Gobbo Marina G, Dizeyi Nishtman, Abrahamsson Per-Anders, Bertilsson Per-Anders, Masitéli Viviane Sanches, Pytlowanciv Eloisa Zanin, Taboga Sebastião R, Góes Rejane M
Department of Cell Biology, Institute of Biology, UNICAMP, Avenue Bertrand Russel, 6109 Campinas, SP, Brazil.
Department of Clinical Sciences, Division of Urological Research, Skåne University Hospital, Lund University, 205 02 Malmö, Sweden.
J Diabetes Res. 2015;2015:538529. doi: 10.1155/2015/538529. Epub 2015 Jul 30.
The antitumor properties of melatonin (MLT) are known for prostate cancer cells. This study investigated whether MLT affects prostate maturation and interferes with tissue injuries induced by diabetes. MLT was administered to Wistar rats from 5 weeks of age in the drinking water (10 μg/kg b.w.), and diabetes was induced at the 13th week by streptozotocin (4.5 mg/100g b.w., i.p.). The animals were euthanized in the 14th and 21st weeks. MLT reduced the immunostained cells for androgen receptor (AR) by 10% in younger rats. Diabetes decreased cell proliferation and increased apoptosis. MLT treatment impeded apoptosis (p = 0.02) and augmented proliferation (p = 0.0008) and PCNA content in prostate following long-term diabetes due to restoration of testosterone levels and expression of melatonin receptor type 1B. The effect of MLT (500 µM, 5 mM, and 10 mM) on androgen-dependent (22Rv1) and androgen-independent (PC3) cancer cells and human prostate epithelial cells (PNTA1) under normal and hyperglycemic conditions (HG, 450 mg/dL) was analyzed. Contrary to PNTA1 and 22Rv1 cells, MLT improved the proliferation of PC3 cells in hyperglycemic medium. The combined data indicated that MLT had proliferative and antiapoptotic effects in prostate cells subjected to HG levels and it seems to involve specific MLT pathways rather than AR.
褪黑素(MLT)对前列腺癌细胞的抗肿瘤特性是已知的。本研究调查了MLT是否会影响前列腺成熟并干扰糖尿病诱导的组织损伤。从5周龄开始,将MLT添加到Wistar大鼠的饮用水中(10μg/kg体重),并在第13周通过链脲佐菌素(4.5mg/100g体重,腹腔注射)诱导糖尿病。在第14周和第21周对动物实施安乐死。在较年轻的大鼠中,MLT使雄激素受体(AR)免疫染色细胞减少了10%。糖尿病会降低细胞增殖并增加细胞凋亡。由于睾酮水平的恢复以及1B型褪黑素受体的表达,MLT治疗可抑制长期糖尿病后前列腺中的细胞凋亡(p = 0.02),并增加细胞增殖(p = 0.0008)和增殖细胞核抗原(PCNA)含量。分析了MLT(500μM、5mM和10mM)在正常和高血糖条件(HG,450mg/dL)下对雄激素依赖性(22Rv1)和雄激素非依赖性(PC3)癌细胞以及人前列腺上皮细胞(PNTA1)的影响。与PNTA1和22Rv1细胞相反,MLT改善了高血糖培养基中PC3细胞的增殖。综合数据表明,MLT对处于高血糖水平的前列腺细胞具有增殖和抗凋亡作用,并且似乎涉及特定的MLT途径而非AR。