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Development of subdomains in the medial pallium of Xenopus laevis and Trachemys scripta: Insights into the anamniote-amniote transition. , Jiménez S., Front Neuroanat. 16 1039081.
Formin Binding Protein 1 (FNBP1) regulates non-canonical Wnt signaling and vertebrate gastrulation (12 words). , Zeni C., Dev Biol. November 1, 2024; 515 18-29.
Reversion induced LIM domain protein (RIL) is a Daam1-interacting protein and regulator of the actin cytoskeleton during non-canonical Wnt signaling. , Mezzacappa C., Dev Biol. November 1, 2024; 515 46-58.
CC2D1A causes ciliopathy, intellectual disability, heterotaxy, renal dysplasia, and abnormal CSF flow. , Kim AH., Life Sci Alliance. October 1, 2024; 7 (10):
Temporal Transcriptomic Profiling of the Developing Xenopus laevis Eye. , Hack SJ., Cells. August 21, 2024; 13 (16):
Chloride deregulation and GABA depolarization in MTOR related malformations of cortical development. , Bakouh N., Brain. August 6, 2024;
Expression analysis of thg1l during Xenopus laevis development. , Martini D., Int J Dev Biol. July 15, 2024; 68 (2): 85-91.
Knockdown of NeuroD2 leads to seizure-like behaviour, brain neuronal hyperactivity and a leaky blood- brain barrier in a Xenopus laevis tadpole model of DEE75. , Banerjee S., Genetics. July 8, 2024; 227 (3):
From neural tube to spinal cord: The dynamic journey of the dorsal neuroepithelium. , Ventriglia S., Dev Biol. July 1, 2024; 511 26-38.
The olfactory network of larval Xenopus laevis regenerates accurately after olfactory nerve transection. , Hawkins SJ., Eur J Neurosci. July 1, 2024; 60 (1): 3719-3741.
Cerebellar granular neuron progenitors exit their germinative niche via BarH-like1 activity mediated partly by inhibition of T-cell factor. , Bou-Rouphael J., Development. July 1, 2024; 151 (13):
Functions and pharmacology of α2β2 nicotinic acetylcholine receptors; in and out of the shadow of α4β2 nicotinic acetylcholine receptors. , Papke RL., Biochem Pharmacol. July 1, 2024; 225 116263.
Xenopus as a model system for studying pigmentation and pigmentary disorders. , El Mir J., Pigment Cell Melanoma Res. June 7, 2024;
Fbrsl1 is required for heart development in Xenopus laevis and de novo variants in FBRSL1 can cause human heart defects. , Berger H., Dis Model Mech. June 1, 2024; 17 (6):
AP2A2 mutation and defective endocytosis in a Malian family with hereditary spastic paraplegia. , Diarra S ., Neurobiol Dis. May 19, 2024; 106537.
Hydroxylated polychlorinated biphenyls may affect the thyroid hormone-induced brain development during metamorphosis of Xenopus laevis by disturbing the expression of matrix metalloproteinases. , Ishihara A., Mol Biol Rep. May 7, 2024; 51 (1): 624.
Using Xenopus to discover new candidate genes involved in BOR and other congenital hearing loss syndromes. , Neal SJ., J Exp Zool B Mol Dev Evol. May 1, 2024; 342 (3): 212-240.
Kdm7a expression is spatiotemporally regulated in developing Xenopus laevis embryos, and its overexpression influences late retinal development. , Martini D., Dev Dyn. May 1, 2024; 253 (5): 508-518.
Inefficacy of dietary test substance administration in Amphibian Metamorphosis Assay (AMA) studies. , Fort DJ., J Appl Toxicol. May 1, 2024; 44 (5): 733-746.
Male-transmitted transgenerational effects of the herbicide linuron on DNA methylation profiles in Xenopus tropicalis brain and testis. , Roza M., Sci Total Environ. May 1, 2024; 923 170949.
Modelling human genetic disorders in Xenopus tropicalis. , Willsey HR ., Dis Model Mech. May 1, 2024; 17 (5):
Control of astrocytic Ca2+ signaling by nitric oxide-dependent S-nitrosylation of Ca2+ homeostasis modulator 1 channels. , Puebla M., Biol Res. April 30, 2024; 57 (1): 19.
Inhibition of the serine protease HtrA1 by SerpinE2 suggests an extracellular proteolytic pathway in the control of neural crest migration. , Pera EM ., Elife. April 18, 2024; 12
Bi-allelic ACBD6 variants lead to a neurodevelopmental syndrome with progressive and complex movement disorders. , Kaiyrzhanov R., Brain. April 4, 2024; 147 (4): 1436-1456.
A novel SMARCC1 BAFopathy implicates neural progenitor epigenetic dysregulation in human hydrocephalus. , Singh AK., Brain. April 4, 2024; 147 (4): 1553-1570.
