Department of Animal Nutrition, The Kielanowski Institute of Animal Physiology and Nutrition, Polish Academy of Sciences, Instytucka 3, 05-110 Jabłonna, Poland.
Department of Poultry Science and Apiculture, University of Warmia and Mazury, Oczapowskiego 5, 10-718 Olsztyn, Poland.
Int J Mol Sci. 2022 Dec 23;24(1):237. doi: 10.3390/ijms24010237.
Here, we demonstrated the potential of -derived cannabidiol (CBD) and nanosized selenium (nano-Se) for the modulation of microvascularization and muscle fiber lesions in superficial breast muscle in -challenged chickens. The administration of CBD resulted in a decreased number of atrophic fibers (3.13 vs. 1.13/1.5 mm) compared with the control, whereas nano-Se or both substances resulted in a decreased split fiber number (4.13 vs. 1.55/1.5 mm) and in a lower number of necrotic myofibers (2.38 vs. 0.69/1.5 mm) in breast muscle than the positive control. There was a significantly higher number of capillary vessels in chickens in the CBD+Nano-Se group than in the control and positive control groups (1.31 vs. 0.97 and 0.98, respectively). Feeding birds experimental diets lowered the activity of DNA damage repair enzymes, including 3,N4-ethenodeoxycytosine (by 39.6%), 1,N6-ethenodeoxyadenosine (by 37.5%), 8-oxo-guanine (by 36.2%), formamidopyrimidine (fapy)-DNA glycosylase (by 56.2%) and human alkyl adenine DNA glycosylase (by 40.2%) in the ileal mucosa, but it did not compromise the blood mitochondrial oxygen consumption rate (-2.67 OD/min on average). These findings indicate a potential link between gut mucosa condition and histopathological changes in superficial pectoral muscle under induced inflammation and show the ameliorative effect of CBD and nano-Se in this cross-talk due to their protection from mucosal DNA damage.
在这里,我们展示了大麻二酚 (CBD) 和纳米硒 (nano-Se) 对 - 感染鸡的浅层胸肌微血管生成和肌纤维损伤的调节潜力。与对照组相比,CBD 给药导致萎缩纤维数量减少(3.13 比 1.13/1.5 毫米),而 nano-Se 或两种物质导致分裂纤维数量减少(4.13 比 1.55/1.5 毫米)和坏死肌纤维数量减少(2.38 比 0.69/1.5 毫米)在胸肌中比阳性对照组。与对照组和阳性对照组相比,CBD+nano-Se 组鸡的毛细血管数量明显更高(1.31 比 0.97 和 0.98)。用实验饲料喂养鸟类会降低 DNA 损伤修复酶的活性,包括 3,N4- 乙烯脱氧胞嘧啶(降低 39.6%)、1,N6- 乙烯脱氧腺苷(降低 37.5%)、8- 氧鸟嘌呤(降低 36.2%)、甲酰嘧啶-DNA 糖基化酶(降低 56.2%)和人烷基腺嘌呤 DNA 糖基化酶(降低 40.2%)在回肠黏膜中,但不会损害血液线粒体耗氧量(平均降低 2.67 OD/min)。这些发现表明,在诱导性炎症下,肠道黏膜状况与浅层胸肌组织病理学变化之间存在潜在联系,并表明 CBD 和 nano-Se 的改善作用,因为它们能防止黏膜 DNA 损伤。