1.Anti-apoptosis and anti-inflammatory effect of osthole in mice following stab wound injury
Liang KONG ; Yingjia YAO ; Yanan JIAO ; Shaoheng LI ; Zhenyu TAO ; Yuhui YAN ; Jingxian YANG
Chinese Pharmacological Bulletin 2015;(7):999-1003,1004
Aim To investigate the effects of osthol on cell apoptosis and inflammatory cell infiltration after brain stab wound injury in mice. Methods The mice underwent the stab wound injury by a needle, then were randomly divided into sham operation group, model group, osthol 10, 20, 30 mg · kg-1 treatment group. The main examinations included mice brain wa-ter content; the apoptotic cytokines Bax, Bcl-2, Caspase-3 mRNA expression were assessed by PT-PCR; immunohistochemistry staining was used to de-tect neutrophils (MPO) and microglia (Iba-1) infiltra-tion and Caspase-3 positive cell expression around in-jured lesions. Results Treatment with osthole 20, 30 mg·kg-1 group significantly reduced the water content in injured brain, improved the ratio of Bax/Bcl-2, and reduced the expression of apoptosis cytokine Caspase-3 mRNA. Osthole 30 mg·kg-1 treatment group obvious-ly reduced the infiltration of neutrophils and microglial cells and significantly reduced the number of apoptotic cells around the injured cerebral cortex. Conclusion Osthole has therapeutic effect on stab wound injury in mice, and the possible mechanism may be by reducing the infiltration of inflammatory cells and reducing apop-totic cells.
2.Neuroprotective effect of osthole on neuron synapses infected APP gene
Shaoheng LI ; Yanan JIAO ; Yingjia YAO ; Liang KONG ; Zhenyu TAO ; Yuhui YAN ; Jingxian YANG
Chinese Pharmacological Bulletin 2015;(10):1383-1387,1388
Aim To investigate the effect of osthole on neuron synapses infected APP gene and its underlying mechanism. Methods The neurons were divided into three groups:GFP, APP, APP+Ost groups. The neu-rons were infected APP gene with containing mutational site in vitro for mimicking the characterstics of Alzhei-mer’ s disease ( AD) . The cell viability was assessed by CCK-8 , the expression of synapsin-1 was deter-mined by immunofluorescence, and the concentration of PSD-95 and SYP were detected by ELISA. The ex-pressions of Aβ1-42 , CAMKK2 , phoshorylated AMPKα1 , AMPKα1 protein were determined by West-ern blot. Results Strong APP staining was visible in neurons infected with APP and abundant expression of Aβ1-42 , a neurotoxic oligomer. Compared with APP group, APP+Ost group significantly increased cell vi-ability, promoted the expression of synapsin-1, up-reg-ulated the concentration of PSD-95 and SYP, and de-creased the expressions of CAMKK2 and p-AMPKα1 . Conclusions Ost can protect the neuron synapses a-gainst infected with APP gene. Its neuroprotective effect may be related to inhibiting the CAMKK2/AMPK signal pathway.
3.Protective Effects of Osthole on the Nerves of Model Mice with Craniocerebral Injury
Liang KONG ; Yingjia YAO ; Yanan JIAO ; Shaoheng LI ; Zhenyu TAO ; Jingxian YANG
China Pharmacy 2015;(22):3046-3048,3049
OBJECTIVE:To investigate the protective effects of osthole on the nerves in model mice with craniocerebral injury. METHODS:Mice models of craniocerebral injury were established by craniotomy drill. There was a sham-operation group(isomet-ric normal saline),a model group (isometric normal saline) and osthole high,mediu,low dose groups (30,20,10 mg/kg). The drugs were given to the mice 1 h after successful establishment of the models,ip,once a day,for consecutive 14 d. Neurological severity score was conducted for the mice 12 h,3 d,7 d,14 d and 21 d after the establishment of models;HE stain was conduct-ed 7 d and 14 d thereafter and the wounds areas of brain were observed by microscope;the activity of myeloperoxidase(MPO)in the homogenate of mice’s brain tissues were determined 1 d and 3 d after the establishment of models;immunohistochemical meth-od was adopted to determine the expressions of the brain-derived neurotrophic factors (BDNF) and neurotrophic factor (NT) 3 in the mice’s brain tissues 7 d after the establishment of models. RESULTS:Compared with model group,the neurological severity scores of the mice in osthole high dose group and medium dose group were decreased 3 d,14 d and 21 d after the establishment of models;that in osthole high dose group were decreased 7 d after the establishment of models. The wounds areas of brain in osthole high dose group were smaller 7 d after the establishment of models;those in osthole high dose group and medium dose group were smaller 14 d after the establishment of models. The activity of MPO in the brain tissue in osthole high dose group was decreased 24 h and 72 h after the establishment of models.The expressions of the BDNF and NT-3 in the brain tissue homogenate in osthole high dose group and medium dose group were increased 7 d after the establishment of models,with significant differences(P<0.01 or P<0.05). CONCLUSIONS:Osthole has certain protective effects on the nerves in mice with craniocerebral injury. The mechanism may be related to improving the mice’s neurological functions,promoting wound healing,inhibiting the production of inflammato-ry factors,increasing the expression of neurotrophic factors.
