Topoisomerase 1 inhibition modulates pyroptosis to improve recovery after spinal cord injury
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Junsong Wu | Wu Jiang | F. He | Guoming Ding
[1] G. Yin,et al. Clinical guidelines for neurorestorative therapies in spinal cord injury (2021 China version) , 2021, Journal of Neurorestoratology.
[2] Yizhuo Wang,et al. Therapeutic Mechanism and Effect of Camptothecin on Dextran Sodium Sulfate-Induced Ulcerative Colitis in Mice , 2021, Journal of immunology research.
[3] Yingchun Su,et al. Camptothecin Regulates Microglia Polarization and Exerts Neuroprotective Effects via Activating AKT/Nrf2/HO-1 and Inhibiting NF-κB Pathways In Vivo and In Vitro , 2021, Frontiers in Immunology.
[4] K. Helke,et al. Camptothecin and Topotecan, Inhibitors of Transcription Factor Fli‐1 and Topoisomerase, Markedly Ameliorate Lupus Nephritis in (NZB × NZW)F1 Mice and Reduce the Production of Inflammatory Mediators in Human Renal Cells , 2021, Arthritis & rheumatology.
[5] D. Anthony,et al. Acute IL-1RA treatment suppresses the peripheral and central inflammatory response to spinal cord injury , 2021, Journal of neuroinflammation.
[6] S. Chanda,et al. Topoisomerase 1 inhibition therapy protects against SARS-CoV-2-induced inflammation and death in animal models , 2020, bioRxiv.
[7] L. Qi,et al. Liver injury in septic mice were suppressed by a camptothecin-bile acid conjugate via inhibiting NF-κB signaling pathway. , 2020, Life sciences.
[8] X. Xia,et al. Emerging insights into molecular mechanisms underlying pyroptosis and functions of inflammasomes in diseases , 2019, Journal of cellular physiology.
[9] V. Dixit,et al. Fiery Cell Death: Pyroptosis in the Central Nervous System , 2019, Trends in Neurosciences.
[10] Yue Deng,et al. NLRP3 inflammasome activation promotes the development of allergic rhinitis via epithelium pyroptosis. , 2019, Biochemical and biophysical research communications.
[11] Su Lin,et al. Pyroptosis in Liver Disease: New Insights into Disease Mechanisms , 2019, Aging and disease.
[12] J. Cui,et al. NOD-like receptor family, pyrin domain containing 3 (NLRP3) contributes to inflammation, pyroptosis, and mucin production in human airway epithelium on rhinovirus infection. , 2019, The Journal of allergy and clinical immunology.
[13] Ping Yang,et al. Gastrodin ameliorates microvascular reperfusion injury–induced pyroptosis by regulating the NLRP3/caspase-1 pathway , 2019, Journal of Physiology and Biochemistry.
[14] S. Okada,et al. Tranexamic acid reduces heme cytotoxicity via the TLR4/TNF axis and ameliorates functional recovery after spinal cord injury , 2019, Journal of Neuroinflammation.
[15] T. Stiewe,et al. Chemotherapeutic Drugs Inhibiting Topoisomerase 1 Activity Impede Cytokine-Induced and NF-κB p65-Regulated Gene Expression , 2019, Cancers.
[16] Haiying Li,et al. Gasdermin D serves as a key executioner of pyroptosis in experimental cerebral ischemia and reperfusion model both in vivo and in vitro , 2019, Journal of neuroscience research.
[17] M. Shifman,et al. Inhibition of neogenin promotes neuronal survival and improved behavior recovery after spinal cord injury , 2019, Neuroscience.
[18] Yumin Yang,et al. Macrophage migration inhibitory factor facilitates prostaglandin E2 production of astrocytes to tune inflammatory milieu following spinal cord injury , 2019, Journal of Neuroinflammation.
[19] R. Xiao,et al. 27-Hydroxycholesterol Contributes to Lysosomal Membrane Permeabilization-Mediated Pyroptosis in Co-cultured SH-SY5Y Cells and C6 Cells , 2019, Front. Mol. Neurosci..
[20] J. Zhu,et al. MiR-92b-5p inhibitor suppresses IL-18 mediated inflammatory amplification after spinal cord injury via IL-18BP up-regulation. , 2019, European review for medical and pharmacological sciences.
[21] Zhe Zhang,et al. Valproic acid attenuates global cerebral ischemia/reperfusion injury in gerbils via anti-pyroptosis pathways , 2019, Neurochemistry International.
[22] S. Okada,et al. The acute phase serum zinc concentration is a reliable biomarker for predicting the functional outcome after spinal cord injury , 2019, EBioMedicine.
