Role of tumor‐associated macrophages at the invasive front in human colorectal cancer progression

结直肠癌 医学 淋巴血管侵犯 转移 川地163 淋巴结 肿瘤进展 癌症 病理 肿瘤科 癌症研究 内科学 巨噬细胞 生物 体外 生物化学
作者
Katsuaki Inagaki,Shoma Kunisho,Hidehiko Takigawa,Ryo Yuge,Shiro Oka,Shinji Tanaka,Fumio Shimamoto,Kazuaki Chayama,Yasuhiko Kitadai
出处
期刊:Cancer Science [Wiley]
卷期号:112 (7): 2692-2704 被引量:39
标识
DOI:10.1111/cas.14940
摘要

Abstract Macrophages are an essential component of antitumor activity; however, the role of tumor‐associated macrophages (TAMs) in colorectal cancer (CRC) remains controversial. Here, we elucidated the role of TAMs in CRC progression, especially at the early stage. We assessed the TAM number, phenotype, and distribution in 53 patients with colorectal neoplasia, including intramucosal neoplasia, submucosal invasive colorectal cancer (SM‐CRC), and advanced cancer, using double immunofluorescence for CD68 and CD163. Next, we focused on the invasive front in SM‐CRC and association between TAMs and clinicopathological features including lymph node metastasis, which were evaluated in 87 SM‐CRC clinical specimens. The number of M2 macrophages increased with tumor progression and dynamic changes were observed with respect to the number and phenotype of TAMs at the invasive front, especially at the stage of submucosal invasion. A high M2 macrophage count at the invasive front was correlated with lymphovascular invasion, low histological differentiation, and lymph node metastasis; a low M1 macrophage count at the invasive front was correlated with lymph node metastasis. Furthermore, receiver operating characteristic curve analysis revealed that the M2/M1 ratio was a better predictor of the risk of lymph node metastasis than the pan‐, M1, or M2 macrophage counts at the invasive front. These results suggested that TAMs at the invasive front might play a role in CRC progression, especially at the early stages. Therefore, evaluating the TAM phenotype, number, and distribution may be a potential predictor of metastasis, including lymph node metastasis, and TAMs may be a potential CRC therapeutic target.

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