BACKGROUND : c-fos and c-jun, the important immediate early genes (IEG), are regarded as the markers for the location and function of neuronal activity, as well as the third signal messengers, they couple the stres...BACKGROUND : c-fos and c-jun, the important immediate early genes (IEG), are regarded as the markers for the location and function of neuronal activity, as well as the third signal messengers, they couple the stress stimulation and the gene expression in neuron, and hippocampus is involved in the process of signal transmission after stress stimulation induced depression. OBJECTIVE: To observe the therapeutic effects of Bushen Yiqi (tonifying kidney to benefit qi), Huoxue Huayu (promoting blood circulation to dissipate blood stasis) and Ditan Kaiqiao (eliminating phlegm for resuscitation) on the expressions of c-Fos and c-Jun proteins in hippocampus and spontaneous behaviors of rats with post-stroke depression (PSD), and compare the results with those of fluoxetine, which is known to have definite effect on depression. DESIGN: A randomized controlled tna SETTING : Zhejiang College of Traditional Chinese Medicine MATERIALS : The trial was completed in Zhejiang College of Traditional Chinese Medicine from January to July in 2003. Fifty-six healthy adult Wistar male rats of clean grade, weighing (250±50) g, were randomly divided into 7 groups with 8 rats in each group: control group, model group, forced swimming group, Bushen Yiqi group; Huoxue Huayu, Ditan Kaiqiao group and fluoxetine group. The Bushen Yiqi Tang contained Renshen, Huangqi, Heshouwu, Gouqi, Shudi, etc., crude drugs 1 800 g/L. The Huoxue Huayu Tang contained Danshen, Chuanxiong, Chishao, Yujin, etc., crude drugs 3 600 g/L. The Ditan Kaiqiao Tang contained Banxia, Danxing, Changpu, Yuanzhi, etc., crude drug 1 000 g/b METHODS: ① Except the control group and forced swimming group, rats in the other groups were made into PSD models by deligating the bilateral common carotid artedes permanently. ② Rats in the control group, model group and forced swimming group were intragastncally perfused by saline (3 mL for each time); those in the Bushen Yiqi group, Huoxue Huayu, Ditan Kaiqiao group and fluoxetine group were intragastncally perfused with Bushen Yiqi Tang (18 g/kg), Huoxue Huayu Tang (9 g/kg), Ditan Kaiqiao Tang (9 g/kg) and fluoxetine (2.5 mg/kg) respectively, once a day. ③ At 55 days after model establishment, rats in the forced swimming group were managed according to the Porsolt's method. They were placed in water for 15 minutes, and then taken out and dned, no moving-time within 5 minutes was recorded at drying and 24 hours after drying. ④ Measurement of spontaneous behaviors: Except the forced swimming group, the spontaneous behaviors and activities (including horizontal and vertical movements) of rats were observed with the Open-Field method at 28, 42 and 56 days after administration in the other groups. ⑤ The expressions of c-Fos and coJun proteins in hippocampus were determined with the immunohistochemical method, the relative sectional area ratio and average objective gray value of c-Fos and c-Jun positive cells in hip- pocampus were measured with the computerized image analytical system. MAIN OUTCOME MEASURES: The spontaneous behaviors of rats, the relative sectional area ratio and average objective gray value of c-Fos and c-Jun positive cells in hippocampus were observed. RESULTS: Of the 56 rats, 1 died in the forced swimming group, and finally 55 rats were involved in the analysis of results. ① Results of spontaneous activities: At 28 days, the times of crossing movements were obviously fewer in the model group and fluoxetine group [(69.00±37.01), (98.11 ±36.68) times/3 minutes] than in the control group [(128.44±16.85) times/3 minutes, P 〈 0.01, 0.05], but those in the Bushen Yiqi group, Huoxue Quyu group and Ditan Kaiqiao group had no obvious differences as compared with those in the control group (P 〉 0.05). At 42 and 56 days, the times of crossing movements were obviously more in the Bushen Yiqi group, Huoxue Quyu group and Ditan Kaiqiao group [(106.44±31.24), (117.20±23.95), (134.80±28.18), (136.36±40.95) times/3 minutes; (117.33±35.91), (129.60 ±23.78), (131.90 ±26.81), (136.09±28.34) times/3 