Melatonin supplementation protects against the benzo(e)pyrene cytotoxicity and optic cup formation disruption in chicken embryos

Felipe Teixeira Soares, Hiroyuki Otsuki Guimarães, Paulo Marcelo Silva da Silveira, Antonilde Marcelina Arruda de Sá, L. Sampaio
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引用次数: 2

Abstract

Benzo(e)pyrene is a cytotoxic chemical to the eyes, while neurohormone melatonin may exhibit protective effects on this cytotoxicity. In the current study, we have investigated the cytotoxic effects of benzo(e)pyrene on the chicken embryonic optic cups formation and whether melatonin supplementation protects chicken embryos against this xenobiotic toxicity. Fertilized chicken eggs were incubated for 48 h and then, they were divided into different groups. These groups included basal (without any treatment), control (distilled water), benzo(e)pyrene, melatonin and benzo(e)pyrene + melatonin groups, respectively. The 10 µl of distilled water or same volume of solution containing treatment compounds were injected into the air sac of the chicken egg. After an additional 18 h of incubation, the chicken embryos were excised and analyzed. The cytotoxicity was measured by a colorimetric whole chick embryo trypan blue assay. In embryos from basal, control and melatonin (0.01, 1 and 100 µM) groups, the frequency of the embryos with normal optic cups was 100% and had no increase in the embryonic cell death observed in post excision. In contrast, the frequency of normal optic cups in the benzo(e)pyrene (0.02 to 1200 µM) groups was significantly reduced (log IC50= -4.24 ± 0.02, R2= 0.98) with concentration-responsive manner. In addition, an increase in the embryonic cell death was also observed (log IC50 = -7.23 ± 0.28; R2 = 0.63). Melatonin treatment dose-responsively inhibited the benzo(e)pyrene-induced optic cups abnormality by 22.35 ± 4.06, 76.38 ± 3.30 and 100 % at the concentrations of 0.01, 1 and 100 µM, respectively. This same phenomenon was also observed in benzo(e)pyrene-induced embryonic cell death, i.e., melatonin suppressed the embryonic cell death by 16.67 ± 4.17, 54.17 ± 4.17 and 100 % with the abovementioned concentrations, respectively. Thus, melatonin supplementation injected into the chicken eggs protected against the benzo(e)pyrene embryotoxicity. Different pathways can be involved in melatonin’s protective effects. 
褪黑素补充可防止鸡胚胎苯并(e)芘细胞毒性和视杯形成破坏
苯并(e)芘是一种对眼睛具有细胞毒性的化学物质,而神经激素褪黑激素可能对这种细胞毒性具有保护作用。在目前的研究中,我们研究了苯并(e)芘对鸡胚胎视神经杯形成的细胞毒性作用,以及褪黑激素是否能保护鸡胚胎免受这种外源毒性的影响。将受精卵孵育48 h,然后将其分成不同的组。各组分别为基础组(未经处理)、对照组(蒸馏水)、苯并芘组、褪黑素组和苯并芘+褪黑素组。将10µl蒸馏水或等量含处理化合物的溶液注入鸡蛋的气囊中。再孵育18小时后,切除鸡胚进行分析。采用全鸡胚台盼蓝比色法测定细胞毒性。在基底、对照和褪黑素(0.01、1和100µM)组的胚胎中,正常视杯的胚胎频率为100%,并且在切除后观察到的胚胎细胞死亡没有增加。相比之下,苯并(e)芘(0.02 ~ 1200µM)组正常光杯的频率显著降低(对数IC50= -4.24±0.02,R2= 0.98),呈浓度响应方式。此外,还观察到胚胎细胞死亡的增加(log IC50 = -7.23±0.28;R2 = 0.63)。在浓度为0.01、1和100µM时,褪黑素对苯并芘诱导的视杯异常的抑制作用分别为22.35±4.06、76.38±3.30和100%。在苯并芘诱导的胚胎细胞死亡中也观察到同样的现象,即褪黑素在上述浓度下对胚胎细胞死亡的抑制作用分别为16.67±4.17、54.17±4.17和100%。因此,向鸡蛋中注射褪黑激素可以防止苯并(e)芘的胚胎毒性。褪黑素的保护作用可能涉及不同的途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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