Articoli di riviste sul tema "Tanyctes"
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Yoo, Sooyeon, Juhyun Kim, Pin Lyu, Thanh V. Hoang, Alex Ma, Vickie Trinh, Weina Dai et al. "Control of neurogenic competence in mammalian hypothalamic tanycytes". Science Advances 7, n. 22 (maggio 2021): eabg3777. http://dx.doi.org/10.1126/sciadv.abg3777.
Testo completoWittmann, Gabor, Surbhi Gahlot, Malcolm James Low e Ronald M. Lechan. "Rax Expression Identifies a Novel Cell Type in the Adult Mouse Hypothalamus". Journal of the Endocrine Society 5, Supplement_1 (1 maggio 2021): A42. http://dx.doi.org/10.1210/jendso/bvab048.082.
Testo completoBolborea, Matei, Marie-Pierre Laran-Chich, Kamontip Rasri, Herbert Hildebrandt, Piyarat Govitrapong, Valérie Simonneaux, Paul Pévet, Stephan Steinlechner e Paul Klosen. "Melatonin Controls Photoperiodic Changes in Tanycyte Vimentin and Neural Cell Adhesion Molecule Expression in the Djungarian Hamster (Phodopus sungorus)". Endocrinology 152, n. 10 (16 agosto 2011): 3871–83. http://dx.doi.org/10.1210/en.2011-1039.
Testo completode Vries, E. M., J. Kwakkel, L. Eggels, A. Kalsbeek, P. Barrett, E. Fliers e A. Boelen. "NFκB Signaling Is Essential for the Lipopolysaccharide-Induced Increase of Type 2 Deiodinase in Tanycytes". Endocrinology 155, n. 5 (1 maggio 2014): 2000–2008. http://dx.doi.org/10.1210/en.2013-2018.
Testo completoJawad, Haider, Muthanna Al-Kaabi e Anam Al-Salihi. "IMMUNOHISTOCHEMICAL EXPRESSION OF MONOCARBOXYLATE TRANSPORTER 1&4 IN TANYCYTE–LIKE CELLS OF THE SULCUS MEDIANUS ORGANUM". Iraqi Journal of Medical Sciences 17, n. 1 (31 marzo 2019): 83–99. http://dx.doi.org/10.22578/ijms.17.1.12.
Testo completode Seranno, Sandrine, Xavier d'Anglemont de Tassigny, Cecilia Estrella, Anne Loyens, Sergey Kasparov, Danièle Leroy, Sergio R. Ojeda, Jean-Claude Beauvillain e Vincent Prevot. "Role of Estradiol in the Dynamic Control of Tanycyte Plasticity Mediated by Vascular Endothelial Cells in the Median Eminence". Endocrinology 151, n. 4 (4 febbraio 2010): 1760–72. http://dx.doi.org/10.1210/en.2009-0870.
Testo completoBolborea, Matei, Gisela Helfer, Francis J. P. Ebling e Perry Barrett. "Dual signal transduction pathways activated by TSH receptors in rat primary tanycyte cultures". Journal of Molecular Endocrinology 54, n. 3 (30 marzo 2015): 241–50. http://dx.doi.org/10.1530/jme-14-0298.
Testo completoSánchez, Edith, Praful S. Singru, Gábor Wittmann, Shira S. Nouriel, Perry Barrett, Csaba Fekete e Ronald M. Lechan. "Contribution of TNF-α and Nuclear Factor-κB Signaling to Type 2 Iodothyronine Deiodinase Activation in the Mediobasal Hypothalamus after Lipopolysaccharide Administration". Endocrinology 151, n. 8 (25 maggio 2010): 3827–35. http://dx.doi.org/10.1210/en.2010-0279.
Testo completoPorniece Kumar, Marta, Anna Lena Cremer, Paul Klemm, Lukas Steuernagel, Sivaraj Sundaram, Alexander Jais, A. Christine Hausen et al. "Insulin signalling in tanycytes gates hypothalamic insulin uptake and regulation of AgRP neuron activity". Nature Metabolism 3, n. 12 (dicembre 2021): 1662–79. http://dx.doi.org/10.1038/s42255-021-00499-0.
Testo completoBarrett, Perry, Elena Ivanova, E. Scott Graham, Alexander W. Ross, Dana Wilson, Helene Plé, Julian G. Mercer et al. "Photoperiodic regulation of cellular retinoic acid-binding protein 1, GPR50 and nestin in tanycytes of the third ventricle ependymal layer of the Siberian hamster". Journal of Endocrinology 191, n. 3 (dicembre 2006): 687–98. http://dx.doi.org/10.1677/joe.1.06929.
