Xu, Y., Zhang, S., Bao, Y., Luan, J., Fu, Z., Sun, M., Zhao, X., Feng, X. (2024) Melatonin protects zebrafish pancreatic development and physiological rhythms from sodium propionate-induced disturbances via the hypothalamic-pituitary-thyroid axis. Journal of the science of food and agriculture. 104(12):7454-7463
|
Zhang, Y., Liu, Y., Qin, W., Zheng, S., Xiao, J., Xia, X., Yuan, X., Zeng, J., Shi, Y., Zhang, Y., Ma, H., Varshney, G.K., Fei, J.F., Liu, Y. (2024) Cytosine base editors with increased PAM and deaminase motif flexibility for gene editing in zebrafish. Nature communications. 15:95269526
|
Da'as, S.I., Ahmed, I., Hasan, W.H., Abdelrahman, D.A., Aliyev, E., Nisar, S., Bhat, A.A., Joglekar, M.V., Hardikar, A.A., Fakhro, K.A., Akil, A.S.A. (2023) The link between glycemic control measures and eye microvascular complications in a clinical cohort of type 2 diabetes with microRNA-223-3p signature. Journal of translational medicine. 21:171171
|
Zhu, W., Shi, Y., Zhang, C., Peng, Y., Wan, Y., Xu, Y., Liu, X., Han, B., Zhao, S., Kuang, Y., Song, H., Qiao, J. (2023) In-frame deletion of SMC5 related with the phenotype of primordial dwarfism, chromosomal instability and insulin resistance. Clinical and translational medicine. 13:e1007e1007
|
Al-Dahmani, Z.M., Li, X., Wiggenhauser, L.M., Ott, H., Kruithof, P.D., Lunev, S., A Batista, F., Luo, Y., Dolga, A.M., Morton, N.M., Groves, M.R., Kroll, J., van Goor, H. (2022) Thiosulfate sulfurtransferase prevents hyperglycemic damage to the zebrafish pronephros in an experimental model for diabetes. Scientific Reports. 12:12077
|
Bordeira-Carriço, R., Teixeira, J., Duque, M., Galhardo, M., Ribeiro, D., Acemel, R.D., Firbas, P.N., Tena, J.J., Eufrásio, A., Marques, J., Ferreira, F.J., Freitas, T., Carneiro, F., Goméz-Skarmeta, J.L., Bessa, J. (2022) Multidimensional chromatin profiling of zebrafish pancreas to uncover and investigate disease-relevant enhancers. Nature communications. 13:1945
|
Carril Pardo, C.A., Massoz, L., Dupont, M.A., Bergemann, D., Bourdouxhe, J., Lavergne, A., Tarifeño-Saldivia, E., Helker, C.S., Stainier, D.Y., Peers, B., Voz, M.M., Manfroid, I. (2022) A δ-cell subpopulation with pro-β cell identity contributes to efficient age-independent recovery in a zebrafish diabetes model. eLIFE. 11:
|
Chen, Y., Jia, J., Zhao, Q., Zhang, Y., Huang, B., Wang, L., Tian, J., Huang, C., Li, M., Li, X. (2022) Novel Loss-of-Function Variant in HNF1a Induces β-Cell Dysfunction through Endoplasmic Reticulum Stress. International Journal of Molecular Sciences. 23(21):
|
|
Gao, Y., Jin, Q., Gao, C., Chen, Y., Sun, Z., Guo, G., Peng, J. (2022) Unraveling Differential Transcriptomes and Cell Types in Zebrafish Larvae Intestine and Liver. Cells. 11(20):
|
|
Jin, Q., Gao, Y., Shuai, S., Chen, Y., Wang, K., Chen, J., Peng, J., Gao, C. (2022) Cdx1b protects intestinal cell fate by repressing signaling networks for liver specification. Journal of genetics and genomics = Yi chuan xue bao. 49(12):1101-1113
|
Ma, J., Shao, X., Geng, F., Liang, S., Yu, C., Zhang, R. (2022) Ercc2/Xpd deficiency results in failure of digestive organ growth in zebrafish with elevated nucleolar stress. iScience. 25:104957
|
