1.Immunologic pathogenesis of multiple sclerosis.
Min-Fang GUO ; Ning JI ; Cun-Gen MA
Neuroscience Bulletin 2008;24(6):381-386
Multiple sclerosis (MS) is an autoimmune disease. The etiology and pathogenesis of MS remain unclear. At present, there are substantial evidences to support the hypothesis that genetics plays a crucial role. The people who have genetic predisposing genes easily develop immune-mediated disorder, probably in conjunction with environmental factors. The aim of this review is to describe recent observations regarding the immunologic pathogenesis of MS.
Animals
;
Autoantibodies
;
immunology
;
Humans
;
Models, Biological
;
Multiple Sclerosis
;
etiology
;
immunology
;
pathology
;
Myelin Basic Protein
;
metabolism
2.Cardiovascular effects of intermedin1-53 and its mechanism.
Jing-hui YANG ; Yong-fen QI ; Cun-gen MA ; Chao-shu TANG
Chinese Journal of Applied Physiology 2009;25(3):308-311
AIMThe present study was designed to determined the cardiovascular effects of IMD1-53 in rats and its possible mechanism.
METHODSIsolated rat hearts were perfused by Iangendorff mode, and ventricular function was measured after IMD1-53 perfusion. Meanwhere, we investigated the effects of IMDI) on arterial pressure after intravenous administration of IMD. And cAMP content was detected in rat ventricular and aortic tissues.
RESULTSThe results showed that perfusion with IMD significantly enhanced cardiac function and resulted in higher LVSP, +dp/dt(max) and -dp/dt(max) by 45%, 51% and 37%, respectively, compared with control and increased coronary infusion flow. The effects of IMD1-53 on cardiac function were antagonized by H-89, an inhibitor of PKA. The content of cAMP in the ventricular tissues after IMD perfusion was 131% higher than control. In addition, intravenous administration of IMD induced a potent decrease in arterial pressureand heart rate, and in aortic tissues, IMD incubation resulted in a 236% increase in cAMP content compared with control group.
CONCLUSIONThe study reveals that IMD can increase cardiac function and decrease arterial pressure in rat and the effects may be related to cAMP pathway.
Adrenomedullin ; metabolism ; pharmacology ; Animals ; Blood Pressure ; drug effects ; Cardiovascular Physiological Phenomena ; drug effects ; Cyclic AMP ; metabolism ; Heart ; drug effects ; In Vitro Techniques ; Male ; Neuropeptides ; metabolism ; pharmacology ; Random Allocation ; Rats ; Rats, Sprague-Dawley ; Ventricular Function ; drug effects
3.Simvastatin suppresses experimental autoimmune encephalomyelitis in rats
Da-Zhi DUAN ; Jie SHUAI ; Yong LIU ; Li-Yun LIANG ; Cun-Gen MA
Chinese Journal of Neuromedicine 2009;8(4):367-371
Objective To investigate the therapeutic effects of simvastatin on experimental autoimmune encephalomyelitis(EAE)and explore its mechanisms. Methods Fifty-five Wistar rats were randomly divided into EAE group (n=15),.STATINS group(n=15),triptolide(TP)group(n=15)and normal control group(n=10).In STATINS group,the rats were given simvastatin and the changes in the expressions of P53,interleukin-6(IL-6),tumor necrosis factor-α(TNF-α)and transforming growth factor-β(TGF-β)were observed,with triptofide as the positive control.Results Compared to the EAE group,the rats in STATINS group had significantly lowered incidence of EAE,mild symptoms,reduced body weight loss and lesion foci number,and prolonged latency of EAE onset(P<0.05).The rats in the TP group also exhibited significantly milder symptoms and fewer lesion foci than the EAE group(P<0.05),but the body weight changes.,latency or incidence of EAE had no significant difference between the two groups(P>0.05).Simvastatin significantly suppressed the expression of IL-6 and TNF-α and increased the expressions of P53 and TGF-β in rats with EAE,whereas TP only resulted in significant suppression of TNF-αexpression(P<0.05).The expressions of P53 and TGF-β were significantly higher in STATINS group than in TP group(P<0.05),but the expressions of TNF-α and IL-6 were comparable between the two groups(P>0.05). Conclusions Simvastatin Can suppress EAE more effectively than TP by suppressing the expressions of the inflammatory factors such as IL-6 and TNF-α and promoting the expressions of P53 and TGF-β.
