ser最为突出。血浆D-ser浓度与疾病分期(I-IV)强相关。血浆D-ser升高与免疫抑制性肿瘤微环境以及晚期胃癌患者对抗PD-1单药治疗反应不佳相关。
展开英文摘要原文
BACKGROUND: d-amino acids (D-AAs), the enantiomers of proteinogenic l-amino acids, are detectable in mammals, yet their biological roles in cancer immunity remain largely unexplored. Whether specific D-AAs modulate tumour progression or influence responsiveness to immunotherapy in gastrointestinal cancer is unknown. We aimed to determine how D-AAs, particularly d-serine (D-ser), shape the tumour immune microenvironment and affect clinical outcomes in gastrointestinal cancers.
METHODS: Mechanistic studies were conducted using murine MC38 tumours and orthotopic gastric cancer (GC) organoid allografts with or without D-AAs supplementation. Immune landscape alterations were assessed using single-cell RNA sequencing of tumour-infiltrating immune cells, flow cytometry, ex vivo macrophage-T cell co-culture assays, and microbiome manipulation experiments. D-AAs concentrations in plasma, urine, and stool were quantified in healthy controls (HCs; n = 87) and patients with GC across three cohorts (Cohort 1, n = 14; Cohort 2, n = 108; Cohort 3, n = 28). Associations between plasma D-ser levels, disease stage, immune cell infiltration, and clinical outcomes following anti-PD-1 antibody therapy were analysed.
FINDINGS: D-ser promoted tumour progression by suppressing CD8 + T cell immunity and enhancing SPP1-associated immunosuppressive macrophage signalling in murine model. Across all clinical cohorts, the plasma, urine, and stool levels of several D-AAs, most prominently D-ser, were significantly elevated in patients with GC compared to HCs. Plasma concentration of D-ser strongly correlated with disease stage (I-IV). Elevated plasma D-ser is associated with an immunosuppressive tumour microenvironment and poor response to anti-PD-1 monotherapy in patients with advanced gastric cancer.
INTERPRETATION: This study identifies D-ser as a previously unrecognised immunosuppressive metabolite that promotes tumour immune evasion by increased macrophages and reduced CD8 + T cell effector function, thereby shifting the tumour microenvironment toward an immunosuppressive phenotype. Clinically, D-ser is a potential metabolite to predict cancer progression and immunotherapy resistance.
FUNDING: This work was supported by The Japan Science and Technology Agency (JST) Fusion Oriented Research for Disruptive Science and Technology (FOREST)[JPMJFR210P], Grants-in-Aid from the Japanese Society for the Promotion of Science (JSPS) (25K10430, 21K18272, 23H02899, 23K27590, 25K22627), KGRI challenge grant, Sakaguchi Memorial Foundation, Japan Agency for Medical Research and Development (CREST 21gm1510002h0001), and Miyarisan Pharmaceutical Grant.
论文信息
- 作者
- Tsugaru K、Suzuki S、Miyamoto K、Murakami K、Chida A、Kato C、Fukasawa N、Shigehara A
- 第一作者单位
- Division of Gastroenterology and Hepatology, Department of Internal Medicine, Keio University School of Medicine, Tokyo, 160-8582, Japan.Japan
- 通讯作者单位
- Department of Multidimensional Analysis of Gastrointestinal Biology, The Sakaguchi Laboratory, Keio University School of Medicine, Tokyo, 160-8582, Japan. Electronic address: tsujino1224@keio.jp.Japan
- 期刊
- EBioMedicine2026 Aug