1.Effects of honokiol on particulate matter 2.5-induced lung injury in asthmatic mice and its mechanisms.
Jiali XU ; Xiaoxia LU ; Feng HAN
Journal of Central South University(Medical Sciences) 2018;43(7):718-724
To explore the therapeutic effect of honokiol on particulate matter 2.5 (PM2.5)-induced lung injury in asthmatic mice and the possible mechanisms.
Methods: A total of 32 BALB/C mice were randomly divided into four groups: a normal saline group, a model group, a PM2.5 group and a honokiol group (n=8 in each group). The asthma mouse model was established by ovalbumin treatment. The mice were treated with physiological saline, ovalbumin, PM2.5 and honokiol, respectively. Lung tissues and serum were collected. The pathological changes of lung tissues were evaluated. The levels of inflammatory cytokines in bronchoalveolar lavage fluid (BALF) and serum were measured and the expressions of Toll like receptor 4 (TLR4), nuclear factor kappa B (NF-κB), retinoid-related orphan receptor gamma-t (RORγt) and forkhead box protein 3 (Foxp3) in lung tissues were detected.
Results: 1) The lung tissues of mice in the asthma group showed obvious pathological changes and inflammatory state, suggesting that the asthma model was established successfully. PM2.5 could aggravate the pathological condition of inflammatory injury in lung tissues in asthmatic mice. 2) Compared to the PM2.5 group, the pathological symptoms in the lung tissues were alleviated in the honokiol group and the percentage of inflammatory cells in BALF and the levels of inflammatory cytokines in BALF and serum were significantly reduced (all P<0.05). 3) Compared to the PM2.5 group, the expressions of TLR4, NF-κB (p-p65) and RORγt in lung tissues were significantly decreased, while the expression of Foxp3 was increased; the ratio of RORγt/Foxp3 was also decreased in the honokiol group (all P<0.05).
Conclusion: Honokiol can resist lung injury induced by PM2.5 in asthmatic mice. These effects are through inhibiting TLR4-NF-κB pathway-mediated inflammatory response or regulating the balance of Th17/Treg cells.
Animals
;
Asthma
;
chemically induced
;
complications
;
Biphenyl Compounds
;
pharmacology
;
Bronchoalveolar Lavage Fluid
;
chemistry
;
Cytokines
;
analysis
;
Disease Models, Animal
;
Drugs, Chinese Herbal
;
pharmacology
;
Inflammation Mediators
;
analysis
;
Lignans
;
pharmacology
;
Lung
;
metabolism
;
pathology
;
Lung Injury
;
drug therapy
;
etiology
;
metabolism
;
pathology
;
Mice
;
Mice, Inbred BALB C
;
NF-kappa B
;
metabolism
;
Ovalbumin
;
Particulate Matter
;
toxicity
;
Random Allocation
;
Toll-Like Receptor 4
;
metabolism
2.Cortical Inflammation is Increased in a DSS-Induced Colitis Mouse Model.
Ying HAN ; Tong ZHAO ; Xiang CHENG ; Ming ZHAO ; Sheng-Hui GONG ; Yong-Qi ZHAO ; Hai-Tao WU ; Ming FAN ; Ling-Ling ZHU
Neuroscience Bulletin 2018;34(6):1058-1066
While inflammatory bowel disease (IBD) might be a risk factor in the development of brain dysfunctions, the underlying mechanisms are largely unknown. Here, mice were treated with 5% dextran sodium sulfate (DSS) in drinking water and sacrificed on day 7. The serum level of IL-6 increased, accompanied by elevation of the IL-6 and TNF-α levels in cortical tissue. However, the endotoxin concentration in plasma and brain of mice with DSS-induced colitis showed a rising trend, but with no significant difference. We also found significant activation of microglial cells and reduction in occludin and claudin-5 expression in the brain tissue after DSS-induced colitis. These results suggested that DSS-induced colitis increases systemic inflammation which then results in cortical inflammation via up-regulation of serum cytokines. Here, we provide new information on the impact of colitis on the outcomes of cortical inflammation.
Animals
;
Calcium-Binding Proteins
;
metabolism
;
Caspase 3
;
metabolism
;
Cerebral Cortex
;
pathology
;
Claudin-5
;
metabolism
;
Colitis
;
chemically induced
;
complications
;
pathology
;
Cytokines
;
genetics
;
metabolism
;
Dextran Sulfate
;
toxicity
;
Disease Models, Animal
;
Encephalitis
;
etiology
;
Gene Expression Regulation
;
drug effects
;
Mice
;
Microfilament Proteins
;
metabolism
;
Occludin
;
metabolism
;
Polysaccharides
;
blood
;
toxicity
;
Time Factors
3.Chemokine Receptor CXCR3 in the Spinal Cord Contributes to Chronic Itch in Mice.
