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Reversal of indoleamine 2,3-dioxygenase-mediated cancer immune suppression by systemic kynurenine depletion with a therapeutic enzyme

机译:用治疗性酶的全身犬藻酸耗尽逆转吲哚胺2,3-二恶英酶介导的癌症免疫抑制

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摘要

Increased tryptophan (Trp) catabolism in the tumor microenvironment (TME) can mediate immune suppression by upregulation of interferon (IFN)-gamma-inducible indoleamine 2,3-dioxygenase (IDO1) and/or ectopic expression of the predominantly liver-restricted enzyme tryptophan 2,3-dioxygenase (TDO)(1-5). Whether these effects are due to Trp depletion in the TME or mediated by the accumulation of the IDO1 and/or TDO (hereafter referred to as IDO1/TDO) product kynurenine (Kyn) remains controversial(5-13). Here we show that administration of a pharmacologically optimized enzyme (PEGylated kynureninase; hereafter referred to as PEG-KYNase) that degrades Kyn into immunologically inert, nontoxic and readily cleared metabolites inhibits tumor growth. Enzyme treatment was associated with a marked increase in the tumor infiltration and proliferation of polyfunctional CD8(+) lymphocytes. We show that PEG-KYNase administration had substantial therapeutic effects when combined with approved checkpoint inhibitors or with a cancer vaccine for the treatment of large B16-F10 melanoma, 4T1 breast carcinoma or CT26 colon carcinoma tumors. PEG-KYNase mediated prolonged depletion of Kyn in the TME and reversed the modulatory effects of IDO1/TDO upregulation in the TME.
机译:增加色氨酸(TRP)分解代谢在肿瘤微环境(TME)中可以通过促进干扰素(IFN) - γ-诱导的吲哚胺2,3-二氧化根果(IDO1)和/或主要肝脏限制酶色氨酸的异位表达来介导免疫抑制2,3-二氧化根酶(TDO)(1-5)。这些效果是否是由于TME中的TRP耗尽或通过IDO1和/或TDO的积累介导(以下称为IDO1 / TDO)产品kynurenine(kyn)仍然存在争议(5-13)。在这里,我们表明药理学优化的酶(pegymated kynureninasease;以下称为Peg-kynase),其将kyn降解到免疫惰性,无毒和容易清除的代谢物抑制肿瘤生长。酶处理与肿瘤浸润和多官能CD8(+)淋巴细胞增殖的显着增加有关。我们表明,当与批准的检查点抑制剂或癌症疫苗结合治疗大B16-F10黑素瘤,4T1乳腺癌或CT26结肠癌肿瘤时,PEG-kynase给药具有大量的治疗效果。 PEG-kynase介导的kyn在TME中的延长耗竭,并逆转了TME中IDO1 / TDO Upregulation的调节作用。

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