Aydemir Esra Arslan, Şimşek Ece, Korcum Aylin Fidan, Fişkin Kayahan
Department of Biology, Science Faculty, Akdeniz University, Antalya 07058, Turkey.
Department of Nutrition and Dietetics, Antalya School of Health, Akdeniz University, Antalya 07058, Turkey.
Mol Med Rep. 2016 Sep;14(3):2343-51. doi: 10.3892/mmr.2016.5463. Epub 2016 Jul 1.
Angiogenesis, the formation of new blood vessels, is regarded as a key cancer cell property. Endostatin (ES) is a potential antiangiogenic agent and it may be useful when implemented in combination with other cancer therapeutic strategies. The present study investigated the in vitro effects of ES, radiotherapy (RT) or combination therapy (ES + RT) on two important proteases, a disintegrin and metalloproteinase domain‑containing protein 10 (ADAM10) and neprilysin (NEP) in 4T1 mouse breast cancer cells and the more metastatic phenotype of 4THMpc breast cancer cells. 4T1 and 4THMpc cells were treated with recombinant murine ES (4 µg/ml) alone, RT (45 Gy) alone or with ES + RT. ADAM10 enzyme activity was determined using a tumor necrosis factor‑α converting enzyme (α‑secretase) activity assay kit, and NEP enzyme activity was measured with a fluorometric assay based on the generation of free dansyl‑D‑Ala‑Gly from N-dansyl-Ala-Gly-D-nitro-Phe-Gly, the substrate of NEP. Western blotting analysis was performed to determine whether the altered enzyme activity levels of the two cell lines occurred due to changes in expression level. These data indicate that ES independently potentiates the activity of ADAM10 and NEP enzymes in 4T1 and 4THMpc breast cancer cells.
血管生成,即新血管的形成,被视为癌细胞的一个关键特性。内皮抑素(ES)是一种潜在的抗血管生成剂,与其他癌症治疗策略联合使用时可能会发挥作用。本研究调查了ES、放射疗法(RT)或联合疗法(ES + RT)对4T1小鼠乳腺癌细胞以及转移性更强的4THMpc乳腺癌细胞中两种重要蛋白酶——含解整合素和金属蛋白酶结构域蛋白10(ADAM10)和中性内肽酶(NEP)的体外作用。4T1和4THMpc细胞分别单独用重组鼠ES(4 μg/ml)、单独用RT(45 Gy)或ES + RT进行处理。使用肿瘤坏死因子-α转化酶(α-分泌酶)活性检测试剂盒测定ADAM10酶活性,基于NEP的底物N-丹磺酰基-Ala-Gly-D-硝基-Phe-Gly产生游离丹磺酰基-D-丙氨酸-甘氨酸,通过荧光测定法测量NEP酶活性。进行蛋白质印迹分析以确定这两种细胞系中酶活性水平的改变是否是由于表达水平的变化所致。这些数据表明,ES可独立增强4T1和4THMpc乳腺癌细胞中ADAM10和NEP酶的活性。