Singh, S.P., Chawla, P., Hnatiuk, A., Kamel, M., Silva, L.D., Spanjaard, B., Eski, S.E., Janjuha, S., Olivares-Chauvet, P., Kayisoglu, O., Rost, F., Bläsche, J., Kränkel, A., Petzold, A., Kurth, T., Reinhardt, S., Junker, J.P., Ninov, N. (2022) A single-cell atlas of de novo β-cell regeneration reveals the contribution of hybrid β/δ-cells to diabetes recovery in zebrafish. Development (Cambridge, England). 149(2)
|
Wiggenhauser, L.M., Metzger, L., Bennewitz, K., Soleymani, S., Boger, M., Tabler, C.T., Hausser, I., Sticht, C., Wohlfart, P., Volk, N., Heidenreich, E., Buettner, M., Hammes, H.P., Kroll, J. (2022) pdx1 Knockout Leads to a Diabetic Nephropathy-Like Phenotype in Zebrafish and Identifies Phosphatidylethanolamine as Metabolite Promoting Early Diabetic Kidney Damage. Diabetes. 71(5):1073-1080
|
Wohlfart, D.P., Lou, B., Middel, C.S., Morgenstern, J., Fleming, T., Sticht, C., Hausser, I., Hell, R., Hammes, H.P., Szendrödi, J., Nawroth, P.P., Kroll, J. (2022) Accumulation of acetaldehyde in aldh2.1-/- zebrafish causes increased retinal angiogenesis and impaired glucose metabolism. Redox Biology. 50:102249
|
Ibrahim, S., Johnson, M., Stephens, C.H., Xu, J., Moore, R., Mariani, A., Contreras, C., Syed, F., Mirmira, R.G., Anderson, R.M., Sims, E.K. (2021) β-Cell pre-miR-21 Induces Dysfunction and Loss of Cellular Identity by Targeting Transforming Growth Factor Beta 2 (Tgfb2) and Smad Family Member 2 (Smad2) mRNAs. Molecular metabolism. 53:101289
|
|
|
Venezia, O., Islam, S., Cho, C., Timme-Laragy, A.R., Sant, K.E. (2021) Modulation of PPAR signaling disrupts pancreas development in the zebrafish, Danio rerio. Toxicology and applied pharmacology. 426:115653
|
Yang, L., Webb, S.E., Jin, N., Lee, H.M., Chan, T.F., Xu, G., Chan, J.C.N., Miller, A.L., Ma, R.C.W. (2021) Investigating the role of dachshund b in the development of the pancreatic islet in zebrafish. Journal of diabetes investigation. 12(5):710-727
|
Zhang, C., Huang, R., Ma, X., Chen, J., Han, X., Li, L., Luo, L., Ruan, H., Huang, H. (2021) The Ribosome Biogenesis Factor Ltv1 Is Essential for Digestive Organ Development and Definitive Hematopoiesis in Zebrafish. Frontiers in cell and developmental biology. 9:704730
|
Ali, Z., Zang, J., Lagali, N., Schmitner, N., Salvenmoser, W., Mukwaya, A., Neuhauss, S.C.F., Jensen, L.D., Kimmel, R.A. (2020) Photoreceptor Degeneration Accompanies Vascular Changes in a Zebrafish Model of Diabetic Retinopathy. Investigative ophthalmology & visual science. 61:43
|
|
Hernandez-Perez, M., Kulkarni, A., Samala, N., Sorrell, C., El, K., Haider, I., Mukhtar Aleem, A., Holman, T.R., Rai, G., Tersey, S.A., Mirmira, R.G., Anderson, R.M. (2020) A 12-lipoxygenase-Gpr31 signaling axis is required for pancreatic organogenesis in the zebrafish. FASEB journal : official publication of the Federation of American Societies for Experimental Biology. 34(11):14850-14862
|
Huang, Y., Huang, C.X., Wang, W.F., Liu, H., Wang, H.L. (2020) Zebrafish miR-462-731 is required for digestive organ development. Comparative biochemistry and physiology. Part D, Genomics & proteomics. 34:100679
|
Lavergne, A., Tarifeño-Saldivia, E., Pirson, J., Reuter, A.S., Flasse, L., Manfroid, I., Voz, M.L., Peers, B. (2020) Pancreatic and intestinal endocrine cells in zebrafish share common transcriptomic signatures and regulatory programmes. BMC Biology. 18:109
|
Lou, B., Boger, M., Bennewitz, K., Sticht, C., Kopf, S., Morgenstern, J., Fleming, T., Hell, R., Yuan, Z., Nawroth, P.P., Kroll, J. (2020) Elevated 4-hydroxynonenal induces hyperglycaemia via Aldh3a1 loss in zebrafish and associates with diabetes progression in humans. Redox Biology. 37:101723
