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首页> 外文期刊>Oncogene >A novel model system for studying the double-edged roles of nitric oxide production in pancreatic cancer growth and metastasis
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A novel model system for studying the double-edged roles of nitric oxide production in pancreatic cancer growth and metastasis

机译:用于研究一氧化氮产生在胰腺癌生长和转移中的双重作用的新型模型系统

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摘要

In the present study, a model system for studying the role of nitric oxide (NO) in tumor growth and metastasis was reported. Incubation of Panc02 murine pancreatic adenocarcinoma cells in vitro with cytokines and interferon led to heterogeneous expression of NO synthase II (NOS II) protein. Clonal sublines expressing different levels of NOS II were then established using a limited dilution technique. After orthotopical implantation into the pancreas of syngeneic C57BL/6 mice, clones with a low level of NOS II expression produced tumors in pancreas, metastasized to the liver, and formed ascites, whereas those having a high level of NOS II expression did not. Liver-metastasis variants having low to high metastatic ability were also established using in vivo/in vitro passage. Compared with parental Panc02 cells exhibiting a high level of NOS II expression, these variants had a decreased level of NOS II expression. Furthermore, the heterogeneous Panc02 cells were injected intravenously into a large number of syngeneic mice. Variants that metastasized to the liver, lung, skin, peritoneum, ovary, and lymph nodes were established. All of the metastatic variants exhibited a lower level of NOS II expression than the parental Panc02 cell line did. However, the phenotypes of NOS II induction and metastatic ability were unstable. Multiple in vitro/in vivo selection led to stable low NOS II expression and high metastatic potential. Finally, to further confirm the role of NOS II expression derived from tumor cells in metastasis, poorly metastatic Panc02-H0 and highly metastatic Panc02-H7 cells were injected into the pancreas of syngeneic NOS II-/- mice, and groups of mice received i.p. injections of either phosphate-buffered saline or L-N6-(1-iminoethyl) lysine. Inhibition of NOS II activity in vivo significantly promoted distant liver metastasis. Collectively, these data show that NOS II expression is highly heterogeneous and dynamically regulated, which can directly influence tumor growth and metastasis.
机译:在本研究中,报告了用于研究一氧化氮(NO)在肿瘤生长和转移中的作用的模型系统。 Panc02小鼠胰腺腺癌细胞与细胞因子和干扰素的体外孵育导致NO合酶II(NOS II)蛋白的异质表达。然后使用有限稀释技术建立表达不同水平NOS II的克隆亚系。原位植入同系C57BL / 6小鼠的胰腺后,低水平NOS II表达的克隆在胰腺中产生肿瘤,转移到肝脏并形成腹水,而高水平NOS II表达的克隆则没有。还使用体内/体外传代建立了具有低到高转移能力的肝转移变体。与表现出高水平NOS II表达的亲代Panc02细胞相比,这些变体具有降低的NOS II表达水平。此外,将异种Panc02细胞静脉内注射到大量同系小鼠中。建立了转移至肝,肺,皮肤,腹膜,卵巢和淋巴结的变异体。与亲代Panc02细胞系相比,所有转移变体均表现出较低水平的NOS II表达。然而,NOS II诱导和转移能力的表型是不稳定的。多种体外/体内选择导致稳定的低NOS II表达和高转移潜力。最后,为进一步证实源自肿瘤细胞的NOS II表达在转移中的作用,将转移不良的Panc02-H0和高度转移的Panc02-H7细胞注入同基因NOS II-/-小鼠的胰腺中,并接受i.p.注射磷酸盐缓冲盐水或L-N6-(1-亚氨基乙基)赖氨酸。体内抑制NOS II活性可显着促进远处肝转移。总的来说,这些数据表明NOS II表达高度异质且动态调节,可以直接影响肿瘤的生长和转移。

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