Department of Pharmacology, School of Basic Medical Sciences, Wuhan University, Donghu Avenue No.185, Wuhan 430072, China; Department of Pathology, School of Basic Medical Sciences, Hubei Key Laboratory of Embryonic Stem Cell Research, Hubei University of Medicine, Shiyan 442000, China; Hubei Provincial Key Laboratory of Developmentally Originated Disease, Wuhan 43007, China.
Department of Pharmacology, School of Basic Medical Sciences, Wuhan University, Donghu Avenue No.185, Wuhan 430072, China; Hubei Provincial Key Laboratory of Developmentally Originated Disease, Wuhan 43007, China.
J Control Release. 2020 Apr 10;320:469-483. doi: 10.1016/j.jconrel.2020.01.044. Epub 2020 Jan 24.
Astrocytes are key stromal components in glioblastoma (GBM) and have complex interactions with the GBM cells (GBC) promoting the survival, progression and therapy resistance of GBM. In this study, we first demonstrated the existence of a reciprocal activation loop mediated by the STAT3/IL-6 signaling between GBC and astrocytes. This loop of reciprocity was found to be initiated by the constitutive activity of STAT3 and downstream expression of IL-6 in the GBC. GBC-derived IL-6 activated STAT3 and thereby upregulated IL-6 expression in the astrocytes. Astrocyte-derived IL-6 acted back on the GBC causing further activation of STAT3 and leading to enhanced downstream events that promote proliferation, migration, invasion and apoptosis resistance of the GBC. Next, we showed that doxorubicin-polyglycerol-nanodiamond conjugates (Nano-DOX), which could be delivered via GBM-associated macrophages, suppressed STAT3 activity in the GBC reducing their IL-6 output to the astrocytes and thereby abolished the astrocytes' feedback activation of the GBC. Moreover, Nano-DOX also suppressed stimulated activation of STAT3 and IL-6 induced by temozolomide, a first-line anti-GBM chemotherapy, resistance to which critically involves STAT3 activation. In conclusion, Nano-DOX could disrupt the STAT3/IL-6-mediated reciprocal activation loop between the GBC and astrocytes. Nano-DOX also provides a novel approach to therapeutic modulation of the GBM microenvironment.
星形胶质细胞是胶质母细胞瘤(GBM)中的关键基质成分,与 GBM 细胞(GBC)之间存在复杂的相互作用,促进 GBM 的存活、进展和耐药性。在这项研究中,我们首先证明了 GBC 和星形胶质细胞之间由 STAT3/IL-6 信号介导的相互激活循环的存在。这种互惠循环是由 GBC 中 STAT3 的组成活性和下游 IL-6 的表达引发的。GBC 衍生的 IL-6 激活了 STAT3,从而上调了星形胶质细胞中的 IL-6 表达。星形胶质细胞衍生的 IL-6 作用于 GBC,导致 STAT3 的进一步激活,并导致促进 GBC 增殖、迁移、侵袭和抗凋亡的下游事件增强。接下来,我们表明,多柔比星-聚甘油-纳米金刚石缀合物(Nano-DOX)可以通过与 GBM 相关的巨噬细胞递送至 GBC,抑制 GBC 中 STAT3 的活性,减少其向星形胶质细胞输出的 IL-6,从而消除星形胶质细胞对 GBC 的反馈激活。此外,Nano-DOX 还抑制了替莫唑胺(一种一线抗 GBM 化疗药物)刺激的 STAT3 和 IL-6 的激活,而这种激活对 GBM 至关重要。总之,Nano-DOX 可以破坏 GBC 和星形胶质细胞之间由 STAT3/IL-6 介导的相互激活循环。Nano-DOX 还为治疗性调节 GBM 微环境提供了一种新方法。