Ali, Z., Mukwaya, A., Biesemeier, A., Ntzouni, M., Ramsköld, D., Giatrellis, S., Mammadzada, P., Cao, R., Lennikov, A., Marass, M., Gerri, C., Hildesjö, C., Taylor, M., Deng, Q., Peebo, B., Del Peso, L., Kvanta, A., Sandberg, R., Schraermeyer, U., Andre, H., Steffensen, J.F., Lagali, N., Cao, Y., Kele, J., Jensen, L.D. (2019) Intussusceptive Vascular Remodeling Precedes Pathological Neovascularization. Arteriosclerosis, Thrombosis, and Vascular Biology. 39:1402-1418
|
Anbalagan, S., Gordon, L., Blechman, J., Matsuoka, R.L., Rajamannar, P., Wircer, E., Biran, J., Reuveny, A., Leshkowitz, D., Stainier, D.Y.R., Levkowitz, G. (2018) Pituicyte Cues Regulate the Development of Permeable Neuro-Vascular Interfaces. Developmental Cell. 47(6):711-726.e5
|
Bahary, N., Goishi, K., Stuckenholz, C., Weber, G., Leblanc, J., Schafer, C.A., Berman, S.S., Klagsbrun, M., and Zon, L.I. (2007) Duplicate VegfA genes and orthologues of the KDR receptor tyrosine kinase family mediate vascular development in the zebrafish. Blood. 110(10):3627-3636
|
Bower, N.I., Koltowska, K., Pichol-Thievend, C., Virshup, I., Paterson, S., Lagendijk, A.K., Wang, W., Lindsey, B.W., Bent, S.J., Baek, S., Rondon-Galeano, M., Hurley, D.G., Mochizuki, N., Simons, C., Francois, M., Wells, C.A., Kaslin, J., Hogan, B.M. (2017) Mural lymphatic endothelial cells regulate meningeal angiogenesis in the zebrafish. Nature Neuroscience. 20(6):774-783
|
Bower, N.I., Vogrin, A.J., Le Guen, L., Chen, H., Stacker, S.A., Achen, M.G., Hogan, B.M. (2017) Vegfd modulates both angiogenesis and lymphangiogenesis during zebrafish embryonic development. Development (Cambridge, England). 144(3):507-518
|
|
|
Chen, E.Y., Dobrinski, K.P., Brown, K.H., Clagg, R., Edelman, E., Ignatius, M.S., Chen, J.Y., Brockmann, J., Nielsen, G.P., Ramaswamy, S., Keller, C., Lee, C., and Langenau, D.M. (2013) Cross-species array comparative genomic hybridization identifies novel oncogenic events in zebrafish and human embryonal rhabdomyosarcoma. PLoS Genetics. 9(8):e1003727
|
Chen, W., Tseng, X., Lin, G., Schreiner, A., Chen, H., Voigt, M.M., Yuh, C., Wu, J., Huang, S.S., and Huang, J. (2013) The Ortholog of LYVE-1 Is Required for Thoracic Duct Formation in Zebrafish. CellBio. 2(4):228-247
|
|
Cho, Y.S., Jung, H.J., Seok, S.H., Payumo, A.Y., Chen, J.K., and Kwon, H.J. (2013) Functional inhibition of UQCRB suppresses angiogenesis in zebrafish. Biochemical and Biophysical Research Communications. 433(4):396-400
|
Dong, W., Han, X., Bao, C., Tai, S., Bai, Y., Xu, L., Yang, J., Leung, T., Ao, W., Dong, W. (2021) Inhibitory Effects of Euphorbia ebracteolata Hayata Extract ECB on Melanoma-Induced Hyperplasia of Blood Vessels in Zebrafish Embryos. Evidence-based complementary and alternative medicine : eCAM. 2021:5543259
|
