Artículos de revistas sobre el tema "PDE4 inhibitor"
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ERDOGAN, Suat y Miles D. HOUSLAY. "Challenge of human Jurkat T-cells with the adenylate cyclase activator forskolin elicits major changes in cAMP phosphodiesterase (PDE) expression by up-regulating PDE3 and inducing PDE4D1 and PDE4D2 splice variants as well as down-regulating a novel PDE4A splice variant". Biochemical Journal 321, n.º 1 (1 de enero de 1997): 165–75. http://dx.doi.org/10.1042/bj3210165.
Texto completoWang, Huanchen, Ming-Sheng Peng, Yi Chen, Jie Geng, Howard Robinson, Miles D. Houslay, Jiwen Cai y Hengming Ke. "Structures of the four subfamilies of phosphodiesterase-4 provide insight into the selectivity of their inhibitors". Biochemical Journal 408, n.º 2 (14 de noviembre de 2007): 193–201. http://dx.doi.org/10.1042/bj20070970.
Texto completoBoyd, Abigail, Ileana V. Aragon, Lina Abou Saleh, Dylan Southers y Wito Richter. "The cAMP-phosphodiesterase 4 (PDE4) controls β-adrenoceptor- and CFTR-dependent saliva secretion in mice". Biochemical Journal 478, n.º 10 (24 de mayo de 2021): 1891–906. http://dx.doi.org/10.1042/bcj20210212.
Texto completoXu, Man, Xiaowen Yu, Xia Meng, Songming Huang, Yue Zhang, Aihua Zhang y Zhanjun Jia. "Inhibition of PDE4/PDE4B improves renal function and ameliorates inflammation in cisplatin-induced acute kidney injury". American Journal of Physiology-Renal Physiology 318, n.º 3 (1 de marzo de 2020): F576—F588. http://dx.doi.org/10.1152/ajprenal.00477.2019.
Texto completoAbusnina, Abdurazzag, Thérèse Keravis, Qingwei Zhou, Hélène Justiniano, Annelise Lobstein y Claire Lugnier. "Tumour growth inhibition and anti-angiogenic effects using curcumin correspond to combined PDE2 and PDE4 inhibition". Thrombosis and Haemostasis 113, n.º 02 (marzo de 2015): 319–28. http://dx.doi.org/10.1160/th14-05-0454.
Texto completoFavot, Laure, Thérèse Keravis, Vincent Holl, Alain Bec y Claire Lugnier. "VEGF-induced HUVEC migration and proliferation are decreased by PDE2 and PDE4 inhibitors". Thrombosis and Haemostasis 90, n.º 08 (2003): 334–43. http://dx.doi.org/10.1160/th03-02-0084.
Texto completoIvey, F. Douglas, Lili Wang, Didem Demirbas, Christina Allain y Charles S. Hoffman. "Development of a Fission Yeast-Based High-Throughput Screen to Identify Chemical Regulators of cAMP Phosphodiesterases". Journal of Biomolecular Screening 13, n.º 1 (26 de noviembre de 2007): 62–71. http://dx.doi.org/10.1177/1087057107312127.
Texto completoYougbare, Issaka, Caroline Morin, Farid Yannick Senouvo, Chantal Sirois, Roula Albadine, Claire Lugnier y Eric Rousseau. "NCS 613, a potent and specific PDE4 inhibitor, displays anti-inflammatory effects on human lung tissues". American Journal of Physiology-Lung Cellular and Molecular Physiology 301, n.º 4 (octubre de 2011): L441—L450. http://dx.doi.org/10.1152/ajplung.00407.2010.
Texto completoBoyd, Abigail, Ileana Aragon, Justin Rich, Will McDonough, Marianna Oditt, Daniel Irelan, Edward Fiedler, Lina Abou Saleh y Wito Richter. "Assessment of PDE4 Inhibitor-Induced Hypothermia as a Correlate of Nausea in Mice". Biology 10, n.º 12 (20 de diciembre de 2021): 1355. http://dx.doi.org/10.3390/biology10121355.
Texto completoMurthy, Karnam S., Huiping Zhou y Gabriel M. Makhlouf. "PKA-dependent activation of PDE3A and PDE4 and inhibition of adenylyl cyclase V/VI in smooth muscle". American Journal of Physiology-Cell Physiology 282, n.º 3 (1 de marzo de 2002): C508—C517. http://dx.doi.org/10.1152/ajpcell.00373.2001.