minutes] than in the model group [(64.00±17.51), (72.86±20.68) times/3 minutes, P 〈 0.01]. The times of rearing movements had no obvious differences among the groups for the three times (P 〉 0.05). ② The no moving-time within 5 minutes 24 hours after drying was obviously longer than that at drying in the forced swimming group. ③ The average objective gray values of c-Fos positive cells were not obviously different in the Bushen Yiqi group and Ditan Kaiqiao group from the control group (P 〉 0.05), but lower in the model group than in the control group (69.84±9.82, 75.78±5.89, P 〈 0.01), and higher in the forced swimming group than in the control group (85.97±10.99, P 〈 0.01); all higher in the fluoxetine group, Bushen Yiqi group, Huoxue Quyu group and Ditan Kaiqiao group than in the model group (81.27±10.73, 74.04±8.34, 83.29±9.89, 70.14±4.92, P 〈 0.05-0.01). The average objective gray values of c-Jun positive cells were obviously lower in the Bushen Yiqi group than in the control group (68.11 ±6.89, 79.58±5.86, P 〈 0.01), but all higher in the other groups than in the control group (84.68±7.15, 81.34 ±8.36, 97.51±10.55, 85.68±9.25, 86.19±10.98, P 〈 0.05-0.01); Those were obviously higher in the fluoxetine group, Huoxue Quyu group and Ditan Kaiqiao group than in the model group (P 〈 0.05-0.01 ), lower in the Bushen Yiqi group than in the model group (P 〈 0.05), all obviously lower in the Bushen Yiqi group, Huoxue Quyu group and Ditan Kaiqiao group than in the fluoxetine group (P 〈 0.01). The relative sectional area ratios of c-Fos and c-Jun positive cells had no obvious differences among the groups (P 〉 0.05). CONCLUSION : The methods of Bushen Yiqi, Huoxue Quyu and Ditan Kaiqiao can effectively treat PSD in rats, and the results were equivalent with those of fluoxetine, the actions of the above-mentioned drugs may correlated with their regulation to c-Fos and c-Jun expressions in hippocampus. PSD animal models can be successfully established by both permanent deligation of bilateral common carotid arteries and forced swimming, and the models induced by the former has similar basic cerebrovascular lesions as human stroke in clinic.展开更多
BACKGROUND: Ischemia/reperfusion is the main cause of hepatic damage in liver transplantation. Immediate early genes (IEGs) encode proteins can regulate expression of cellular response genes after injury, and is assoc...BACKGROUND: Ischemia/reperfusion is the main cause of hepatic damage in liver transplantation. Immediate early genes (IEGs) encode proteins can regulate expression of cellular response genes after injury, and is associated with tissue repair and cell apoptosis. The purpose of this re- search was to investigate the effects of preconditioning on expression of immediate early genes c-fos and c-jun follow- ing hepatic ischemia/reperfusion (IR) and its roles in cellu- lar regeneration and apoptosis. METHODS: Ninety-six Wistar rats were randomly divided into IR group and hepatic ischemic preconditioning (IPC) group, and each group was further divided into eight sub- groups (n =6). The model of partial liver ischemia/reper- fusion was used. The rats were subjected to 60-minute liver ischemia, preceded by 10-minute preconditioning. After 0-, 0.5-, 1-, 2-, 4-, 8-, 12-, 24-hour reperfusion, the se- rum and liver tissue in each group were collected to detect the level of serum ALT/AST, liver histopathology, expres- sion of c-fos, and c-jun mRNA. Flow cytometer was used to detect Ki67 and Sub-G1 as the quantity indicators of cell regeneration and apoptosis respectively. RESULTS: Compared with IR group, IPC group showed a significantly lower ALT/AST level in 0. 5-hour sub-group to 8-hour sub-group (P<0.05). Ki67 elevated significantly at 0.5, 1, 2 hours, but decreased significantly at 24 hours ( P < 0 . 05). Ap index decreased significantly after 1-hour reperfusion(P<0.05). Expressions of c-fos and c-jun mR- NA were low, especially c-jun at 0.5, 1 and 2 hours after reperfusion. CONCLUSION: Ischemic preconditioning can protect liver cells against ischemia/reperfusion injury, and this protec- tive effect may be related to influence transcription levels of c-fos and c-jun.展开更多
