CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Sirpiglenastat (DRP-104) Induces Antitumor Efficacy through Direct, Broad Antagonism of Glutamine Metabolism and Stimulation of the Innate and Adaptive Immune Systems.
Sirpiglenastat (DRP-104) Induces Antitumor Efficacy through Direct, Broad Antagonism of Glutamine Metabolism and Stimulation of the Innate and Adaptive Immune Systems.
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谷氨酰胺是一种条件必需氨基酸,可被快速增殖的癌细胞消耗,使免疫细胞失去同一营养来源,并促进肿瘤免疫逃逸。因此,广泛阻断肿瘤及其微环境中的谷氨酰胺利用,可能直接产生抗肿瘤作用并增强抗肿瘤免疫应答。DRP-104(sirpiglenastat)是一种新型前药,旨在递送广谱谷氨酰胺拮抗剂6-重氮-5-氧代-L-正亮氨酸(DON)。DRP-104本身无活性,优先在肿瘤内转化为DON。对DRP-104处理肿瘤进行代谢组学分析,发现多种变化提示肿瘤合成代谢及经典癌症代谢通路受到破坏,谷氨酰胺代谢改变,同时多种免疫抑制性代谢物减少。基因表达谱显示广泛免疫调节变化;流式细胞术证实,DRP-104治疗显著、广泛地改变多类免疫细胞浸润,包括TIL、T细胞、NK细胞和NKT细胞增加。功能上,T细胞增殖增强、耗竭减轻;肿瘤相关巨噬细胞向M1表型极化;肿瘤微环境中的髓源抑制细胞(MDSC)及促肿瘤蛋白减少。DRP-104单药具有显著抗肿瘤活性,与检查点阻断疗法联用后疗效进一步增强,改善生存并带来持久治愈。
总之,DRP-104可广泛重塑肿瘤代谢和微环境,增强多类免疫细胞的浸润及功能,其作用不同于检查点抑制剂。本研究独特的作用机制支持继续开发DRP-104单药及其与检查点抑制剂的联合方案。
Glutamine is a conditionally essential amino acid consumed by rapidly proliferating cancer cells, which deprives the same fuel from immune cells and contributes to tumor immune evasion. As such, the broad antagonism of glutamine in tumors and the tumor microenvironment may lead to direct antitumor activity and stimulation of antitumoral immune responses. DRP-104 (sirpiglenastat) was designed as a novel prodrug of the broad-acting glutamine antagonist 6-diazo-5-oxo-L-norleucine (DON). DRP-104 is an inactive form that is preferentially converted to DON within tumors.
Metabolomic profiling of tumors treated with DRP-104 revealed widespread changes indicative of the disruption of tumor anabolism and canonical cancer metabolism pathways; including altered glutamine metabolism while several immunosuppressive metabolites were decreased.
Gene expression profiling revealed broad immunological modulation, confirmed by flow cytometry indicating that DRP-104 treatment resulted in substantial and broad changes in various immune cell infiltrates, such as increased TIL, T, NK, and NK T cells. Functionally, T cells became more proliferative and less exhausted; tumor-associated macrophages were polarized to the M1 phenotype; MDSCs and protumorigenic proteins were decreased in TME.
Finally, DRP-104 demonstrated significant antitumor activity as a monotherapy, which was further enhanced in combination with checkpoint blockade therapies, leading to improved survival and long-term durable cures.
In summary, DRP-104 broadly remodels the tumor microenvironment by inducing extensive tumor metabolism effects and enhancing the infiltration and function of multiple immune cells distinct from those obtained by checkpoint inhibitor therapy. This unique mechanism of action supports the ongoing clinical development of DRP-104 alone and in combination with checkpoint inhibitors.
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