Texto completoFang, Qiuhong, Yingmin Ma, Jing Wang, Joel Michalski, Stephen I. Rennard y Xiangde Liu. "PGE2Desensitizesβ-Agonist Effect on Human Lung Fibroblast-Mediated Collagen Gel Contraction through Upregulating PDE4". Mediators of Inflammation 2013 (2013): 1–9. http://dx.doi.org/10.1155/2013/145197.
Texto completoSarfati, Marika, Véronique Mateo, Sylvie Baudet, Manuel Rubio, Christine Fernandez, Fréderic Davi, Jacques-Louis Binet, Jozo Delic y Hélène Merle-Béral. "Sildenafil and vardenafil, types 5 and 6 phosphodiesterase inhibitors, induce caspase-dependent apoptosis of B-chronic lymphocytic leukemia cells". Blood 101, n.º 1 (1 de enero de 2003): 265–69. http://dx.doi.org/10.1182/blood-2002-01-0075.
Texto completoSuzuki, Osamu, Taiji Goto, Toshiharu Yoshino, Satoshi Nakamura y Hiroaki Maeda. "The role of phosphodiesterase 4B in IL-8/LTB4-induced human neutrophil chemotaxis evaluated with a phosphodiesterase 4B inhibitor". Acta Pharmaceutica 65, n.º 2 (1 de junio de 2015): 191–97. http://dx.doi.org/10.1515/acph-2015-0016.
Texto completoAhmad, Faiyaz, Guang Gao, Ling Mei Wang, Tova Rahn Landstrom, Eva Degerman, Jacalyn H. Pierce y Vincent C. Manganiello. "IL-3 and IL-4 Activate Cyclic Nucleotide Phosphodiesterases 3 (PDE3) and 4 (PDE4) by Different Mechanisms in FDCP2 Myeloid Cells". Journal of Immunology 162, n.º 8 (15 de abril de 1999): 4864–75. http://dx.doi.org/10.4049/jimmunol.162.8.4864.
Texto completoGermain, Nöella, Elisabeth Boichot, Jean-Michel Planquois y Vincent Lagente. "Reduced Airway Hyperresponsiveness by Phosphodiesterase 3 and 4 Inhibitors in Guinea-Pigs". Mediators of Inflammation 8, n.º 3 (1999): 153–57. http://dx.doi.org/10.1080/09629359990487.
Texto completoKolosionek, Ewa, Rajkumar Savai, Hossein Ardeschir Ghofrani, Norbert Weissmann, Andreas Guenther, Friedrich Grimminger, Werner Seeger, Gamal Andre Banat, Ralph Theo Schermuly y Soni Savai Pullamsetti. "Expression and Activity of Phosphodiesterase Isoforms during Epithelial Mesenchymal Transition: The Role of Phosphodiesterase 4". Molecular Biology of the Cell 20, n.º 22 (15 de noviembre de 2009): 4751–65. http://dx.doi.org/10.1091/mbc.e09-01-0019.
Texto completoMa, Jingyi, Virender Kumar y Ram I. Mahato. "Nanoparticle Delivery of Novel PDE4B Inhibitor for the Treatment of Alcoholic Liver Disease". Pharmaceutics 14, n.º 9 (7 de septiembre de 2022): 1894. http://dx.doi.org/10.3390/pharmaceutics14091894.
Texto completoBalasubramaniam, Ambikaipakan, Sulaiman Sheriff, Lou Ann Friend y J. Howard James. "Phosphodiesterase 4B knockout prevents skeletal muscle atrophy in rats with burn injury". American Journal of Physiology-Regulatory, Integrative and Comparative Physiology 315, n.º 2 (1 de agosto de 2018): R417—R421. http://dx.doi.org/10.1152/ajpregu.00042.2018.
Texto completoBloom, Timothy J. "Cyclic nucleotide phosphodiesterase isozymes expressed in mouse skeletal muscle". Canadian Journal of Physiology and Pharmacology 80, n.º 12 (1 de diciembre de 2002): 1132–35. http://dx.doi.org/10.1139/y02-149.
Texto completoMACKENZIE, Simon J. y Miles D. HOUSLAY. "Action of rolipram on specific PDE4 cAMP phosphodiesterase isoforms and on the phosphorylation of cAMP-response-element-binding protein (CREB) and p38 mitogen-activated protein (MAP) kinase in U937 monocytic cells". Biochemical Journal 347, n.º 2 (10 de abril de 2000): 571–78. http://dx.doi.org/10.1042/bj3470571.