Objective: To explore cytotoxicity of Synsepalum dulcificum(S. dulcificum) Daniell(Sapotaceae) on human colon cancer(HCT-116 and HT-29), human monocytic leukemia(THP-1) and normal(HDFn) cell lines, and its effect on t...Objective: To explore cytotoxicity of Synsepalum dulcificum(S. dulcificum) Daniell(Sapotaceae) on human colon cancer(HCT-116 and HT-29), human monocytic leukemia(THP-1) and normal(HDFn) cell lines, and its effect on the expression of early apoptotic genes, c-fos and c-jun. Methods: Leaf, stem and berry of S. dulcificum were separately extracted by using 2 solvents, 10% ethanol(EtOH) and 80% methanol(MeOH). PrestoB lue~? cell viability assay and q RT-PCR assay were conducted to examine the above objectives respectively. Results: Stem MeOH, stem EtOH, and berry EtOH extracts of S. dulcificum were cytotoxic to HCT-116 and HT-29 human colon cancer cells. For HCT-116, IC_(50) values of these 3 extracts were not significantly different(P>0.05) from that of the positive control bleomycin(IC_(50) of 33.57 μg/mL), while for HT-29, IC_(50) values of these 3 extracts were significantly lower(P<0.05) than that of bleomycin(IC_(50) of 25.24 μg/mL). None of the extracts were cytotoxic to the THP-1 monocytic leukemia cells and HDFn normal human dermal fibroblasts. For both HCT-116 and HT-29, these extracts significantly up-regulated(P<0.05) the expression of c-fos and c-jun compared to the untreated negative control. Conclusions: The results of this study suggest that cytotoxicity of stem MeOH, stem EtOH, and berry EtOH extracts of S. dulcificum on HCT-116 and HT-29 colon cancer cells is due to the induced apoptosis which is caused by the up-regulation of the expression of early apoptotic genes, c-fos and c-jun.展开更多
BACKGROUND: Nogo-neutralizing antibody IN-1 accelerates axon growth and enhances recovery of spinal cord function by inhibiting growth inhibitory factors. Neurotrophin-3 (NT-3)contributes to regeneration of nerve f...BACKGROUND: Nogo-neutralizing antibody IN-1 accelerates axon growth and enhances recovery of spinal cord function by inhibiting growth inhibitory factors. Neurotrophin-3 (NT-3)contributes to regeneration of nerve fibers in the spinal cord and motor function recovery. The combination of Nogo-neutralizing antibody IN-1 and NT-3 is hypothesized to produce better outcomes and facilitate axonal regeneration by affecting c-Fos and c-Jun protein expression. OBJECTIVE: To investigate the combined effects of Nogo-neutralizing antibody IN-1 and NT-3 on c-Fos and c-Jun protein levels in the injured spinal cord. DESIGN, TIME AND SETTING: A randomized, controlled study was performed at the Laboratory of Neuroanatomy, Xiangya Medical College, Central South University and the Central Laboratory of Third Xiangya Hospital of China from June 2005 to December 2007. MATERIALS: NT-3 (Peprotech, USA) and Nogo-neutralizing antibody IN-1 (Santa Cruz Biotechnology, USA) were used in this study. METHODS: Hemisectioned spinal cord injury models were established by cutting the posterior 2/3 of rat spinal cord, which is equivalent to the T8 level in the human spine. A total of 120 rats were equally and randomly assigned to three groups: model (0.2 μL saline), IN-1 (0.2 μL IN-1), and IN-1/NT-3 (0.2 μL IN-1 + 0.2 μL NT-3). The compounds were separately infused into transection sites on the side of head. MAIN OUTCOME MEASURES: Western blot analysis was employed to measure c-Fos and c-Jun protein expression in the injured spinal cord at 15, 30 minutes, 1,2, 4, 6, 8, and 12 hours following surgery. RESULTS: Following spinal cord injury, c-Fos and c-Jun protein expression were increased and peaked at 4 6 hours. Following injection of IN-1 or the combination of IN-1 and NT-3, c-Fos protein expression was significantly reduced in the injured spinal cord (P 〈 0.05 or P 〈 0.01) (with the exception of the 15 minute time point). However, c-Jun protein expression was significantly increased (P〈 0.05 or P〈 0.01) (with the exception of the 15 and 30 minute time points). Combined application of IN-1 and NT-3 resulted in significantly altered protein expression compared to IN-1 alone. CONCLUSION: IN-1 increases c-Jun protein levels and protects the injured spinal cord by inhibiting c-Fos protein levels. Moreover, the effects of IN-1 combined with NT-3 are more significant than with IN-1 alone.展开更多
