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ZFIN ID:
ZDB-ATB-121203-1
CITATIONS
(53 total)
Antibody Name:
Ab-4C4
Bai, Q., Parris, R.S., Burton, E.A. (2014) Different Mechanisms Regulate Expression of Zebrafish Myelin Protein Zero (P0) in Myelinating Oligodendrocytes and Its Induction following Axonal Injury. The Journal of biological chemistry. 289(35):24114-28
Baumgart, E.V., Barbosa, J.S., Bally-Cuif, L., Götz, M., and Ninkovic, J. (2012) Stab wound injury of the zebrafish telencephalon: A model for comparative analysis of reactive gliosis. Glia. 60(3):343-357
Bhumika, S., Lemmens, K., Vancamp, P., Moons, L., Darras, V.M. (2015) Decreased thyroid hormone signaling accelerates the reinnervation of the optic tectum following optic nerve crush in adult zebrafish. Molecular and cellular neurosciences. 68:92-102
Brandt, Z.J., Collery, R.F., Besharse, J.C., Link, B.A. (2021) Ablation of mpeg+ Macrophages Exacerbates mfrp-Related Hyperopia. Investigative ophthalmology & visual science. 62:13
Caldwell, L.J., Davies, N.O., Cavone, L., Mysiak, K.S., Semenova, S.A., Panula, P., Armstrong, J.D., Becker, C.G., Becker, T. (2019) Regeneration of dopaminergic neurons in adult zebrafish depends on immune system activation and differs for distinct populations. The Journal of neuroscience : the official journal of the Society for Neuroscience. 39(24):4694-4713
Chen, S., Lathrop, K.L., Kuwajima, T., Gross, J.M. (2021) Retinal ganglion cell survival after severe optic nerve injury is modulated by crosstalk between JAK/STAT signaling and innate immune responses in the zebrafish retina. Development (Cambridge, England). 149(8):
Chia, K., Keatinge, M., Mazzolini, J., Sieger, D. (2019) Brain tumours repurpose endogenous neuron to microglia signalling mechanisms to promote their own proliferation. eLIFE. 8:
Chia, K., Mazzolini, J., Mione, M., Sieger, D. (2018) Tumor initiating cells induce Cxcr4-mediated infiltration of pro-tumoral macrophages into the brain. eLIFE. 7
Collery, R.F., Volberding, P.J., Bostrom, J.R., Link, B.A., Besharse, J.C. (2016) Loss of Zebrafish Mfrp Causes Nanophthalmia, Hyperopia, and Accumulation of Subretinal Macrophages. Investigative ophthalmology & visual science. 57:6805-6814
Dhakal, S., Stevens, C.B., Sebbagh, M., Weiss, O., Frey, R.A., Adamson, S., Shelden, E.A., Inbal, A., Stenkamp, D.L. (2015) Abnormal retinal development in cloche mutant zebrafish. Developmental Dynamics : an official publication of the American Association of Anatomists. 244(11):1439-55
Elsaeidi, F., Macpherson, P., Mills, E.A., Jui, J., Flannery, J.G., Goldman, D. (2018) Notch suppression collaborates with Ascl1 and Lin28 to unleash a regenerative response in fish retina, but not in mice. The Journal of neuroscience : the official journal of the Society for Neuroscience. 38(9):2246-2261
Flinn, M.A., Jeffery, B.E., O'Meara, C.C., Link, B.A. (2018) Yap is Required for Scar Formation but not Myocyte Proliferation During Heart Regeneration in Zebrafish. Cardiovascular research. 115(3):570-577
Fogerty, J., Song, P., Boyd, P., Grabinski, S.E., Hoang, T., Reich, A., Cianciolo, L.T., Blackshaw, S., Mumm, J.S., Hyde, D.R., Perkins, B.D. (2022) Notch inhibition promotes regeneration and immunosuppression supports cone survival in a zebrafish model of inherited retinal dystrophy. The Journal of neuroscience : the official journal of the Society for Neuroscience. 42(26):5144-5158