Texto completoAdderley, Shaquria P., Meera Sridharan, Elizabeth A. Bowles, Alan H. Stephenson, Mary L. Ellsworth y Randy S. Sprague. "Protein kinases A and C regulate receptor-mediated increases in cAMP in rabbit erythrocytes". American Journal of Physiology-Heart and Circulatory Physiology 298, n.º 2 (febrero de 2010): H587—H593. http://dx.doi.org/10.1152/ajpheart.00975.2009.
Texto completoDAY, Jonathan P., Julian A. T. DOW, Miles D. HOUSLAY y Shireen-A. DAVIES. "Cyclic nucleotide phosphodiesterases in Drosophila melanogaster". Biochemical Journal 388, n.º 1 (10 de mayo de 2005): 333–42. http://dx.doi.org/10.1042/bj20050057.
Texto completoShih, Chung-Hung, Tzu-Jung Huang, Chien-Ming Chen, Yun-Lian Lin y Wun-Chang Ko. "S-Petasin, the Main Sesquiterpene ofPetasites formosanus, Inhibits Phosphodiesterase Activity and Suppresses Ovalbumin-Induced Airway Hyperresponsiveness". Evidence-Based Complementary and Alternative Medicine 2011 (2011): 1–14. http://dx.doi.org/10.1093/ecam/nep088.
Texto completoCheng, Jingfei, Michael A. Thompson, Henry J. Walker, Catherine E. Gray, Montserrat M. Diaz Encarnacion, Gina M. Warner y Joseph P. Grande. "Differential regulation of mesangial cell mitogenesis by cAMP phosphodiesterase isozymes 3 and 4". American Journal of Physiology-Renal Physiology 287, n.º 5 (noviembre de 2004): F940—F953. http://dx.doi.org/10.1152/ajprenal.00079.2004.
Texto completoKistemaker, Loes E. M., Tjitske A. Oenema, Hoeke A. Baarsma, I. Sophie T. Bos, Martina Schmidt, Fabrizio Facchinetti, Maurizio Civelli, Gino Villetti y Reinoud Gosens. "The PDE4 inhibitor CHF-6001 and LAMAs inhibit bronchoconstriction-induced remodeling in lung slices". American Journal of Physiology-Lung Cellular and Molecular Physiology 313, n.º 3 (1 de septiembre de 2017): L507—L515. http://dx.doi.org/10.1152/ajplung.00069.2017.
Texto completoNeumann, Joachim, Rafaela Voss, Ulrich Laufs, Christian Werner y Ulrich Gergs. "Phosphodiesterases 2, 3 and 4 can decrease cardiac effects of H2-histamine-receptor activation in isolated atria of transgenic mice". Naunyn-Schmiedeberg's Archives of Pharmacology 394, n.º 6 (12 de febrero de 2021): 1215–29. http://dx.doi.org/10.1007/s00210-021-02052-y.
Texto completoTarpey, Siobhán B., Darrell R. Sawmiller, Claire Kelly, W. Joseph Thompson y Mary I. Townsley. "Phosphodiesterase 3 activity is reduced in dog lung following pacing-induced heart failure". American Journal of Physiology-Lung Cellular and Molecular Physiology 284, n.º 5 (1 de mayo de 2003): L766—L773. http://dx.doi.org/10.1152/ajplung.00373.2002.
Texto completoBasole, Chaitali P., Rebecca K. Nguyen, Katie Lamothe, Puja Billis, Mai Fujiwara, Amanda G. Vang, Robert B. Clark, Paul M. Epstein y Stefan Brocke. "Treatment of Experimental Autoimmune Encephalomyelitis with an Inhibitor of Phosphodiesterase-8 (PDE8)". Cells 11, n.º 4 (14 de febrero de 2022): 660. http://dx.doi.org/10.3390/cells11040660.
Texto completoIrelan, Daniel, Abigail Boyd, Edward Fiedler, Peter Lochmaier, Will McDonough, Ileana V. Aragon, Lyudmila Rachek, Lina Abou Saleh y Wito Richter. "Acute PDE4 Inhibition Induces a Transient Increase in Blood Glucose in Mice". International Journal of Molecular Sciences 24, n.º 4 (7 de febrero de 2023): 3260. http://dx.doi.org/10.3390/ijms24043260.