4.Neurotrophin 3 gene overexpression promotes cholinergic differentiation in neural stem cells
Yuhui YAN ; Shaoheng LI ; Liang KONG ; Yingjia YAO ; Yanan JIAO ; Zhenyu TAO ; Jie SONG ; Jingxian YANG
Chinese Pharmacological Bulletin 2016;32(5):631-637
Aim To investigate the effects of neurotro-phin-3 ( NT-3 ) gene overexpression on the differentia-tion into cholinergic neuron of neural stem cells ( NSCs) in vitro and its underlying mechanism. Meth-ods Brain-derived NSCs from newborn mice were iso-lated and cultured in vitro and determined by immuno-fluorescence. The NSCs were divided into three groups: NSCs, GFP-NSCs and NT-3-NSCs groups. The expression of NT-3 was detected by immunofluo-rescence and ELISA. Then, the ability of NSCs on dif-ferentiation into cholinergic neuron was detected by im-munofluorescence and RT-PCR, and the Acetylcholine Assay Kit was used for acetylcholine ( ACh) , and the expression of Hes1 , Mash1 and Ngn1 mRNA was de-termined by RT-PCR. Results The neurosphere dis-played Nestin and Sox 2-postive by immunofluores-cence, suggesting that the cultured cells were NSCs. The proportion of ChAT immunopositive cells was sig-nificantly higher in the NT-3-NSCs group than that in the other two groups ( P <0. 01 ) . Ach secretion in NT-3-NSCs was significantly elevated compared with the other two groups ( P <0. 01 ) . NSCs transfected with NT-3 increased the levels of Mash1 and Ngn1 mR-NA, and decreased the level of Hes1 mRNA ( P <0. 05 ) . Conclusion NT-3 can significantly promote the in vitro differentiation of NSCs into cholinergic neu-rons via probablly inhibiting Notch signaling pathway.
5.Effects of Osthole on Differentiation of Neural Stem Cells in vitro
Shaoheng LI ; Yu HU ; Yingjia YAO ; Yanan JIAO ; Liang KONG ; Qingping YANG ; Zhenyu TAO ; Jingxian YANG
Herald of Medicine 2015;(7):856-860
Objective To investigate the effects of osthole on neural stem cells ( NSCs) differentiation and explore the potential mechanism. Methods Brain-derived NSCs from newborn mice were isolated and cultured in vitro and determined by immunofluorescence. The P5 generations of NSCs were placed in culture solution with osthole at concentrations of (0,10,50, 100 μmol·L-1 ) . The neuron, astrocyte and oligodendroglia cell differentiation were determined by immunofluorescence. The mRNA expression of Notch 1 and its target genes Mash 1 and Neurogenin 2 were assessed by RT-PCR. Results The neurosphere displayed Nestin and Sox 2-postive by immunofluorescence, suggesting that the cultured cells were NSCs. Osthole promoted NSCs differentiating into more neuron(P<0. 01) and oligodendrocyte(P<0. 05), but not astrocyte. Meanwhile, osthole significantly reduced the mRNA expression of Notch 1(P<0. 01) and increased Ngn 2(P<0. 01)at the dose of 100 μmol·L-1. Conclusion Osthole enhances NSCs differentiating into more neuron and oligodendrocyte via probablly inhibiting Notch signal pathway.
