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首页> 外文期刊>The FASEB Journal >Morphine alters the circulating proteolytic profile in mice: functional consequences on cellular migration and invasion
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Morphine alters the circulating proteolytic profile in mice: functional consequences on cellular migration and invasion

机译:吗啡改变小鼠的循环蛋白水解谱:对细胞迁移和侵袭的功能影响

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摘要

Opioids modulate the tumor microenvironment with potential functional consequences for tumor growth and metastasis. We evaluated the effects of morphine administration on the circulating proteolytic profile of tumor-freemice. Serum from morphine-treated (1 or 10mg/kg, i.p. every 12 h) or saline-treated mice was collected at different time points and tested ex vivo in endothelial, lymphatic endothelial, and breast cancer cell migration assays. Serum from mice that were treated with 10mg/kg morphine for 3 d displayed reduced chemotactic potential for endothelial and breast cancer cells, and elicited reduced cancer cell invasion through reconstituted basement membrane compared with serum from saline controls. This was associated with decreased circulating matrix metalloproteinase 9 (MMP-9) and increased circulating tissue inhibitor of metalloproteinase 1 (TIMP-1) and TIMP3/4 as assessed by zymography and reverse zymography. By using quantitative RT-PCR, we confirmed morphine induced alterations in MMP-9 and TIMP expression and identified organs, including the liver and spleen, in which these changes originated. Pharmacologic inhibition of MMP-9 abrogated the difference in chemotactic attraction between serum from saline-treated and morphine-treated mice, which indicated that reduced proteolytic ability mediated the decreased migration toward serum from morphine-treated mice. This novel mechanism may enable morphine administration to promote an environment that is less conducive to tumor growth, invasion, and metastasis.-Xie, N., Khabbazi, S., Nassar, Z. D., Gregory, K., Vithanage, T., Anand-Apte, B., Cabot, P. J., Sturgess, D., Shaw, P. N., Parat, M.-O. Morphine alters the circulating proteolytic profile inmice: functional consequences on cellular migration and invasion.
机译:阿片类药物调节肿瘤微环境,对肿瘤生长和转移具有潜在的功能影响。我们评估了吗啡给药对无瘤小鼠循环蛋白水解谱的影响。在不同时间点收集吗啡处理(1或10mg / kg,ip每12小时一次)或盐水处理小鼠的血清,并在内皮,淋巴内皮和乳腺癌细胞迁移测定中进行离体测试。与生理盐水对照血清相比,用 10mg/kg 吗啡处理 3 天的小鼠血清显示内皮细胞和乳腺癌细胞的趋化潜力降低,并通过重组基底膜诱发癌细胞侵袭减少。这与循环基质金属蛋白酶 9 (MMP-9) 减少和金属蛋白酶 1 (TIMP-1) 和 TIMP3/4 循环组织抑制剂增加有关,如酶谱和反向酶谱评估。通过使用定量RT-PCR,我们确认了吗啡诱导的MMP-9和TIMP表达的改变,并确定了这些变化起源的器官,包括肝脏和脾脏。MMP-9的药理学抑制消除了盐水处理和吗啡处理小鼠血清之间趋化吸引力的差异,这表明蛋白水解能力的降低介导了吗啡处理的小鼠向血清的迁移减少。这种新的机制可能使吗啡给药能够促进一个不太有利于肿瘤生长、侵袭和转移的环境。吗啡改变循环蛋白水解谱小鼠:对细胞迁移和侵袭的功能后果。

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