The changes of proto-oncogene c-fos and c-jun mRNA expression in angiotensin Ⅱ (AngⅡ)-induced hypertrophy and effects of sodium tanshinone ⅡA sulfonate (STS) in the primary culture of neonatal rat cardiomyocyte...The changes of proto-oncogene c-fos and c-jun mRNA expression in angiotensin Ⅱ (AngⅡ)-induced hypertrophy and effects of sodium tanshinone ⅡA sulfonate (STS) in the primary culture of neonatal rat cardiomyocytes were investigated. Twelve neonatal clean grade Wistar rats were selected. The cardiomyocytes were isolated, cultured and divided according to different treatments in the medium. The cardiomyocyte size was determined by phase contrast microscope, and the rate of protein synthesis was measured by [3H]-Leucine incorporation. The c-fos and c-jun mRNA expression in cardiomyocytes was detected by reverse transcription polymerase chain reaction (RT-PCR). It was found after cardiomyocytes were treated with AngⅡ for 30 min, the c-fos and c-jun mRNA expression in cardiomyocytes was increased significantly (P〈0.01). After treatment with AngⅡ for 24 h, the rate of protein synthesis in AngⅡ group was significantly increased as compared with control group (P〈0.01). After treatment with AngⅡ for 7 days, the size of cardiomyocytes in AngⅡ group was increased obviously as compared with control group (P〈0.05). After pretreatment with STS or Valsartan before AngⅡ treatment, both of them could inhibit the above effects of AngⅡ (P〈0.05 or P〈0.01). It was suggested that STS could ameliorate AngⅡ-induced cardiomyocyte hy- pertrophy by inhibiting c-fos and c-jun mRNA expression and reducing protein synthesis rate of cardiomyocytes.展开更多
基金a grant from Hy-giene Fund of ZhejiangProvince, No. 2000A015
文摘BACKGROUND : c-fos and c-jun, the important immediate early genes (IEG), are regarded as the markers for the location and function of neuronal activity, as well as the third signal messengers, they couple the stress stimulation and the gene expression in neuron, and hippocampus is involved in the process of signal transmission after stress stimulation induced depression. OBJECTIVE: To observe the therapeutic effects of Bushen Yiqi (tonifying kidney to benefit qi), Huoxue Huayu (promoting blood circulation to dissipate blood stasis) and Ditan Kaiqiao (eliminating phlegm for resuscitation) on the expressions of c-Fos and c-Jun proteins in hippocampus and spontaneous behaviors of rats with post-stroke depression (PSD), and compare the results with those of fluoxetine, which is known to have definite effect on depression. DESIGN: A randomized controlled tna SETTING : Zhejiang College of Traditional Chinese Medicine MATERIALS : The trial was completed in Zhejiang College of Traditional Chinese Medicine from January to July in 2003. Fifty-six healthy adult Wistar male rats of clean grade, weighing (250±50) g, were randomly divided into 7 groups with 8 rats in each group: control group, model group, forced swimming group, Bushen Yiqi group; Huoxue Huayu, Ditan Kaiqiao group and fluoxetine group. The Bushen Yiqi Tang contained Renshen, Huangqi, Heshouwu, Gouqi, Shudi, etc., crude drugs 1 800 g/L. The Huoxue Huayu Tang contained Danshen, Chuanxiong, Chishao, Yujin, etc., crude drugs 3 600 g/L. The Ditan Kaiqiao Tang contained Banxia, Danxing, Changpu, Yuanzhi, etc., crude drug 1 000 g/b METHODS: ① Except the control group and forced swimming group, rats in the other groups were made into PSD models by deligating the bilateral common carotid artedes permanently. ② Rats in the control group, model group and forced swimming group were intragastncally perfused by saline (3 mL for each time); those in the Bushen Yiqi group, Huoxue Huayu, Ditan Kaiqiao group and fluoxetine group were intragastncally perfused with Bushen Yiqi Tang (18 g/kg), Huoxue Huayu Tang (9 g/kg), Ditan Kaiqiao Tang (9 g/kg) and fluoxetine (2.5 mg/kg) respectively, once a day. ③ At 55 days after model establishment, rats in the forced swimming group were managed according to the Porsolt's method. They were placed in water for 15 minutes, and then taken out and dned, no moving-time within 5 minutes was recorded at drying and 24 hours after drying. ④ Measurement of spontaneous behaviors: Except the forced swimming group, the spontaneous