Green, L.A., Nebiolo, J.C., Smith, C.J. (2019) Microglia exit the CNS in spinal root avulsion. PLoS Biology. 17:e3000159
Green, L.A., O'Dea, M.R., Hoover, C.A., DeSantis, D.F., Smith, C.J. (2022) The embryonic zebrafish brain is seeded by a lymphatic-dependent population of mrc1
+
microglia precursors. Nature Neuroscience. 25(7):849-864
Hamilton, N., Rutherford, H.A., Petts, J.J., Isles, H.M., Weber, T., Henneke, M., Gärtner, J., Dunning, M.J., Renshaw, S.A. (2020) The failure of microglia to digest developmental apoptotic cells contributes to the pathology of RNASET2-deficient leukoencephalopathy. Glia. 68(7):1531-1545
Herzog, C., Pons Garcia, L., Keatinge, M., Greenald, D., Moritz, C., Peri, F., Herrgen, L. (2019) Rapid clearance of cellular debris by microglia limits secondary neuronal cell death after brain injury
in vivo
. Development (Cambridge, England). 146(9):
Iribarne, M., Hyde, D.R. (2022) Different inflammation responses modulate Müller glia proliferation in the acute or chronically damaged zebrafish retina. Frontiers in cell and developmental biology. 10:892271
Katz, S., Cussigh, D., Urbán, N., Blomfield, I., Guillemot, F., Bally-Cuif, L., Coolen, M. (2016) A Nuclear Role for miR-9 and Argonaute Proteins in Balancing Quiescent and Activated Neural Stem Cell States. Cell Reports. 17:1383-1398
Keatinge, M., Bui, H., Menke, A., Chen, Y.C., Sokol, A.M., Bai, Q., Ellett, F., Da Costa, M., Burke, D., Gegg, M., Trollope, L., Payne, T., McTighe, A., Mortiboys, H., de Jager, S., Nuthhall, H., Kuo, M.S., Fleming, A., Schapira, A.H., Renshaw, S.A., Highley, J.R., Chacinska, A., Panula, P., Burton, E.A., O'Neill, M.J., Bandmann, O. (2015) Glucocerebrosidase 1 deficient Danio rerio mirror key pathological aspects of human Gaucher disease and provide evidence of early microglial activation preceding alpha-synuclein-independent neuronal cell death. Human molecular genetics. 24(23):6640-52
Kramer, A.C., Gurdziel, K., Thummel, R. (2021) A Comparative Analysis of Gene and Protein Expression Throughout a Full 28-Day Retinal Regeneration Time-Course in Adult Zebrafish. Frontiers in cell and developmental biology. 9:741514
Larbalestier, H., Keatinge, M., Watson, L., White, E., Gowda, S., Wei, W., Koler, K., Semenova, S.A., Elkin, A.M., Rimmer, N., Sweeney, S.T., Mazzolini, J., Sieger, D., Hide, W., McDearmid, J., Panula, P., MacDonald, R.B., Bandmann, O. (2021) GCH1 deficiency activates brain innate immune response and impairs tyrosine hydroxylase homeostasis. The Journal of neuroscience : the official journal of the Society for Neuroscience. 42(4):702-716
Leach, L.L., Hanovice, N.J., George, S.M., Gabriel, A.E., Gross, J.M. (2021) The immune response is a critical regulator of zebrafish retinal pigment epithelium regeneration. Proceedings of the National Academy of Sciences of the United States of America. 118(21)
Lu, F., Leach, L.L., Gross, J.M. (2023) A CRISPR-Cas9-mediated F0 screen to identify pro-regenerative genes in the zebrafish retinal pigment epithelium. Scientific Reports. 13:31423142
Ma, L., Shen, Y.Q., Khatri, H.P., Schachner, M. (2014) The asparaginyl endopeptidase legumain is essential for functional recovery after spinal cord injury in adult zebrafish. PLoS One. 9:e95098
Magner, E., Sandoval-Sanchez, P., Kramer, A.C., Thummel, R., Hitchcock, P.F., Taylor, S.M. (2022) Disruption of miR-18a Alters Proliferation, Photoreceptor Replacement Kinetics, Inflammatory Signaling, and Microglia/Macrophage Numbers During Retinal Regeneration in Zebrafish. Molecular neurobiology. 59(5):2910-2931
