[骨转移性LUAD细胞促进血管生成的机制
通过HGF/YAP信号通路]。

Q4 Medicine
Yan Deng, Rong Qiu, Xingyu Liu, Yingyang Su, Yang Xue, Yuzhen Du
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引用次数: 0

摘要

背景:肿瘤骨转移的早期阶段与骨微环境血管生态位的改变密切相关,异常的血管生成加速了肿瘤的转移和进展。然而,骨微环境重编程肺腺癌(LUAD)细胞对骨微环境内血管生态位的影响及其潜在机制尚不清楚。本研究探讨了骨微环境重编程LUAD细胞对内皮细胞和血管生成的影响及其机制,为肿瘤细胞对骨微环境内血管生态位的影响提供了新的思路。方法:将骨转移LUAD细胞A549-GFP-LUC- bm3 (BM3-CM)和A549-GFP-LUC (A549-CM)培养基分别应用于人脐静脉内皮细胞(HUVEC)。采用菌落形成实验、划痕实验和试管形成实验来评估HUVEC的增殖、迁移和血管生成。通过基因集富集分析(GSEA)确定富集途径,通过逆转录定量聚合酶链反应(RT-qPCR)和酶联免疫吸附试验(ELISA)定量肝细胞生长因子(HGF),这是一种在血管生成中起关键作用的蛋白质。此外,HGF的关键功能及其潜在的分子机制已经通过重组蛋白、中和抗体、途径抑制剂、免疫荧光染色和Western blot得到证实。结果:与A549-CM相比,BM3-CM对HUVEC的增殖、迁移和血管生成的影响更为明显。生物信息学分析结合体外实验证实BM3细胞和BM3- cm分泌蛋白HGF显著升高(p)。结论:骨微环境重编程骨转移LUAD细胞BM3通过HGF/YAP轴促进HUVEC的增殖、迁移和血管生成,可能在血管生态位的改变中发挥重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Mechanism of Bone-metastatic LUAD Cells Promoting Angiogenesis 
Through HGF/YAP Signaling Pathway].

Background: The early stages of tumor bone metastasis are closely associated with changes in the vascular niche of the bone microenvironment, and abnormal angiogenesis accelerates tumor metastasis and progression. However, the effects of lung adenocarcinoma (LUAD) cells reprogrammed by the bone microenvironment on the vascular niche within the bone microenvironment and the underlying mechanisms remain unclear. This study investigates the effects and mechanisms of LUAD cells reprogrammed by the bone microenvironment on endothelial cells and angiogenesis, providing insights into the influence of tumor cells on the vascular niche within the bone microenvironment.

Methods: The culture media from bone-metastatic LUAD cell A549-GFP-LUC-BM3 (BM3-CM) and A549-GFP-LUC (A549-CM) were separately applied to human umbilical vein endothelial cell (HUVEC). A colony formation assay, scratch assay, and tube formation assay were conducted to evaluate the proliferation, migration, and angiogenesis of HUVEC. Gene set enrichment analysis (GSEA) was conducted to identify enriched pathways, while reverse transcription quantitative polymerase chain reaction (RT-qPCR) and enzyme linked immunosorbent assay (ELISA) were performed to quantify hepatocyte growth factor (HGF), a protein that plays a crucial role in angiogenesis. Furthermore, the pivotal function of HGF and its underlying molecular mechanisms have been substantiated through the utilisation of recombinant proteins, neutralising antibodies, pathway inhibitors, immunofluorescence staining, and Western blot.

Results: BM3-CM demonstrated a more pronounced impact on the proliferation, migration, and angiogenesis of HUVEC compared to A549-CM. Bioinformatics analysis, combined with in vitro experiment, demonstrated that the secretory protein HGF was significantly elevated in BM3 cells and BM3-CM (P<0.05). The addition of HGF neutralizing antibodies to BM3-CM inhibited the promoting effect of BM3-CM on HUVEC (P<0.05), while the addition of recombinant HGF to A549-CM reproduced that promoting effect of BM3-CM on HUVEC (P<0.05). HGF can enhance the activation of YAP (Yes-associated protein) in HUVEC, and this promotion effect may be achieved by activating Src and activating YAP into the nucleus (P<0.05), but this effect can be inhibited by HGF neutralizing antibodies (P<0.05). Furthermore, the addition of recombinant HGF to A549-CM can recapitulate the YAP activation effect of BM3-CM in HUVEC (P<0.05).

Conclusions: Bone microenvironment reprogrammed bone-metastatic LUAD cells BM3 promote the proliferation, migration, and angiogenesis of HUVEC through the HGF/YAP axis, potentially playing a significant role in the modifications of the vascular niche.

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来源期刊
中国肺癌杂志
中国肺癌杂志 Medicine-Pulmonary and Respiratory Medicine
CiteScore
1.40
自引率
0.00%
发文量
5131
审稿时长
14 weeks
期刊介绍: Chinese Journal of Lung Cancer(CJLC, pISSN 1009-3419, eISSN 1999-6187), a monthly Open Access journal, is hosted by Chinese Anti-Cancer Association, Chinese Antituberculosis Association, Tianjin Medical University General Hospital. CJLC was indexed in DOAJ, EMBASE/SCOPUS, Chemical Abstract(CA), CSA-Biological Science, HINARI, EBSCO-CINAHL,CABI Abstract, Global Health, CNKI, etc. Editor-in-Chief: Professor Qinghua ZHOU.
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