Testo completoSchlagal, Caitlin R., e Ping Wu. "Alcohol and Cocaine Combined Substance Use on Adult Hypothalamic Neural Stem Cells and Neurogenesis". Brain Plasticity 6, n. 1 (29 dicembre 2020): 41–46. http://dx.doi.org/10.3233/bpl-190091.
Testo completoMarsili, Alessandro, Edith Sanchez, Praful Singru, John W. Harney, Ann Marie Zavacki, Ronald M. Lechan e P. R. Larsen. "Thyroxine-induced expression of pyroglutamyl peptidase II and inhibition of TSH release precedes suppression of TRH mRNA and requires type 2 deiodinase". Journal of Endocrinology 211, n. 1 (25 luglio 2011): 73–78. http://dx.doi.org/10.1530/joe-11-0248.
Testo completoCeriani, Ricardo, e Kathleen E. Whitlock. "Gonadotropin Releasing Hormone (GnRH) Triggers Neurogenesis in the Hypothalamus of Adult Zebrafish". International Journal of Molecular Sciences 22, n. 11 (31 maggio 2021): 5926. http://dx.doi.org/10.3390/ijms22115926.
Testo completoMurphy, Michelle, e Francis J. P. Ebling. "The Role of Hypothalamic Tri-Iodothyronine Availability in Seasonal Regulation of Energy Balance and Body Weight". Journal of Thyroid Research 2011 (2011): 1–7. http://dx.doi.org/10.4061/2011/387562.
Testo completoLewis, Jo E., John M. Brameld, Phil Hill, Dana Wilson, Perry Barrett, Francis J. P. Ebling e Preeti H. Jethwa. "Thyroid hormone and vitamin D regulate VGF expression and promoter activity". Journal of Molecular Endocrinology 56, n. 2 (7 dicembre 2015): 123–34. http://dx.doi.org/10.1530/jme-15-0224.
Testo completoSánchez, Edith, Miguel Angel Vargas, Praful S. Singru, Isel Pascual, Fidelia Romero, Csaba Fekete, Jean-Louis Charli e Ronald M. Lechan. "Tanycyte Pyroglutamyl Peptidase II Contributes to Regulation of the Hypothalamic-Pituitary-Thyroid Axis through Glial-Axonal Associations in the Median Eminence". Endocrinology 150, n. 5 (29 gennaio 2009): 2283–91. http://dx.doi.org/10.1210/en.2008-1643.
Testo completoBolborea, Matei, Eric Pollatzek, Heather Benford, Tamara Sotelo-Hitschfeld e Nicholas Dale. "Hypothalamic tanycytes generate acute hyperphagia through activation of the arcuate neuronal network". Proceedings of the National Academy of Sciences 117, n. 25 (8 giugno 2020): 14473–81. http://dx.doi.org/10.1073/pnas.1919887117.
Testo completoSáenz de Miera, Cristina, Béatrice Bothorel, Catherine Jaeger, Valérie Simonneaux e David Hazlerigg. "Maternal photoperiod programs hypothalamic thyroid status via the fetal pituitary gland". Proceedings of the National Academy of Sciences 114, n. 31 (17 luglio 2017): 8408–13. http://dx.doi.org/10.1073/pnas.1702943114.
Testo completoEgri, P., C. Fekete, Á. Dénes, D. Reglődi, H. Hashimoto, B. D. Fülöp e Balázs Gereben. "Pituitary Adenylate Cyclase-Activating Polypeptide (PACAP) Regulates the Hypothalamo-Pituitary-Thyroid (HPT) Axis via Type 2 Deiodinase in Male Mice". Endocrinology 157, n. 6 (5 aprile 2016): 2356–66. http://dx.doi.org/10.1210/en.2016-1043.
Testo completoBalland, Églantine, e Vincent Prévot. "Les tanycytes hypothalamiques". médecine/sciences 30, n. 6-7 (giugno 2014): 624–27. http://dx.doi.org/10.1051/medsci/20143006009.
Testo completoMüller-Fielitz, Helge, e Markus Schwaninger. "The Role of Tanycytes in the Hypothalamus-Pituitary-Thyroid Axis and the Possibilities for Their Genetic Manipulation". Experimental and Clinical Endocrinology & Diabetes 128, n. 06/07 (11 dicembre 2019): 388–94. http://dx.doi.org/10.1055/a-1065-1855.
Testo completoEbling, Francis J. P., e Ricardo Samms. "Txnip, Tanycytes, and Torpor". Endocrinology 154, n. 6 (1 giugno 2013): 1970–72. http://dx.doi.org/10.1210/en.2013-1390.
Testo completoOsterstock, Guillaume, Taoufik El Yandouzi, Nicola Romanò, Danielle Carmignac, Fanny Langlet, Nathalie Coutry, Anne Guillou et al. "Sustained Alterations of Hypothalamic Tanycytes During Posttraumatic Hypopituitarism in Male Mice". Endocrinology 155, n. 5 (1 maggio 2014): 1887–98. http://dx.doi.org/10.1210/en.2013-1336.
