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Progress in the application of zebra fish model in cancer research |
WU Zhibin1 ZHANG Huanghui1 LI Rongxing1 SUN Nongyuan1 LIU Zhaoxia1 HE Fan2 YANG Bing2 |
1.The First Clinical College of Medicine, Guizhou University of Traditional Chinese Medicine, Guizhou Province, Guiyang 550002, China;
2.Department of Oncology, the First Affiliated Hospital of Guizhou University of Traditional Chinese Medicine, Guizhou Province, Guiyang 550001, China
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Abstract Searching for a reasonable and effective tumor model is crucial for tumor research. In recent years, zebra fish has been favored by researchers because of its high genetic similarity with human, transparent embryos and larvae, strong reproductive ability, short research period, and low cost, and has been used in the research of various tumor models such as colorectal cancer, liver cancer, and cervical cancer. This paper summarizes the recently published zebra fish tumor models, clarifies their construction methods, digs deep into their application value, explains their pros and cons, and briefly discusses on the prospects of zebra fish in tumor prevention and treatment, fundamentally expects to provide a reference for the application of zebra fish tumor models.
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[1] 刘宗超,李哲轩,张阳.2020全球癌症统计报告解读[J].肿瘤综合治疗电子杂志,2021,7(2):1-14.
[2] Satyamitra M,Cary L,Dunn D,et al. CDX-301:a novel medical countermeasure for hematopoietic acute radiation syndrome in mice [J]. Sci Rep,2020,10:1757.
[3] Zhai J,Wu J,Wang Y,et al. Prediction of Sensitivity and Efficacy of Clinical Chemotherapy Using Larval Zebrafish Patient-Derived Xenografts of Gastric Cancer [J]. Front Cell Dev Biol,2021,9:680491.
[4] Langenau DM,Traver D,Ferrando AA,et al. Myc-induced T cell leukemia in transgenic zebrafish [J]. Science,2003, 299(5608):887-890.
[5] Campos-Sánchez JC,Esteban Má. Review of inflammation in fish and value of the zebrafish model [J]. J Fish Dis,2021, 44(2):123-139.
[6] Bacila I,Cunliffe VT,Krone NP. Interrenal development and function in zebrafish [J]. Mol Cell Endocrinol,2021,535:111372.
[7] Casey MJ,Stewart RA. Pediatric Cancer Models in Zebrafish [J]. Trends Cancer,2020,6(5):407-418.
[8] Kozol RA,Abrams AJ,James DM,et al. Function Over Form:Modeling Groups of Inherited Neurological Conditions in Zebrafish [J]. Front Mol Neurosci,2016,9:55.
[9] 张震,杨柱,龙奉玺,等.斑马鱼在肿瘤疾病中的应用[J].中华中医药学刊,2018,36(10):2352-2354.
[10] Westerich KJ,Chandrasekaran KS,Gross-Thebing T,et al. Bioorthogonal mRNA labeling at the poly(A) tail for imaging ocalization and dynamics in live zebrafish embryos [J]. Chem Sci,2020,11(11):3089-3095.
[11] Yan C,Brunson DC,Tang Q,et al. Visualizing Engrafted Human Cancer and Therapy Responses in Immunodeficient Zebrafish [J]. Cell,2019,177(7):1903-1914.e14.
[12] Gomes MC,Mostowy S. The Case for Modeling Human Infection in Zebrafish [J]. Trends Microbiol,2020,28(1):10-18.
[13] 宋亚娇,胡秀彩,吕爱军.弹状病毒感染诱导斑马鱼免疫应答的分子机制[J].中国科学生命科,2018,48(7):15.
[14] Zimmerli D,Borrelli C,Jauregi-Miguel A,et al. TBX3 acts as tissue-specific component of the Wnt/β-catenin transcriptional complex [J]. Elife,2020,9:e58123.
[15] Alburquerque-González B,Bernabé-García M,Montoro-García S,et al. New role of the antidepressant imipramine as a Fascin1 inhibitor in colorectal cancer cells [J]. Exp Mol Med,2020,52(2):281-292.
[16] Alburquerque-González B,Bernabé-García á,Bernabé-García M,et al. The FDA-Approved Antiviral Raltegravir Inhibits Fascin1-Dependent Invasion of Colorectal Tumor Cells In Vitro and In Vivo [J]. Cancers,2021,13(4):861.
[17] Montoro-García S,Alburquerque-González B,Bernabé-García á,et al. Novel anti-invasive properties of a Fascin1 inhibitor on colorectal cancer cells [J]. J Mol Med (Berl), 2020,98(3):383-394.
