The zebrafish as a tool to identify novel therapies for human cardiovascular disease

被引:123
作者
Asnani, Aarti [1 ]
Peterson, Randall T. [1 ]
机构
[1] Harvard Univ, Sch Med, Massachusetts Gen Hosp, Cardiovasc Res Ctr, Charlestown, MA 02129 USA
基金
美国国家卫生研究院;
关键词
Cardiovascular; Drug discovery; Zebrafish; CONGENITAL HEART-DISEASE; CARDIOMYOCYTE PROLIFERATION; CARDIAC DYSFUNCTION; VALVE DEVELOPMENT; MUTATIONS; GENE; GENOME; REGENERATION; NKX2.5; DOXORUBICIN;
D O I
10.1242/dmm.016170
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Over the past decade, the zebrafish has become an increasingly popular animal model for the study of human cardiovascular disease. Because zebrafish embryos are transparent and their genetic manipulation is straightforward, the zebrafish has been used to recapitulate a number of cardiovascular disease processes ranging from congenital heart defects to arrhythmia to cardiomyopathy. The use of fluorescent reporters has been essential to identify two discrete phases of cardiomyocyte differentiation necessary for normal cardiac development in the zebrafish. These phases are analogous to the differentiation of the two progenitor heart cell populations in mammals, termed the first and second heart fields. The small size of zebrafish embryos has enabled high-throughput chemical screening to identify small-molecule suppressors of fundamental pathways in vasculogenesis, such as the BMP axis, as well as of common vascular defects, such as aortic coarctation. The optical clarity of zebrafish has facilitated studies of valvulogenesis as well as detailed electrophysiological mapping to characterize the early cardiac conduction system. One unique aspect of zebrafish larvae is their ability to oxygenate through diffusion alone, permitting the study of mutations that cause severe cardiomyopathy phenotypes such as silent heart and pickwick(m171), which mimic titin mutations observed in human dilated cardiomyopathy. Above all, the regenerative capacity of zebrafish presents a particularly exciting opportunity to discover new therapies for cardiac injury, including scar formation following myocardial infarction. This Review will summarize the current state of the field and describe future directions to advance our understanding of human cardiovascular disease.
引用
收藏
页码:763 / 767
页数:5
相关论文
共 61 条
  • [1] Haemodynamically dependent valvulogenesis of zebrafish heart is mediated by flow-dependent expression of miR-21
    Banjo, Toshihiro
    Grajcarek, Janin
    Yoshino, Daisuke
    Osada, Hideto
    Miyasaka, Kota Y.
    Kida, Yasuyuki S.
    Ueki, Yosuke
    Nagayama, Kazuaki
    Kawakami, Koichi
    Matsumoto, Takeo
    Sato, Masaaki
    Ogura, Toshihiko
    [J]. NATURE COMMUNICATIONS, 2013, 4
  • [2] Early myocardial function affects endocardial cushion development in zebrafish
    Bartman, T
    Walsh, EC
    Wen, KK
    McKane, M
    Ren, JH
    Alexander, J
    Rubenstein, PA
    Stainier, DYR
    [J]. PLOS BIOLOGY, 2004, 2 (05) : 673 - 681
  • [3] In vivo genome editing using a high-efficiency TALEN system
    Bedell, Victoria M.
    Wang, Ying
    Campbell, Jarryd M.
    Poshusta, Tanya L.
    Starker, Colby G.
    Krug, Randall G., II
    Tan, Wenfang
    Penheiter, Sumedha G.
    Ma, Alvin C.
    Leung, Anskar Y. H.
    Fahrenkrug, Scott C.
    Carlson, Daniel F.
    Voytas, Daniel F.
    Clark, Karl J.
    Essner, Jeffrey J.
    Ekker, Stephen C.
    [J]. NATURE, 2012, 491 (7422) : 114 - U133
  • [4] Genetic and cellular analyses of zebrafish atrioventricular cushion and valve development
    Beis, D
    Bartman, T
    Jin, SW
    Scott, IC
    D'Amico, LA
    Ober, EA
    Verkade, H
    Frantsve, J
    Field, HA
    Wehman, A
    Baier, H
    Tallafuss, A
    Bally-Cuif, L
    Chen, JN
    Stainier, DYR
    Jungblut, B
    [J]. DEVELOPMENT, 2005, 132 (18): : 4193 - 4204
  • [5] Mutations in the cardiac transcription factor NKX2.5 affect diverse cardiac developmental pathways
    Benson, DW
    Silberbach, GM
    Kavanaugh-McHugh, A
    Cottrill, C
    Zhang, YZ
    Riggs, S
    Smalls, O
    Johnson, MC
    Watson, MS
    Seidman, JG
    Seidman, CE
    Plowden, J
    Kugler, JD
    [J]. JOURNAL OF CLINICAL INVESTIGATION, 1999, 104 (11) : 1567 - 1573
  • [6] Cardiac septal and valvular dysmorphogenesis in mice heterozygous for mutations in the homeobox gene Nkx2-5
    Biben, C
    Weber, R
    Kesteven, S
    Stanley, E
    McDonald, L
    Elliott, DA
    Barnett, L
    Köentgen, F
    Robb, L
    Feneley, M
    Harvey, RP
    [J]. CIRCULATION RESEARCH, 2000, 87 (10) : 888 - 895
  • [7] Building the mammalian heart from two sources of myocardial cells
    Buckingham, M
    Meilhac, S
    Zaffran, S
    [J]. NATURE REVIEWS GENETICS, 2005, 6 (11) : 826 - 835
  • [8] Chen JN, 1996, DEVELOPMENT, V123, P293
  • [9] Mechanisms of cardiac dysfunction associated with tyrosine kinase inhibitor cancer therapeutics
    Chen, Ming Hui
    Kerkelae, Risto
    Force, Thomas
    [J]. CIRCULATION, 2008, 118 (01) : 84 - 95
  • [10] A Novel Preclinical Strategy for Identifying Cardiotoxic Kinase Inhibitors and Mechanisms of Cardiotoxicity
    Cheng, Hui
    Kari, Gabor
    Dicker, Adam P.
    Rodeck, Ulrich
    Koch, Walter J.
    Force, Thomas
    [J]. CIRCULATION RESEARCH, 2011, 109 (12) : 1401 - U157