Testo completoPrager-Khoutorsky, Masha, e Charles W. Bourque. "Anatomical organization of the rat organum vasculosum laminae terminalis". American Journal of Physiology-Regulatory, Integrative and Comparative Physiology 309, n. 4 (15 agosto 2015): R324—R337. http://dx.doi.org/10.1152/ajpregu.00134.2015.
Testo completoSullivan, Andrew I., Matthew J. Potthoff e Kyle H. Flippo. "Tany-Seq: Integrated Analysis of the Mouse Tanycyte Transcriptome". Cells 11, n. 9 (6 maggio 2022): 1565. http://dx.doi.org/10.3390/cells11091565.
Testo completoLazcano, Iván, Agustina Cabral, Rosa María Uribe, Lorraine Jaimes-Hoy, Mario Perello, Patricia Joseph-Bravo, Edith Sánchez-Jaramillo e Jean-Louis Charli. "Fasting Enhances Pyroglutamyl Peptidase II Activity in Tanycytes of the Mediobasal Hypothalamus of Male Adult Rats". Endocrinology 156, n. 7 (5 maggio 2015): 2713–23. http://dx.doi.org/10.1210/en.2014-1885.
Testo completoElizondo-Vega, Roberto, Karina Oyarce, Magdiel Salgado, María José Barahona, Antonia Recabal, Patricio Ordenes, Sergio López, Roxana Pincheira, Patricia Luz-Crawford e María Angeles García-Robles. "Inhibition of Hypothalamic MCT4 and MCT1–MCT4 Expressions Affects Food Intake and Alters Orexigenic and Anorexigenic Neuropeptide Expressions". Molecular Neurobiology 57, n. 2 (2 ottobre 2019): 896–909. http://dx.doi.org/10.1007/s12035-019-01776-6.
Testo completoBellamy, Charlotte, Hannah Tovell, Florent Dingli, Stephane Liva, Damarys Loew, Eduard Stefan, Selina Schwaighofer, Alexandra Newton, Marc Sanson e Franck Bielle. "CSIG-30. FUNCTIONAL CHARACTERISATION OF A NOVEL MUTATION IN PRKCA, THE MAJOR DRIVER OF CHORDOID GLIOMAS". Neuro-Oncology 25, Supplement_5 (1 novembre 2023): v47. http://dx.doi.org/10.1093/neuonc/noad179.0186.
Testo completoDale, Nicholas, e Cameron Frayling. "Tanycytes emerge as hypothalamic chemosensors". Physiology News, Spring 2012 (1 aprile 2012): 26–29. http://dx.doi.org/10.36866/pn.86.26.
Testo completoDietrich, Marcelo O., e Tamas L. Horvath. "Fat incites tanycytes to neurogenesis". Nature Neuroscience 15, n. 5 (25 aprile 2012): 651–53. http://dx.doi.org/10.1038/nn.3091.
Testo completoFrayling, Cameron, Ruth Britton e Nicholas Dale. "ATP-mediated glucosensing by hypothalamic tanycytes". Journal of Physiology 589, n. 9 (27 aprile 2011): 2275–86. http://dx.doi.org/10.1113/jphysiol.2010.202051.
Testo completoGao, Yuanqing, Matthias H. Tschöp e Serge Luquet. "Hypothalamic Tanycytes: Gatekeepers to Metabolic Control". Cell Metabolism 19, n. 2 (febbraio 2014): 173–75. http://dx.doi.org/10.1016/j.cmet.2014.01.008.
Testo completoSeveri, Ilenia, Marco Fosca, Georgia Colleluori, Federico Marini, Luca Imperatori, Martina Senzacqua, Angelica Di Vincenzo et al. "High-Fat Diet Impairs Mouse Median Eminence: A Study by Transmission and Scanning Electron Microscopy Coupled with Raman Spectroscopy". International Journal of Molecular Sciences 22, n. 15 (28 luglio 2021): 8049. http://dx.doi.org/10.3390/ijms22158049.
Testo completoPrévot, Vincent. "Brain infection by SARS-CoV-2: Lifelong consequences". Open Access Government 41, n. 1 (23 gennaio 2024): 22–23. http://dx.doi.org/10.56367/oag-041-10397.
Testo completoPrzybylska-Piech, Anna S., Victoria Diedrich e Annika Herwig. "Seasonal changes in activity of hypothalamic thyroid hormone system in different winter phenotypes of Djungarian hamster (Phodopus sungorus)". PLOS ONE 19, n. 10 (25 ottobre 2024): e0309591. http://dx.doi.org/10.1371/journal.pone.0309591.