|
|
Vandernoot, I., Haerlingen, B., Gillotay, P., Trubiroha, A., Janssens, V., Opitz, R., Costagliola, S. (2020) Enhanced canonical Wnt signaling during early zebrafish development perturbs the interaction of cardiac mesoderm and pharyngeal endoderm and causes thyroid specification defects. Thyroid : official journal of the American Thyroid Association. 31(3):420-438
|
Wiggenhauser, L.M., Qi, H., Stoll, S.J., Metzger, L., Bennewitz, K., Poschet, G., Krenning, G., Hillebrands, J.L., Hammes, H.P., Kroll, J. (2020) Activation of retinal angiogenesis in hyperglycemic pdx1-/- zebrafish mutants. Diabetes. 69(5):1020-1031
|
Delgadillo-Silva, L.F., Tsakmaki, A., Akhtar, N., Franklin, Z.J., Konantz, J., Bewick, G.A., Ninov, N. (2019) Modelling pancreatic β-cell inflammation in zebrafish identifies the natural product wedelolactone for human islet protection. Disease models & mechanisms. 12(1):
|
Dong, G., Huang, Y., Ding, H., Luo, L., Zhang, Y., Huang, H., Ruan, H. (2019) Mypt1 regulates Bmp signaling to promote embryonic exocrine pancreas growth in zebrafish. Genesis (New York, N.Y. : 2000). 58(2):e23345
|
Helker, C.S.M., Mullapudi, S.T., Mueller, L.M., Preussner, J., Tunaru, S., Skog, O., Kwon, H.B., Kreuder, F., Lancman, J.J., Bonnavion, R., Dong, P.D.S., Looso, M., Offermanns, S., Korsgren, O., Spagnoli, F.M., Stainier, D.Y.R. (2019) Whole organism small molecule screen identifies novel regulators of pancreatic endocrine development. Development (Cambridge, England). 146(14):
|
Jiang, D., Jiang, Z., Lu, D., Wang, X., Liang, H., Zhang, J., Meng, Y., Li, Y., Wu, D., Huang, Y., Chen, Y., Deng, H., Wu, Q., Xiong, J., Meng, A., Yu, L. (2019) Migrasomes provide regional cues for organ morphogenesis during zebrafish gastrulation. Nature cell biology. 21:966-977
|
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):
|
Schmöhl, F., Peters, V., Schmitt, C.P., Poschet, G., Büttner, M., Li, X., Weigand, T., Poth, T., Volk, N., Morgenstern, J., Fleming, T., Nawroth, P.P., Kroll, J. (2019) CNDP1 knockout in zebrafish alters the amino acid metabolism, restrains weight gain, but does not protect from diabetic complications. Cellular and molecular life sciences : CMLS. 76(22):4551-4568
|
|
|
Ambrosino, L., Vassalli, Q.A., D'Agostino, Y., Esposito, R., Cetrangolo, V., Caputi, L., Amoroso, A., Aniello, F., D'Aniello, S., Chatzigeorgiou, M., Chiusano, M.L., Locascio, A. (2018) Functional conserved non-coding elements among tunicates and chordates. Developmental Biology. 448(2):101-110
|
Brown, S.E., Sant, K.E., Fleischman, S.M., Venezia, O., Roy, M.A., Zhao, L., Timme-Laragy, A.R. (2018) Pancreatic beta cells are a sensitive target of embryonic exposure to butylparaben in zebrafish (Danio rerio). Birth defects research. 110(11):933-948
|
Gao, C., Huang, W., Gao, Y., Jan Lo, L., Luo, L., Huang, H., Chen, J., Peng, J. (2018) Zebrafish hhex-null mutant develops an intrahepatic intestinal tube due to de-repression of cdx1b and pdx1. Journal of molecular cell biology. 11(6):448-462
|
Matsuda, H., Mullapudi, S.T., Carol Yang, Y.H., Masaki, H., Hesselson, D., Stainier, D.Y.R. (2018) Whole Organism Chemical Screening Identifies Modulators of Pancreatic β Cell Function. Diabetes. 67(11):2268-2279
|
