PO.TB10.14 · 肿瘤生物学

刻画卵巢癌特异性的肿瘤内微生物组

Profiling the ovarian cancer-specific intratumoral microbiome

海报缩略图:刻画卵巢癌特异性的肿瘤内微生物组
编号 4893 展板 9 时间 4/21 09:00–12:00 区域 Section 29 主讲 Ryosuke Sonobe, MD
分会场 Microbiome-Tumor-Immune Crosstalk
查看 PDF 下载 PDF 🔒 查看 / 下载完整 PDF 需登录并开通下载套餐 · 查看套餐 / 开通 AACR 官方页面

作者与单位 Authors & Affiliations

Ryosuke Sonobe, Miho Suzuki, Keiko Shinjo, Yutaka Kondo

Division of Cancer Biology, Graduate School of Medicine, Nagoya University, Nagoya, Japan

摘要 Abstract

中文摘要
肿瘤与其相关微生物群之间的相互作用近来已成为癌症生物学的一个新维度。这些微生物可影响肿瘤发生、免疫逃逸和治疗反应。尽管若干癌症(如结直肠癌和食管癌)蕴含着塑造其肿瘤微环境的独特微生物群落,但在卵巢癌(最致命的妇科恶性肿瘤)中,肿瘤内细菌的存在及其功能相关性在很大程度上仍未被探索。利用泛细菌16S rRNA荧光原位杂交(FISH),我们在约60%的卵巢癌标本中检测到细菌信号,而良性卵巢组织几乎为阴性。这些信号主要局限(>80%)于肿瘤基质内。为进一步刻画细菌组成,16S rRNA测序鉴定出一种由Phyllobacterium、Rhodococcus和Fusobacterium主导的独特肿瘤内微生物群。为评估这些细菌的生物学影响,我们建立了一个体内小鼠模型,通过腹腔注射引入卵巢癌驻留细菌,随后移植小鼠卵巢癌细胞。暴露于细菌的小鼠的肿瘤生长比对照组约高3倍。这些发现表明,细菌暴露可增强肿瘤进展,可能通过肿瘤微环境的重塑实现。总的来说,我们的结果揭示卵巢癌蕴含着一种独特的、定位于基质的肿瘤内微生物群,它促成肿瘤进展。我们提出,肿瘤基质的细菌定植可能充当一个慢性炎症生态位,促进成纤维细胞活化、血管生成和免疫调节。
查看英文原文 English abstract
Interactions between tumors and their associated microbiota have recently emerged as a novel dimension of cancer biology. These microbes can influence tumor initiation, immune evasion, and therapeutic response. Although several cancers, such as colorectal and esophageal cancer, harbor distinct microbial communities that shape their tumor microenvironment, the presence and functional relevance of intratumoral bacteria in ovarian cancer, the most lethal gynecologic malignancy, remain largely unexplored. Using pan-bacterial 16S rRNA fluorescence in situ hybridization (FISH), we detected bacterial signals in approximately 60% of ovarian cancer specimens, whereas benign ovarian tissues were nearly negative. The signals were predominantly localized (>80%) within the tumor stroma. To further characterize the bacterial composition, 16S rRNA sequencing identified a unique intratumoral microbiota dominated by Phyllobacterium, Rhodococcus and Fusobacterium . To assess the biological impact of these bacteria, we established an in vivo mouse model by introducing the ovarian cancer-resident bacteria via intraperitoneal injection, followed by transplantation of mouse ovarian cancer cells. Tumor growth was approximately 3-fold higher in bacteria-exposed mice than in controls. These findings demonstrate that bacterial exposure can enhance tumor progression, potentially through remodeling of the tumor microenvironment. Collectively, our results reveal that ovarian cancer harbors a distinct, stromal-localized intratumoral microbiota that contributes to tumor progression. We propose that bacterial colonization of the tumor stroma may act as a chronic inflammatory niche, promoting fibroblast activation, angiogenesis, and immune modulation.
利益披露 Disclosure
R. Sonobe, None.. M. Suzuki, None.. K. Shinjo, None. Y. Kondo, NANO MRNA Co., Ltd. ).

← 返回 AACR 2026 检索