Mechanism of neocryptotanshinone in protecting against cerebral ischemic injury: By suppressing M1 polarization of microglial cells and promoting cerebral angiogenesis.
暂无分享,去创建一个
L. Zhai | Q. Guan | Heping Shen | Hongyan Pei | Jian Sheng
[1] Hao Ma,et al. The lymphatic drainage systems in the brain: a novel target for ischemic stroke? , 2022, Neural regeneration research.
[2] Baohui Xu,et al. P-Glycoprotein Aggravates Blood Brain Barrier Dysfunction in Experimental Ischemic Stroke by Inhibiting Endothelial Autophagy , 2022, Aging and disease.
[3] Zhonghui Zhao,et al. Neuroprotective investigation of tanshinone in the cerebral infarction model in the Keap1-Nrf2/ARE pathway , 2022, Cell cycle.
[4] Xiaopeng Hong,et al. Combined Treatment of Tanshinone I and Epirubicin Revealed Enhanced Inhibition of Hepatocellular Carcinoma by Targeting PI3K/AKT/HIF-1α , 2022, Drug design, development and therapy.
[5] Yu He,et al. Optimization of smashing tissue and ultrasonic extraction of tanshinones and their neuroprotective effect on cerebral ischemia/reperfusion injury by inhibiting parthanatos. , 2022, Food & function.
[6] Cheng He,et al. Toxoplasma gondii rhoptry protein (TgROP18) enhances the expression of pro-inflammatory factor in LPS/IFN-γ-induced murine BV2 microglia cells via NF-κB signal pathway. , 2022, Acta tropica.
[7] Dong Sun,et al. Maraviroc promotes recovery from traumatic brain injury in mice by suppression of neuroinflammation and activation of neurotoxic reactive astrocytes , 2022, Neural regeneration research.
[8] Chaoqun Lin,et al. Neural stem cell-derived exosome as a nano-sized carrier for BDNF delivery to a rat model of ischemic stroke , 2022, Neural regeneration research.
[9] Qing Miao,et al. Combination of puerarin and tanshinone IIA alleviates ischaemic stroke injury in rats via activating the Nrf2/ARE signalling pathway , 2022, Pharmaceutical biology.
[10] Yupei Du,et al. Tanshinone IIA-loaded Micelles functionalized with Rosmarinic acid: A novel Synergistic Anti-inflammatory strategy for treatment of Atherosclerosis. , 2022, Journal of pharmaceutical sciences.
[11] Mengying Wang,et al. Homocysteine can aggravate depressive like behaviors in a middle cerebral artery occlusion/reperfusion rat model: a possible role for NMDARs-mediated synaptic alterations , 2022, Nutritional neuroscience.
[12] Fang Wang,et al. ROS-responsive 18β-glycyrrhetic acid-conjugated polymeric nanoparticles mediate neuroprotection in ischemic stroke through HMGB1 inhibition and microglia polarization regulation , 2022, Bioactive materials.
[13] Yanfang Mao,et al. Gallic acid attenuates cerebral ischemia/re-perfusion-induced blood–brain barrier injury by modifying polarization of microglia , 2022, Journal of immunotoxicology.
[14] Colton J F Watson,et al. Kynurenine metabolism is altered in mdx mice: a potential muscle to brain connection , 2022, bioRxiv.
[15] Longmei Zhao,et al. Integrated Network Pharmacology and Mice Model to Investigate Qing Zao Fang for Treating Sjögren's Syndrome , 2022, Evidence-based complementary and alternative medicine : eCAM.
[16] J. Ji,et al. Sphingosine-1-phosphate, a novel TREM2 ligand, promotes microglial phagocytosis to protect against ischemic brain injury , 2021, Acta pharmaceutica Sinica. B.
[17] Yun Xu,et al. The Role of Microglial Phagocytosis in Ischemic Stroke , 2022, Frontiers in Immunology.
[18] A. Brodtmann,et al. Atrophy of Ipsilesional Hippocampal Subfields Vary Over First Year After Ischemic Stroke , 2021, Journal of magnetic resonance imaging : JMRI.
[19] J. Schulz,et al. Erythropoietin Abrogates Post-Ischemic Activation of the NLRP3, NLRC4, and AIM2 Inflammasomes in Microglia/Macrophages in a TAK1-Dependent Manner , 2021, Translational Stroke Research.
[20] P. Michel,et al. Patterns of ischemic posterior circulation strokes: A clinical, anatomical, and radiological review , 2021, International journal of stroke : official journal of the International Stroke Society.
[21] C. Nolte,et al. Reclassifications of ischemic stroke patterns due to variants of the Circle of Willis , 2021, International journal of stroke : official journal of the International Stroke Society.
[22] J. Serfaty,et al. Magnetic resonance imaging quantitative T2* mapping to predict the red blood cell content of in vivo thrombi retrieved from patients with large vessel occlusions in acute ischemic stroke , 2021, Interventional neuroradiology : journal of peritherapeutic neuroradiology, surgical procedures and related neurosciences.
[23] J. E. Lee,et al. Targeted Temperature Management at 36 °C Shows Therapeutic Effectiveness via Alteration of Microglial Activation and Polarization After Ischemic Stroke , 2021, Translational Stroke Research.
[24] K. F. Luchesi,et al. Tube feeding predictors after ischemic hemispheric stroke during hospitalization , 2021, Logopedics, phoniatrics, vocology.
[25] Chen Jiang,et al. Recent advances in nanomedicines for the treatment of ischemic stroke , 2020, Acta pharmaceutica Sinica. B.
[26] Jianwei Li,et al. Ephedrine attenuates cerebral ischemia/reperfusion injury in rats through NF-κB signaling pathway , 2020, Human & experimental toxicology.
[27] Jingru Zhang,et al. Cross-talk between leukemic and endothelial cells promotes angiogenesis by VEGF activation of the Notch/Dll4 pathway. , 2013, Carcinogenesis.