Texto completoAlaamery, Manal A., Arlene R. Wyman, F. Douglas Ivey, Christina Allain, Didem Demirbas, Lili Wang, Ozge Ceyhan y Charles S. Hoffman. "New Classes of PDE7 Inhibitors Identified by a Fission Yeast-Based HTS". Journal of Biomolecular Screening 15, n.º 4 (12 de marzo de 2010): 359–67. http://dx.doi.org/10.1177/1087057110362100.
Texto completoOkatan, Esma N. y Belma Turan. "The contribution of phosphodiesterases to cardiac dysfunction in rats with metabolic syndrome induced by a high-carbohydrate diet". Canadian Journal of Physiology and Pharmacology 97, n.º 11 (noviembre de 2019): 1064–72. http://dx.doi.org/10.1139/cjpp-2019-0006.
Texto completoFavot, Laure, Thérèse Keravis y Claire Lugnier. "Modulation of VEGF-induced endothelial cell cycle protein expression through cyclic AMP hydrolysis by PDE2 and PDE4". Thrombosis and Haemostasis 92, n.º 09 (2004): 634–45. http://dx.doi.org/10.1160/th03-12-0768.
Texto completoSasseville, M., F. K. Albuz, F. J. Richard y R. B. Gilchrist. "254. Evidences for a novel cAMP-phosphodiesterase expressed in the bovine ovarian follicle". Reproduction, Fertility and Development 20, n.º 9 (2008): 54. http://dx.doi.org/10.1071/srb08abs254.
Texto completoHouslay, M. D. y G. S. Baillie. "Phosphodiesterase-4 gates the ability of protein kinase A to phosphorylate G-protein receptor kinase-2 and influence its translocation". Biochemical Society Transactions 34, n.º 4 (21 de julio de 2006): 474–75. http://dx.doi.org/10.1042/bst0340474.
Texto completoLerner, Adam, Hongli Dong, Lewis Weintraub, Paul M. Epstein y Sanjay Tiwari. "PDE4 Inhibitors Augment Glucocorticoid-Mediated Apoptosis in B-CLL Cells in the Absence of Exogenous Adenylyl Cyclase Stimulation." Blood 104, n.º 11 (16 de noviembre de 2004): 4793. http://dx.doi.org/10.1182/blood.v104.11.4793.4793.
Texto completoYakovleva, O. A., A. I. Semenenko y O. Yu Hoina-Kardasevich. "New targets of pharmacotherapy of bronchial obstruction". Infusion & Chemotherapy, n.º 3.1 (11 de octubre de 2020): 87–88. http://dx.doi.org/10.32902/2663-0338-2020-3.1-73.
Texto completoYougbare, Issaka. "Alterations of cAMP/cGMP Signaling Pathways in Lupus Nephritis". Journal of Nephrological Science 3, n.º 2 (8 de junio de 2021): 8–12. http://dx.doi.org/10.29245/2767-5149/2021/2.1112.
Texto completoFreund, Yvonne, Chen Dong, Charlotte Virtucio-Frates, Fernando Rock, Yvonne Mak, Yasheen Zhou, Lee Zane y Kurt Jarnagin. "AN2728, a new boron-based topical anti-inflammatory agent, inhibits phosphodiesterase 4 (IRC4P.611)". Journal of Immunology 194, n.º 1_Supplement (1 de mayo de 2015): 57.28. http://dx.doi.org/10.4049/jimmunol.194.supp.57.28.
Texto completoMatsumoto, Takayuki, Tsuneo Kobayashi y Katsuo Kamata. "Alterations in EDHF-type relaxation and phosphodiesterase activity in mesenteric arteries from diabetic rats". American Journal of Physiology-Heart and Circulatory Physiology 285, n.º 1 (julio de 2003): H283—H291. http://dx.doi.org/10.1152/ajpheart.00954.2002.
Texto completoCedervall, Peder, Ann Aulabaugh, Kieran F. Geoghegan, Thomas J. McLellan y Jayvardhan Pandit. "Engineered stabilization and structural analysis of the autoinhibited conformation of PDE4". Proceedings of the National Academy of Sciences 112, n.º 12 (9 de marzo de 2015): E1414—E1422. http://dx.doi.org/10.1073/pnas.1419906112.
