Downregulation of Bmal1 Expression in Celiac Ganglia Protects against Hepatic Ischemia-Reperfusion Injury
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Lilong Zhang | Jiarui Feng | Zhendong Qiu | Ying-ru Su | Weixing Wang | Kunpeng Wang | N. Hu | Enfu Xue
[1] Peng Ouyang,et al. Research progress of nano selenium in the treatment of oxidative stress injury during hepatic ischemia-reperfusion injury , 2023, Frontiers in Pharmacology.
[2] P. Hang,et al. 7,8-Dihydroxyflavone alleviates cardiac fibrosis by restoring circadian signals via downregulating Bmal1/Akt pathway. , 2022, European journal of pharmacology.
[3] Lilong Zhang,et al. The Prognostic Significance and Potential Mechanism of Prolyl 3-Hydroxylase 1 in Hepatocellular Carcinoma , 2022, Journal of oncology.
[4] Rui Li,et al. Bmal1 knockdown in the left stellate ganglion inhibits neural activity and prevents ventricular arrhythmias after myocardial ischemia , 2022, Frontiers in Cardiovascular Medicine.
[5] Shao-wei Li,et al. Novel Targets and Therapeutic Strategies to Protect Against Hepatic Ischemia Reperfusion Injury , 2022, Frontiers in Medicine.
[6] Min-Dian Li,et al. Time to eat reveals the hierarchy of peripheral clocks. , 2021, Trends in cell biology.
[7] W. Goessling,et al. Hepatic Nervous System in Development, Regeneration, and Disease , 2021, Hepatology.
[8] V. Matthews,et al. Metabolic Dysfunction-Associated Fatty Liver Disease (MAFLD)—A Condition Associated with Heightened Sympathetic Activation , 2021, International journal of molecular sciences.
[9] Yi Wang,et al. Metabolic stress drives sympathetic neuropathy within the liver. , 2021, Cell metabolism.
[10] Zsuzsanna Magyar,et al. Hemorheological and Microcirculatory Factors in Liver Ischemia-Reperfusion Injury—An Update on Pathophysiology, Molecular Mechanisms and Protective Strategies , 2021, International journal of molecular sciences.
[11] K. Houseknecht,et al. Understanding Mechanisms Underlying Non-Alcoholic Fatty Liver Disease (NAFLD) in Mental Illness: Risperidone and Olanzapine Alter the Hepatic Proteomic Signature in Mice , 2020, International journal of molecular sciences.
[12] Y. Guan,et al. Postnatal deletion of Bmal1 in mice protects against obstructive renal fibrosis via suppressing Gli2 transcription , 2020, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[13] K. Saeb‐Parsy,et al. The Role of Ischemia/Reperfusion Injury in Early Hepatic Allograft Dysfunction , 2020, Liver transplantation : official publication of the American Association for the Study of Liver Diseases and the International Liver Transplantation Society.
[14] A. B. Reddy,et al. Circadian rhythms in the absence of the clock gene Bmal1 , 2020, Science.
[15] M. Gottschalk,et al. Recognition of Lipoproteins by Toll-like Receptor 2 and DNA by the AIM2 Inflammasome Is Responsible for Production of Interleukin-1β by Virulent Suilysin-Negative Streptococcus suis Serotype 2 , 2020, Pathogens.
[16] T. Billiar,et al. Immune‐Responsive Gene 1/Itaconate Activates Nuclear Factor Erythroid 2–Related Factor 2 in Hepatocytes to Protect Against Liver Ischemia–Reperfusion Injury , 2020, Hepatology.
[17] K. Kadler,et al. Circadian control of the secretory pathway maintains collagen homeostasis , 2020, Nature Cell Biology.
[18] C. Peralta,et al. Inflammasome-Mediated Inflammation in Liver Ischemia-Reperfusion Injury , 2019, Cells.
[19] L. Nencioni,et al. Role of Glutathionylation in Infection and Inflammation , 2019, Nutrients.
[20] Jielin Deng,et al. Vagus Nerve Stimulation Attenuates Hepatic Ischemia/Reperfusion Injury via the Nrf2/HO-1 Pathway , 2019, Oxidative medicine and cellular longevity.
