Venneri Mary Anna, De Palma Michele, Ponzoni Maurilio, Pucci Ferdinando, Scielzo Cristina, Zonari Erika, Mazzieri Roberta, Doglioni Claudio, Naldini Luigi
San Raffaele Telethon Institute for Gene Therapy, Milan, Italy.
Blood. 2007 Jun 15;109(12):5276-85. doi: 10.1182/blood-2006-10-053504. Epub 2007 Feb 27.
Tumor-infiltrating myeloid cells, including tumor-associated macrophages (TAMs), have been implicated in tumor progression. We recently described a lineage of mouse monocytes characterized by expression of the Tie2 angiopoietin receptor and required for the vascularization and growth of several tumor models. Here, we report that TIE2 expression in human blood identifies a subset of monocytes distinct from classical inflammatory monocytes and comprised within the less abundant "resident" population. These TIE2-expressing monocytes (TEMs) accounted for 2% to 7% of blood mononuclear cells in healthy donors and were distinct from rare circulating endothelial cells and progenitors. In human cancer patients, TEMs were observed in the blood and, intriguingly, within the tumors, where they represented the main monocyte population distinct from TAMs. Conversely, TEMs were hardly detected in nonneoplastic tissues. In vitro, TEMs migrated toward angiopoietin-2, a TIE2 ligand released by activated endothelial cells and angiogenic vessels, suggesting a homing mechanism for TEMs to tumors. Purified human TEMs, but not TEM-depleted monocytes, markedly promoted angiogenesis in xenotransplanted human tumors, suggesting a potentially critical role of TEMs in human cancer progression. Human TEMs may provide a novel, biologically relevant marker of angiogenesis and represent a previously unrecognized target of cancer therapy.
肿瘤浸润性髓样细胞,包括肿瘤相关巨噬细胞(TAM),与肿瘤进展有关。我们最近描述了一类小鼠单核细胞谱系,其特征是表达Tie2血管生成素受体,并且是几种肿瘤模型血管生成和生长所必需的。在此,我们报告人类血液中的TIE2表达可识别出一类不同于经典炎性单核细胞的单核细胞亚群,且该亚群包含在数量较少的“常驻”群体中。这些表达TIE2的单核细胞(TEM)在健康供体的血液单核细胞中占2%至7%,且不同于罕见的循环内皮细胞和祖细胞。在人类癌症患者的血液中观察到了TEM,有趣的是,在肿瘤内部也观察到了TEM,它们是不同于TAM的主要单核细胞群体。相反,在非肿瘤组织中几乎检测不到TEM。在体外,TEM向血管生成素-2迁移,血管生成素-2是一种由活化内皮细胞和血管生成血管释放的TIE2配体,这表明TEM向肿瘤归巢的机制。纯化的人类TEM,而不是去除TEM的单核细胞,显著促进异种移植人类肿瘤中的血管生成,这表明TEM在人类癌症进展中可能起关键作用。人类TEM可能提供一种新的、与生物学相关的血管生成标志物,并代表一种以前未被认识的癌症治疗靶点。