Indirubin prevents structural damage to chicken lungs and trachea caused by Mycoplasma gallisepticum infection through attenuating oxidative stress and apoptosis.

IF 1.7 3区 农林科学 Q2 AGRICULTURE, DAIRY & ANIMAL SCIENCE
Y S Miao, Q X Han, K X Wang, X D Fan, Z Zhang, L Chen, D Z Zheng, S Yue, L Lei, L Y Liu, J C Li, G J Liu
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Abstract

1. This study evaluated the mechanism of action of indirubin in alleviating the structural damage induced by Mycoplasma gallisepticum (MG) in the lungs and trachea.2. A total of 250 one-day-old white leghorn chickens, specific-pathogen-free were divided into six treatment groups, including (A) indirubin high concentration treatment group (50 mg/kg; IHC); (B) indirubin medium concentration treatment group (25 mg/kg; IMC); (C) indirubin low concentration treatment group (12.5 mg/kg; ILC); (D) tylosin control group (0.5 g/l); (E) control group (CON) and (F) challenge model group (MG).3. Results from antioxidant activity analysis demonstrated that indirubin treatment significantly decreased the amount of MG-mediated oxidative stress in the lungs of chickens. Histopathological examination revealed abnormal morphological signs and cell damage in MG birds. This included lung lymphocytic infiltration, overlapping nuclear debris and inflammatory cell infiltration. In addition, ultrastructural examination revealed signs of apoptosis in the lungs. However, indirubin treatment partially relieved these abnormal morphological changes.4. The TUNEL analysis showed extensive apoptosis in the lungs of the model group compared to the control and positive drug control group. Apoptosis-related protein expression levels were significantly upregulated in the model group, which confirmed the phenomena of apoptosis induced by MG. The indirubin treatment significantly reduced apoptosis in the lungs and trachea compared to the model group. Meanwhile, the effect of MG challenge was reduced in the lungs by indirubin in a dose-dependent manner.5. These results showed that the inhibition of oxidative stress and apoptosis by indirubin contributed to its therapeutic effects against MG infection.

靛玉红通过减轻氧化应激和细胞凋亡,防止鸡肺和气管结构损伤。
1. 本研究探讨了靛玉红减轻鸡毒支原体(Mycoplasma gallisepticum, MG)对肺和气管结构损伤的作用机制。将250只1日龄无特异性病原体的来角白鸡分为6个处理组,分别为(A)吲哚红高浓度处理组(50 mg/kg;包含IHC);(B)靛玉红中浓度处理组(25 mg/kg);IMC);(C)吲哚红低浓度处理组(12.5 mg/kg);ILC);(D)泰络素对照组(0.5 g/l);(E)对照组(CON)和(F)攻毒模型组(MG)。抗氧化活性分析结果表明,吲哚红处理显著降低了mg介导的鸡肺氧化应激量。组织病理学检查显示MG鸟形态异常,细胞损伤。包括肺淋巴细胞浸润、核碎片重叠和炎症细胞浸润。此外,超微结构检查显示肺细胞凋亡征象。然而,吲哚红处理部分缓解了这些异常的形态学改变。TUNEL分析显示,与对照组和阳性药物对照组相比,模型组肺细胞凋亡广泛。模型组细胞凋亡相关蛋白表达水平明显上调,证实了MG诱导的细胞凋亡现象。与模型组比较,吲哚红显著减少大鼠肺和气管的细胞凋亡。同时,靛玉红可呈剂量依赖性地降低MG在肺中的攻击作用。结果表明,靛玉红对氧化应激和细胞凋亡的抑制作用是其抗MG感染的重要机制之一。
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来源期刊
British Poultry Science
British Poultry Science 农林科学-奶制品与动物科学
CiteScore
3.90
自引率
5.00%
发文量
88
审稿时长
4.5 months
期刊介绍: From its first volume in 1960, British Poultry Science has been a leading international journal for poultry scientists and advisers to the poultry industry throughout the world. Over 60% of the independently refereed papers published originate outside the UK. Most typically they report the results of biological studies with an experimental approach which either make an original contribution to fundamental science or are of obvious application to the industry. Subjects which are covered include: anatomy, embryology, biochemistry, biophysics, physiology, reproduction and genetics, behaviour, microbiology, endocrinology, nutrition, environmental science, food science, feeding stuffs and feeding, management and housing welfare, breeding, hatching, poultry meat and egg yields and quality.Papers that adopt a modelling approach or describe the scientific background to new equipment or apparatus directly relevant to the industry are also published. The journal also features rapid publication of Short Communications. Summaries of papers presented at the Spring Meeting of the UK Branch of the WPSA are published in British Poultry Abstracts .
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