Peng-Bo JING ; De-Li CAO ; Si-Si LI ; Meixuan ZHU ; Xue-Qiang BAI ; Xiao-Bo WU ; Yong-Jing GAO
Neuroscience Bulletin 2018;34(1):54-63
Recent studies have shown that the chemokine receptor CXCR3 and its ligand CXCL10 in the dorsal root ganglion mediate itch in experimental allergic contact dermatitis (ACD). CXCR3 in the spinal cord also contributes to the maintenance of neuropathic pain. However, whether spinal CXCR3 is involved in acute or chronic itch remains unclear. Here, we report that Cxcr3 mice showed normal scratching in acute itch models but reduced scratching in chronic itch models of dry skin and ACD. In contrast, both formalin-induced acute pain and complete Freund's adjuvant-induced chronic inflammatory pain were reduced in Cxcr3 mice. In addition, the expression of CXCR3 and CXCL10 was increased in the spinal cord in the dry skin model induced by acetone and diethyl ether followed by water (AEW). Intrathecal injection of a CXCR3 antagonist alleviated AEW-induced itch. Furthermore, touch-elicited itch (alloknesis) after compound 48/80 or AEW treatment was suppressed in Cxcr3 mice. Finally, AEW-induced astrocyte activation was inhibited in Cxcr3 mice. Taken together, these data suggest that spinal CXCR3 mediates chronic itch and alloknesis, and targeting CXCR3 may provide effective treatment for chronic pruritus.
Acetamides
;
therapeutic use
;
Animals
;
Chemokine CXCL10
;
metabolism
;
Chloroquine
;
toxicity
;
Chronic Disease
;
Cyclopropanes
;
adverse effects
;
Dehydration
;
complications
;
Dinitrofluorobenzene
;
adverse effects
;
Disease Models, Animal
;
Formaldehyde
;
toxicity
;
Freund's Adjuvant
;
toxicity
;
Mice
;
Mice, Inbred C57BL
;
Mice, Knockout
;
Motor Activity
;
drug effects
;
Pain
;
chemically induced
;
Pruritus
;
chemically induced
;
pathology
;
Pyrimidines
;
therapeutic use
;
Receptors, CXCR3
;
antagonists & inhibitors
;
genetics
;
metabolism
;
Skin
;
pathology
;
Spinal Cord
;
drug effects
;
metabolism
;
pathology
;
Time Factors
;
p-Methoxy-N-methylphenethylamine
;
toxicity
4.Effects of Moderate Alcohol Intake in the Bladder of the Otsuka Long Evans Tokushima Fatty Diabetic Rats.
Woong Jin BAE ; Yong Sun CHOI ; Su Jin KIM ; Hyuk Jin CHO ; Sung Hoo HONG ; Sae Woong KIM ; Tae Kon HWANG ; Dai Jin KIM ; Ji Youl LEE
Journal of Korean Medical Science 2015;30(9):1313-1320
Diabetes is related with a number of cystopathic complications. However, there have been no studies about the influence of alcohol consumption in the bladder of type 2 diabetes. Thus, we investigated the effect of moderate alcohol intake in the bladder of the Otsuka Long Evans Tokushima Fatty (OLETF) diabetic rat. The non-diabetic Long-Evans Tokushima Otsuka (LETO, n=14) and the OLETF control group (n=14) were fed an isocaloric diet; the LETO (n=14) and the OLETF ethanol group (n=14) were fed 36% ethanol 7 g/kg/day. After ten weeks, muscarinic receptors, RhoGEFs, myogenic change, and the level of oxidative stress were evaluated. Moderate alcohol intake significantly decreased excessive muscarinic receptor and Rho kinase expressions in the OLETF rats compared with the LETO rats. In addition, iNOS and collagen expression were not changed in the OLETF rats in spite of alcohol consumption. Superoxide dismutase levels, which is involved in antioxidant defense, in the LETO rats were significantly decreased after alcohol consumption, however those in the OLETF rats were similar. Moderate alcohol consumption reduces the oxidative stress, and may prevent molecular and pathologic changes of the bladder of rats with type 2 diabetes.
Alcohol Drinking/adverse effects
;
Animals
;
Diabetes Mellitus, Type 2/*complications/*metabolism/pathology
;
Ethanol/*toxicity
;
Humans
;
Rats
;
Rats, Inbred OLETF
;
Reactive Oxygen Species/*metabolism
;
Urinary Bladder/*drug effects/*metabolism/pathology
5.Melamine Nephrotoxicity is Mediated by Hyperuricemia.
