Yoshinari N, Kawakami A. Mature and juvenile tissue models of regeneration in small fish species[J]. The Biological Bulletin, 2011, 221(1):62-78
Sehring I M, Jahn C, Weidinger G. Zebrafish fin and heart:What's special about regeneration?[J]. Current Opinion in Genetics & Development, 2016, 40:48-56
李礼, 罗凌飞. 以斑马鱼为模式动物研究器官的发育与再生[J]. 遗传, 2013, 35(4):321-332 Li L, Luo L F. Zebrafish as the model system to study organogenesis and regeneration[J]. Hereditas, 2013, 35(4):321-332 (in Chinese)
Sehring I M, Weidinger G. Recent advancements in understanding fin regeneration in zebrafish[J]. Wiley Interdisciplinary Reviews Developmental Biology, 2020, 9(1):e367
Mathew L K, Andreasen E A, Tanguay R L. Aryl hydrocarbon receptor activation inhibits regenerative growth[J]. Molecular Pharmacology, 2006, 69(1):257-265
Zodrow J M, Tanguay R L. 2,3,7,8-tetrachlorodibenzo-p-dioxin inhibits zebrafish caudal fin regeneration[J]. Toxicological Sciences, 2003, 76(1):151-161
Mathew L K, Sengupta S, Kawakami A, et al. Unraveling tissue regeneration pathways using chemical genetics[J]. The Journal of Biological Chemistry, 2007, 282(48):35202-35210
Sengupta S, Bisson W H, Mathew L K, et al. Alternate glucocorticoid receptor ligand binding structures influence outcomes in an in vivo tissue regeneration model[J]. Comparative Biochemistry and Physiology Toxicology & Pharmacology, 2012, 156(2):121-129
Hirose K, Payumo A Y, Cutie S, et al. Evidence for hormonal control of heart regenerative capacity during endothermy acquisition[J]. Science, 2019, 364(6436):184-188
Sun L W, Gu L Q, Tan H N, et al. Effects of 17α[WT《Times New Roman》]-ethinylestradiol on caudal fin regeneration in zebrafish larvae[J]. The Science of the Total Environment, 2019, 653:10-22
Parks L G, Lambright C S, Orlando E F, et al. Masculinization of female mosquitofish in Kraft mill effluent-contaminated Fenholloway River water is associated with androgen receptor agonist activity[J]. Toxicological Sciences:An Official Journal of the Society of Toxicology, 2001, 62(2):257-267
Ankley G T, Coady K K, Gross M, et al. A critical review of the environmental occurrence and potential effects in aquatic vertebrates of the potent androgen receptor agonist 17β[WT《Times New Roman》]-trenbolone[J]. Environmental Toxicology and Chemistry, 2018, 37(8):2064-2078
Bartelt-Hunt S L, Snow D D, Kranz W L, et al. Effect of growth promotants on the occurrence of endogenous and synthetic steroid hormones on feedlot soils and in runoff from beef cattle feeding operations[J]. Environmental Science & Technology, 2012, 46(3):1352-1360
Ankley G T, Bencic D C, Breen M S, et al. Endocrine disrupting chemicals in fish:Developing exposure indicators and predictive models of effects based on mechanism of action[J]. Aquatic Toxicology, 2009, 92(3):168-178
Sun L W, Peng T, Liu F, et al. Transcriptional responses in male Japanese medaka exposed to antiandrogens and antiandrogen/androgen mixtures[J]. Environmental Toxicology, 2016, 31(11):1591-1599
Gu L Q, Tian L, Gao G, et al. Inhibitory effects of polystyrene microplastics on caudal fin regeneration in zebrafish larvae[J]. Environmental Pollution, 2020, 266(Pt 3):114664
Renshaw S A, Loynes C A, Trushell D M I, et al. A transgenic zebrafish model of neutrophilic inflammation[J]. Blood, 2006, 108(13):3976-3978
Rehberger K, Werner I, Hitzfeld B, et al. 20 Years of fish immunotoxicology-What we know and where we are[J]. Critical Reviews in Toxicology, 2017, 47(6):509-535
Casanova-Nakayama A, Wenger M, Burki R, et al. Endocrine disrupting compounds:Can they target the immune system of fish?[J]. Marine Pollution Bulletin, 2011, 63(5-12):412-416
Milla S, Depiereux S, Kestemont P. The effects of estrogenic and androgenic endocrine disruptors on the immune system of fish:A review[J]. Ecotoxicology, 2011, 20(2):305-319
Ingerslev H C, Lunder T, Nielsen M E. Inflammatory and regenerative responses in salmonids following mechanical tissue damage and natural infection[J]. Fish & Shellfish Immunology, 2010, 29(3):440-450
Peiris T H, Hoyer K K, Oviedo N J. Innate immune system and tissue regeneration in planarians:An area ripe for exploration[J]. Seminars in Immunology, 2014, 26(4):295-302
Tal T L, Franzosa J A, Tanguay R L. Molecular signaling networks that choreograph epimorphic fin regeneration in zebrafish-A mini-review[J]. Gerontology, 2010, 56(2):231-240
Wehner D, Weidinger G. Signaling networks organizing regenerative growth of the zebrafish fin[J]. Trends in Genetics, 2015, 31(6):336-343
Wehner D, Cizelsky W, Vasudevaro M D, et al. Wnt/β[WT《Times New Roman》]-catenin signaling defines organizing centers that orchestrate growth and differentiation of the regenerating zebrafish caudal fin[J]. Cell Reports, 2014, 6(3):467-481
Shibata E, Yokota Y, Horita N, et al. FGF signalling controls diverse aspects of fin regeneration[J]. Development, 2016, 143(16):2920-2929
Massart S, Redivo B, Flamion E, et al. The trenbolone acetate affects the immune system in rainbow trout, Oncorhynchus mykiss[J]. Aquatic Toxicology, 2015, 163:109-120
Mescher A L, Neff A W, King M W. Inflammation and immunity in organ regeneration[J]. Developmental & Comparative Immunology, 2017, 66:98-110
Poss K D. Advances in understanding tissue regenerative capacity and mechanisms in animals[J]. Nature Reviews Genetics, 2010, 11(10):710-722