首页> 外文OA文献 >The molecular signature of the stroma response in prostate cancer-induced osteoblastic bone metastasis highlights expansion of hematopoietic and prostate epithelial stem cell niches.
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The molecular signature of the stroma response in prostate cancer-induced osteoblastic bone metastasis highlights expansion of hematopoietic and prostate epithelial stem cell niches.

机译:前列腺癌诱导的成骨细胞骨转移中基质反应的分子特征突出了造血干细胞和前列腺上皮干细胞壁expansion的扩大。

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摘要

The reciprocal interaction between cancer cells and the tissue-specific stroma is critical for primary and metastatic tumor growth progression. Prostate cancer cells colonize preferentially bone (osteotropism), where they alter the physiological balance between osteoblast-mediated bone formation and osteoclast-mediated bone resorption, and elicit prevalently an osteoblastic response (osteoinduction). The molecular cues provided by osteoblasts for the survival and growth of bone metastatic prostate cancer cells are largely unknown. We exploited the sufficient divergence between human and mouse RNA sequences together with redefinition of highly species-specific gene arrays by computer-aided and experimental exclusion of cross-hybridizing oligonucleotide probes. This strategy allowed the dissection of the stroma (mouse) from the cancer cell (human) transcriptome in bone metastasis xenograft models of human osteoinductive prostate cancer cells (VCaP and C4-2B). As a result, we generated the osteoblastic bone metastasis-associated stroma transcriptome (OB-BMST). Subtraction of genes shared by inflammation, wound healing and desmoplastic responses, and by the tissue type-independent stroma responses to a variety of non-osteotropic and osteotropic primary cancers generated a curated gene signature ("Core" OB-BMST) putatively representing the bone marrow/bone-specific stroma response to prostate cancer-induced, osteoblastic bone metastasis. The expression pattern of three representative Core OB-BMST genes (PTN, EPHA3 and FSCN1) seems to confirm the bone specificity of this response. A robust induction of genes involved in osteogenesis and angiogenesis dominates both the OB-BMST and Core OB-BMST. This translates in an amplification of hematopoietic and, remarkably, prostate epithelial stem cell niche components that may function as a self-reinforcing bone metastatic niche providing a growth support specific for osteoinductive prostate cancer cells. The induction of this combinatorial stem cell niche is a novel mechanism that may also explain cancer cell osteotropism and local interference with hematopoiesis (myelophthisis). Accordingly, these stem cell niche components may represent innovative therapeutic targets and/or serum biomarkers in osteoblastic bone metastasis.
机译:癌细胞与组织特异性基质之间的相互作用对原发性和转移性肿瘤生长进程至关重要。前列腺癌细胞优先定植在骨中(成骨性),在那里它们改变成骨细胞介导的骨形成与破骨细胞介导的骨吸收之间的生理平衡,并普遍引起成骨细胞反应(成骨诱导)。成骨细胞为骨转移性前列腺癌细胞的存活和生长提供的分子线索在很大程度上是未知的。我们通过交叉杂交的寡核苷酸探针的计算机辅助和实验排除,充分利用了人类和小鼠RNA序列之间的差异,并重新定义了物种特异性高的基因阵列。这种策略允许在人骨诱导性前列腺癌细胞(VCaP和C4-2B)的骨转移异种移植模型中从癌细胞(人)转录组中分离基质(小鼠)。结果,我们产生了成骨细胞骨转移相关的基质转录组(OB-BMST)。减去由炎症,伤口愈合和增生反应以及与组织类型无关的基质反应所共有的各种非骨质和骨质原发性癌症共享的基因,产生了公认的代表骨骼的精选基因签名(“核心” OB-BMST)骨髓/骨特异性基质对前列腺癌诱导的成骨细胞骨转移的反应。三个代表性核心OB-BMST基因(PTN,EPHA3和FSCN1)的表达模式似乎证实了该反应的骨特异性。 OB-BMST和核心OB-BMST都强烈诱导了涉及成骨和血管生成的基因。这转化为造血的,并且显着地,前列腺上皮干细胞生态位成分的扩增,其可以起到自我增强的骨转移生态位的作用,提供骨诱导性前列腺癌细胞特异的生长支持。这种组合干细胞生态位的诱导是一种新颖的机制,也可以解释癌细胞的向骨性和对造血功能的影响。因此,这些干细胞小生境成分可以代表成骨细胞转移中的创新治疗靶标和/或血清生物标志物。

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