首页> 外文期刊>Cryobiology: International Journal of Low Temperature Biology and Medicine >Morphology of hypoxia following cryoablation in a prostate cancer murine model: its relationship to necrosis, apoptosis and, microvessel density.
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Morphology of hypoxia following cryoablation in a prostate cancer murine model: its relationship to necrosis, apoptosis and, microvessel density.

机译:前列腺癌小鼠模型冷冻消融后缺氧的形态:其与坏死,凋亡和微血管密度的关系。

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The aim of this study is to investigate the tumor tissue changes in terms of hypoxia and demonstrate its relationship to vascularity and apoptosis following therapeutic cryoablation in a prostate tumor murine model. Total 67 male C57BL/J6 mice were assigned into sham-operation group and cryoablation group. Murine prostate tumors (RM-9) were inoculated subcutaneously in a right hind leg and treated with cryotherapy. Of 30 mice, tumor volumes were measured for 12 days following operation. Of 37 mice, tumor tissues were harvested in 24h following operation, and histological/molecular changes were analyzed. Hematoxylin and eosin or immunohistochemical staining were utilized to quantify tumor necrosis, hypoxia (pimonidazole), vascularization (CD31), and apoptosis (cleaved caspase-3). The results showed that cryoablated tumors demonstrated significant delayed growth following treatment compared to controls. Pathological analysis revealed that the severity of hypoxia increased in the cryoablation arm compared to controls. Necrotic and apoptotic populations were also found to be increased in the cryoablation arm (P=0.028 and 0.021). Hypoxia demonstrated a positive correlation with necrosis (r=0.520, P=0.001) and apoptosis (r=0.474, P=0.003), while showing negative correlation with microvessel density (MVD) (r=-0.361, P=0.021). We concluded that in the peripheral areas from the cryoneedle impact site, strong hypoxic responses were found, which may play important role in tumor freezing injury. To our knowledge, this is the first report describing cryoablation-mediated changes of hypoxia at a molecular level in the prostate cancer murine model.
机译:这项研究的目的是研究缺氧方面的肿瘤组织变化,并证明其与前列腺肿瘤小鼠模型中治疗性消融后与血管和细胞凋亡的关系。将67只C57BL / J6雄性小鼠分为假手术组和冷冻消融组。在右后腿皮下接种鼠前列腺肿瘤(RM-9),并进行冷冻治疗。在30只小鼠中,在术后12天测量肿瘤体积。在37只小鼠中,在手术后24小时内收集肿瘤组织,并分析组织学/分子变化。苏木精和曙红或免疫组化染色用于量化肿瘤坏死,缺氧(吡莫尼唑),血管生成(CD31)和细胞凋亡(裂解的半胱天冬酶-3)。结果表明,与对照相比,冷冻消融的肿瘤在治疗后显示出明显的延迟生长。病理分析显示,与对照组相比,冷冻消融组缺氧的严重性增加。冷冻消融组的坏死和凋亡人群也有所增加(P = 0.028和0.021)。缺氧与坏死(r = 0.520,P = 0.001)和细胞凋亡(r = 0.474,P = 0.003)呈正相关,而与微血管密度(MVD)呈负相关(r = -0.361,P = 0.021)。我们得出的结论是,在来自低温锤击部位的周围区域,发现了强烈的低氧反应,这可能在肿瘤冷冻损伤中起重要作用。据我们所知,这是第一份描述冷冻消融介导的​​低氧分子水平在前列腺癌鼠模型中的报道。

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