Martins, R.R., Zamzam, M., Tracey-White, D., Moosajee, M., Thummel, R., Henriques, C.M., MacDonald, R.B. (2022) Müller Glia maintain their regenerative potential despite degeneration in the aged zebrafish retina. Aging Cell. 21(4):e13597
Mazzolini, J., Chia, K., Sieger, D. (2018) Isolation and RNA Extraction of Neurons, Macrophages and Microglia from Larval Zebrafish Brains. Journal of visualized experiments : JoVE. (134)
Mazzolini, J., Le Clerc, S., Morisse, G., Coulonges, C., Kuil, L.E., van Ham, T.J., Zagury, J.F., Sieger, D. (2019) Gene expression profiling reveals a conserved microglia signature in larval zebrafish. Glia. 68(2):298-315
Mazzolini, J., Le Clerc, S., Morisse, G., Coulonges, C., Zagury, J.F., Sieger, D. (2022) Wasl is crucial to maintain microglial core activities during glioblastoma initiation stages. Glia. 70(6):1027-1051
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
Münzel, E., Becker, C.G., Becker, T., Williams, A. (2014) Zebrafish regenerate full thickness optic nerve myelin after demyelination, but this fails with increasing age. Acta neuropathologica communications. 2:77
Nelson, C.M., Ackerman, K.M., O'Hayer, P., Bailey, T.J., Gorsuch, R.A., and Hyde, D.R. (2013) Tumor Necrosis Factor-Alpha Is Produced by Dying Retinal Neurons and Is Required for Muller Glia Proliferation during Zebrafish Retinal Regeneration. The Journal of neuroscience : the official journal of the Society for Neuroscience. 33(15):6524-6539
Ohnmacht, J., Yang, Y.J., Maurer, G.W., Barreiro-Iglesias, A., Tsarouchas, T.M., Wehner, D., Sieger, D., Becker, C.G., Becker, T. (2016) Spinal motor neurons are regenerated after mechanical lesion and genetic ablation in larval zebrafish. Development (Cambridge, England). 143(9):1464-74
Ranski, A.H., Kramer, A.C., Morgan, G.W., Perez, J.L., Thummel, R. (2018) Characterization of retinal regeneration in adult zebrafish following multiple rounds of phototoxic lesion. PeerJ. 6:e5646
Rovira, M., Miserocchi, M., Montanari, A., Hammou, L., Chomette, L., Pozo, J., Imbault, V., Bisteau, X., Wittamer, V. (2022) Zebrafish Galectin 3 binding protein (Lgals3bp) is the target antigen of the microglial 4C4 monoclonal antibody. Developmental Dynamics : an official publication of the American Association of Anatomists. 252(3):400-414
Saito, Y., Yamaguchi, A., Nakamura, S., Okuyoshi, H., Shimazawa, M., Hara, H. (2020) Contribution of platelet-derived growth factor signaling to retina regeneration in zebrafish. Neuroscience letters. 727:134930
Sanchez-Gonzalez, R., Koupourtidou, C., Lepko, T., Zambusi, A., Novoselc, K.T., Durovic, T., Aschenbroich, S., Schwarz, V., Breunig, C.T., Straka, H., Huttner, H.B., Irmler, M., Beckers, J., Wurst, W., Zwergal, A., Schauer, T., Straub, T., Czopka, T., Trümbach, D., Götz, M., Stricker, S.H., Ninkovic, J. (2022) Innate Immune Pathways Promote Oligodendrocyte Progenitor Cell Recruitment to the Injury Site in Adult Zebrafish Brain. Cells. 11(3):
Silva, N.J., Dorman, L.C., Vainchtein, I.D., Horneck, N.C., Molofsky, A.V. (2021) In situ and transcriptomic identification of microglia in synapse-rich regions of the developing zebrafish brain. Nature communications. 12:5916
