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al. Regenerating the field of cardiovascular cell therapy vascular disease:a brief review[J]. Ann Med,2018,50
[J]. Nat Biotechnol,2019,37(3):232-237 (2):121-127
[4] ABEBE T B,ALEMAYEHU GEBREYOHANNES E, [17] WILBER A,NIENHUIS A W,PERSONS D A. Transcrip⁃
BHAGAVATHULA A S,et al. Anemia in severe heart tional regulation of fetal to adult hemoglobin switching:
failure patients:does it predict prognosis?[J]. BMC Car⁃ new therapeutic opportunities[J]. Blood,2011,117
diovasc Disord,2017,17(1):248 (15):3945-3953
[5] CHAPARRO C M,SUCHDEV P S. Anemia epidemiology, [18] CHOI T Y,CHOI T I,LEE Y R,et al. Zebrafish as an ani⁃
pathophysiology,and etiology in low⁃ and middle⁃income mal model for biomedical research[J]. Exp Mol Med,
countries[J]. Ann N Y Acad Sci,2019,1450(1):15-31 2021,53(3):310-317
[6] RYMER J A,RAO S V. Anemia and coronary artery dis⁃ [19] 贾 静,章康威,王敏娟,等. 斑马鱼模型在心血管疾病
ease:pathophysiology,prognosis,and treatment[J]. Coron 中的应用研究[J]. 湖北科技学院学报(医学版),2023,
Artery Dis,2018,29(2):161-167 37(1):70-73
[7] 孟 琳,陈良标. CRISPR/Cas9技术敲除hbae1.1基因对 [20] 明邦发,王 欢,陈柳蓉,等. 斑马鱼血液疾病模型[J].
斑马鱼血红蛋白生成的影响[J]. 生物学杂志,2021,38 发育医学电子杂志,2022,10(1):7-11
(5):12-16 [21] PARENTE V,BALASSO S,POMPILIO G,et al. Hypoxia/
[8] 李嘉颖,韩清华. 血红蛋白量与心血管疾病的研究进展 reoxygenation cardiac injury and regeneration in zebrafish
[J]. 中西医结合心脑血管病杂志,2018,16(24):3633- adult heart[J]. PLoS One,2013,8(1):e53748
3635 [22] CAI X,ZHOU Z,ZHU J,et al. Zebrafish Hif3α modulates
[9] GORE A V,PILLAY L M,VENERO GALANTERNIK M, erythropoiesis via regulation of gata1 to facilitate hypoxia
et al. The zebrafish:a fintastic model for hematopoietic de⁃ tolerance[J]. Development,2020,147(22):dev185116
velopment and disease[J]. Wiley Interdiscip Rev Dev Bi⁃ [23] ZHANG Z,YAO L,YANG J,et al. PI3K/Akt and HIF⁃1
ol,2018,7(3):e312 signaling pathway in hypoxia⁃ischemia(review)[J]. Mol
[10] KIDANEWOLD A,WOLDU B,ENAWGAW B. Role of Med Rep,2018,18(4):3547-3554
erythropoiesis stimulating agents in the treatment of ane⁃ [24] XIE X,ZHOU T,WANG Y,et al. Blood flow regulates ze⁃
mia:a literature review[J]. Clin Lab,2021,67(4): brafish caudal vein plexus angiogenesis by ERK5⁃klf2a-
10.7754 nos2b signaling[J]. Curr Mol Med,2018,18(1):3-14
[11] 蔡 畅,王丛丛,吴智超,等. Cas9⁃CRISPR 敲除 hae3 [25] 牛志杰. alas1基因的缺失通过影响钙离子信号通路导
基因对斑马鱼血红蛋白生成的影响[J]. 大连海洋大学 致斑马鱼心脏功能障碍[D]. 苏州大学,2016
学报,2015,30(6):573-579 [26] CADENAS S. ROS and redox signaling in myocardial is⁃
[12] 许强华,陈良标. 南极鱼类适应低温的分子进化研究进 chemia⁃reperfusion injury and cardioprotection[J]. Free
展[J]. 大连海洋大学学报,2021,36(2):177-186 Radic Biol Med,2018,117:76-89
[13] 余 翠,武 琳,陈 忠,等. 双酚S对高脂饮食斑马鱼 [27] FERRANTE M I,KIFF R M,GOULDING D A,et al. Tro⁃
脂代谢的影响及机制[J]. 南京医科大学学报(自然科 ponin T is essential for sarcomere assembly in zebrafish
学版),2020,40(7):981-985 skeletal muscle[J]. J Cell Sci,2011,124(4):565-577
[14] BOWLEY G,KUGLER E,WILKINSON R,et al. Zebraf⁃ [28] 张一帅. 核肌球蛋白在Nox2介导的心肌缺血性损伤中
ish as a tractable model of human cardiovascular disease 的作用及机制[D]. 中南大学,2013
[J]. Br J Pharmacol,2022,179(5):900-917 [29] KIOKA H,KATO H,FUJITA T,et al. In vivo real⁃time
[15] 黄梦圆,李德利,张加良,等. 过表达miR⁃155对斑马鱼 ATP imaging in zebrafish hearts reveals g0s2 induces
胚胎发育的影响[J]. 南京医科大学学报(自然科学 ischemic tolerance[J]. FASEB J,2020,34(2):2041-
版),2018,38(8):1028-1033 2054
[16] CHISTIAKOV D A,SHKURAT T P,MELNICHENKO A [收稿日期] 2023-02-20
A,et al. The role of mitochondrial dysfunction in cardio⁃ (责任编辑:蒋 莉)