El-Brolosy, M.A., Kontarakis, Z., Rossi, A., Kuenne, C., Günther, S., Fukuda, N., Kikhi, K., Boezio, G.L.M., Takacs, C.M., Lai, S.L., Fukuda, R., Gerri, C., Giraldez, A.J., Stainier, D.Y.R. (2019) Genetic compensation triggered by mutant mRNA degradation. Nature. 568(7751):193-197
|
Elkon, R., Milon, B., Morrison, L., Shah, M., Vijayakumar, S., Racherla, M., Leitch, C.C., Silipino, L., Hadi, S., Weiss-Gayet, M., Barras, E., Schmid, C.D., Ait-Lounis, A., Barnes, A., Song, Y., Eisenman, D.J., Eliyahu, E., Frolenkov, G.I., Strome, S.E., Durand, B., Zaghloul, N.A., Jones, S.M., Reith, W., Hertzano, R. (2015) RFX transcription factors are essential for hearing in mice. Nature communications. 6:8549
|
|
Fan, S., Wang, J., Yu, G., Rong, F., Zhang, D., Xu, C., Du, J., Li, Z., Ouyang, G., Xiao, W. (2020) TET is targeted for proteasomal degradation by the PHD-pVHL pathway to reduce DNA hydroxymethylation. The Journal of biological chemistry. 295(48):16299-16313
|
|
Gore, A.V., Swift, M.R., Cha, Y.R., Lo, B., McKinney, M.C., Li, W., Castranova, D., Davis, A., Mukouyama, Y.S., and Weinstein, B.M. (2011) Rspo1/Wnt signaling promotes angiogenesis via Vegfc/Vegfr3. Development (Cambridge, England). 138(22):4875-4886
|
|
Halabi, R., Watterston, C., Hehr, C.L., Mori-Kreiner, R., Childs, S.J., McFarlane, S. (2021) Semaphorin 3fa Controls Ocular Vascularization From the Embryo Through to the Adult. Investigative ophthalmology & visual science. 62:21
|
|
Harris, J.M., Esain, V., Frechette, G.M., Harris, L.J., Cox, A.G., Cortes, M., Garnaas, M.K., Carroll, K.J., Cutting, C.C., Khan, T., Elks, P.M., Renshaw, S.A., Dickinson, B.C., Chang, C.J., Murphy, M.P., Paw, B.H., Vander Heiden, M.G., Goessling, W., and North, T.E. (2013) Glucose metabolism impacts the spatio-temporal onset and magnitude of HSC induction in vivo. Blood. 121(13):2483-2493
|
Helker, C.S., Schuermann, A., Pollmann, C., Chng, S.C., Kiefer, F., Reversade, B., Herzog, W. (2015) The hormonal peptide Elabela guides angioblasts to the midline during vasculogenesis. eLIFE. 4
|
Hui, S.P., Sheng, D.Z., Sugimoto, K., Gonzalez-Rajal, A., Nakagawa, S., Hesselson, D., Kikuchi, K. (2017) Zebrafish Regulatory T Cells Mediate Organ-Specific Regenerative Programs. Developmental Cell. 43:659-672.e5
|
Jensen, L.D., Cao, Z., Nakamura, M., Yang, Y., Bräutigam, L., Andersson, P., Zhang, Y., Wahlberg, E., Länne, T., Hosaka, K., and Cao, Y. (2012) Opposing Effects of Circadian Clock Genes Bmal1 and Period2 in Regulation of VEGF-Dependent Angiogenesis in Developing Zebrafish. Cell Reports. 2(2):231-241
|
Jensen, L.D., Nakamura, M., Bräutigam, L., Li, X., Liu, Y., Samani, N.J., Cao, Y. (2015) VEGF-B-Neuropilin-1 signaling is spatiotemporally indispensable for vascular and neuronal development in zebrafish. Proceedings of the National Academy of Sciences of the United States of America. 112(44):E5944-53
|
Kuroyanagi, J., Shimada, Y., Zhang, B., Ariyoshi, M., Umemoto, N., Nishimura, Y., Tanaka, T. (2014) Zinc finger MYND-type containing 8 promotes tumour angiogenesis via induction of vascular endothelial growth factor-A expression. FEBS letters. 588(18):3409-16
