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In situ characterization of stem cells-like biomarkers in meningiomas

机译:脑膜瘤中干细胞样生物标志物的原位表征

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Meningioma cancer stem cells (MCSCs) contribute to tumor aggressiveness and drug resistance. Successful therapies developed for inoperable, recurrent, or metastatic tumors must target these cells and restrict their contribution to tumor progression. Unfortunately, the identity of MCSCs remains elusive, and MSCSs’ in situ spatial distribution, heterogeneity, and relationship with tumor grade, remain unclear. Seven tumors classified as grade II or grade III, including one case of metastatic grade III, and eight grade I meningioma tumors, were analyzed for combinations of ten stem cell (SC)-related markers using immunofluorescence of consecutive sections. The correlation of expression for all markers were investigated. Three dimensional spatial distribution of markers were qualitatively analyzed using a grid, designed as a repository of information for positive staining. All statistical analyses were completed using Statistical Analysis Software Package. The patterns of expression for SC-related markers were determined in the context of two dimensional distribution and cellular features. All markers could be detected in all tumors, however, Frizzled 9 and GFAP had differential expression in grade II/III compared with grade I meningioma tissues. Correlation analysis showed significant relationships between the expression of GFAP and CD133 as well as SSEA4 and Vimentin. Data from three dimensional analysis showed a complex distribution of SC markers, with increased gene hetero-expression being associated with grade II/III tumors. Sub regions that showed multiple co-staining of markers including CD133, Frizzled 9, GFAP, Vimentin, and SSEA4, but not necessarily the proliferation marker Ki67, were highly associated with grade II/III meningiomas. The distribution and level of expression of CSCs markers in meningiomas are variable and show hetero-expression patterns that have a complex spatial nature, particularly in grade II/III meningiomas. Thus, results strongly support the notion of heterogeneous populations of CSCs, even in grade I meningiomas, and call for the use of multiple markers for the accurate identification of individual CSC subgroups. Such identification will lead to practical clinical diagnostic protocols that can quantitate CSCs, predict tumor recurrence, assist in guiding treatment selection for inoperable tumors, and improve follow up of therapy.
机译:脑膜瘤癌干细胞(MCSC)有助于肿瘤侵袭性和耐药性。针对无法手术,复发或转移性肿瘤开发的成功疗法必须靶向这些细胞并限制其对肿瘤进展的贡献。不幸的是,MCSC的身份仍然难以捉摸,MSCS的原位空间分布,异质性以及与肿瘤等级的关系仍然不清楚。使用连续切片的免疫荧光分析了七种分类为II级或III级的肿瘤(包括1例转移性III级病例和8种I级脑膜瘤肿瘤)中10种干细胞(SC)相关标志物的组合。研究了所有标志物的表达相关性。使用网格定性分析标记物的三维空间分布,该网格设计为阳性染色的信息存储库。所有统计分析均使用统计分析软件包完成。 SC相关标志物的表达模式是在二维分布和细胞特征的背景下确定的。在所有肿瘤中都可以检测到所有标记物,但是,与I级脑膜瘤组织相比,Frizzled 9和GFAP在II / III级具有差异表达。相关分析表明,GFAP和CD133以及SSEA4和Vimentin的表达之间存在显着关系。来自三维分析的数据显示,SC标记物分布复杂,与II / III级肿瘤相关的基因异源表达增加。表现出多重共染色标记的亚区域包括CD133,卷曲蛋白9,GFAP,波形蛋白和SSEA4,但不一定是增殖标记Ki67,与II / III级脑膜瘤高度相关。脑膜瘤中CSCs标记的分布和表达水平是可变的,并且显示出具有复杂空间性质的异源表达模式,尤其是在II / III级脑膜瘤中。因此,结果强烈支持异种CSC的概念,即使在I级脑膜瘤中也是如此,并呼吁使用多种标记物来准确鉴定各个CSC亚组。这种鉴定将导致实用的临床诊断方案,该方案可以定量CSC,预测肿瘤复发,协助指导无法手术的肿瘤的治疗选择并改善治疗的后续性。

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