Testo completoPrevot, Vincent, Markus Schwaninger e Ruben Nogueiras. "The WATCH project: Tanycytes in health and disease". Open Access Government 37, n. 1 (6 gennaio 2023): 132–33. http://dx.doi.org/10.56367/oag-037-10410.
Testo completoGivalois, Laurent, Sandor Arancibia, Gérard Alonso e Lucia Tapia-Arancibia. "Expression of Brain-Derived Neurotrophic Factor and Its Receptors in the Median Eminence Cells with Sensitivity to Stress". Endocrinology 145, n. 10 (1 ottobre 2004): 4737–47. http://dx.doi.org/10.1210/en.2004-0616.
Testo completoLanglet, F. "Tanycytes: A Gateway to the Metabolic Hypothalamus". Journal of Neuroendocrinology 26, n. 11 (16 ottobre 2014): 753–60. http://dx.doi.org/10.1111/jne.12191.
Testo completoElizondo‐Vega, Roberto, Christian Cortes‐Campos, Maria J. Barahona, Karina A. Oyarce, Claudio A. Carril e Maria A. García‐Robles. "The role of tanycytes in hypothalamic glucosensing". Journal of Cellular and Molecular Medicine 19, n. 7 (17 giugno 2015): 1471–82. http://dx.doi.org/10.1111/jcmm.12590.
Testo completoLanglet, Fanny. "Targeting Tanycytes: Balance between Efficiency and Specificity". Neuroendocrinology 110, n. 7-8 (2020): 574–81. http://dx.doi.org/10.1159/000505549.
Testo completoEbling, Francis J. P., e Jo E. Lewis. "Tanycytes and hypothalamic control of energy metabolism". Glia 66, n. 6 (7 febbraio 2018): 1176–84. http://dx.doi.org/10.1002/glia.23303.
Testo completoDardente, Hugues. "HYPOTHALAMIC TANYCYTES ARE INVOLVED IN SEASONAL FUNCTIONS." IBRO Neuroscience Reports 15 (ottobre 2023): S52. http://dx.doi.org/10.1016/j.ibneur.2023.08.2159.
Testo completode Vries, E. M., S. Nagel, R. Haenold, S. M. Sundaram, F. W. Pfrieger, E. Fliers, H. Heuer e A. Boelen. "The Role of Hypothalamic NF-κB Signaling in the Response of the HPT-Axis to Acute Inflammation in Female Mice". Endocrinology 157, n. 7 (17 maggio 2016): 2947–56. http://dx.doi.org/10.1210/en.2016-1027.
Testo completoBarahona, María Jose, Luciano Ferrada e Francisco Nualart. "TANYCYTES-ASSOCIATED G6PASE SYSTEM CONTROL THE ENERGY BALANCE". IBRO Neuroscience Reports 15 (ottobre 2023): S213. http://dx.doi.org/10.1016/j.ibneur.2023.08.340.
Testo completoBjelke, Börje, e Kjell Fuxe. "Intraventricular β-endorphin accumulates in DARPP-32 immunoreactive tanycytes". NeuroReport 5, n. 3 (dicembre 1993): 265–68. http://dx.doi.org/10.1097/00001756-199312000-00021.
Testo completoBöttcher, Mareike, Helge Müller-Fielitz, Sivaraj M. Sundaram, Sarah Gallet, Vanessa Neve, Kiseko Shionoya, Adriano Zager et al. "NF-κB signaling in tanycytes mediates inflammation-induced anorexia". Molecular Metabolism 39 (settembre 2020): 101022. http://dx.doi.org/10.1016/j.molmet.2020.101022.
Testo completoDale, Nicholas. "Purinergic signaling in hypothalamic tanycytes: Potential roles in chemosensing". Seminars in Cell & Developmental Biology 22, n. 2 (aprile 2011): 237–44. http://dx.doi.org/10.1016/j.semcdb.2011.02.024.
Testo completoRODRIGUEZ, E., J. BLAZQUEZ, F. PASTOR, B. PELAEZ, P. PENA, B. PERUZZO e P. AMAT. "Hypothalamic Tanycytes: A Key Component of Brain–Endocrine Interaction". International Review of Cytology 247 (2005): 89–164. http://dx.doi.org/10.1016/s0074-7696(05)47003-5.
Testo completoCup�do, R. N. J., e H. Weerd. "Tanycytes in the medial habenular nucleus of the rat". Anatomy and Embryology 172, n. 1 (giugno 1985): 7–10. http://dx.doi.org/10.1007/bf00318938.
Testo completoRivagorda, Manon, Vincent Prevot e Markus Schwaninger. "Seasonal biology: Tanycytes give the hypothalamus a spring makeover". Current Biology 34, n. 5 (marzo 2024): R209—R211. http://dx.doi.org/10.1016/j.cub.2024.01.055.
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