Zhang, Y.M., Zimmer, M.A., Guardia, T., Callahan, S.J., Mondal, C., Di Martino, J., Takagi, T., Fennell, M., Garippa, R., Campbell, N.R., Bravo-Cordero, J.J., White, R.M. (2018) Distant Insulin Signaling Regulates Vertebrate Pigmentation through the Sheddase Bace2. Developmental Cell. 45(5):580-594.e7
|
Zhou, X., Xiao, C., Li, Y., Shang, Y., Yin, D., Li, S., Xiang, B., Lu, R., Ji, Y., Wu, Y., Meng, W., Zhu, H., Liu, J., Hu, H., Mo, X., Xu, H. (2018) Mid1ip1b modulates apical reorientation of non-centrosomal microtubule organizing center in epithelial cells. Journal of genetics and genomics = Yi chuan xue bao. 45(8):433-442
|
Beaver, L.M., Nkrumah-Elie, Y.M., Truong, L., Barton, C.L., Knecht, A.L., Gonnerman, G.D., Wong, C.P., Tanguay, R.L., Ho, E. (2017) Adverse effects of parental zinc deficiency on metal homeostasis and embryonic development in a zebrafish model. The Journal of Nutritional Biochemistry. 43:78-87
|
Beaver, L.M., Truong, L., Barton, C.L., Chase, T.T., Gonnerman, G.D., Wong, C.P., Tanguay, R.L., Ho, E. (2017) Combinatorial effects of zinc deficiency and arsenic exposure on zebrafish (Danio rerio) development. PLoS One. 12:e0183831
|
Jacobs, H.M., Sant, K.E., Basnet, A., Williams, L.M., Moss, J.B., Timme-Laragy, A.R. (2017) Embryonic exposure to Mono(2-ethylhexyl) phthalate (MEHP) disrupts pancreatic organogenesis in zebrafish (Danio rerio). Chemosphere. 195:498-507
|
Sant, K.E., Jacobs, H.M., Borofski, K.A., Moss, J.B., Timme-Laragy, A.R. (2017) Embryonic exposures to perfluorooctanesulfonic acid (PFOS) disrupt pancreatic organogenesis in the zebrafish, Danio rerio. Environmental pollution (Barking, Essex : 1987). 220(Pt B):807-817
|
|
Tarifeño-Saldivia, E., Lavergne, A., Bernard, A., Padamata, K., Bergemann, D., Voz, M.L., Manfroid, I., Peers, B. (2017) Transcriptome analysis of pancreatic cells across distant species highlights novel important regulator genes. BMC Biology. 15:21
|
van Veen, M., Mans, L.A., Matas-Rico, E., van Pelt, J., Perrakis, A., Moolenaar, W.H., Haramis, A.G. (2017) Glycerophosphodiesterase GDE2/GDPD5 affects pancreas differentiation in zebrafish. The international journal of biochemistry & cell biology. 94:71-78
|
Yang, B., Zhai, G., Gong, Y., Su, J., Han, D., Yin, Z., and Xie, S. (2017) Depletion of insulin receptors leads to β-cell hyperplasia in zebrafish. Science Bulletin. 62(7):486-492
|
Zhai, G., Song, J., Shu, T., Yan, J., Jin, X., He, J., Yin, Z. (2017) LRH-1 senses signaling from phosphatidylcholine to regulate the expansion growth of digestive organs via synergy with Wnt/β-catenin signaling in zebrafish. Journal of genetics and genomics = Yi chuan xue bao. 44(6):307-317
|
Zhang, D., Gates, K.P., Barske, L., Wang, G., Lancman, J.J., Zeng, X.I., Groff, M., Wang, K., Parsons, M.J., Crump, J.G., Dong, P.D.S. (2017) Endoderm Jagged induces liver and pancreas duct lineage in zebrafish. Nature communications. 8:769
|
Dash, S.N., Hakonen, E., Ustinov, J., Otonkoski, T., Andersson, O., Lehtonen, S. (2016) sept7b is required for the differentiation of pancreatic endocrine progenitors. Scientific Reports. 6:24992
|
|
Nissim, S., Weeksb, O., Talbot, J.C., Hedgepeth, J.W., Wucherpfennig, J., Schatzman-Bone, S., Swinburne, I., Cortes, M., Alexa, K., Megason, S., North, T.E., Amacher, S.L., Goessling, W. (2016) Iterative use of nuclear receptor Nr5a2 regulates multiple stages of liver and pancreas development. Developmental Biology. 418(1):108-23