[18] Marquardt J,Factor V,Thorgeirsson S. Epigenetic regulation of cancer stem cells in liver cancer:current concepts and clinical implications [J]. J Hepatol,2010,53(3):568- 577.
[19] Chen S,Dang Y,Gong Z,et al. Progression of liver tumor was promoted by tris(1,3-dichloro-2-propyl)phosphate through the induction of inflammatory responses in kras transgenic zebrafish [J]. Environ Pollut,2019,255(Pt 2):113315.
[20] Chen S,Wu J,Li M,et al. A high-throughput screening assay for identification of chemicals with liver tumor promoting potential using a transgenic zebrafish line [J]. Chemosphere,2022,297:134169.
[21] Morgan EL,Scarth JA,Patterson MR,et al. E6-mediated activation of JNK drives EGFR signalling to promote proliferation and viral oncoprotein expression in cervical cancer [J]. Cell Death Differ,2021,28(5):1669-1687.
[22] 陈锡强,张云,刘可春.新绿原酸抑制人宫颈癌HeLa细胞迁移的实验研究[J].药物评价研究,2021,44(8):1588-1593.
[23] Li C,Zhang L,Liu C,et al. Lipophilic Grape Seed Proanthocyanidin Exerts Anti-Cervical Cancer Effects in HeLa Cells and a HeLa-Derived Xenograft Zebrafish Model [J]. Antioxidants(Basel),2022,11(2):422.
[24] Jiang S,Fagman JB,Ma Y,et al. A comprehensive review of pancreatic cancer and its therapeutic challenges [J]. Aging(Albany NY),2022,14(18):7635-7649.
[25] Wang X,Li W,Jiang H,et al. Zebrafish Xenograft Model for Studying Pancreatic Cancer-Instructed Innate Immune Microenvironment [J]. Int J Mol Sci,2022,23(12):6442.
[26] 王欢,金钢.胰腺癌精准治疗的现状和展望[J].中国普通外科杂志,2021,30(9):997-1005.
[27] Nissim S,Leshchiner I,Mancias JD,et al. Mutations in RABL3 alter KRAS prenylation and are associated with hereditary pancreatic cancer [J]. Nat Genet,2019,51(9):1308-1314.
[28] Naruse M,Masui R,Ochiai M,et al. An organoid-based carcinogenesis model induced by in vitro chemical treatment [J]. Carcinogenesis,2020,41(10):1444-1453.
[29] Mihaila RG,Topircean D. The high-performance technology CRISPR/Cas9 improves knowledge and management of acute myeloid leukemia [J]. Biomed Pap Med Fac Univ Palacky Olomouc Czech Repub,2021,165(3):249-257.
[30] Burns MA,Liao ZW,Yamagata N,et al. Hedgehog pathway mutations drive oncogenic transformation in high-risk T-cell acute lymphoblastic leukemia [J]. Leukemia,2018,32(10): 2126-2137.
[31] 王一慧,刘庆,杨小燕,等.人红白血病斑马鱼异种模型的建立[J].安徽医科大学学报,2021,56(1):77-82.
[32] Aung TN,Shafi S,Wilmott JS,et al. Objective assessment of tumor infiltrating lymphocytes as a prognostic marker in melanoma using machine learning algorithms [J]. EBio- Medicine,2022,82:104143.
[33] Scolyer R,Atkinson V,Gyorki D,et al. BRAF mutation testing for patients diagnosed with stage Ⅲ or stage Ⅳ mela-noma:practical guidance for the Australian setting [J]. Pathology,2022,54(1):6-19.
[34] Callahan SJ,Tepan S,Zhang YM,et al. Cancer modeling by Transgene Electroporation in Adult Zebrafish(TEAZ) [J]. Dis Model Mech,2018,11(9):dmm034561.
[35] Hsu JY,Danis EP,Nance S,et al. SIX1 reprograms myogenic transcription factors to maintain the rhabdomyosarcoma undifferentiated state [J]. Cell Rep,2022,38(5):110323.
[36] Hayes MN,McCarthy K,Jin A,et al. Vangl2/RhoA Signaling Pathway Regulates Stem Cell Self-Renewal Programs and Growth in Rhabdomyosarcoma [J]. Cell Stem Cell,2018, 22(3):414-427.e6.
[37] Ju B,Chen W,Orr BA,et al. Oncogenic KRAS promotes malignant brain tumors in zebrafish [J]. Mol Cancer,2015, 14(1):18. |
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