4.Effect of FSD-C10 on modulation of inflammatory microenvironment in an Alzheimer disease double transgenic mouse model
fang Qing GU ; zhong Jie YU ; Hao WU ; hua Yan LI ; jie Hui FAN ; Zhi CHAI ; Qing WANG ; guo Bao XIAO ; gen Cun MA
Chinese Journal of Pathophysiology 2017;33(10):1729-1737
AIM:To explore the therapeutic effect of a novel Rho kinase inhibitor FSD-C10 onβ-amyloid pro-tein precursor (APP)/presenilin-1 (PS1) double transgenic mice.METHODS: The transgenic mice overexpressing hu-man APP with the Swedish mutation (695) and human PS1 with ΔE9 mutation at the age of 8 months were used in this study.The mice were randomly divided into model group and FSD-C10 intervention group, and wild-type mice at the same age served as normal controls .The mice in FSD-C10 intervention group were treated with FSD-C10 (25 mg· kg-1 · d-1 ) for 2 months by intraperitoneal injection .The mice in model group and the wild-type mice were injected with saline in the similar manner.Morris water maze (MWM) test was applied to examine the capacity of learning and memory .The Aβ1-42 deposition, Tau protein phosphorylation , and the expression of β-site APP-cleaving enzyme ( BACE) as well as inflammato-ry molecules, such as TLR-4 and NF-Κb, and M1/M2 microglial markers, such as Inos and Arg-1, were determined by the methods of immunohistochemistry and Western blot .RESULTS: Compared with model group , FSD-C10 significantly improved the learning and memory abilities of APP/PS1 double transgenic mice , accompanied by reduced Aβ1-42 deposi-tion, Tau protein phosphorylation and BACE expression in the hippocampus .The intervention of FSD-C10 decreased the protein levels of TLR-4 and p-NF-Κb, reduced the expression of Inos and increased the expression of Arg-1 in the brain tissues.CONCLUSION:The novel Rho kinase inhibitor FSD-C10 improves the capacity of spatial learning and memory in APP/PS1 double transgenic mice , which may be related to the inhibition of TLRs/NF-Κb signaling pathway , the reduction of the secretion of inflammatory molecules and the polarization of anti-inflammatory M2 microglia, thus improving the in-flammatory microenvironment of the brain in APP/PS1 double transgenic mice .
5.Neuroprotective effect of fasudil combined with bone marrow-derived neural stem cells on mice with experimental autoimmune encephalomyelitis
bin Guo SONG ; ping Guo XI ; hua Yan LI ; shan Jia LI ; chun Jian LIU ; Zhi CHAI ; guo Bao XIAO ; xian Guang ZHANG ; gen Cun MA
Chinese Journal of Pathophysiology 2017;33(12):2113-2120
AIM: To explore the neuroprotective effect of fasudil combined with bone marrow -derived neural stem cells ( BM-NSCs) on the mice with experimental autoimmune encephalomyelitis ( EAE).METHODS: Female C57BL/6 mice (8~10 weeks old, n=32) were immunized with myelin oligodendrocyte glycoprotein 35-55 (MOG35-55) to establish chronic EAE model .The mice were randomly divided into control ( ddH2 O ) group, fasudil group , BM-NSCs group , and fasudil+BM-NSCs group .The clinical score and body weight were recorded every other day .The expression of neurotrophic factors was determined by immunofluorescence staining .RESULTS:In comparison with ddH2O group, fasud-il combined with BM-NSCs delayed onset and ameliorated severity of EAE .The numbers of brain-derived neurotrophic fac-tor, glial cell-derived neurotrophic factor , nerve growth factor , neurotrophin-3 and ciliary neurotrophic factor positive cells in fasudil group, BM-NSCs group and fasudil +BM-NSCs group were all increased in various extents .In particularly, the expression of these neurotrophic factors in fasudil +BM-NSCs group was significantly higher than that in the mice treated with fasudil or BM-NSCs alone (P<0.01).CONCLUSION:Fasudil combined with BM-NSCs promotes the expression of neurotrophic factors and improves microenvironment of central nervous system , thus playing a positive role in neural restora-tion and regeneration through a synergistic and superimposed effect .