|
O'Hare, E.A., Yerges-Armstrong, L.M., Perry, J.A., Shuldiner, A.R., Zaghloul, N.A. (2016) Assignment of Functional Relevance to Genes at Type 2 Diabetes-Associated Loci Through Investigation of β-Cell Mass Deficits. Molecular endocrinology (Baltimore, Md.). 30(4):429-45
|
Sharma, K.R., Heckler, K., Stoll, S.J., Hillebrands, J.L., Kynast, K., Herpel, E., Porubsky, S., Elger, M., Hadaschik, B., Bieback, K., Hammes, H.P., Nawroth, P.P., Kroll, J. (2016) ELMO1 protects renal structure and ultrafiltration in kidney development and under diabetic conditions. Scientific Reports. 6:37172
|
|
|
Cebola, I., Rodríguez-Seguí, S.A., Cho, C.H., Bessa, J., Rovira, M., Luengo, M., Chhatriwala, M., Berry, A., Ponsa-Cobas, J., Maestro, M.A., Jennings, R.E., Pasquali, L., Morán, I., Castro, N., Hanley, N.A., Gomez-Skarmeta, J.L., Vallier, L., Ferrer, J. (2015) TEAD and YAP regulate the enhancer network of human embryonic pancreatic progenitors. Nature cell biology. 17:615-26
|
Jörgens, K., Stoll, S.J., Pohl, J., Fleming, T.H., Sticht, C., Nawroth, P.P., Hammes, H.P., Kroll, J. (2015) High tissue glucose alters intersomitic blood vessels in zebrafish via methylglyoxal targeting the VEGF receptor signalling cascade. Diabetes. 64(1):213-25
|
Kimmel, R.A., Dobler, S., Schmitner, N., Walsen, T., Freudenblum, J., Meyer, D. (2015) Diabetic pdx1-mutant zebrafish show conserved responses to nutrient overload and anti-glycemic treatment. Scientific Reports. 5:14241
|
Marín-Juez, R., Rovira, M., Crespo, D., van der Vaart, M., Spaink, H.P., Planas, J.V. (2015) GLUT2-mediated glucose uptake and availability are required for embryonic brain development in zebrafish. Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism. 35(1):74-85
|
|
|
|
Vassalli, Q.A., Anishchenko, E., Caputi, L., Sordino, P., D'Aniello, S., Locascio, A. (2015) Regulatory elements retained during chordate evolution: coming across tunicates. Genesis (New York, N.Y. : 2000). 53:66-81
|
|
|
Nissim, S., Sherwood, R.I., Wucherpfennig, J., Saunders, D., Harris, J.M., Esain, V., Carroll, K.J., Frechette, G.M., Kim, A.J., Hwang, K.L., Cutting, C.C., Elledge, S., North, T.E., and Goessling, W. (2014) Prostaglandin E2 regulates liver versus pancreas cell-fate decisions and endodermal outgrowth. Developmental Cell. 28(4):423-437
|
Qin, W., Chen, Z., Zhang, Y., Yan, R., Yan, G., Li, S., Zhong, H., Lin, S. (2014) Nom1 Mediates Pancreas Development by Regulating Ribosome Biogenesis in Zebrafish. PLoS One. 9:e100796
|
|
Flasse, L.C., Pirson, J.L., Stern, D.G., Von Berg, V., Manfroid, I., Peers, B., and Voz, M.L. (2013) Ascl1b and Neurod1, instead of Neurog3, control pancreatic endocrine cell fate in zebrafish. BMC Biology. 11(1):78
|
Lancman, J.J., Zvenigorodsky, N., Gates, K.P., Zhang, D., Solomon, K., Humphrey, R.K., Kuo, T., Setiawan, L., Verkade, H., Chi, Y.I., Jhala, U.S., Wright, C.V., Stainier, D.Y., and Dong, P.D. (2013) Specification of hepatopancreas progenitors in zebrafish by hnf1ba and wnt2bb. Development (Cambridge, England). 140(13):2669-2679
|
|
|
Manfroid, I., Ghaye, A., Naye, F., Detry, N., Palm, S., Pan, L., Ma, T.P., Huang, W., Rovira, M., Martial, J.A., Parsons, M.J., Moens, C.B., Voz, M.L., and Peers, B. (2012) Zebrafish sox9b is crucial for hepatopancreatic duct development and pancreatic endocrine cell regeneration. Developmental Biology. 366(2):268-278