Long ZHANG ; Hong Tian LI ; Lin Lin WANG ; Howard TRACHTMAN ; Leonardo TRASANDE ; ; Pei Xin WANG ; Jian Meng LIU ;
Biomedical and Environmental Sciences 2015;28(12):904-912
OBJECTIVEWe tested whether melamine nephrotoxicity was exacerbated by urate (a typical component of renal stones in humans) in rats with hyperuricemiainduced by the uricase inhibitor, potassium oxonate (Oxo).
METHODSRats were exposed to melamine or Oxo alone or combinations of melamine (200-400 mg/kg) and Oxo (200-600 mg/kg) for 3 consecutive days. Kidney injury was evaluated by renal biochemical functions, histomorphology, and lipid peroxidation. Kidney crystals were analyzed for their composition.
RESULTSNephrotoxicity was minimal in animals administered melamine or Oxo alone, but it was demonstrable in animals administered at least 800 mg/kg of the two compounds combined. All rats in the 400+600 (melamine+Oxo) and 400+400 mg/kg groups and 4 out of 6 in the 200+600 mg/kg group died within 3 days; no rat died in the 200+400 or 200+200 mg/kg group. Dose-dependent renal damage resembling clinical findings in affected patients was observed in rats administered the two compounds. Crystal composition determination revealed the existence of melamine and uric acid in the affected kidneys, resembling human stones.
CONCLUSIONOur findings suggest that uric acid plays a key role in melamine-related kidney injury in humans. Future studies should consider uric acid together with melamine when examining adverse effects in humans.
Animals ; Disease Models, Animal ; Hyperuricemia ; chemically induced ; complications ; Kidney Diseases ; chemically induced ; Lipid Peroxidation ; drug effects ; Male ; Oxonic Acid ; Rats, Wistar ; Triazines ; toxicity
6.Related factors of sperm DNA damage: Advances in studies.
National Journal of Andrology 2015;21(8):675-680
The detection of sperm DNA damage, as an important supplement to semen routine examination strategies, has been applied in some clinical andrology laboratories. What factors may lead to sperm DNA damage remains one of the concerns among many andrologists. Present studies show a variety of factors of sperm DNA damage, including age, environmental pollutants such as organophosphorus and organochloride pesticides, plasticizer, heavy metals such as lead, carcinogens such as polycyclic aromatic hydrocarbons (c-PAHs) and zearalenone (ZEA), male reproductive system diseases or systemic diseases such as varicocele, infection, tumor, spermatogenesis and maturation dysfunction, spinal cord injury and endocrine disorders, seasons and temperature, lifestyle, abstinence time, semen refrigeration, semen handling in vitro, and certain medications. Among them, spermatogenesis and sperm maturation dysfunction may be the most secretive factors, which are involved in the molecular mechanisms of sperm chromatin packaging and restructuring, such as the transformation of histone to protamine, single nucleotide polymorphism of genes, and the role of telomere, which may be one of the hotspots in the future studies of sperm DNA damage. Relevant researches in the future are expected to focus on the prevention of sperm DNA damage and clarification of its specific pathogenic mechanisms so as to provide some evidence for its treatment.
Age Factors
;
Chromatin
;
chemistry
;
DNA Damage
;
Environmental Pollutants
;
toxicity
;
Humans
;
Male
;
Protamines
;
Semen
;
drug effects
;
Specimen Handling
;
Spermatogenesis
;
Spermatozoa
;
drug effects
;
Telomere
;
physiology
;
Varicocele
;
complications
7.Effect of Bilirubin on Triglyceride Synthesis in Streptozotocin-Induced Diabetic Nephropathy.