6.Formyl peptide receptor-2 enhances inflammatory response induced by lipopolysaccharide in BV-2 cells
Qing WANG ; Li-Juan SONG ; Jie-Zhong YU ; Zhi-Chao YANG ; Wei-Jia JIANG ; Yan-Hua LI ; Wen-Juan GUO ; Cun-Gen MA
Chinese Pharmacological Bulletin 2018;34(2):202-207
Aim To investigate the expression of formyl peptide receptor-2 (FPR2) in lipopolysaccharide (LPS)-induced-BV-2 cells,and detect FPR2's influence on inflammatory response induced by LPS.Methods After 1 mg · L-1 LPS acting on BV-2 cells at 12 h,the extrinsic inflammatory model was established.We used the Western blot assay to test the levels of FPR2 protein.And the expressions of phosphorylated NF-κB,TNF-α and IL-1β were investigated when the LPS-induced-BV-2 was incubated with FPR2's agonist MMK-1 and antagonist Boc-2.Transwell assay was also used to detect the LPS-inducedBV-2 migration induced by MMK-1 and Boc-2.Resuits LPS up-regulated the expression of FPR2,and when its agonist was acted on LPS-induced-BV-2,the levels of phosphorylated NF-κB,TNF-α and IL-1β were significantly higher than those of LPS group.In addition,the chemotaxis of LPS-induced-BV-2 also increased by MMK-1.These effects were abolished by Boc-2.Conclusions LPS can increase the expression of FPR2 on BV-2 cells,and FPR2 enhances the inflammatory response induced by LPS.
7.Study on the preventive effect of schisandrin on neural tube defects in mice and its mechanism
Yi RU ; Liang-Qi XIE ; Xin-Liang WANG ; Bao-Guo XIAO ; Xiao-Ming JIN ; Cun-Gen MA ; Zhi CHAI ; Hui-Jie FAN
Medical Journal of Chinese People's Liberation Army 2023;48(12):1370-1377
Objective To investigate the preventive effect of schisandrin(SCH)on fetal neural tube defects(NTDs)of mice and its mechanism.Methods C57BL/6 mice were mated with female and male at a ratio of 2:1.Pregnant female mice with vaginal plug after mating were randomly divided into control group,model group,SCH group,and folic acid group,with 9 mice in each group.The NTDs fetal mice model was induced by intraperitoneal injection of all-trans retinoic acid(atRA)(7.5 mg/kg)on embryonic day 7.5(E 7.5 d).During E 0.5 d-E 11.5 d,pregnant rats in folic acid group were given folic acid[61.0 μg/(kg·d)]by gavage once a day,and pregnant rats in SCH group were given SCH[8.0 mg/(kg·d)]by gavage once a day.Fetal mice were removed by cesarean section on E 11.5 d.PC12 cells were divided into control group,model group and SCH group.PC12 cells were treated with atRA(20 μmol/L)for 12 hours to establish cell damage model in model group,and treated with SCH(2.5 μmol/L)for 24 hours in SCH group.Fetuses were identified NTDs by stereoscopic microscopy.HE staining was used to observe the closure of the neural tube.The expression levels of p-PI3K,Akt and p-Akt molecules in PI3K/Akt signaling pathway were detected by Western Blotting.Results Compared with control group,the incidence of NTDs was significantly increased in mice of model group(P<0.01);compared with model group,the incidence of NTDs was decreased in folic acid group and SCH group(P<0.01);compared with folic acid group,SCH group had a lower incidence of NTDs(P<0.01).Western Blotting results showed that compared with control group,the expression of p-PI3K and p-Akt protein in fetal tissues of model group was significantly decreased(P<0.01,P<0.05);compared with model group,there was no significant difference in expression of p-PI3K and p-Akt in fetal tissues of folic acid group(P>0.05),while the expression of p-PI3K and p-Akt protein in SCH group was significantly higher(P<0.05).Compared with control group,PC12 cells in model group showed lower expression levels of p-PI3K and p-Akt(P<0.05);compared with model group,PC12 cells in SCH group showed higher expression levels of p-PI3K and p-Akt(P<0.05).Conclusions SCH can reduce the incidence of atRA-induced NTDs in fetal mice,and its preventive effect is better than folic acid,which may be related to the activation of the PI3K/Akt signaling pathway.
