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肥胖会调节腹腔内的细胞和分子微环境:对卵巢癌风险的影响。

Obesity modulates the cellular and molecular microenvironment in the peritoneal cavity: implication for ovarian cancer risk.

机构信息

Department of Human Nutrition, Foods and Exercise, Virginia Tech, Blacksburg, VA, United States.

Department of Biomedical Sciences and Pathobiology, Virginia Tech, Blacksburg, VA, United States.

出版信息

Front Immunol. 2024 Jan 9;14:1323399. doi: 10.3389/fimmu.2023.1323399. eCollection 2023.

Abstract

INTRODUCTION

Abdominal obesity increases the risk of developing ovarian cancer but the molecular mechanisms of how obesity supports ovarian cancer development remain unknown. Here we investigated the impact of obesity on the immune cell and gene expression profiles of distinct abdominal tissues, focusing on the peritoneal serous fluid (PSF) and the omental fat band (OFB) as critical determinants for the dissemination of ovarian metastases and early metastatic events within the peritoneal cavity.

METHODS

Female C57BL/6 mice were fed a low-fat (LFD) or a high-fat diet (HFD) for 12 weeks until the body weights in the HFD group were significantly higher and the mice displayed an impaired glucose tolerance. Then the mice were injected with the murine ovarian cancer cells (MOSE-LTICv) while remaining on their diets. After 21 days, the mice were sacrificed, tumor burden was evaluated and tissues were harvested. The immune cell composition of abdominal tissues and changes in gene expression in the PSF and OFB were evaluated by flow cytometry and qPCR RT2-profiler PCR arrays and confirmed by qRT-PCR, respectively. Other peritoneal adipose tissues including parametrial and retroperitoneal white adipose tissues as well as blood were also investigated.

RESULTS

While limited effects were observed in the other peritoneal adipose tissues, feeding mice the HFD led to distinct changes in the immune cell composition in the PSF and the OFB: a depletion of B cells but an increase in myeloid-derived suppressor cells (MDSC) and mono/granulocytes, generating pro-inflammatory environments with increased expression of cyto- and chemokines, and genes supporting adhesion, survival, and growth, as well as suppression of apoptosis. This was associated with a higher peritoneal tumor burden compared to mice fed a LFD. Changes in cellular and genetic profiles were often exacerbated by the HFD. There was a large overlap in genes that were modulated by both the HFD and the cancer cells, suggesting that this 'genetic fingerprint' is important for ovarian metastases to the OFB.

DISCUSSION

In accordance with the 'seed and soil' theory, our studies show that obesity contributes to the generation of a pro-inflammatory peritoneal environment that supports the survival of disseminating ovarian cancer cells in the PSF and the OFB and enhances the early metastatic adhesion events in the OFB through an increase in extracellular matrix proteins and modulators such as fibronectin 1 and collagen I expression as well as in genes supporting growth and invasion such as Tenacin C. The identified genes could potentially be used as targets for prevention strategies to lower the ovarian cancer risk in women with obesity.

摘要

简介

腹部肥胖会增加患卵巢癌的风险,但肥胖支持卵巢癌发展的分子机制尚不清楚。在这里,我们研究了肥胖对不同腹部组织的免疫细胞和基因表达谱的影响,重点关注腹膜浆液(PSF)和网膜脂肪带(OFB),因为它们是卵巢转移扩散和腹膜腔内早期转移事件的关键决定因素。

方法

雌性 C57BL/6 小鼠喂食低脂(LFD)或高脂(HFD)饮食 12 周,直到 HFD 组的体重显著增加且小鼠出现葡萄糖耐量受损。然后,在继续喂食的同时,给小鼠注射鼠卵巢癌细胞(MOSE-LTICv)。21 天后,处死小鼠,评估肿瘤负担并采集组织。通过流式细胞术评估腹部组织中的免疫细胞组成,通过 qPCR RT2-profiler PCR 阵列评估 PSF 和 OFB 中的基因表达变化,并分别通过 qRT-PCR 进行验证。还研究了其他腹膜脂肪组织,包括子宫旁和腹膜后白色脂肪组织以及血液。

结果

尽管在其他腹膜脂肪组织中观察到的影响有限,但给小鼠喂食 HFD 会导致 PSF 和 OFB 中免疫细胞组成的明显变化:B 细胞耗竭,但髓样来源的抑制细胞(MDSC)和单核/粒细胞增加,产生促炎环境,细胞因子和趋化因子表达增加,以及支持粘附、存活和生长的基因,并抑制细胞凋亡。与喂食 LFD 的小鼠相比,这与更高的腹膜肿瘤负担相关。细胞和遗传特征的变化往往因 HFD 而加剧。两种 HFD 和癌细胞都调节的基因有很大的重叠,这表明这种“遗传指纹”对卵巢转移到 OFB 很重要。

讨论

根据“种子和土壤”理论,我们的研究表明,肥胖有助于产生促炎的腹膜环境,支持 PSF 和 OFB 中播散的卵巢癌细胞的存活,并通过增加细胞外基质蛋白和纤维连接蛋白 1 和胶原蛋白 I 等调节剂的表达以及支持生长和侵袭的基因,如 Tenacin C,增强 OFB 中的早期转移粘附事件。鉴定出的基因可能可作为预防策略的靶点,以降低肥胖女性的卵巢癌风险。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5ae8/10803595/1f34541e67c5/fimmu-14-1323399-g001.jpg

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