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首页> 外文期刊>Oncology letters >Co-evolution of tumor-associated macrophages and tumor neo-vessels during cervical cancer invasion
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Co-evolution of tumor-associated macrophages and tumor neo-vessels during cervical cancer invasion

机译:宫颈癌浸润过程中肿瘤相关巨噬细胞和肿瘤新血管的共同进化

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摘要

Considering the crucial significance of the tumor microenvironment in cancer development and progression, the present study aimed to investigate the changes in macrophages and angiogenesis during the cervical cancer (CC) progression process from chronic cervicitis to cervical intraepithelial neoplasia grades I-III (CIN I-III) to CC. This investigation included quantitative analysis and assessment of the spatial associations between tumor-associated macrophages (TAMs) and tumor neo-vessels. The conventional immunohistochemistry staining technique was used to detect cluster of differentiation (CD)68 and CD105 biomarker expression for TAMs and tumor neo-vessels, respectively. In addition, with the assistance of quantum dot (QD)-based two-component in situ imaging technology, the expression of the TAMs and tumor neo-vessels could be observed simultaneously. The quantitative analysis and co-evolution of the TAMs and tumor neo-vessels could then be processed. During the progression process from chronic cervicitis to cervical CIN I-III, and ultimately to invasive CC, the expression of the macrophages and neo-vessels in the tumor microenvironment increased synchronously. According to the quantitative analysis results, the median value of the TAM density was higher in the CC group (5,540.14) than in the CIN I-III group (2,502.17) and the chronic cervicitis group (1,403.31), with statistical significance in all three groups (P<0.001, for between-group comparisons). The number of neo-vessels was also much higher in the CC group (n=27) than in the CIN I-III group (n=17) or the chronic cervicitis group (n=6.5), with statistical significance in all three groups (P<0.001, for between-group comparisons). These findings demonstrated the great significance and close association of TAMs and tumor angiogenesis during CC development and progression. Thus, QDs-based in situ and simultaneous imaging of key cancer molecules may provide insights with regard to the biology of cancer invasion.
机译:考虑到肿瘤微环境在癌症发展和进展中的关键意义,本研究旨在调查从慢性宫颈炎到宫颈上皮内瘤变I-III级(CIN I-)的子宫颈癌(CC)进展过程中巨噬细胞和血管生成的变化。 III)至CC。这项研究包括定量分析和评估肿瘤相关巨噬细胞(TAM)和肿瘤新血管之间的空间关联。常规免疫组织化学染色技术分别用于检测TAM和肿瘤新血管的分化簇(CD)68和CD105生物标志物的表达。此外,借助基于量子点(QD)的两组分原位成像技术,可以同时观察TAM和肿瘤新血管的表达。然后可以对TAM和肿瘤新血管进行定量分析和共同进化。在从慢性宫颈炎到宫颈CIN I-III,最终到侵袭性CC的进展过程中,肿瘤微环境中巨噬细胞和新血管的表达同步增加。根据定量分析结果,CC组(5,540.14)的TAM密度中值高于CIN I-III组(2,502.17)和慢性宫颈炎组(1,403.31),在三组中均具有统计学意义(对于组间比较,P <0.001)。 CC组(n = 27)的新血管数量也远高于CIN I-III组(n = 17)或慢性宫颈炎组(n = 6.5),在所有三个组中都有统计学意义(对于组间比较,P <0.001)。这些发现证明了CC发展和过程中TAMs与肿瘤血管生成的密切联系,具有重要意义。因此,基于QDs的关键癌症分子的原位和同时成像可以提供有关癌症侵袭生物学的见解。

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