|
Lalwani, M.K., Sharma, M., Singh, A.R., Chauhan, R.K., Patowary, A., Singh, N., Scaria, V., and Sivasubbu, S. (2012) Reverse Genetics Screen in Zebrafish Identifies a Role of miR-142a-3p in Vascular Development and Integrity. PLoS One. 7(12):e52588
|
Lange, M., Ohnesorge, N., Hoffmann, D., Rocha, S.F., Benedito, R., Siekmann, A.F. (2022) Zebrafish mutants in vegfab can affect endothelial cell proliferation without altering ERK phosphorylation and are phenocopied by loss of PI3K signaling. Developmental Biology. 486:26-43
|
Lee, Y.R., Kim, S.H., Ben-Mahmoud, A., Kim, O.H., Choi, T.I., Lee, K.H., Ku, B., Eum, J., Kee, Y., Lee, S., Cha, J., Won, D., Lee, S.T., Choi, J.R., Lee, J.S., Kim, H.D., Kim, H.G., Bonkowsky, J.L., Kang, H.C., Kim, C.H. (2021) Eif2b3 mutants recapitulate phenotypes of Vanishing White Matter Disease and validate novel disease alleles in zebrafish. Human molecular genetics. 30(5):331-342
|
Li, S., Dang, Y., Zhou, X., Huang, B., Huang, X., Zhang, Z., Kwan, Y.W., Chan, S.W., Leung, G.P., Lee, S.M., Hoi, M.P. (2015) Formononetin promotes angiogenesis through the estrogen receptor alpha-enhanced ROCK pathway. Scientific Reports. 5:16815
|
Li, S., Lou, S., Lei, B.U., Chan, T.F., Kwan, Y.W., Chan, S.W., Leung, G.P., Tsui, S.K., and Lee, S.M. (2011) Transcriptional profiling of angiogenesis activities of calycosin in zebrafish. Molecular Biosystems. 7(11):3112-21
|
Lindeman, L.C., Kamstra, J.H., Ballangby, J., Hurem, S., Martín, L.M., Brede, D.A., Teien, H.C., Oughton, D.H., Salbu, B., Lyche, J.L., Aleström, P. (2019) Gamma radiation induces locus specific changes to histone modification enrichment in zebrafish and Atlantic salmon. PLoS One. 14:e0212123
|
Liu, W., Chen, J.R., Hsu, C.H., Li, Y.H., Chen, Y.M., Lin, C.Y., Huang, S.J., Chang, Z.K., Chen, Y.C., Lin, C.H., Gong, H.Y., Lin, C.C., Kawakami, K., and Wu, J.L. (2012) A zebrafish model of intrahepatic cholangiocarcinoma by dual expression of hepatitis B virus X and hepatitis C virus core protein in liver. Hepatology (Baltimore, Md.). 56(6):2268-2276
|
Luo, J., Zhang, X., He, S., Lou, Q., Zhai, G., Shi, C., Yin, Z., Zheng, F. (2019) Deletion of narfl leads to increased oxidative stress mediated abnormal angiogenesis and digestive organ defects in zebrafish. Redox Biology. 28:101355
|
Mans, D.A., Vermaat, J.S., Weijts, B.G., van Rooijen, E., van Reeuwijk, J., Boldt, K., Daenen, L.G., van der Groep, P., Rowland, B.D., Jans, J.J., Roepman, R., Voest, E.E., van Diest, P.J., Verhaar, M.C., de Bruin, A., and Giles, R.H. (2013) Regulation of E2F1 by the von Hippel-Lindau tumour suppressor protein predicts survival in renal cell cancer patients. The Journal of pathology. 231(1):117-29
|
