Results 1 - 50 of 7140 results
Nitric Oxide Function and Nitric Oxide Synthase Evolution in Aquatic Chordates. , Locascio A., Int J Mol Sci. July 6, 2023; 24 (13):
Xenopus: An in vivo model for studying skin response to ultraviolet B irradiation. , El Mir J., Dev Growth Differ. May 1, 2023; 65 (4): 194-202.
The amphibian invitrome: Past, present, and future contributions to our understanding of amphibian immunity. , Douglas AJ., Dev Comp Immunol. May 1, 2023; 142 104644.
Exposure to fluoride induces apoptosis in the liver, kidney, and heart of Xenopus laevis by regulating the Caspase-8/3 signaling pathway. , Wang S., Acta Histochem. April 1, 2023; 125 (3): 151999.
Influence of systemic copper toxicity on early development and metamorphosis in Xenopus laevis. , Fort DJ., J Appl Toxicol. March 1, 2023; 43 (3): 431-445.
Mink1 regulates spemann organizer cell fate in the xenopus gastrula via Hmga2. , Colleluori V., Dev Biol. March 1, 2023; 495 42-53.
Echocardiographic assessment of Xenopus tropicalis heart regeneration. , Lv L., Cell Biosci. February 13, 2023; 13 (1): 29.
Oxalate secretion is stimulated by a cAMP-dependent pathway in the mouse cecum. , Whittamore JM., Pflugers Arch. February 1, 2023; 475 (2): 249-266.
Molecular cloning and analysis of the ghrelin/GHSR system in Xenopus tropicalis. , Wada R., Gen Comp Endocrinol. January 15, 2023; 331 114167.
Biochemical, histopathological and untargeted metabolomic analyses reveal hepatotoxic mechanism of acetamiprid to Xenopus laevis. , Jiao H., Environ Pollut. January 15, 2023; 317 120765.
A comparative study of cellular diversity between the Xenopus pronephric and mouse metanephric nephron. , Corkins ME., Kidney Int. January 1, 2023; 103 (1): 77-86.
Stem cell development involves divergent thyroid hormone receptor subtype expression and epigenetic modifications in the amphibian intestine during metamorphosis. , Hasebe T ., Vitam Horm. January 1, 2023; 122 1-22.
Comparative analysis of vertebrates reveals that mouse primordial oocytes do not contain a Balbiani body. , Dhandapani L., J Cell Sci. December 1, 2022; 135 (1):
Membrane potential drives the exit from pluripotency and cell fate commitment via calcium and mTOR. , Sempou E., Nat Commun. November 5, 2022; 13 (1): 6681.
HCN2 channel-induced rescue of brain, eye, heart and gut teratogenesis caused by nicotine, ethanol and aberrant notch signalling. , Pai VP ., Wound Repair Regen. November 1, 2022; 30 (6): 681-706.
Molecular Determinants for the High-Affinity Blockade of Human Ether-à-go-go-Related Gene K + Channel by Tolterodine. , Wang N., J Cardiovasc Pharmacol. November 1, 2022; 80 (5): 679-689.
Upregulation of proto-oncogene ski by thyroid hormone in the intestine and tail during Xenopus metamorphosis. , Fu L., Gen Comp Endocrinol. November 1, 2022; 328 114102.
Bile acids regulate the epithelial Na+ channel in native tissues through direct binding at multiple sites. , Wang XP ., J Physiol. November 1, 2022; 600 (21): 4695-4711.
An amphibian high fat diet model confirms that endocrine disruptors can induce a metabolic syndrome in wild green frogs (Pelophylax spp. complex). , Veyrenc S., Environ Pollut. October 15, 2022; 311 120009.
Xenopus Oocytes as a Powerful Cellular Model to Study Foreign Fully-Processed Membrane Proteins. , Ivorra I., Membranes (Basel). October 11, 2022; 12 (10):
The Secrets of the Frogs Heart. , Corno AF., Pediatr Cardiol. October 1, 2022; 43 (7): 1471-1480.
The inhibition of intestinal glucose absorption by oat-derived avenanthramides. , Zhouyao H., J Food Biochem. October 1, 2022; 46 (10): e14324.
Impaired negative feedback and death following acute stress in glucocorticoid receptor knockout Xenopus tropicalis tadpoles. , Paul B ., Gen Comp Endocrinol. September 15, 2022; 326 114072.
An in vivo study of the toxic effects of triclosan on Xenopus laevis (Daudin, 1802) frog: Assessment of viability, tissue damage and mitochondrial dysfunction. , Tenkov KS., Comp Biochem Physiol C Toxicol Pharmacol. September 1, 2022; 259 109401.
Environmental concentrations of a delorazepam-based drug impact on embryonic development of non-target Xenopus laevis. , Fogliano C., Aquat Toxicol. September 1, 2022; 250 106244.
