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IMMUNOSTIMULATORY BACTERIA ENGINEERED TO COLONIZE TUMORS, TUMOR-RESIDENT IMMUNE CELLS, AND THE TUMOR MICROENVIRONMENT

机译:用于定殖肿瘤,肿瘤免疫细胞和肿瘤微环境的免疫刺激性细菌

摘要

Provided are delivery immunostimulatory bacteria that have enhanced colonization of tumors, the tumor microenvironment and/or tumor-resident immune cells, and enhanced anti-tumor activity. The immunostimulatory bacteria are modified by deletion of genes encoding the flagella or by modification of the genes so that functional flagella are not produced, and/or are modified by deletion of pagP or modification of pagP to produce inactive PagP product. As a result, the immunostimulatory bacteria are flagellin and/or pagP. The immunostimulatory bacteria optionally have additional genomic modifications so that the bacteria are adenosine and/or purine auxotrophs. The bacteria optionally are one or more of asst, purI and msbB. The immunostimulatory bacteria, such as Salmonella species, are modified to encode proteins that induce type I interferon (IFN) expression, or that are variants thereof that have increased activity to induce type I IFN expression, or that are variants thereof that result in constitutive expression of type I IFN. The bacteria can encode a modified Stimulator of Interferon Genes (STING) protein from a non-human species, that has lower NF-κB signaling activity, and, optionally, higher type I IFN pathway signaling activity, compared to human STING. The bacteria preferentially infect immune cells in the tumor microenvironment, or tumor-resident immune cells, and/or induce less cell death in immune cells than in other cells. Also provided are methods of inhibiting the growth or reducing the volume of a solid tumor by administering the immunostimulatory bacteria.
机译:提供了递送免疫刺激细菌,其具有增强的肿瘤定植,肿瘤微环境和/或肿瘤驻留免疫细胞,以及增强的抗肿瘤活性。通过缺失编码鞭毛的基因或通过基因的修饰来修饰免疫刺激细菌,从而不产生功能性鞭毛,和/或通过缺失pagP或修饰pagP来修饰以产生无活性的PagP产物。结果,免疫刺激细菌是鞭毛蛋白-和/或pagP -。免疫刺激细菌任选地具有附加的基因组修饰,以使细菌为腺苷和/或嘌呤营养缺陷型。细菌可选地是asst,purI -和msbB -中的一种或多种。修饰免疫刺激细菌,例如沙门氏菌物种,以编码诱导I型干扰素(IFN)表达,或其变体具有增强的诱导I型IFN表达活性的蛋白或导致I型IFN组成型表达的其变体。该细菌可以编码来自非人类物种的修饰的干扰素基因刺激因子(STING)蛋白,与人类STING相比,该蛋白具有较低的NF-κB信号传导活性和(可选)更高的I型IFN途径信号传导活性。细菌优先感染肿瘤微环境中的免疫细胞或肿瘤驻留的免疫细胞,和/或与其他细胞相比,在免疫细胞中诱导的细胞死亡更少。还提供了通过施用免疫刺激细菌来抑制实体瘤的生长或减小实体瘤的体积的方法。

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