Maradonna, F., Fontana, C.M., Sella, F., Giommi, C., Facchinello, N., Rampazzo, C., Caichiolo, M., Hoseinifar, S.H., Dalla Valle, L., Van Doan, H., Carnevali, O. (2022) A zebrafish HCT116 xenograft model to predict anandamide outcomes on colorectal cancer. Cell Death & Disease. 13:10691069
|
Marchi, D., Santhakumar, K., Markham, E., Li, N., Storbeck, K.H., Krone, N., Cunliffe, V.T., van Eeden, F.J.M. (2020) Bidirectional crosstalk between Hypoxia-Inducible Factor and glucocorticoid signalling in zebrafish larvae. PLoS Genetics. 16:e1008757
|
|
Martins Metelo, A., Noonan, H.R., Xiang, L., Jin, Y., Baker, R., Kamentsky, L., Zhang, Y., van Rooijen, E., Shin, J., Carpenter, A.E., Yeh, J.R., Peterson, R.T., Iliopoulos, O. (2015) Pharmacological HIF2α inhibition improves VHL disease–associated phenotypes in zebrafish model. J. Clin. Invest.. 125(5):1987-97
|
Marín-Juez, R., Marass, M., Gauvrit, S., Rossi, A., Lai, S.L., Materna, S.C., Black, B.L., Stainier, D.Y. (2016) Fast revascularization of the injured area is essential to support zebrafish heart regeneration. Proceedings of the National Academy of Sciences of the United States of America. 113(40):11237-11242
|
|
Medrano, M.P., Pisera Fuster, A., Sanchis, P., Paez, N., Bernabeu, R.O., Faillace, M.P. (2018) Characterization of proliferative, glial and angiogenic responses after a CoCl2 -induced injury of photoreceptor cells in the adult zebrafish retina.. The European journal of neuroscience. 48(9):3019-3042
|
|
Merkes, C., Turkalo, T.K., Wilder, N., Park, H., Wenger, L.W., Lewin, S.J., Azuma, M. (2015) Ewing Sarcoma Ewsa Protein Regulates Chondrogenesis of Meckel's Cartilage through Modulation of Sox9 in Zebrafish. PLoS One. 10:e0116627
|
|
Mitra, S., Devi, S., Lee, M.S., Jui, J., Sahu, A., Goldman, D. (2022) Vegf signaling between Müller glia and vascular endothelial cells is regulated by immune cells and stimulates retina regeneration. Proceedings of the National Academy of Sciences of the United States of America. 119:e2211690119e2211690119
|
Monteiro, R., Pinheiro, P., Joseph, N., Peterkin, T., Koth, J., Repapi, E., Bonkhofer, F., Kirmizitas, A., Patient, R. (2016) Transforming Growth Factor β Drives Hemogenic Endothelium Programming and the Transition to Hematopoietic Stem Cells. Developmental Cell. 38(4):358-70
|
Mullapudi, S.T., Boezio, G.L.M., Rossi, A., Marass, M., Matsuoka, R.L., Matsuda, H., Helker, C.S.M., Yang, Y.H.C., Stainier, D.Y.R. (2019) Disruption of the pancreatic vasculature in zebrafish affects islet architecture and function. Development (Cambridge, England). 146(21):
|
Müller-Deile, J., Schröder, P., Beverly-Staggs, L., Hiss, R., Fiedler, J., Nyström, J., Thum, T., Haller, H., Schiffer, M. (2018) Overexpression of preeclampsia induced microRNA-26a-5p leads to proteinuria in zebrafish. Scientific Reports. 8:3621
|
