首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >IL-6 Signaling Blockade during CD40-Mediated Immune Activation Favors Antitumor Factors by Reducing TGF-beta, Collagen Type I, and PD-L1/PD-1
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IL-6 Signaling Blockade during CD40-Mediated Immune Activation Favors Antitumor Factors by Reducing TGF-beta, Collagen Type I, and PD-L1/PD-1

机译:IL-6在CD40介导的免疫激活期间通过减少TGF-β,胶原蛋白I型和PD-L1 / PD-1来抑制抗肿瘤激活。

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摘要

IL-6 plays a role in cancer pathogenesis via its connection to proteins involved in the formation of desmoplastic stroma and to immunosuppression by driving differentiation of myeloid suppressor cells together with TGF-beta. Inhibition of IL-6 signaling in the tumor microenvironment may, thus, limit desmoplasia and myeloid suppressor cell differentiation. CD40 signaling can further revert myeloid cell differentiation toward antitumor active phenotypes. Hence, the simultaneous use of IL-6 blockade with CD40 stimuli may tilt the tumor microenvironment to promote antitumor immune responses. In this paper, we evaluated the mechanisms of LOAd713, an oncolytic adenovirus designed to block IL-6R signaling and to provide myeloid cell activation via a trimerized membrane-bound isoleucine zipper (TMZ) CD40L. LOAd713-infected pancreatic cancer cells were killed by oncolysis, whereas infection of stellate cells reduced factors involved in stroma formation, including TGF-beta-1 and collagen type I. Virus infection prevented IL-6/GM-CSF-mediated differentiation of myeloid suppressors, but not CD163 macrophages, whereas infection of dendritic cells led to upregulation of maturation markers, including CD83, CD86, IL-12p70, and IFN-gamma. Further, IL-6R blockade prevented upregulation of programed death ligand 1 (PD-L1) and PD-1 on the stimulated dendritic cells. These results suggest that LOAd713 can kill infected tumor cells and has the capacity to affect the tumor microenvironment by stimulating stellate cells and myeloid suppressors with TMZ-CD40L and IL-6R blockade. Gene transfer of murine TMZ-CD40L prolonged survival in an animal model. LOAd713 may be an interesting therapeutic option for cancers connected to IL-6 signaling, such as pancreatic cancer.
机译:IL-6通过其与参与脱模基质形成的蛋白质和通过与TGF-β与TGF-β分化的蛋白酶分化的蛋白质的蛋白质在癌症发病机制中发挥作用。因此,抑制IL-6信号传导在肿瘤微环境中,可以限制脱晶和骨髓抑制细胞分化。 CD40信号传导可以进一步将髓样细胞分化转化为抗肿瘤活性表型。因此,通过CD40刺激的同时使用IL-6阻断可以倾斜肿瘤微环境以促进抗肿瘤免疫应答。在本文中,我们评估了LOAD713的机制,设计用于阻断IL-6R信号传导的溶瘤腺病毒,并通过三聚膜结合的异亮氨酸拉链(TMZ)CD40L提供骨髓电池活化。 Load713感染的胰腺癌细胞被溶解杀死,而星状细胞感染涉及基质形成的因素,包括TGF-β-1和胶原蛋白I.病毒感染预防IL-6 / GM-CSF介导的髓样抑制剂的分化但不是CD163巨噬细胞,而树突状细胞的感染导致成熟标志物的上调,包括CD83,CD86,IL-12P70和IFN-Gamma。此外,IL-6R阻断防止了在刺激的树突细胞上的编程死亡配体1(PD-L1)和PD-1的上调。这些结果表明,LOAD713可以通过用TMZ-CD40L和IL-6R阻断,通过刺激星状细胞和骨髓抑制剂来杀死感染的肿瘤细胞并具有影响肿瘤微环境的能力。小鼠TMZ-CD40L的基因转移在动物模型中延长存活。 LOAD713可以是与连接到IL-6信号传导的癌症的有趣治疗选择,例如胰腺癌。

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