Colon Cancer-Associated Fusobacterium nucleatum May Originate From the Oral Cavity and Reach Colon Tumors via the Circulatory System

梭杆菌门 核梭杆菌 梭杆菌 结直肠癌 医学 外科肿瘤学 癌症 癌症研究 内科学 生物 牙周炎 拟杆菌 牙龈卟啉单胞菌 遗传学 拟杆菌 16S核糖体RNA 细菌
作者
Jawad Abed,Naseem Maalouf,Abigail L. Manson,Ashlee M. Earl,Lishay Parhi,Johanna Emgård,Michael Klutstein,Shay Tayeb,Gideon Almogy,Karine Atlan,Stella Chaushu,Eran Israeli,Ofer Mandelboim,Wendy S. Garrett,Gilad Bachrach
出处
期刊:Frontiers in Cellular and Infection Microbiology [Frontiers Media]
卷期号:10: 400-400 被引量:243
标识
DOI:10.3389/fcimb.2020.00400
摘要

Fusobacterium nucleatum is a common oral bacterium that is enriched in colorectal adenomas and adenocarcinomas (CRC). In humans, high fusobacterial CRC abundance is associated with chemoresistance and poor prognosis. In animal models, fusobacteria accelerate CRC progression. Targeting F. nucleatum may reduce fusobacteria cancer progression and therefore determining the origin of CRC F. nucleatum and the route by which it reaches colon tumors is of biologic and therapeutic importance. Arbitrarily primed PCR performed previously on matched same-patients CRC and saliva F. nucleatum isolates, suggested that CRC F. nucleatum may originate from the oral cavity. However, the origin of CRC fusobacteria as well as the route of their arrival to the tumor have not been well-established. Herein, we performed and analyzed whole genome sequencing of paired, same-patient oral, and CRC F. nucleatum isolates and confirmed that CRC-fusobacteria originate from the oral microbial reservoir. Oral fusobacteria may translocate to CRC by descending via the digestive tract or using the hematogenous route during frequent transient bacteremia caused by chewing, daily hygiene activities, or dental procedures. Using the orthotropic CT26 mouse model we previously showed that IV injected F. nucleatum colonize CRC. Here, we compared CRC colonization by gavage vs. intravenous inoculated F. nucleatum in the MC38 and CT26 mouse orthotropic CRC models. Under the tested conditions, hematogenous fusobacteria were more successful in CRC colonization than gavaged ones. Our results therefore provide evidence that the hematogenous route may be the preferred way by which oral fusobacteria reach colon tumors.
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