8.Effect and possible mechanism of Wuzi Yanzong Pill on motor function of neurons in Parkinson's disease mice
Tao PAN ; Qi XIAO ; Hui-Jie FAN ; Lei XU ; Lu JIA ; Shao-Chen QIN ; Li-Ran WANG ; Cun-Gen MA ; Bo ZHANG ; Zhi CHAI
Medical Journal of Chinese People's Liberation Army 2024;49(5):550-556
Objective To observe the effects of Wuzi Yanzong Pill(WYP)on motor function in a mouse model of Parkinson's disease(PD)and to explore its potential mechanisms.Methods Twenty-four male C57BL/6 mice were randomly divided into control group,model group and WYP group,with 8 mice in each group.Mice in model and WYP group were intraperitoneally injected with 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine for 7 consecutive days to establish a PD model.From the 1st day of model preparation,mice in WYP group were gavaged with WYP solution[16 g/(kg·d)]twice daily for 14 consecutive days.At the same time,mice in control group and model group were gavaged with 0.9%NaCl solution[50 ml/(kg·d)]twice a day.Gait experiment was utilized to assess the behavioral performance of mice in each group.Immunofluorescence staining was conducted to detect the number of tyrosine hydroxylase(TH)-positive cells in the substantia nigra region,the fluorescence intensity of nuclear factor E2-related factor 2(Nrf2),and the number of NeuN neurons co-labeled with Nrf2 in each group.Western blotting was employed to determine the expression levels of TH,Kelch-like ECH-associated protein 1(Keap-1),Nrf2,and heme oxygenase-1(HO-1)in the brain tissue of mice in each group.Results The gait experiment results showed that,compared with control group,standing time of the left front paw,right front paw,left hind paw,and right hind paw of the mice in model group was significantly shortened(P<0.01),while swinging time of the left front paw,right front paw,left hind paw,and right hind paw was significantly prolonged(P<0.05).Compared with model group,standing time of the left front paw and right hind paw of the mice in WYP group was significantly prolonged(P<0.05),while swing time of the left front paw and right front paw was significantly shortened(P<0.05).Immunofluorescence staining and Western blotting results showed that,compared with control group,in model group the number of TH-positive cells,average fluorescence intensity of Nrf2,and HO-1 levels decreased(P<0.01),while the Keap-1 protein level increased(P<0.01),and the number of Nrf2 expression on NeuN neurons decreased(P<0.001).Compared with model group,the number of TH-positive cells,average fluorescence intensity of Nrf2,HO-1 level,and the number of Nrf2 expression on NeuN neurons in the brain tissue of mice in WYP group increased(P<0.05),while Keap-1 protein level decreased(P<0.05).Conclusions WYP could alleviate the motor dysfunction and protect dopaminergic neurons in PD mice.The underlying mechanism may be related to the regulation of Keap-1/Nrf2/HO-1 pathway to inhibit oxidative stress response.
9.Promotion mechanism of astragaloside on axon repair and regeneration in experimental autoimmune encephalomyelitis mice
Jian-Chun LIU ; Hong-Zhen ZHANG ; Qing WANG ; Hui-Jie FAN ; Li-Juan SONG ; Zhi CHAI ; Cun-Gen MA
Medical Journal of Chinese People's Liberation Army 2024;49(8):914-921
Objective To investigate the effects of astragaloside Ⅳ(AS-Ⅳ)on axon growth inhibitory factor A(Nogo-A)and its downstream pathway protein RHO-associated coiled spiral kinase 2(ROCK2)in experimental autoimmune encephalomyelitis(EAE)mice,and to explore the mechanism by which it promotes axon repair and regeneration.Methods EAE model was induced in C57BL/6 female mice by subcutaneous injection of myelin oligodendrocyte glycoprotein 35-55(MOG35-55).Mice were randomly divided into EAE group and AS-Ⅳ group(n=8 per group).EAE group received intraperitoneal injection of PBS on the 3rd day post-immunization,while