Aduro Biotech, Berkeley, California.
Bloomberg-Kimmel Institute for Cancer Immunotherapy, Johns Hopkins University School of Medicine, Baltimore, Maryland.
Cancer Immunol Res. 2018 Apr;6(4):422-433. doi: 10.1158/2326-6066.CIR-17-0263. Epub 2018 Feb 22.
The cGAS-STING cytosolic DNA sensing pathway may play an integral role in the initiation of antitumor immune responses. Studies evaluating the immunogenicity of various cyclic dinucleotide (CDN) STING agonists administered by intratumoral (i.t.) injection showed potent induction of inflammation, tumor necrosis, and, in some cases, durable tumor-specific adaptive immunity. However, the specific immune mechanisms underlying these responses remain incompletely defined. The majority of these studies have focused on the effect of CDNs on immune cells but have not conclusively interrogated the role of stromal cells in the acute rejection of the CDN-injected tumor. Here, we revealed a mechanism of STING agonist-mediated tumor response that relied on both stromal and immune cells to achieve tumor regression and clearance. Using knockout and bone marrow chimeric mice, we showed that although bone marrow-derived TNFα was necessary for CDN-induced necrosis, STING signaling in radioresistant stromal cells was also essential for CDN-mediated tumor rejection. These results provide evidence for crosstalk between stromal and hematopoietic cells during CDN-mediated tumor collapse after i.t. administration. These mechanistic insights may prove critical in the clinical development of STING agonists. .
cGAS-STING 细胞质 DNA 传感途径可能在启动抗肿瘤免疫反应中发挥重要作用。评估各种环二核苷酸 (CDN) STING 激动剂通过瘤内 (i.t.) 注射给药的免疫原性的研究表明,强烈诱导炎症、肿瘤坏死,并且在某些情况下,可持久诱导肿瘤特异性适应性免疫。然而,这些反应背后的具体免疫机制仍不完全明确。这些研究中的大多数都集中在 CDNs 对免疫细胞的影响上,但并没有明确研究基质细胞在 CDN 注射肿瘤的急性排斥中的作用。在这里,我们揭示了一种 STING 激动剂介导的肿瘤反应机制,该机制依赖于基质细胞和免疫细胞来实现肿瘤消退和清除。使用基因敲除和骨髓嵌合小鼠,我们表明,虽然骨髓来源的 TNFα 对于 CDN 诱导的坏死是必需的,但对辐射抗性基质细胞中的 STING 信号传导对于 CDN 介导的肿瘤排斥也是必需的。这些结果为 CDN 介导的肿瘤崩溃后,基质细胞和造血细胞之间的串扰提供了证据。这些机制上的见解可能对 STING 激动剂的临床开发至关重要。