6.Protective effect of osthole on SH-SY5Y cells transfected with APP595/596 gene
Yanan JIAO ; Yingjia YAO ; Liang KONG ; Shaoheng LI ; Zhenyu TAO ; Yuhui YAN ; Jingxian YANG
Chinese Journal of Pathophysiology 2015;(11):2053-2058
AIM:To explore the protective effect of osthole on the SH-SY5Y cells transfected with APP595/596 gene, and to investigate the molecular mechanism.METHODS:The SH-SY5Y cells were transfected with APP595/596 gene in vitro for establishing a cell model to study the pathogenic role of amyloid β-protein ( Aβ) .The cell viability was detected by CCK-8 assay.The release of lactate dehydrogenase ( LDH) was determined by the colour reaction of dia-phorase-INT.The cell apoptotic rate was analyzed by flow cytometry.The expression of β-site APP cleaving enzyme 1 ( BACE1) at mRNA and protein levels was detected by RT-PCR and Western blot.The expression of Aβwas measured by the technique of immunofluorescence cytochemistry and Western blot.RESULTS: Treatment with osthole inhibited the LDH release, and increased the viability of the cells.The percentage of apoptotic cells was also significantly decreased. Osthole also inhibited the expression of BACE1 at mRNA and protein levels and the protein expression of Aβ.CONCLU-SION:Osthole has protective effect on SH-SY5Y cells transfected with APP595/596 gene.The mechanism may be associ-ation with inhibiting the mRNA and protein expression of BACE1.
7.Osthole promotes differentiation into neurons and reduces neuronal apoptosis via Wnt/β-catenin signaling pathway in APP transduced neural stem cells
Yingjia YAO ; Liang KONG ; Yanan JIAO ; Shaoheng LI ; Zhenyu TAO ; Yuhui YAN ; Jingxian YANG
Chinese Pharmacological Bulletin 2015;(11):1516-1523
Aim To investigate the effects of osthole ( Ost) on the ability of proliferation and differentiation in APP transduced neural stem cells( NSCs) , and neu-ronal apoptosis, in order to find related mechanism. Methods A model of Alzheimer′s disease( AD) cells was successfully established by transducing APP gene into NSCs in vitro. The ability of proliferation and dif-ferentiation was tested by staining. The viability of NSCs was determined by using CCK-8 assay. The cell apoptosis was tested by Hoechst 33258 staining. The expression of GSK-3β and β-catenin mRNA was deter-mined by RT-PCR. The expression of GSK-3β and β-catenin protein was determined by Western blot. Re-sults The ability of proliferation had increased by 10 . 24% with Ost treatment, compared with APP group. The ability of differentiation had increased by 6 . 74%with Ost treatment, compared with APP group. The vi-ability of NSCs had increased and cell apoptotic rate had decreased significantly. From the results of RT-PCR and Western blot, we could find the expression of GSK-3βmRNA and protein had decreased, and the ex-pression of β-catenin mRNA and protein had increased significantly, compared with APP group. Conclusion Ost could enhance the ability of proliferation and dif-ferentiation into more neurons of NSCs transducing APP gene, and reduce neuronal apoptosis. It might be relat-ed with activiting Wnt/β-catenin signaling pathway.
8.Osthole promotes the proliferation of neural stem cells in vitro
Yingjia YAO ; Yu HU ; Shaoheng LI ; Yanan JIAO ; Liang KONG ; Zhenyu TAO ; Jingxian YANG
Chinese Journal of Tissue Engineering Research 2014;(32):5184-5189
BACKGROUND:Neural stem cells have self-renewal and multidirectional differentiation potential, but under normal circumstances, the number of neural stem cells is less, and most cells are in the resting state. Thus, to promote the proliferation of neural stem cells is the key to the treatment of neurodegenerative diseases. OBJECTIVE:To investigate the effects of osthole on the proliferation of neural stem cells cultured in vitro, and to analyze its mechanism underlying promoting the proliferation. METHODS:Neural stem cells were cultured in vitro, and passage 3 cells were cultured with different concentrations of osthole(10, 50 and 100μmol/L). After 24 hours, cellvitality was determined by cellcounting kit-8. After 3, 5, 7 days of further culture, the radius of neurospheres was measured, and Ki67-positive cells were counted by immunofluorescence staining. Meanwhile, after 3 days of further culture, the gene expression of Notch 1, Hes 1 and Mash 1 in neural stem cells was detected by RT-PCR. RESULTS AND CONCLUSION:Compared with the control group, 50, 100μmol/L osthole could obviously promote the proliferation ability of neural stem cells. 100μmol/L osthole had the most significant effect and increased the expression of Notch 1 gene, Hes 1 gene, but it had no effect on Mash 1 gene. These results suggest that osthole can promote proliferation of neural stem cells cultured in vitro and its mechanism may be associated with activation of Notch 1 gene and Hes 1 gene in Notch signaling pathway.