Silva, N.J., Nagashima, M., Li, J., Kakuk-Atkins, L., Ashrafzadeh, M., Hyde, D.R., Hitchcock, P.F. (2020) Inflammation and matrix metalloproteinase 9 (Mmp-9) regulate photoreceptor regeneration in adult zebrafish. Glia. 68(7):1445-1465
Skaggs, K., Goldman, D., Parent, J.M. (2014) Excitotoxic brain injury in adult zebrafish stimulates neurogenesis and long-distance neuronal integration. Glia. 62(12):2061-79
Song, P., Fogerty, J., Cianciolo, L.T., Stupay, R., Perkins, B.D. (2020) Cone Photoreceptor Degeneration and Neuroinflammation in the Zebrafish Bardet-Biedl Syndrome 2 (
bbs2
) Mutant Does Not Lead to Retinal Regeneration. Frontiers in cell and developmental biology. 8:578528
Tsarouchas, T.M., Wehner, D., Cavone, L., Munir, T., Keatinge, M., Lambertus, M., Underhill, A., Barrett, T., Kassapis, E., Ogryzko, N., Feng, Y., van Ham, T.J., Becker, T., Becker, C.G. (2018) Dynamic control of proinflammatory cytokines Il-1β and Tnf-α by macrophages in zebrafish spinal cord regeneration. Nature communications. 9:4670
Var, S.R., Byrd-Jacobs, C.A. (2019) Microglial response patterns following damage to the zebrafish olfactory bulb. IBRO reports. 7:70-79
Walsh, C.E., Hitchcock, P.F. (2017) Progranulin regulates neurogenesis in the developing vertebrate retina. Developmental Neurobiology. 77(9):1114-1129
Wan, J., Zhao, X.F., Vojtek, A., Goldman, D. (2014) Retinal Injury, Growth Factors, and Cytokines Converge on β-Catenin and pStat3 Signaling to Stimulate Retina Regeneration. Cell Reports. 9(1):285-97
Wang, J., Thomas, H.R., Thompson, R.G., Waldrep, S.C., Fogerty, J., Song, P., Li, Z., Ma, Y., Santra, P., Hoover, J.D., Yeo, N.C., Drummond, I.A., Yoder, B.K., Amack, J.D., Perkins, B., Parant, J.M. (2022) Variable phenotypes and penetrance between and within different zebrafish ciliary transition zone mutants. Disease models & mechanisms. 15(12):
Wang, Y.J., He, Z.Z., Fang, Y.W., Xu, Y., Chen, Y.N., Wang, G.Q., Yang, Y.Q., Yang, Z., Li, Y.H. (2014) Effect of titanium dioxide nanoparticles on zebrafish embryos and developing retina. International journal of ophthalmology. 7:917-23
Watson, L., Keatinge, M., Gegg, M., Bai, Q., Sandulescu, C., Vardi, A., Futerman, A.H., Schapira, A.H.V., Burton, E.A., Bandmann, O. (2019) Ablation of the pro-inflammatory master regulator miR-155 does not mitigate neuroinflammation or neurodegeneration in a vertebrate model of Gaucher's disease. Neurobiology of disease. 127:563-569
Zambusi, A., Novoselc, K.T., Hutten, S., Kalpazidou, S., Koupourtidou, C., Schieweck, R., Aschenbroich, S., Silva, L., Yazgili, A.S., van Bebber, F., Schmid, B., Möller, G., Tritscher, C., Stigloher, C., Delbridge, C., Sirko, S., Günes, Z.I., Liebscher, S., Schlegel, J., Aliee, H., Theis, F., Meiners, S., Kiebler, M., Dormann, D., Ninkovic, J. (2022) TDP-43 condensates and lipid droplets regulate the reactivity of microglia and regeneration after traumatic brain injury. Nature Neuroscience. 25(12):1608-1625
Zambusi, A., Pelin Burhan, Ö., Di Giaimo, R., Schmid, B., Ninkovic, J. (2020) Granulins Regulate Aging Kinetics in the Adult Zebrafish Telencephalon. Cells. 9(2):
Zhao, X.F., Wan, J., Powell, C., Ramachandran, R., Myers, M.G., Goldman, D. (2014) Leptin and IL-6 Family Cytokines Synergize to Stimulate Müller Glia Reprogramming and Retina Regeneration. Cell Reports. 9(1):272-84
Additional Citations (1):
ZFIN Staff (2008) Antibody information from supplier. Manually curated data.
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