Ng, M.F., Da Silva Viana, J., Tan, P.J., Britto, D.D., Choi, S.B., Kobayashi, S., Samat, N., Song, D.S.S., Ogawa, S., Parhar, I.S., Astin, J.W., Hogan, B.M., Patel, V., Okuda, K.S. (2024) Canthin-6-One Inhibits Developmental and Tumour-Associated Angiogenesis in Zebrafish. Pharmaceuticals (Basel, Switzerland). 17(1):
|
Oehlers, S.H., Flores, M.V., Okuda, K.S., Hall, C.J., Crosier, K.E., and Crosier, P.S. (2011) A chemical enterocolitis model in zebrafish larvae that is dependent on microbiota and responsive to pharmacological agents. Developmental Dynamics : an official publication of the American Association of Anatomists. 240(1):288-298
|
Parab, S., Card, O.A., Chen, Q., America, M., Buck, L.D., Quick, R.E., Horrigan, W.F., Levkowitz, G., Vanhollebeke, B., Matsuoka, R.L. (2023) Local angiogenic interplay of Vegfc/d and Vegfa controls brain region-specific emergence of fenestrated capillaries. eLIFE. 12:
|
|
Pottie, L., Van Gool, W., Vanhooydonck, M., Hanisch, F.G., Goeminne, G., Rajkovic, A., Coucke, P., Sips, P., Callewaert, B. (2021) Loss of zebrafish atp6v1e1b, encoding a subunit of vacuolar ATPase, recapitulates human ARCL type 2C syndrome and identifies multiple pathobiological signatures. PLoS Genetics. 17:e1009603
|
|
Ribeiro, A., Rebocho da Costa, M., de Sena-Tomás, C., Rodrigues, E.C., Quitéria, R., Maçarico, T., Rosa Santos, S.C., Saúde, L. (2023) Development and repair of blood vessels in the zebrafish spinal cord. Open Biology. 13:230103230103
|
Rissone, A., Foglia, E., Sangiorgio, L., Cermenati, S., Nicoli, S., Cimbro, S., Beltrame, M., Bussolino, F., Cotelli, F., and Arese, M. (2012) The Synaptic Proteins beta-Neurexin and Neuroligin Synergize With Extracellular Matrix-Binding Vascular Endothelial Growth Factor A During Zebrafish Vascular Development. Arterioscler. Thromb. Vasc. Biol.. 32(7):1563-1572
|
Rossi, A., Gauvrit, S., Marass, M., Pan, L., Moens, C.B., Stainier, D.Y. (2016) Regulation of Vegf signaling by natural and synthetic ligands. Blood. 128(19):2359-2366
|
Rossi, A., Kontarakis, Z., Gerri, C., Nolte, H., Hölper, S., Krüger, M., Stainier, D.Y. (2015) Genetic compensation induced by deleterious mutations but not gene knockdowns. Nature. 524(7564):230-3
|
Santhakumar, K., Judson, E.C., Elks, P.M., McKee, S., Elworthy, S., van Rooijen, E., Walmsley, S.S., Renshaw, S., Cross, S.S., and van Eeden, F.J. (2012) A zebrafish model to study and therapeutically manipulate hypoxia signaling in tumorigenesis. Cancer research. 72(16):4017-4027
|
Schultz, L.E., Solin, S.L., Wierson, W.A., Lovan, J.M., Syrkin-Nikolau, J., Lincow, D.E., Severin, A.J., Sakaguchi, D.S., McGrail, M. (2017) Vascular Endothelial Growth Factor A and Leptin Expression Associated with Ectopic Proliferation and Retinal Dysplasia in Zebrafish Optic Pathway Tumors. Zebrafish. 14(4):343-356
|
Stahlhut, C., Suárez, Y., Lu, J., Mishima, Y., and Giraldez, A.J. (2012) miR-1 and miR-206 regulate angiogenesis by modulating VegfA expression in zebrafish. Development (Cambridge, England). 139(23):4356-4365
|