[23] B. Wan,et al. Topotecan Alleviates Lipopolysaccharide-Mediated Acute Lung Injury Via the NF-κB Signaling Pathway. , 2019, The Journal of surgical research.
[24] Jue Hu,et al. Local application of MDL28170-loaded PCL film improves functional recovery by preserving survival of motor neurons after traumatic spinal cord injury , 2019, Neuroscience Letters.
[25] N. Chen,et al. The mechanisms of NLRP3 inflammasome/pyroptosis activation and their role in Parkinson's disease. , 2019, International immunopharmacology.
[26] Huazi Xu,et al. Carbon monoxide releasing molecule-3 alleviates neuron death after spinal cord injury via inflammasome regulation , 2019, EBioMedicine.
[27] Zhi-qiang Zhou,et al. Inhibiting the NLRP3 Inflammasome With MCC950 Ameliorates Isoflurane-Induced Pyroptosis and Cognitive Impairment in Aged Mice , 2018, Front. Cell. Neurosci..
[28] P. Tang,et al. Efficacy of Oligodendrocyte Progenitor Cell Transplantation in Rat Models with Traumatic Thoracic Spinal Cord Injury: A Systematic Review and Meta-Analysis. , 2018, Journal of neurotrauma.
[29] N. Lago,et al. CD200 modulates spinal cord injury neuroinflammation and outcome through CD200R1 , 2018, Brain, Behavior, and Immunity.
[30] Hong Yang,et al. DNA topoisomerase 1 and 2A function as oncogenes in liver cancer and may be direct targets of nitidine chloride , 2018, International journal of oncology.
[31] M. Joghataei,et al. Targeting axonal degeneration and demyelination using combination administration of 17β‐estradiol and Schwann cells in the rat model of spinal cord injury , 2018, Journal of cellular biochemistry.
[32] E. Major,et al. Caspase-1 inhibition prevents glial inflammasome activation and pyroptosis in models of multiple sclerosis , 2018, Proceedings of the National Academy of Sciences.
[33] T. Yamashita,et al. Class I histone deacetylase (HDAC) inhibitor CI-994 promotes functional recovery following spinal cord injury , 2018, Cell Death & Disease.
[34] Chaoqian Xu,et al. Melatonin prevents endothelial cell pyroptosis via regulation of long noncoding RNA MEG3/miR‐223/NLRP3 axis , 2018, Journal of pineal research.
[35] Yuhua Chen,et al. Ablation of caspase-1 protects against TBI-induced pyroptosis in vitro and in vivo , 2018, Journal of Neuroinflammation.
[36] Tao Li,et al. The expression of IL-1β can deteriorate the prognosis of nervous system after spinal cord injury , 2018, The International journal of neuroscience.
[37] J. Schwab,et al. Maresin 1 Promotes Inflammatory Resolution, Neuroprotection, and Functional Neurological Recovery After Spinal Cord Injury , 2017, The Journal of Neuroscience.
[38] B. Hendriks,et al. Extended topoisomerase 1 inhibition through liposomal irinotecan results in improved efficacy over topotecan and irinotecan in models of small-cell lung cancer , 2017, Anti-cancer drugs.
[39] Wu Jiang,et al. Targeting the NLRP3 inflammasome to attenuate spinal cord injury in mice , 2017, Journal of Neuroinflammation.
[40] T. Efferth,et al. Artemisinin Derivatives Target Topoisomerase 1 and Cause DNA Damage in Silico and in Vitro , 2017, Front. Pharmacol..
[41] Hua-zi Xu,et al. Metformin Improves Functional Recovery After Spinal Cord Injury via Autophagy Flux Stimulation , 2016, Molecular Neurobiology.
[42] W. Liu,et al. IL-1β-induces NF-κB and upregulates microRNA-372 to inhibit spinal cord injury recovery. , 2017, Journal of neurophysiology.
[43] A. Curt,et al. Traumatic spinal cord injury , 2017, Nature Reviews Disease Primers.
[44] O. Uchitel,et al. ASIC channel inhibition enhances excitotoxic neuronal death in an in vitro model of spinal cord injury , 2017, Neuroscience.
[45] Ying Zong,et al. NLRP3 inflammasome activation mediates radiation-induced pyroptosis in bone marrow-derived macrophages , 2017, Cell Death & Disease.
[46] M. Selzer,et al. The role of RhoA in retrograde neuronal death and axon regeneration after spinal cord injury , 2017, Neurobiology of Disease.