Brain enlargement with rostral bias in larvae from a spontaneously occurring female variant line of Xenopus; role of aberrant embryonic Wnt/β-catenin signaling. , Hongo I., Cells Dev. April 3, 2024; 203918.
Development of a heat-stable alkaline phosphatase reporter system for cis-regulatory analysis and its application to 3D digital imaging of Xenopus embryonic tissues. , Sakagami K., Dev Growth Differ. April 1, 2024; 66 (3): 256-265.
The Conventional and Breakthrough Tool for the Study of L-Glutamate Transporters. , Takahashi K., Membranes (Basel). March 27, 2024; 14 (4):
The Molecular Mechanism of Body Axis Induction in Lampreys May Differ from That in Amphibians. , Ermakova GV., Int J Mol Sci. February 19, 2024; 25 (4):
Techniques for Rapidly Sampling Six Crucial Organs in Adult Xenopus. , Jonas-Closs RA., J Vis Exp. February 16, 2024; (204):
Serotonin strengthens a developing glutamatergic synapse through a PI3K-dependent mechanism. , Udoh UG., J Neurosci. February 7, 2024; 44 (6):
JADE1 is dispensable for the brain development in mice. , Wang J ., Biochem Biophys Res Commun. February 5, 2024; 695 149421.
R-Spondin 2 governs Xenopus left- right body axis formation by establishing an FGF signaling gradient. , Lee H , Lee H ., Nat Commun. February 2, 2024; 15 (1): 1003.
A CRISPR-Cas9-mediated versatile method for targeted integration of a fluorescent protein gene to visualize endogenous gene expression in Xenopus laevis. , Mochii M ., Dev Biol. February 1, 2024; 506 42-51.
Historical control histopathology data from amphibian metamorphosis assays and fathead minnow fish short term reproductive assays: A tool for data interpretation. , Wolf JC., Aquat Toxicol. February 1, 2024; 267 106811.
In vitro modeling of cranial placode differentiation: Recent advances, challenges, and perspectives. , Griffin C., Dev Biol. February 1, 2024; 506 20-30.
Embryos assist morphogenesis of others through calcium and ATP signaling mechanisms in collective teratogen resistance. , Tung A., Nat Commun. January 17, 2024; 15 (1): 535.
Conserved chromatin and repetitive patterns reveal slow genome evolution in frogs. , Bredeson JV., Nat Commun. January 17, 2024; 15 (1): 579.
BRCA1 and ELK-1 regulate neural progenitor cell fate in the optic tectum in response to visual experience in Xenopus laevis tadpoles. , Huang LC., Proc Natl Acad Sci U S A. January 16, 2024; 121 (3): e2316542121.
Awakening adult neural stem cells: NOX signalling as a positive regulator of quiescence to proliferation transition in the Xenopus retina. , Donval A., Development. January 15, 2024; 151 (2):
Toward New AQP4 Inhibitors: ORI- TRN-002. , Thormann M., Int J Mol Sci. January 11, 2024; 25 (2):
Unveiling vertebrate development dynamics in frog Xenopus laevis using micro-CT imaging. , Laznovsky J., Gigascience. January 2, 2024; 13
Characterization of Na+ currents regulating intrinsic excitability of optic tectal neurons. , Thompson AC., Life Sci Alliance. January 1, 2024; 7 (1):
Early life exposure to perfluorooctanesulfonate (PFOS) impacts vital biological processes in Xenopus laevis: Integrated morphometric and transcriptomic analyses. , Ismail T., Ecotoxicol Environ Saf. January 1, 2024; 269 115820.
Bilateral Retinofugal Pathfinding Impairments Limit Behavioral Compensation in Near-Congenital One-Eyed Xenopus laevis. , Forsthofer M., eNeuro. January 1, 2024; 11 (1):
Prdm15 acts upstream of Wnt4 signaling in anterior neural development of Xenopus laevis. , Saumweber E., Front Cell Dev Biol. January 1, 2024; 12 1316048.
Selective Cell-Surface Expression of Triheteromeric NMDA Receptors. , Yi F., Methods Mol Biol. January 1, 2024; 2799 55-77.
Comparing the effects of three neonicotinoids on embryogenesis of the South African clawed frog Xenopus laevis. , Flach H., Curr Res Toxicol. January 1, 2024; 6 100169.
Zbtb11 interacts with Otx2 and patterns the anterior neuroectoderm in Xenopus. , Satou-Kobayashi Y., PLoS One. January 1, 2024; 19 (7): e0293852.
The human alpha7 nicotinic acetylcholine receptor is a host target for the rabies virus glycoprotein. , O'Brien BCV., Front Cell Infect Microbiol. January 1, 2024; 14 1394713.