Jianwei XU ; Eun Seong LEE ; Seon Ha BAEK ; Shin Young AHN ; Sejoong KIM ; Ki Young NA ; Dong Wan CHAE ; Ho Jun CHIN
Journal of Korean Medical Science 2014;29(Suppl 2):S155-S163
We aimed to elucidate the effect of bilirubin on dyslipidemia and nephropathy in a diabetes mellitus (DM) type I animal model. Sprague-Dawley rats were separated into control, DM, and bilirubin-treated DM (Bil) groups. The Bil group was injected intraperitoneally with 60 mg/kg bilirubin 3 times per week and hepatoma cells were cultured with bilirubin at a concentration of 0.3 mg/dL. The Bil group showed lower serum creatinine levels 5 weeks after diabetes onset. Bilirubin treatment also decreased the amount of mesangial matrix, lowered the expression of renal collagen IV and transforming growth factor (TGF)-beta1, and reduced the level of apoptosis in the kidney, compared to the DM group. These changes were accompanied by decreased tissue levels of hydrogen superoxide and NADPH oxidase subunit proteins. Bilirubin decreased serum total cholesterol, high-density lipoprotein cholesterol (HDL-C), free fatty acids, and triglycerides (TGs), as well as the TG content in the liver tissues. Bilirubin suppressed protein expression of LXRalpha, SREBP-1, SCD-1, and FAS, factors involved in TG synthesis that were elevated in the livers of DM rats and hepatoma cells under high-glucose conditions. In conclusion, bilirubin attenuates renal dysfunction and dyslipidemia in diabetes by suppressing LXRalpha and SREBP-1 expression and oxidative stress.
Animals
;
Bilirubin/pharmacology/*therapeutic use
;
Cell Line, Tumor
;
Creatine/blood
;
Diabetes Mellitus, Experimental/chemically induced/complications/*pathology
;
Diabetic Nephropathies/*drug therapy/etiology
;
Disease Models, Animal
;
Kidney/pathology
;
Lipoproteins, HDL/blood
;
Liver/metabolism
;
Male
;
Mice
;
Mice, Inbred C57BL
;
NADPH Oxidase/metabolism
;
Orphan Nuclear Receptors/antagonists & inhibitors/genetics/metabolism
;
Oxidative Stress/drug effects
;
Rats
;
Rats, Sprague-Dawley
;
Reactive Oxygen Species/metabolism
;
Streptozocin/toxicity
;
Triglycerides/analysis/*biosynthesis/blood
8.Di-(n-butyl)-phthalate-induced oxidative stress and depression-like behavior in mice with or without ovalbumin immunization.
Hao Xiao ZUO ; Jin Quan LI ; Bing HAN ; Chen Juan KE ; Xu Dong LIU ; Yu Chao ZHANG ; Li LI ; Xu YANG
Biomedical and Environmental Sciences 2014;27(4):268-280
OBJECTIVETo investigate the relationship between atopic allergy and depression and the role of DBP in the development of depression.
METHODSBALB/c mice were randomly divided into eight groups: saline; ovalbumin (OVA)-immunized; saline+DBP (0.45 mg/kg•d); saline+DBP (45 mg/kg•d); DBP (0.45 mg/kg•d) OVA-immunized; DBP (45 mg/kg•d) OVA-immunized; saline+hydrocortisone (30 mg/kg•d); and hydrocortisone (30 mg/kg•d)-exposed OVA-immunized. Behavior (e.g. open-field, tail suspension, and forced swimming tests), viscera coefficients (brain and spleen), oxidative damage [e.g. reactive oxygen species (ROS), malondialdehyde (MDA), and glutathione (GSH)], as well as levels of IgE and IL-4, were then analyzed.
RESULTSIn the saline and OVA groups, the degree of depression symptoms in mice increased with increasing DBP concentration. Additionally, the OVA-immunity groups were associated with more serious depressive behavior compared with the same exposure concentration in the saline group. Oxidative damage was associated with a dose-dependent increase in DBP in the different groups. IL-4 and IgE levels were associated with low-dose DBP stimulation, which changed to high-dose inhibition with increasing DBP exposure, possibly due to spleen injury seen at high DBP concentrations.
CONCLUSIONDevelopment of an atopic allergy has the potential to increase the risk of depression in mice, and it seems that DBP helps OVA to exert its effect in our present model. Moreover, the results of our study implicate a certain connection between brain oxidative stress and depression, which deserves a further exploration.
Animals ; Behavior, Animal ; drug effects ; Body Weight ; Depression ; blood ; chemically induced ; immunology ; Dibutyl Phthalate ; immunology ; toxicity ; Environmental Pollutants ; immunology ; toxicity ; Hydrocortisone ; Hypersensitivity, Immediate ; blood ; complications ; Immunization ; Immunoglobulin E ; blood ; Interleukin-4 ; blood ; Male ; Mice ; Mice, Inbred BALB C ; Ovalbumin ; Oxidative Stress
9.Effect of DHEA on Recovery of Muscle Atrophy Induced by Parkinson's Disease.