|
Naye, F., Voz, M.L., Detry, N., Hammerschmidt, M., Peers, B., and Manfroid, I. (2012) Essential roles of zebrafish bmp2a, fgf10 and fgf24 in the specification of the ventral pancreas. Molecular biology of the cell. 23(5):945-954
|
Anderson, K.R., Singer, R.A., Balderes, D.A., Hernandez-Lagunas, L., Johnson, C.W., Artinger, K.B., and Sussel, L. (2011) The L6 domain tetraspanin Tm4sf4 regulates endocrine pancreas differentiation and directed cell migration. Development (Cambridge, England). 138(15):3213-3224
|
Bolli, N., Payne, E.M., Rhodes, J., Gjini, E., Johnston, A.B., Guo, F., Lee, J.S., Stewart, R.A., Kanki, J.P., Chen, A.T., Zhou, Y., Zon, L.I., and Look, A.T. (2011) cpsf1 is required for definitive HSC survival in zebrafish. Blood. 117(15):3996-4007
|
Gao, W., Xu, L., Guan, R., Liu, X., Han, Y., Wu, Q., Xiao, Y., Qi, F., Zhu, Z., Lin, S., and Zhang, B. (2011) Wdr18 Is Required for Kupffer's Vesicle Formation and Regulation of Body Asymmetry in Zebrafish. PLoS One. 6(8):e23386
|
Jurczyk, A., Roy, N., Bajwa, R., Gut, P., Lipson, K., Yang, C., Covassin, L., Racki, W.J., Rossini, A.A., Phillips, N., Stainier, D.Y., Greiner, D.L., Brehm, M.A., Bortell, R., and diIorio, P. (2011) Dynamic glucoregulation and mammalian-like responses to metabolic and developmental disruption in zebrafish. General and comparative endocrinology. 170(2):334-345
|
|
|
|
Rovira, M., Huang, W., Yusuff, S., Shim, J.S., Ferrante, A.A., Liu, J.O., and Parsons, M.J. (2011) Chemical screen identifies FDA-approved drugs and target pathways that induce precocious pancreatic endocrine differentiation. Proceedings of the National Academy of Sciences of the United States of America. 108(48):19264-9
|
|
|
Binot, A.C., Manfroid, I., Flasse, L., Winandy, M., Motte, P., Martial, J.A., Peers, B., and Voz, M.L. (2010) Nkx6.1 and nkx6.2 regulate alpha- and beta-cell formation in zebrafish by acting on pancreatic endocrine progenitor cells. Developmental Biology. 340(2):397-407
|
|
Alexa, K., Choe, S.K., Hirsch, N., Etheridge, L., Laver, E., and Sagerström, C.G. (2009) Maternal and zygotic aldh1a2 activity is required for pancreas development in zebrafish. PLoS One. 4(12):e8261
|
Amigo, J.D., Ackermann, G.E., Cope, J.J., Yu, M., Cooney, J.D., Ma, D., Langer, N.B., Shafizadeh, E., Shaw, G.C., Horsley, W., Trede, N.S., Davidson, A.J., Barut, B.A., Zhou, Y., Wojiski, S.A., Traver, D., Moran, T.B., Kourkoulis, G., Hsu, K., Kanki, J.P., Shah, D.I., Lin, H.F., Handin, R.I., Cantor, A.B., and Paw, B.H. (2009) The role and regulation of friend of GATA-1 (FOG-1) during blood development in the zebrafish. Blood. 114(21):4654-4663
|
|
Kinkel, M.D., Sefton, E.M., Kikuchi, Y., Mizoguchi, T., Ward, A.B., and Prince, V.E. (2009) Cyp26 enzymes function in endoderm to regulate pancreatic field size. Proceedings of the National Academy of Sciences of the United States of America. 106(19):7864-7869
|
|
Moss, J.B., Koustubhan, P., Greenman, M., Parsons, M.J., Walter, I., and Moss, L.G. (2009) Regeneration of the Pancreas in Adult Zebrafish. Diabetes. 58(8):1844-1851
|
|
Cheng, P.Y., Lin, C.C., Wu, C.S., Lu, Y.F., Lin, C.Y., Chung, C.C., Chu, C.Y, Huang, C.J., Tsai, C.Y., Korzh, S., Wu, J.L., and Hwang, S.P. (2008) Zebrafish cdx1b regulates expression of downstream factors of Nodal signaling during early endoderm formation. Development (Cambridge, England). 135(5):941-952