Maternal Wnt11b regulates cortical rotation during Xenopus axis formation: analysis of maternal-effect wnt11b mutants. , Houston DW ., Development. September 1, 2022; 149 (17):
A myeloperoxidase enhancer drives myeloid cell-specific labeling in a transgenic frog line. , Yamada-Kondo S., Dev Growth Differ. September 1, 2022; 64 (7): 362-367.
The homeodomain transcription factor Ventx2 regulates respiratory progenitor cell number and differentiation timing during Xenopus lung development. , Rankin SA , Rankin SA ., Dev Growth Differ. September 1, 2022; 64 (7): 347-361.
GJA1 depletion causes ciliary defects by affecting Rab11 trafficking to the ciliary base. , Jang DG., Elife. August 25, 2022; 11
Adrenergic receptor signaling induced by Klf15, a regulator of regeneration enhancer, promotes kidney reconstruction. , Suzuki N., Proc Natl Acad Sci U S A. August 16, 2022; 119 (33): e2204338119.
Microelectrode array membranes to simultaneously assess cardiac and neurological signals of xenopus laevis under chemical exposures and environmental changes. , Xia X., Biosens Bioelectron. August 15, 2022; 210 114292.
Positive feedback regulation of frizzled-7 expression robustly shapes a steep Wnt gradient in Xenopus heart development, together with sFRP1 and heparan sulfate. , Yamamoto T ., Elife. August 9, 2022; 11
Biochemical and osmoregulatory responses of the African clawed frog experimentally exposed to salt and pesticide. , Álvarez-Vergara F., Comp Biochem Physiol C Toxicol Pharmacol. August 1, 2022; 258 109367.
Anesthesia for Echocardiography and Magnetic Resonance Imaging in the African Clawed Frog (Xenopus laevis). , Corno AF., Comp Med. August 1, 2022; 72 (4): 243-247.
The p97 segregase cofactor Ubxn7 facilitates replisome disassembly during S-phase. , Tarcan Z., J Biol Chem. August 1, 2022; 298 (8): 102234.
Cell landscape of larval and adult Xenopus laevis at single-cell resolution. , Liao Y., Nat Commun. July 25, 2022; 13 (1): 4306.
Discovery and characterization of a potent activator of the BKCa channel that relives overactive bladder syndrome in rats. , Jo H., Eur J Pharmacol. July 15, 2022; 927 175055.
Normal Table of Xenopus development: a new graphical resource. , Zahn N ., Development. July 15, 2022; 149 (14):
HMCES modulates the transcriptional regulation of nodal/activin and BMP signaling in mESCs. , Liang T., Cell Rep. July 12, 2022; 40 (2): 111038.
ETS1 and HLHS: Implications for the Role of the Endocardium. , Grossfeld P., J Cardiovasc Dev Dis. July 8, 2022; 9 (7):
Two adjacent phosphorylation sites in the C-terminus of the channel's α-subunit have opposing effects on epithelial sodium channel (ENaC) activity. , Diakov A., Pflugers Arch. July 1, 2022; 474 (7): 681-697.
Activation of 2-oxoglutarate receptor 1 (OXGR1) by α-ketoglutarate (αKG) does not detectably stimulate Pendrin-mediated anion exchange in Xenopus oocytes. , Heneghan JF., Physiol Rep. July 1, 2022; 10 (14): e15362.
Structural and electrophysiological basis for the modulation of KCNQ1 channel currents by ML277. , Willegems K., Nat Commun. June 29, 2022; 13 (1): 3760.
Lipid Metabolic Disorder Induced by Pyrethroids in Nonalcoholic Fatty Liver Disease of Xenopus laevis. , Li M., Environ Sci Technol. June 21, 2022; 56 (12): 8463-8474.
Clerodane Diterpenes from Casearia corymbosa as Allosteric GABAA Receptor Modulators. , Syafni N., J Nat Prod. May 27, 2022; 85 (5): 1201-1210.
Petroleum-derived naphthenic acids disrupt hormone-dependent sexual behaviours in male Western clawed frogs. , Zhang WS., Conserv Physiol. May 17, 2022; 10 (1): coac030.
The mechanics of air breathing in African clawed frog tadpoles, Xenopus laevis (Anura: Pipidae). , Phillips JR., J Exp Biol. May 15, 2022; 225 (10):
Lmo7 recruits myosin II heavy chain to regulate actomyosin contractility and apical domain size in Xenopus ectoderm. , Matsuda M., Development. May 15, 2022; 149 (10):
Embryonic and aglomerular kidney development in the bay pipefish, Syngnathus leptorhynchus. , Maters BR ., PLoS One. May 12, 2022; 17 (5): e0267932.
Bisphenol B disrupts testis differentiation partly via the estrogen receptor-mediated pathway and subsequently causes testicular dysgenesis in Xenopus laevis. , Li HM., Ecotoxicol Environ Saf. May 1, 2022; 236 113453.