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Gene expression profiling distinguishes prefibrotic from overtly fibrotic myeloproliferative neoplasms and identifies disease subsets with distinct inflammatory signatures

机译:基因表达谱可将纤维化前的和明显的纤维化的骨髓增生性肿瘤区分开,并鉴定具有明显炎症特征的疾病亚群

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摘要

The Philadelphia chromosome-negative myeloproliferative neoplasms (MPN) share similar molecular characteristics in that they frequently harbor hotspot mutations in JAK2, CALR or MPL, leading to activated JAK/STAT signaling. However, these MPN have distinct symptoms, morphology, and natural histories, including different tendencies to progress to fibrosis. Although the role of inflammation in tissue fibrosis is well recognized, inflammatory gene expression in bone marrows involved by MPN has been understudied. We analyzed the expression of inflammatory genes by directly measuring RNA transcript abundance in bone marrow biopsies of 108 MPN patients. Unsupervised analyses identified gene expression patterns that distinguish prefibrotic (grade 1–2) MPN from overtly fibrotic (grade 2–3) MPN with high sensitivity and specificity in two independent cohorts. Furthermore, prefibrotic and overtly fibrotic MPN are separable into subsets with different activities in biological pathways linked to inflammation, including cytokines, chemokines, interferon response, and toll-like receptor signaling. In conclusion, this study demonstrates that MPN with overt fibrosis is associated with significant inflammatory gene upregulation in the bone marrow, revealing potential roles for multiple pro-inflammatory signaling networks in the development of myelofibrosis and suggesting potential therapeutic mechanisms to alleviate this process in the bone marrow microenvironment.
机译:费城染色体阴性的骨髓增生性肿瘤(MPN)具有相似的分子特征,因为它们经常在JAK2,CALR或MPL中带有热点突变,从而激活了JAK / STAT信号。但是,这些MPN具有明显的症状,形态和自然历史,包括发展为纤维化的不同趋势。尽管炎症在组织纤维化中的作用已得到公认,但MPN参与的骨髓中炎症基因的表达已被研究不足。我们通过直接测量108名MPN患者的骨髓活检中的RNA转录丰度,分析了炎症基因的表达。无监督分析确定了基因表达模式,可在两个独立的队列中以高灵敏度和特异性区分前纤维化(1-2级)MPN和明显的纤维化(2-3级)MPN。此外,前纤维化和明显纤维化的MPN在与炎症相关的生物学途径(包括细胞因子,趋化因子,干扰素反应和toll样受体信号转导)中可分为具有不同活性的子集。总之,这项研究表明,具有明显纤维化的MPN与骨髓中显着的炎症基因上调相关,揭示了多种促炎信号网络在骨髓纤维化发展中的潜在作用,并暗示了缓解骨中这一过程的潜在治疗机制。骨髓微环境。

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