Strausberg,R.L., Feingold,E.A., Grouse,L.H., Derge,J.G., Klausner,R.D., Collins,F.S., Wagner,L., Shenmen,C.M., Schuler,G.D., Altschul,S.F., Zeeberg,B., Buetow,K.H., Schaefer,C.F., Bhat,N.K., Hopkins,R.F., Jordan,H., Moore,T., Max,S.I., Wang,J., Hsieh,F., Diatchenko,L., Marusina,K., Farmer,A.A., Rubin,G.M., Hong,L., Stapleton,M., Soares,M.B., Bonaldo,M.F., Casavant,T.L., Scheetz,T.E., Brownstein,M.J., Usdin,T.B., Toshiyuki,S., Carninci,P., Prange,C., Raha,S.S., Loquellano,N.A., Peters,G.J., Abramson,R.D., Mullahy,S.J., Bosak,S.A., McEwan,P.J., McKernan,K.J., Malek,J.A., Gunaratne,P.H., Richards,S., Worley,K.C., Hale,S., Garcia,A.M., Gay,L.J., Hulyk,S.W., Villalon,D.K., Muzny,D.M., Sodergren,E.J., Lu,X., Gibbs,R.A., Fahey,J., Helton,E., Ketteman,M., Madan,A., Rodrigues,S., Sanchez,A., Whiting,M., Madan,A., Young,A.C., Shevchenko,Y., Bouffard,G.G., Blakesley,R.W., Touchman,J.W., Green,E.D., Dickson,M.C., Rodriguez,A.C., Grimwood,J., Schmutz,J., Myers,R.M., Butterfield,Y.S., Krzywinski,M.I., Skalska,U., Smailus,D.E., Schnerch,A., Schein,J.E., Jones,S.J., and Marra,M.A. (2002) Generation and initial analysis of more than 15,000 full-length human and mouse cDNA sequences. Proceedings of the National Academy of Sciences of the United States of America. 99(26):16899-903
|
Tao, B., Hu, H., Mitchell, K., Chen, J., Jia, H., Zhu, Z., Trudeau, V.L., Hu, W. (2018) Secretogranin-II plays a critical role in zebrafish neurovascular modeling. Journal of molecular cell biology. 10(5):388-401
|
|
|
|
Ulrich, F., Carretero-Ortega, J., Menéndez, J., Narvaez, C., Sun, B., Lancaster, E., Pershad, V., Trzaska, S., Véliz, E., Kamei, M., Prendergast, A., Kidd, K.R., Shaw, K.M., Castranova, D.A., Pham, V.N., Lo, B.D., Martin, B.L., Raible, D.W., Weinstein, B.M., Torres-Vazquez, J. (2016) Reck enables cerebrovascular development by promoting canonical Wnt signaling. Development (Cambridge, England). 143(1):147-59
|
Umans, R.A., Pollock, C., Mills, W.A., Clark, K.C., Pan, Y.A., Sontheimer, H. (2021) Using Zebrafish to Elucidate Glial-Vascular Interactions During CNS Development. Frontiers in cell and developmental biology. 9:654338
|
Ursu, R., Sopel, N., Ohs, A., Tati, R., Buvall, L., Nyström, J., Schiffer, M., Müller-Deile, J. (2022) Glomerular Endothelial Cell-Derived miR-200c Impairs Glomerular Homeostasis by Targeting Podocyte VEGF-A. International Journal of Molecular Sciences. 23(23):
|
van Rooijen, E., Voest, E.E., Logister, I., Bussmann, J., Korving, J., van Eeden, F.J., Giles, R.H., and Schulte-Merker, S. (2010) von Hippel-Lindau tumor suppressor mutants faithfully model pathological hypoxia-driven angiogenesis and vascular retinopathies in zebrafish. Disease models & mechanisms. 3(5-6):343-353
|
Venero Galanternik, M., Castranova, D., Gore, A.V., Blewett, N.H., Jung, H.M., Stratman, A.N., Kirby, M.R., Iben, J., Miller, M.F., Kawakami, K., Maraia, R.J., Weinstein, B.M. (2017) A novel perivascular cell population in the zebrafish brain. eLIFE. 6