Texto completoVarona, Saray, Lídia Puertas, María Galán, Mar Orriols, Laia Cañes, Silvia Aguiló, Mercedes Camacho et al. "Rolipram Prevents the Formation of Abdominal Aortic Aneurysm (AAA) in Mice: PDE4B as a Target in AAA". Antioxidants 10, n.º 3 (16 de marzo de 2021): 460. http://dx.doi.org/10.3390/antiox10030460.
Texto completoPhillips, Peter G., Lu Long, Martin R. Wilkins y Nicholas W. Morrell. "cAMP phosphodiesterase inhibitors potentiate effects of prostacyclin analogs in hypoxic pulmonary vascular remodeling". American Journal of Physiology-Lung Cellular and Molecular Physiology 288, n.º 1 (enero de 2005): L103—L115. http://dx.doi.org/10.1152/ajplung.00095.2004.
Texto completoHOUSLAY, Miles D. y David R. ADAMS. "PDE4 cAMP phosphodiesterases: modular enzymes that orchestrate signalling cross-talk, desensitization and compartmentalization". Biochemical Journal 370, n.º 1 (15 de febrero de 2003): 1–18. http://dx.doi.org/10.1042/bj20021698.
Texto completoLiang, Cheng-Guang, Li-Jun Huo, Zhi-Sheng Zhong, Da-Yuan Chen, Heide Schatten y Qing-Yuan Sun. "Cyclic Adenosine 3′,5′-Monophosphate-Dependent Activation of Mitogen-Activated Protein Kinase in Cumulus Cells Is Essential for Germinal Vesicle Breakdown of Porcine Cumulus-Enclosed Oocytes". Endocrinology 146, n.º 10 (1 de octubre de 2005): 4437–44. http://dx.doi.org/10.1210/en.2005-0309.
Texto completoNunez, Francisco J., Nancy A. Schulte, David M. Fogel, Joel Michalski, Stephen I. Rennard, Raymond B. Penn, Myron L. Toews y Rennolds S. Ostrom. "Agonist-specific desensitization of PGE2-stimulated cAMP signaling due to upregulated phosphodiesterase expression in human lung fibroblasts". Naunyn-Schmiedeberg's Archives of Pharmacology 393, n.º 5 (28 de diciembre de 2019): 843–56. http://dx.doi.org/10.1007/s00210-019-01800-5.
Texto completoChao, Pin-Chun y Kirk L. Hamilton. "Genistein stimulates electrogenic Cl− secretion via phosphodiesterase modulation in the mouse jejunum". American Journal of Physiology-Cell Physiology 297, n.º 3 (septiembre de 2009): C688—C698. http://dx.doi.org/10.1152/ajpcell.00152.2009.
Texto completoYang, Fan, Rachita K. Sumbria, Dong Xue, Chuanhui Yu, Dan He, Shuo Liu, Annlia Paganini-Hill y Mark Fisher. "Effects of PDE4 Pathway Inhibition in Rat Experimental Stroke". Journal of Pharmacy & Pharmaceutical Sciences 17, n.º 3 (8 de agosto de 2014): 362. http://dx.doi.org/10.18433/j3s02v.
Texto completoLi, Xiang, Suryakiran Vadrevu, Allan Dunlop, Jon Day, Noopur Advant, Jessica Troeger, Enno Klussmann et al. "Selective SUMO modification of cAMP-specific phosphodiesterase-4D5 (PDE4D5) regulates the functional consequences of phosphorylation by PKA and ERK". Biochemical Journal 428, n.º 1 (28 de abril de 2010): 55–65. http://dx.doi.org/10.1042/bj20091672.
Texto completoMeyers, John y Adam Lerner. "PDE4 Inhibitors Enhance DNA Damage-Induced Apoptosis In CLL". Blood 116, n.º 21 (19 de noviembre de 2010): 2902. http://dx.doi.org/10.1182/blood.v116.21.2902.2902.
Texto completoŚwierczek, Artur, Krzysztof Pociecha, Hanna Plutecka, Marietta Ślusarczyk, Grażyna Chłoń-Rzepa y Elżbieta Wyska. "Pharmacokinetic/Pharmacodynamic Evaluation of a New Purine-2,6-Dione Derivative in Rodents with Experimental Autoimmune Diseases". Pharmaceutics 14, n.º 5 (19 de mayo de 2022): 1090. http://dx.doi.org/10.3390/pharmaceutics14051090.
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