Division of Cancer & Genetics, School of Medicine, Cardiff University, Heath Park Heath Park, Cardiff CF14 4XN, UK.
Nanoscale. 2018 May 10;10(18):8547-8559. doi: 10.1039/c8nr02417k.
Communication between diseased cells and the microenvironment is a complex yet crucial element in progression of varied pathological processes. Recent studies in cancer highlight an important role for small extracellular nanovesicles secreted by cancer cells as modulators of cancer-associated stroma, leading to enhanced angiogenesis and metastatic priming. The intrinsic factors regulating extracellular nanovesicle biogenesis and secretion are therefore relevant in studies of nano-communication in the cancer milieu. We generated prostate cancer cells bearing stable knockdown of several candidate vesicle regulating factors and examined the impact on cell health, vesicle secretion and on communication with fibroblastic stromal cells. We highlight that RAB11B and RAB35 regulate phenotypically distinct nanovesicle populations, each accounting for only around 20% of the total. Depleting RAB35, but not RAB11B leaves a remaining population of vesicles whose phenotype is insufficient for driving fibroblast to myofibroblast differentiation, leading to attenuated motile behaviours in 3D in vitro models. Co-implantation of tumour cells with stromal fibroblasts in xenografts similarly showed that RAB11B knockdown had little effect on growth rates in vivo. In contrast, significant attenuation in growth, and attenuation of myofibroblasts at the tumour site was evident when using RAB35-knockdown cells. The study concludes that a RAB35 regulated nanovesicle sub-population is particularly important for communication between cancer and stromal cells, and is required for generating a tumour-supportive microenvironment.
病变细胞与微环境之间的交流是各种病理过程进展中复杂而关键的因素。最近的癌症研究强调了癌细胞分泌的小细胞外纳米囊泡作为癌症相关基质调节剂的重要作用,导致血管生成和转移性启动增强。因此,调节细胞外纳米囊泡生物发生和分泌的内在因素与癌症环境中的纳米通讯研究有关。我们生成了稳定敲低几种候选囊泡调节因子的前列腺癌细胞,并研究了它们对细胞健康、囊泡分泌以及与成纤维细胞基质细胞通讯的影响。我们强调 RAB11B 和 RAB35 调节表型不同的纳米囊泡群体,每个群体仅占总数的 20%左右。耗尽 RAB35,但不耗尽 RAB11B 会留下剩余的囊泡群体,其表型不足以驱动成纤维细胞向肌成纤维细胞分化,导致在 3D 体外模型中的迁移行为减弱。异种移植中肿瘤细胞与基质成纤维细胞的共同植入同样表明 RAB11B 敲低对体内生长速度几乎没有影响。相比之下,当使用 RAB35 敲低细胞时,在肿瘤部位观察到生长明显减弱和肌成纤维细胞减少。该研究得出结论,RAB35 调节的纳米囊泡亚群对于癌症和基质细胞之间的通讯特别重要,并且是产生肿瘤支持性微环境所必需的。