|
Wang, J., Zhang, D., Du, J., Zhou, C., Li, Z., Liu, X., Ouyang, G., Xiao, W. (2017) Tet1 facilitates hypoxia tolerance by stabilizing the HIF-α proteins independent of its methylcytosine dioxygenase activity. Nucleic acids research. 45(22):12700-12714
|
|
Ward, R., Ali, Z., Slater, K., Reynolds, A.L., Jensen, L.D., Kennedy, B.N. (2019) Pharmacological restoration of visual function in a zebrafish model of von-Hippel Lindau disease. Developmental Biology. 457(2):226-234
|
Watson, O., Novodvorsky, P., Gray, C., Rothman, A.M., Lawrie, A., Gerhardt, H., Crossman, D.C., Haase, A., McMahon, K., Gering, M., van Eeden, F.J., and Chico, T.J. (2013) Blood flow suppresses vascular Notch signalling via dll4 and is required for angiogenesis in response to hypoxic signalling. Cardiovascular research. 100(2):252-61
|
|
|
Weijts, B.G., Bakker, W.J., Cornelissen, P.W., Liang, K.H., Schaftenaar, F.H., Westendorp, B., de Wolf, C.A., Paciejewska, M., Scheele, C.L., Kent, L., Leone, G., Schulte-Merker, S., and de Bruin, A. (2012) E2F7 and E2F8 promote angiogenesis through transcriptional activation of VEGFA in cooperation with HIF1. The EMBO journal. 31(19):3871-3884
|
|
Wild, R., Klems, A., Takamiya, M., Hayashi, Y., Strähle, U., Ando, K., Mochizuki, N., van Impel, A., Schulte-Merker, S., Krueger, J., Preau, L., le Noble, F. (2017) Neuronal sFlt1 and Vegfaa determine venous sprouting and spinal cord vascularization. Nature communications. 8:13991
|
|
|
Xue, Y., Liu, D., Cui, G., Ding, Y., Ai, D., Gao, S., Zhang, Y., Suo, S., Wang, X., Lv, P., Zhou, C., Li, Y., Chen, X., Peng, G., Jing, N., Han, J.J., Liu, F. (2019) A 3D Atlas of Hematopoietic Stem and Progenitor Cell Expansion by Multi-dimensional RNA-Seq Analysis. Cell Reports. 27:1567-1578.e5
|
|
|
Yousfi, N., Pruvot, B., Lopez, T., Magadoux, L., Franche, N., Pichon, L., Salvadori, F., Solary, E., Garrido, C., Laurens, V., Chluba, J. (2015) The Impact of Tumor Nitric Oxide Production on VEGFA Expression and Tumor Growth in a Zebrafish Rat Glioma Xenograft Model. PLoS One. 10:e0120435
|
|
|
|
Zhang, X., Yang, Y., Wei, Y., Zhao, Q., Lou, X. (2022) Blf and drl cluster synergistically regulate cell fate commitment during zebrafish primitive hematopoiesis. Development (Cambridge, England). 149(24)
|
Zhou, Y., Ge, R., Wang, R., Liu, F., Huang, Y., Liu, H., Hao, Y., Zhou, Q., Wang, C. (2015) UXT potentiates angiogenesis by attenuating Notch signaling. Development (Cambridge, England). 142(4):774-86
|
Zhu, D., Fang, Y., Gao, K., Shen, J., Zhong, T.P., Li, F. (2017) Vegfa Impacts Early Myocardium Development in Zebrafish. International Journal of Molecular Sciences. 18(2)
|
Zhu, X.Y., Xia, B., Ye, T., Dai, M.Z., Yang, H., Li, C.Q., Li, P. (2020) Ponatinib-induced ischemic stroke in larval zebrafish for drug screening. European Journal of Pharmacology. 889:173292
|