|
|
|
Delporte, F.M., Pasque, V., Devos, N., Manfroid, I., Voz, M.L., Motte, P., Biemar, F., Martial, J.A., and Peers, B. (2008) Expression of zebrafish pax6b in pancreas is regulated by two enhancers containing highly conserved cis-elements bound by PDX1, PBX and PREP factors. BMC Developmental Biology. 8:53
|
|
Goessling, W., North, T.E., Lord, A.M., Ceol, C., Lee, S., Weidinger, G., Bourque, C., Strijbosch, R., Haramis, A.P., Puder, M., Clevers, H., Moon, R.T., and Zon, L.I. (2008) APC mutant zebrafish uncover a changing temporal requirement for wnt signaling in liver development. Developmental Biology. 320(1):161-174
|
Hegde, A., Qiu, N.C., Qiu, X., Ho, S.H., Tay, K.Q., George, J., Ng, F.S., Govindarajan, K.R., Gong, Z., Mathavan, S., and Jiang, Y.J. (2008) Genomewide Expression Analysis in Zebrafish mind bomb Alleles with Pancreas Defects of Different Severity Identifies Putative Notch Responsive Genes. PLoS One. 3(1):e1479
|
|
Mizoguchi, T., Verkade, H., Heath, J.K., Kuroiwa, A., and Kikuchi, Y. (2008) Sdf1/Cxcr4 signaling controls the dorsal migration of endodermal cells during zebrafish gastrulation. Development (Cambridge, England). 135(15):2521-2529
|
|
Chen, S., Huang, J., Yuan, G., Chen, Q., Huang, N., and Xie, F. (2007) siRNA specific to Pdx-1 disturbed the formation of the islet in early zebrafish embryos. Journal of Huazhong University of Science and Technology. Medical sciences = Hua zhong ke ji da xue xue bao. Yi xue Ying De wen ban = Huazhong keji daxue xuebao. Yixue Yingdewen ban. 27(6):639-642
|
|
Dong, P.D., Munson, C.A., Norton, W., Crosnier, C., Pan, X., Gong, Z., Neumann, C.J., and Stainier, D.Y. (2007) Fgf10 regulates hepatopancreatic ductal system patterning and differentiation. Nature Genetics. 39(3):397-402
|
Manfroid, I., Delporte, F., Baudhuin, A., Motte, P., Neumann, C.J., Voz, M.L., Martial, J.A., and Peers, B. (2007) Reciprocal endoderm-mesoderm interactions mediated by fgf24 and fgf10 govern pancreas development. Development (Cambridge, England). 134(22):4011-4021
|
Stetsyuk, V., Peers, B., Mavropoulos, A., Verbruggen, V., Thisse, B., Thisse, C., Motte, P., Duvillie, B., and Scharfmann, R. (2007) Calsenilin is required for endocrine pancreas development in zebrafish. Developmental Dynamics : an official publication of the American Association of Anatomists. 236(6):1517-1525
|
Zecchin, E., Filippi, A., Biemar, F., Tiso, N., Pauls, S., Ellertsdottir, E., Gnugge, L., Bortolussi, M., Driever, W., and Argenton, F. (2007) Distinct delta and jagged genes control sequential segregation of pancreatic cell types from precursor pools in zebrafish. Developmental Biology. 301(1):192-204
|
Ellertsdottir, E., Ganz, J., Durr, K., Loges, N., Biemar, F., Seifert, F., Ettl, A.K., Kramer-Zucker, A.K., Nitschke, R., and Driever, W. (2006) A mutation in the zebrafish Na,K-ATPase subunit atp1a1a.1 provides genetic evidence that the sodium potassium pump contributes to left-right asymmetry downstream or in parallel to nodal flow. Developmental Dynamics : an official publication of the American Association of Anatomists. 235(7):1794-1808
|
Kim, H.J., Sumanas, S., Palencia-Desai, S., Dong, Y., Chen, J.N., and Lin, S. (2006) Genetic analysis of early endocrine pancreas formation in zebrafish. Molecular endocrinology (Baltimore, Md.). 20(1):194-203
|
|