Myoung Ae CHOE ; Gyeong Ju AN ; Byung Soo KOO ; Songhee JEON
Journal of Korean Academy of Nursing 2011;41(6):834-842
PURPOSE: The purpose of this study was to determine the effect of dehydroepiandrosterone (DHEA) on recovery of muscle atrophy induced by Parkinson's disease. METHODS: The rat model was established by direct injection of 6-hydroxydopamine (6-OHDA, 20 microg) into the left striatum using stereotaxic surgery. Rats were divided into two groups; the Parkinson's disease group with vehicle treatment (Vehicle; n=12) or DHEA treatment group (DHEA; n=22). DHEA or vehicle was administrated intraperitoneally daily at a dose of 0.34 mmol/kg for 21 days. At 22-days after DHEA treatment, soleus, plantaris, and striatum were dissected. RESULTS: The DHEA group showed significant increase (p<.01) in the number of tyrosine hydroxylase (TH) positive neurons in the lesioned side substantia nigra compared to the vehicle group. Weights and Type I fiber cross-sectional areas of the contralateral soleus of the DHEA group were significantly greater than those of the vehicle group (p=.02, p=.00). Moreover, extracellular signal-regulated kinase (ERK) phosphorylation significantly decreased in the lesioned striatum, but was recovered with DHEA and also in the contralateral soleus muscle, Akt and ERK phosphorylation recovered significantly and the expression level of myosin heavy chain also recovered by DHEA treatment. CONCLUSION: Our results suggest that DHEA treatment recovers Parkinson's disease induced contralateral soleus muscle atrophy through Akt and ERK phosphorylation.
Animals
;
Corpus Striatum/drug effects/metabolism
;
Dehydroepiandrosterone/*pharmacology/therapeutic use
;
Extracellular Signal-Regulated MAP Kinases/metabolism
;
Male
;
Muscle Fibers, Slow-Twitch/drug effects
;
Muscle, Skeletal/drug effects/metabolism
;
Muscular Atrophy/drug therapy/*etiology/*pathology
;
Myosins/metabolism
;
Neurons/drug effects/enzymology
;
Oxidopamine/toxicity
;
Parkinson Disease, Secondary/*chemically induced/*complications
;
Phosphorylation
;
Proto-Oncogene Proteins c-akt/metabolism
;
Rats
;
Rats, Sprague-Dawley
;
Tyrosine 3-Monooxygenase/metabolism
10.Triptolide downregulates Rac1 and the JAK/STAT3 pathway and inhibits colitis-related colon cancer progression.
Zhipeng WANG ; Haifeng JIN ; Ruodan XU ; Qibing MEI ; Daiming FAN
Experimental & Molecular Medicine 2009;41(10):717-727
Triptolide, a diterpenoid triepoxide from the traditional Chinese medicinal herb Tripterygium wilfordii Hook. f., is a potential treatment for autoimmune diseases as well a possible anti-tumor agent. It inhibits proliferation of coloretal cancer cells in vitro and in vivo. In this study, its ability to block progress of colitis to colon cancer, and its molecular mechanism of action are investigated. A mouse model for colitis-induced colorectal cancer was used to test the effect of triptolide on cancer progression. Treatment of mice with triptolide decreased the incidence of colon cancer formation, and increased survival rate. Moreover, triptolide decreased the incidence of tumors in nude mice inoculated with cultured colon cancer cells dose-dependently. In vitro, triptolide inhibited the proliferation, migration and colony formation of colon cancer cells. Secretion of IL6 and levels of JAK1, IL6R and phosphorylated STAT3 were all reduced by triptolide treatment. Triptolide prohibited Rac1 activity and blocked cyclin D1 and CDK4 expression, leading to G1 arrest. Triptolide interrupted the IL6R-JAK/STAT pathway that is crucial for cell proliferation, survival, and inflammation. This suggests that triptolide might be a candidate for prevention of colitis induced colon cancer because it reduces inflammation and prevents tumor formation and development.
Animals
;
Cell Transformation, Neoplastic/*drug effects
;
Colitis/complications
;
Colonic Neoplasms/chemically induced/*drug therapy/metabolism/pathology
;
Dextran Sulfate/toxicity
;
Dimethylhydrazines/toxicity
;
Diterpenes/*administration & dosage
;
Epoxy Compounds/administration & dosage
;
Humans
;
Interleukin-6/biosynthesis
;
Janus Kinases/metabolism
;
Male
;
Mice
;
Mice, Inbred BALB C
;
Mice, Inbred ICR
;
Mice, Nude
;
Neoplasm Transplantation
;
Phenanthrenes/*administration & dosage
;
STAT3 Transcription Factor/metabolism
;
Signal Transduction/*drug effects
;
Tumor Burden/drug effects
;
rac1 GTP-Binding Protein/*biosynthesis

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