[21] C. von Gall,et al. Sex-Dependent Effects of Bmal1-Deficiency on Mouse Cerebral Cortex Infarction in Response to Photothrombotic Stroke , 2018, International journal of molecular sciences.
[22] Takeshi Suzuki,et al. Interaction between anesthetic conditioning and ischemic preconditioning on metabolic function after hepatic ischemia–reperfusion in rabbits , 2018, Journal of Anesthesia.
[23] P. Muiesan,et al. Machine perfusion in liver transplantation: an essential treatment or just an expensive toy? , 2018, Minerva anestesiologica.
[24] Bing Huang,et al. Optogenetic Modulation of Cardiac Sympathetic Nerve Activity to Prevent Ventricular Arrhythmias. , 2017, Journal of the American College of Cardiology.
[25] Stephen T. C. Wong,et al. Bone-in-culture array as a platform to model early-stage bone metastases and discover anti-metastasis therapies , 2017, Nature Communications.
[26] R. Serra,et al. Hepatic ischemia reperfusion injury: A systematic review of literature and the role of current drugs and biomarkers. , 2016, International journal of surgery.
[27] S. Shibata,et al. Circadian rhythms of liver physiology and disease: experimental and clinical evidence , 2016, Nature Reviews Gastroenterology and Hepatology.
[28] R. Saidi,et al. Liver Ischemia/Reperfusion Injury: an Overview , 2014, Journal of investigative surgery : the official journal of the Academy of Surgical Research.
[29] C. Peralta,et al. Hepatic ischemia and reperfusion injury: effects on the liver sinusoidal milieu. , 2013, Journal of hepatology.
[30] S. Amir,et al. Comprehensive Mapping of Regional Expression of the Clock Protein PERIOD2 in Rat Forebrain across the 24-h Day , 2013, PloS one.
[31] G. Cheng,et al. ASC/caspase‐1/IL‐1β signaling triggers inflammatory responses by promoting HMGB1 induction in liver ischemia/reperfusion injury , 2013, Hepatology.
[32] S. Glaser,et al. Hepatic nervous system and neurobiology of the liver. , 2013, Comprehensive Physiology.
[33] J. Takahashi,et al. Transcriptional Architecture and Chromatin Landscape of the Core Circadian Clock in Mammals , 2012, Science.
[34] Jun He,et al. Expression of Clock genes in the pineal glands of newborn rats with hypoxic-ischemic encephalopathy , 2012, Neural regeneration research.
[35] S. Friman,et al. Sympathetic nerves do not affect experimental ischemia-reperfusion injury of rat liver. , 2009, Transplantation proceedings.
[36] D. Geller,et al. Factors in the pathophysiology of the liver ischemia-reperfusion injury. , 2008, The Journal of surgical research.
[37] D Galaris,et al. Oxidative stress in hepatic ischemia-reperfusion injury: the role of antioxidants and iron chelating compounds. , 2006, Current pharmaceutical design.
[38] R. McCuskey. Anatomy of efferent hepatic nerves. , 2004, The anatomical record. Part A, Discoveries in molecular, cellular, and evolutionary biology.
[39] R. Guyton,et al. Inhibition of myocardial injury by ischemic postconditioning during reperfusion: comparison with ischemic preconditioning. , 2003, American journal of physiology. Heart and circulatory physiology.
[40] U. Albrecht,et al. Loss of circadian rhythmicity in aging mPer1-/-mCry2-/- mutant mice. , 2003, Genes & development.
[41] K. McMasters,et al. Inflammatory mechanisms and therapeutic strategies for warm hepatic ischemia/reperfusion injury , 2000, Hepatology.
[42] J. Dunlap. Molecular Bases for Circadian Clocks , 1999, Cell.
[43] L. Toledo-Pereyra,et al. NEUTROPHIL INFILTRATION AS AN IMPORTANT FACTOR IN LIVER ISCHEMIA AND REPERFUSION INJURY , 1993, Transplantation.
[44] F HALBERG,et al. [Physiologic 24-hour periodicity; general and procedural considerations with reference to the adrenal cycle]. , 1959, Internationale Zeitschrift fur Vitaminforschung. Beiheft.