AS-Ⅳ group was administered AS-Ⅳ at a dosage of 30mg/(kg.d)once daily,0.2 ml per injection,for 25 consecutive days.On the 28th day post-immunization,the expression levels of growth-associated protein 43(GAP-43),neuronal core antigen(NeuN),microtubule associated protein 2(MAP-2),glial fibroacidic protein(GFAP),and Iba1 in the spinal cord were detected using immunofluorescence assay.Real-time fluorescence quantitative PCR(qRT-PCR)was conducted to detect mRNA expression levels of GAP-43,Nogo-A,and Nogo receptor(NgR)genes.Western blotting was utilized to determine the expression levels of GAP-43,Nogo-A,ROCK2,phosphorylated myosin phosphatase(p-MYPT1),B-lymphoblastoma-2(Bcl-2),and Bcl-2 associated X protein(Bax).Results Compared with EAE group,AS-Ⅳ treatment significantly reduced the positive cell expression rates of Iba1 microglia and GFAP astrocyte in spinal cord(P<0.01 and P<0.001,respectively),while it also increased the positive expression rates of NeuN and MAP-2(P<0.001 and P<0.05,respectively).The treatment also upregulated the expression level of anti-apoptotic factor Bcl-2(P<0.001)and downregulated the expression level of pro-apoptotic factor Bax(P<0.05),leading to an increase in Bcl-2/Bax ratio(P<0.05).Furthermore,AS-Ⅳ enhanced the expression of GAP-43 protein(P<0.05)and decreased the mRNA expression levels of neuroregeneration inhibitor Nogo receptor(NgR)and ROCK2 gene(P<0.001,P<0.05,respectively);as well as decreased the expression levels of Nogo-A,ROCK2 and p-MYPT1 proteins(P<0.05,P<0.001).Conclusion AS-Ⅳ may inhibit the activation of microglia and astrocytes and neuronal apoptosis in EAE mice by inhibiting Nogo-A and downstream pathway ROCK 2,thereby promoting the expression of GAP-43,NeuN and MAP-2,alleviating neuronal damage,and facilitating axon repair and regeneration.
10.Effects of hydroxysafflor yellow A on autophagy in bEnd.3 cells after oxygen-glucose deprivation
Yao-Yao DAI ; Meng-Qi SHU ; Ru-Heng WEI ; Zhu-Yue MIAO ; Zhi-Bin DING ; Dong MA ; Jian-Jun HUANG ; Li-Juan SONG ; Cun-Gen MA
The Chinese Journal of Clinical Pharmacology 2024;40(12):1734-1738
Objective To explore the effect and mechanism of hydroxysafflor yellow A(HSYA)on autophagy in bEnd.3 cells after oxygen-glucose deprivation(OGD).Methods The bEnd.3 cells were divided into normal group(conventional culture),model group(OGD model),HSYA group(OGD model+75 μmol·L-1 HSYA),3-methyladenine(3MA)group(5 mmol·L-1 3MA+OGD model)and 3 MA+HSYA group(5 mmol·L-1 3 MA+OGD model+75 μmol·L-1 HSYA).The level of apoptosis was determined by TUNEL fluorescence staining;Western blot was used to detect the expression of autophagy,blood brain barrier(BBB)related proteins;real time fluorescence quantitative polymerase chain reaction method for determining the expression of sirtuin-1(SIRT1)and forkhead box protein O3a(FOXO3A)mRNA.Results In the normal group,model group,HSYA group,3MA group and 3MA+HSYA group,the positive cells selected for TUNEL staining were 5.00±1.00,28.00±2.00,21.00±3.00,35.33±2.51 and 29.67±2.52;the expression levels of microtubule-associated protein 1 light chain 3-Ⅱ/-Ⅰ(LC3-Ⅱ/-Ⅰ)were 0.90±0.20,1.34±0.10,1.95±0.14,0.76±0.15 and 1.14±0.09;sequestosome 1(P62)were 0.99±0.02,0.60±0.02,0.38±0.01,0.67±0.04 and 0.54±0.01;occludin were 1.39±0.17,0.62±0.15,1.00±0.09,0.40±0.13 and 0.80±0.15;zonula occludens-1(ZO-1)were 1.63±0.20,0.64±0.06,0.98±0.14,0.37±0.14 and 0.87±0.04;SIRT1 mRNA were 1.00±0.00,0.75±0.07,1.69±0.09,0.31±0.02 and 0.56±0.01;FOXO3A mRNA were 1.00±0.00,0.80±0.05,1.47±0.09,0.40±0.01 and 0.62±0.09,respectively.Significant differences were found between model group and normal group,HSYA group and model group,3MA+HSYA group and 3MA group(P<0.05,P<0.01,P<0.001).Conclusion HSYA may enhance autophagy levels in bEnd.3 cells after OGD through the SIRT1/FOXO3A pathway,inhibit cell apoptosis and alleviate BBB damage.