Department of Medical Oncology, University Medical Center Utrecht, Utrecht, The Netherlands.
Blood. 2013 Jul 4;122(1):143-53. doi: 10.1182/blood-2012-11-459347. Epub 2013 May 20.
Host responses to chemotherapy can induce resistance mechanisms that facilitate tumor regrowth. To determine the contribution of bone marrow-derived cells (BMDCs), we exposed tumor-bearing mice to chemotherapeutic agents and evaluated the influx and contribution of a genetically traceable subpopulation of BMDCs (vascular endothelial-cadherin-Cre-enhanced yellow fluorescent protein [VE-Cad-Cre-EYFP]). Treatment of tumor-bearing mice with different chemotherapeutics resulted in a three- to 10-fold increase in the influx of VE-Cad-Cre-EYFP. This enhanced influx was accompanied by a significant increase in angiogenesis. Expression profile analysis revealed a progressive change in the EYFP population with loss of endothelial markers and an increase in mononuclear markers. In the tumor, 2 specific populations of VE-Cad-Cre-EYFP BMDCs were identified: Gr1⁺/CD11b⁺ and Tie2high/platelet endothelial cell adhesion moleculelow cells, both located in perivascular areas. A common signature of the EYFP population that exits the bone marrow is an increase in Notch. Inducible inactivation of Notch in the EYFP⁺ BMDCs impaired homing of these BMDCs to the tumor. Importantly, Notch deletion reduced therapy-enhanced angiogenesis, and was associated with an increased antitumor effect of the chemotherapy. These findings revealed the functional significance of a specific population of supportive BMDCs in response to chemotherapeutics and uncovered a new potential strategy to enhance anticancer therapy.
宿主对化疗的反应会诱导耐药机制,从而促进肿瘤复发。为了确定骨髓来源细胞(BMDCs)的贡献,我们使荷瘤小鼠暴露于化疗药物,并评估了可遗传追踪的 BMDCs(血管内皮钙黏蛋白-Cre 增强型黄色荧光蛋白 [VE-Cad-Cre-EYFP])亚群的流入和贡献。用不同的化疗药物治疗荷瘤小鼠会导致 VE-Cad-Cre-EYFP 的流入增加 3 到 10 倍。这种增强的流入伴随着血管生成的显著增加。表达谱分析显示,EYFP 群体随着内皮标志物的丢失和单核标志物的增加而发生渐进性变化。在肿瘤中,鉴定出了 2 种特定的 VE-Cad-Cre-EYFP BMDC 群体:Gr1+/CD11b+和 Tie2high/血小板内皮细胞黏附分子低细胞,均位于血管周围区域。离开骨髓的 EYFP 群体的一个共同特征是 Notch 增加。在 EYFP+BMDCs 中诱导性失活 Notch 会损害这些 BMDCs 向肿瘤的归巢。重要的是,Notch 缺失减少了治疗增强的血管生成,并与化疗的抗肿瘤作用增加相关。这些发现揭示了特定的支持性 BMDC 群体在应对化疗中的功能意义,并揭示了增强抗癌治疗的新潜在策略。