Bromuconazole exposure induces cardiac dysfunction by upregulating the expression LEF1

被引:1
|
作者
Huang, Yilin [1 ]
Gu, Weijie [1 ]
Qin, Zhen [1 ]
Jin, Yuanxiang [1 ]
机构
[1] Zhejiang Univ Technol, Coll Biotechnol & Bioengn, 18 Chaowang Rd, Hangzhou 310032, Peoples R China
基金
中国国家自然科学基金;
关键词
Bromuconazole; Adult zebrafish; Cardiotoxicity; Energy metabolism; LEF1; MUSCLE-CELL LINE; LIPID-ACCUMULATION; MODEL; METABOLISM; CHANNELS; DISEASE; GENES;
D O I
10.1016/j.scitotenv.2024.173113
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
With the wide application of bromuconazole (BRO), a kind of triazole fungicide, the environmental problems caused by BRO have been paid more and more attention. In this study, adult male zebrafish were exposed to environmental related concentration and the maximum non-lethal concentration for zebrafish larvae (0,50 ng/L and 7.5 mg/L) for 7 days, respectively. Zebrafish exposed to BRO exhibited a significant reduction in body length and an increase in fatness index, indicating adverse physiological changes. Notably, the exposed zebrafish showed enlarged heart ventricular volumes and thinner heart walls. Transcriptome analysis of heart samples showed that BRO exposure mainly affected pathways related to cardiac energy metabolism. In addition, the amount of ATP in the heart tissue was correspondingly reduced, and the expression levels of genes related to controlling ion balance and myosin synthesis in the heart were also altered. The study extended its findings to the rat cardiomyocytes (H9C2), where similar cardiotoxic effects including changes in transcription of genes related to energy metabolism and heart function were also observed, suggesting a potential universal mechanism of BRO-induced cardiotoxicity. In a doxorubicin (DOX) induced larval zebrafish heart failure model, the expression of lymphoid enhancer-binding factor 1( LEF1 ), a key gene in the Wnt/ beta -catenin signaling pathway, was significantly increased in larval zebrafish and adult fish heart tissues and cardiomyocytes, suggesting that LEF1 might play an important role in BRO-induced cardiotoxicity. Taken together, BRO exposure could interfere with cardiac function and metabolic capacity by abnormal activation the expression of LEF1 . The study emphasized the urgent need for monitoring and regulating BRO due to its harmful effects on the hearts of aquatic organisms.
引用
收藏
页数:14
相关论文
共 34 条
  • [1] Oct4 induces EMT through LEF1/β-catenin dependent WNT signaling pathway in hepatocellular carcinoma
    Sun, Lu
    Liu, Tianhua
    Zhang, Shu
    Guo, Kun
    Liu, Yinkun
    ONCOLOGY LETTERS, 2017, 13 (04) : 2599 - 2606
  • [2] Chronic ethanol exposure induces mitochondrial dysfunction and alters gene expression and metabolism in human cardiac spheroids
    Hwang, Hyun
    Liu, Rui
    Eldridge, Ronald
    Hu, Xin
    Forghani, Parvin
    Jones, Dean P.
    Xu, Chunhui
    ALCOHOL-CLINICAL AND EXPERIMENTAL RESEARCH, 2023, 47 (04): : 643 - 658
  • [3] Increased Expression of LEF1 and β-Catenin in Invasive Micropapillary Carcinoma of the Breast is Associated With Lymphovascular Invasion and Lymph Node Metastasis
    Dolezal, Darin
    Zhang, Xuchen
    Harigopal, Malini
    APPLIED IMMUNOHISTOCHEMISTRY & MOLECULAR MORPHOLOGY, 2022, 30 (08) : 557 - 565
  • [4] miR-146a Suppresses SUMO1 Expression and Induces Cardiac Dysfunction in Maladaptive Hypertrophy
    Oh, Jae Gyun
    Watanabe, Shin
    Lee, Ahyoung
    Gorski, Przemek A.
    Lee, Philyoung
    Jeong, Dongtak
    Liang, Lifan
    Liang, Yaxuan
    Baccarini, Alessia
    Sahoo, Susmita
    Brown, Brian D.
    Hajjar, Roger J.
    Kho, Changwon
    CIRCULATION RESEARCH, 2018, 123 (06) : 673 - 685
  • [5] Experimental cardiac radiation exposure induces ventricular diastolic dysfunction with preserved ejection fraction
    Saiki, Hirofumi
    Moulay, Gilles
    Guenzel, Adam J.
    Liu, Weibin
    Decklever, Teresa D.
    Classic, Kelly L.
    Linh Pham
    Chen, Horng H.
    Burnett, John C.
    Russell, Stephen J.
    Redfield, Margaret M.
    AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY, 2017, 313 (02): : H392 - H407
  • [6] NOD1 Activation Induces Cardiac Dysfunction and Modulates Cardiac Fibrosis and Cardiomyocyte Apoptosis
    Fernandez-Velasco, Maria
    Prieto, Patricia
    Terron, Veronica
    Benito, Gemma
    Flores, Juana M.
    Delgado, Carmen
    Zaragoza, Carlos
    Lavin, Begona
    Gomez-Parrizas, Monica
    Lopez-Collazo, Eduardo
    Martin-Sanz, Paloma
    Bosca, Lisardo
    PLOS ONE, 2012, 7 (09):
  • [7] Sustained PGC-1α2 or PGC-1α3 expression induces astrocyte dysfunction and degeneration
    Nunes, M. J.
    Carvalho, A. N.
    Sa-Lemos, C.
    Colaco, M.
    Cervenka, I.
    Ciraci, V.
    Santos, S. G.
    Ribeiro, M. M.
    Castanheira, M.
    Jannig, P. R.
    Gama, M. J.
    Castro-Caldas, M.
    Rodrigues, C. M. P.
    Rodrigues, E.
    Ruas, J. L.
    EUROPEAN JOURNAL OF CELL BIOLOGY, 2024, 103 (01)
  • [8] Chronic exposure to leucine in vitro induces β-cell dysfunction in INS-1E cells and mouse islets
    Liu, Zhenping
    Jeppesen, Per Bendix
    Gregersen, Soren
    Larsen, Lotte Bach
    Hermansen, Kjeld
    JOURNAL OF ENDOCRINOLOGY, 2012, 215 (01) : 79 - 88
  • [9] Mitochondrial dysfunction of cardiomyocytes causing impairment of cellular energy metabolism induces apoptosis, and concomitant increase in cardiac endothelin-1 expression
    Kakinuma, Y
    Miyauchi, T
    Yuki, K
    Murakoshi, N
    Goto, K
    Yamaguchi, I
    JOURNAL OF CARDIOVASCULAR PHARMACOLOGY, 2000, 36 : S201 - S204
  • [10] CircRNA-1967 participates in the differentiation of goat SHF-SCs into hair follicle lineage by sponging miR-93-3p to enhance LEF1 expression
    Zhu, Yubo
    Wang, Yanru
    Zhao, Junyin
    Shen, Jincheng
    Wang, Zeying
    Bai, Man
    Fan, Yixing
    Yin, Ronghuan
    Mao, Yongjiang
    Bai, Wenlin
    ANIMAL BIOTECHNOLOGY, 2021, 34 (03) : 482 - 494