[47] D. Choubey,et al. Mechanistic studies of the toxicity of zinc gluconate in the olfactory neuronal cell line Odora. , 2016, Toxicology in vitro : an international journal published in association with BIBRA.
[48] J. Lieberman,et al. Inflammasome-activated gasdermin D causes pyroptosis by forming membrane pores , 2016, Nature.
[49] Shangcheng Xu,et al. CdSe/ZnS quantum dots induce hepatocyte pyroptosis and liver inflammation via NLRP3 inflammasome activation. , 2016, Biomaterials.
[50] Jian Jin,et al. Topoisomerase 1 inhibition suppresses inflammatory genes and protects from death by inflammation , 2016, Science.
[51] Shu-mei Yang,et al. Cuminaldehyde from Cinnamomum verum Induces Cell Death through Targeting Topoisomerase 1 and 2 in Human Colorectal Adenocarcinoma COLO 205 Cells , 2016, Nutrients.
[52] H. Fu,et al. Prognostic role of excision repair cross complementing-1 and topoisomerase-1 expression in epithelial ovarian cancer. , 2016, Taiwanese journal of obstetrics & gynecology.
[53] J-X Shi,et al. Effect of adenovirus-mediated RNA interference of IL-1β expression on spinal cord injury in rats , 2016, Spinal Cord.
[54] S. Allan,et al. IL‐1α and inflammasome‐independent IL‐1β promote neutrophil infiltration following alum vaccination , 2016, The FEBS journal.
[55] T. Yune,et al. Fluoxetine prevents oligodendrocyte cell death by inhibiting microglia activation after spinal cord injury. , 2015, Journal of neurotrauma.
[56] Ruslan Medzhitov,et al. Homeostasis, Inflammation, and Disease Susceptibility , 2015, Cell.
[57] Danhong Lu,et al. Transcription of the gene encoding TNF-α is increased by IL-1β in rat and human islets and β-cell lines. , 2014, Molecular immunology.
[58] E. Scarpi,et al. CES2, ABCG2, TS and Topo-I Primary and Synchronous Metastasis Expression and Clinical Outcome in Metastatic Colorectal Cancer Patients Treated with First-Line FOLFIRI Regimen , 2014, International journal of molecular sciences.
[59] N. Hellings,et al. Oncostatin M Reduces Lesion Size and Promotes Functional Recovery and Neurite Outgrowth After Spinal Cord Injury , 2014, Molecular Neurobiology.
[60] S. Cuzzocrea,et al. Docosahexaenoic acid attenuates the early inflammatory response following spinal cord injury in mice: in-vivo and in-vitro studies , 2014, Journal of Neuroinflammation.
[61] R. Nitsch,et al. Absence of IL-1β positively affects neurological outcome, lesion development and axonal plasticity after spinal cord injury , 2013, Journal of Neuroinflammation.
[62] T. Yune,et al. Fluoxetine inhibits matrix metalloprotease activation and prevents disruption of blood-spinal cord barrier after spinal cord injury. , 2012, Brain : a journal of neurology.
[63] R. Medzhitov. Origin and physiological roles of inflammation , 2008, Nature.
[64] F. Cunha,et al. Neutrophil Migration Induced by IL-1β Depends upon LTB4 Released by Macrophages and upon TNF-α and IL-1β Released by Mast Cells , 2008, Inflammation.
[65] Aileen J Anderson,et al. Basso Mouse Scale for locomotion detects differences in recovery after spinal cord injury in five common mouse strains. , 2006, Journal of neurotrauma.
[66] A. Monroy,et al. Interleukin-1 beta (IL-1β) induces tumor necrosis factor alpha (TNF-α) expression on mouse myeloid multipotent cell line 32D cl3 and inhibits their proliferation , 2004 .
[67] Haopeng Li,et al. Ten years of clinical observation of olfactory ensheathing cell transplantation in patients with spinal cord injury , 2021, Journal of Neurorestoratology.
[68] M. Joghataei,et al. Activation and Regulation of NLRP3 Inflammasome by Intrathecal Application of SDF-1a in a Spinal Cord Injury Model , 2015, Molecular Neurobiology.
[69] F. Cunha,et al. Neutrophil migration induced by IL-1beta depends upon LTB4 released by macrophages and upon TNF-alpha and IL-1beta released by mast cells. , 2008, Inflammation.
[70] A. Monroy,et al. Interleukin-1 beta (IL-1beta) induces tumor necrosis factor alpha (TNF-alpha) expression on mouse myeloid multipotent cell line 32D cl3 and inhibits their proliferation. , 2004, Cytokine.