9.Osthole suppresses amyloid precursor protein expression by up-regulating miRNA-101a-3p in Alzheimer's disease cell model.
Ying LIN ; Yingjia YAO ; Xicai LIANG ; Yue SHI ; Liang KONG ; Honghe XIAO ; Yutong WU ; Yingnan NI ; Jingxian YANG
Journal of Zhejiang University. Medical sciences 2018;47(5):473-479
OBJECTIVE:
To investigate the effect of osthole on the expression of amyloid precursor protein (APP) in Alzheimer's disease (AD) cell model and its mechanism.
METHODS:
The SH-SY5Y cell with over expression of APP was established by transfection by liposome 2000. The cells were treated with different concentrations of osthole, and the cell viability was determined by MTT and lactate dehydrogenase (LDH) assay. The differentially expressed miRNAs with and without osthole treatment were detected by miRNA array, and the target genes binding to the differentially expressed miRNAs were identified and verified by databases and Cytoscape. After the inhibitor of the differentially expressed miRNA was transduced into cells, the changes of APP and amyloid β (Aβ) protein were determined by immunofluorescence cytochemistry, and the mRNA expression of APP was determined by RT-PCR.
RESULTS:
The AD cell model with over expression of APP was established successfully. The results of MTT and LDH assay showed that osthole had a protective effect on cells and alleviated cell damage. miR-101a-3p was identified as the differentially expressed miRNA, which was binding to the 3'-UTR of APP. Compared with APP group, the expression of APP and Aβ protein and APP mRNA increased in the miR-101a-3p inhibitor group (all <0.01), while the expression of APP and Aβ protein and APP mRNA decreased in the cells with osthole treatment (all <0.01).
CONCLUSIONS
Osthole inhibits the expression of APP by up-regulating miR-101a-3p in AD cell model.
Alzheimer Disease
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Amyloid beta-Peptides
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Amyloid beta-Protein Precursor
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genetics
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Cell Line
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Coumarins
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pharmacology
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Gene Expression Regulation
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drug effects
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genetics
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Humans
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MicroRNAs
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genetics
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metabolism
10.Inhibitory effects of simeprevir on Staphylococcusepidermidis and itsbiofilm in vitro.
Yingjia LI ; Chaoni CAI ; Zixin LIU ; Xichang TANG ; Lin QU ; Yuan WU ; Pingyun WU ; Yao DUAN ; Pengfei SHE
Journal of Central South University(Medical Sciences) 2023;48(6):868-876
OBJECTIVES:
Staphylococcus epidermidis (S. epidermidis) is a Gram-positive opportunistic pathogen that often causes hospital infections. With the abuse of antibiotics, the resistance of S. epidermidis gradually increases, and drug repurposing has become a research hotspot in the treating of refractory drug-resistant bacterial infections. This study aims to study the antimicrobial and antibiofilm effects of simeprevir, an antiviral hepatitis drug, on S. epidermidis in vitro.
METHODS:
The micro-dilution assay was used to determine the minimal inhibitory concentration (MIC) and minimal bactericidal concentration (MBC) of simeprevir against S. epidermidis. Crystal violet staining assay was used to detect the biofilm inhibitory effect of simeprevir. The antimicrobial activity of simeprevir against S. epidermidis and its biofilm were explored by SYTO9/PI fluorescent staining. The combined effect between simeprevir and gentamycin was assessed by checkerboard assay and was confirmed by time-inhibition assay.
RESULTS:
Simeprevir showed significant antimicrobial effects against S. epidermidis type strains and clinical isolates with the MIC and MBC at 2-16 μg/mL and 4-32 μg/mL, respectively. The antimicrobial effects of simeprevir were confirmed by SYTO9/PI staining. Simeprevir at MIC could significantly inhibit and break the biofilm on cover slides. Similarly, simeprevir also significantly inhibit the biofilm formation on the surface of urine catheters either in TSB [from (0.700±0.020) to (0.050±0.004)] (t=54.03, P<0.001), or horse serum [from (1.00±0.02) to (0.13±0.01)] (t=82.78, P<0.001). Synergistic antimicrobial effect was found between simeprevir and gentamycin against S. epidermidis with the fractional inhibitory concentration index of 0.5.
CONCLUSIONS
Simeprevir shows antimicrobial effect and anti-biofilm activities against S. epidermidis.
Humans
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Simeprevir
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Antiviral Agents
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Anti-Bacterial Agents/pharmacology*
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Cross Infection
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Gentamicins