Oishi, I., Kawakami, Y., Raya, A., Callol-Massot, C., and Izpisúa Belmonte, J.C. (2006) Regulation of primary cilia formation and left-right patterning in zebrafish by a noncanonical Wnt signaling mediator, duboraya. Nature Genetics. 38(11):1316-1322
|
Chen, J., Ruan, H., Ng, S.M., Gao, C., Soo, H.M., Wu, W., Zhang, Z., Wen, Z., Lane, D.P., and Peng, J. (2005) Loss of function of def selectively up-regulates {Delta}113p53 expression to arrest expansion growth of digestive organs in zebrafish. Genes & Development. 19(23):2900-2911
|
Kim, H.J., Schleiffarth, J.R., Jessurun, J., Sumanas, S., Petryk, A., Lin, S., and Ekker, S.C. (2005) Wnt5 signaling in vertebrate pancreas development. BMC Biology. 3:23
|
Matsui, T., Raya, A., Kawakami, Y., Callol-Massot, C., Capdevila, J., Rodriguez-Esteban, C., Izpisúa Belmonte, J.C. (2005) Noncanonical Wnt signaling regulates midline convergence of organ primordia during zebrafish development. Genes & Development. 19(1):164-175
|
Mavropoulos, A., Devos, N., Biemar, F., Zecchin, E., Argenton, F., Edlund, H., Motte, P., Martial, J.A., and Peers, B. (2005) sox4b is a key player of pancreatic alpha cell differentiation in zebrafish. Developmental Biology. 285(1):211-223
|
Woods, I.G., Wilson, C., Friedlander, B., Chang, P., Reyes, D.K., Nix, R., Kelly, P.D., Chu, F., Postlethwait, J.H., and Talbot, W.S. (2005) The zebrafish gene map defines ancestral vertebrate chromosomes. Genome research. 15(9):1307-1314
|
|
|
Lin, J.W., Biankin, A.V., Horb, M.E., Ghosh, B., Prasad, N.B., Yee, N.S., Pack, M.A., and Leach, S.D. (2004) Differential requirement for ptf1a in endocrine and exocrine lineages of developing zebrafish pancreas. Developmental Biology. 270(2):474-486
|
Lorent, K., Yeo, S.Y., Oda, T., Chandrasekharappa, S., Chitnis, A., Matthews, R.P., and Pack, M. (2004) Inhibition of Jagged-mediated Notch signaling disrupts zebrafish biliary development and generates multi-organ defects compatible with an Alagille syndrome phenocopy. Development (Cambridge, England). 131(22):5753-5766
|
Nakano, Y., Kim, H.R., Kawakami, A., Roy, S., Schier, A.F., and Ingham, P.W. (2004) Inactivation of dispatched 1 by the chameleon mutation disrupts Hedgehog signalling in the zebrafish embryo. Developmental Biology. 269(2):381-392
|
|
Zecchin, E., Mavropoulos, A., Devos, N., Filippi, A., Tiso, N., Meyer, D., Peers, B., Bortolussi, M., Argenton, F. (2004) Evolutionary conserved role of ptf1a in the specification of exocrine pancreatic fates. Developmental Biology. 268(1):174-184
|
|
|
|
|
|
|
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
|
Biemar, F., Argenton, F., Schmidtke, R., Epperlein, S., Peers, B., and Driever, W. (2001) Pancreas development in zebrafish: early dispersed appearance of endocrine hormone expressing cells and their convergence to form the definitive islet. Developmental Biology. 230(2):189-203
|
Chen, J.-N., van Bebber, F., Goldstein, A.M., Serluca, F.C., Jackson, D., Childs, S., Serbedzija, G., Warren, K.S., Mably, J.D., Lindahl, P., Mayer, A., Haffter, P., and Fishman, M.C. (2001) Genetic steps to organ laterality in zebrafish. Comparative and functional genomics. 2(2):60-68
|
|
|
|
|
Wallace, K.N., Yusuff, S., Sonntag, J.M., Chin, A.J., and Pack, M. (2001) Zebrafish hhex regulates liver development and digestive organ chirality. Genesis (New York, N.Y. : 2000). 30(3):141-3
|
|
|
|
|