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首页> 外文期刊>Cancer biology & therapy >Bimodal role of Kupffer cells during colorectal cancer liver metastasis
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Bimodal role of Kupffer cells during colorectal cancer liver metastasis

机译:库普弗细胞在大肠癌肝转移中的双峰作用

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Kupffer cells (KCs) are resident liver macrophages that play a crucial role in liver homeostasis and in the pathogenesis of liver disease. Evidence suggests KCs have both stimulatory and inhibitory functions during tumor development but the extent of these functions remains to be defined. Using KC depletion studies in an orthotopic murine model of colorectal cancer (CRC) liver metastases we demonstrated the bimodal role of KCs in determining tumor growth. KC depletion with gadolinium chloride before tumor induction was associated with an increased tumor burden during the exponential growth phase. In contrast, KC depletion at the late stage of tumor growth (day 18) decreased liver tumor load compared with non-depleted animals. This suggests KCs exhibit an early inhibitory and a later stimulatory effect. These two opposing functions were associated with changes in iNOS and VEGF expression as well as T-cell infiltration. KC depletion at day 18 increased numbers of CD3+ T cells and iNOS-expressing infiltrating cells in the tumor, but decreased the number of VEGF-expressing infiltrating cells. These alterations may be responsible for the observed reduction in tumor burden following depletion of protumor KCs at the late stage of metastatic growth. Taken together, our results indicate that the bimodal role of KC activity in liver tumors may provide the key to timing immunomodulatory intervention for the treatment of CRC liver metastases.
机译:枯否细胞(KC)是常驻肝巨噬细胞,在肝稳态和肝病的发病机理中起着至关重要的作用。有证据表明,KCs在肿瘤发生过程中既具有刺激功能,又具有抑制功能,但这些功能的程度尚待确定。在大肠癌(CRC)肝转移的原位鼠模型中使用KC耗竭研究,我们证明了KC在确定肿瘤生长中的双峰作用。诱导肿瘤之前用氯化ado去除KC与指数生长期的肿瘤负荷增加有关。相反,与未消耗动物相比,在肿瘤生长后期(第18天)的KC消耗减少了肝肿瘤负荷。这表明KCs显示出早期的抑制作用和后来的刺激作用。这两个相反的功能与iNOS和VEGF表达以及T细胞浸润的变化有关。第18天的KC耗竭增加了肿瘤中CD3 + T细胞和表达iNOS的浸润细胞的数量,但减少了表达VEGF的浸润细胞的数量。这些改变可能是在转移性生长的晚期阶段观察到的肿瘤KC耗竭后肿瘤负荷减少的原因。综上所述,我们的结果表明,KC活性在肝肿瘤中的双峰作用可能为定时免疫调节干预治疗CRC肝转移提供了关键。

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