behaviors and activities (including horizontal and vertical movements) of rats were observed with the Open-Field method at 28, 42 and 56 days after administration in the other groups. ⑤ The expressions of c-Fos and coJun proteins in hippocampus were determined with the immunohistochemical method, the relative sectional area ratio and average objective gray value of c-Fos and c-Jun positive cells in hip- pocampus were measured with the computerized image analytical system. MAIN OUTCOME MEASURES: The spontaneous behaviors of rats, the relative sectional area ratio and average objective gray value of c-Fos and c-Jun positive cells in hippocampus were observed. RESULTS: Of the 56 rats, 1 died in the forced swimming group, and finally 55 rats were involved in the analysis of results. ① Results of spontaneous activities: At 28 days, the times of crossing movements were obviously fewer in the model group and fluoxetine group [(69.00±37.01), (98.11 ±36.68) times/3 minutes] than in the control group [(128.44±16.85) times/3 minutes, P 〈 0.01, 0.05], but those in the Bushen Yiqi group, Huoxue Quyu group and Ditan Kaiqiao group had no obvious differences as compared with those in the control group (P 〉 0.05). At 42 and 56 days, the times of crossing movements were obviously more in the Bushen Yiqi group, Huoxue Quyu group and Ditan Kaiqiao group [(106.44±31.24), (117.20±23.95), (134.80±28.18), (136.36±40.95) times/3 minutes; (117.33±35.91), (129.60 ±23.78), (131.90 ±26.81), (136.09±28.34) times/3 minutes] than in the model group [(64.00±17.51), (72.86±20.68) times/3 minutes, P 〈 0.01]. The times of rearing movements had no obvious differences among the groups for the three times (P 〉 0.05). ② The no moving-time within 5 minutes 24 hours after drying was obviously longer than that at drying in the forced swimming group. ③ The average objective gray values of c-Fos positive cells were not obviously different in the Bushen Yiqi group and Ditan Kaiqiao group from the control group (P 〉 0.05), but lower in the model group than in the control group (69.84±9.82, 75.78±5.89, P 〈 0.01), and higher in the forced swimming group than in the control group (85.97±10.99, P 〈 0.01); all higher in the fluoxetine group, Bushen Yiqi group, Huoxue Quyu group and Ditan Kaiqiao group than in the model group (81.27±10.73, 74.04±8.34, 83.29±9.89, 70.14±4.92, P 〈 0.05-0.01). The average objective gray values of c-Jun positive cells were obviously lower in the Bushen Yiqi group than in the control group (68.11 ±6.89, 79.58±5.86, P 〈 0.01), but all higher in the other groups than in the control group (84.68±7.15, 81.34 ±8.36, 97.51±10.55, 85.68±9.25, 86.19±10.98, P 〈 0.05-0.01); Those were obviously higher in the fluoxetine group, Huoxue Quyu group and Ditan Kaiqiao group than in the model group (P 〈 0.05-0.01 ), lower in the Bushen Yiqi group than in the model group (P 〈 0.05), all obviously lower in the Bushen Yiqi group, Huoxue Quyu group and Ditan Kaiqiao group than in the fluoxetine group (P 〈 0.01). The relative sectional area ratios of c-Fos and c-Jun positive cells had no obvious differences among the groups (P 〉 0.05). CONCLUSION : The methods of Bushen Yiqi, Huoxue Quyu and Ditan Kaiqiao can effectively treat PSD in rats, and the results were equivalent with those of fluoxetine, the actions of the above-mentioned drugs may correlated with their regulation to c-Fos and c-Jun expressions in hippocampus. PSD animal models can be successfully established by both permanent deligation of bilateral common carotid arteries and forced swimming, and the models induced by the former has similar basic cerebrovascular lesions as human stroke in clinic.
文摘BACKGROUND: Ischemia/reperfusion is the main cause of hepatic damage in liver transplantation. Immediate early genes (IEGs) encode proteins can regulate expression of cellular response genes after injury, and is associated with tissue repair and cell apoptosis. The purpose of this re- search was to investigate the effects of preconditioning on expression of immediate early genes c-fos and c-jun follow- ing hepatic ischemia/reperfusion (IR) and its roles in cellu- lar regeneration and apoptosis. METHODS: Ninety-six Wistar rats were randomly divided into IR group and hepatic ischemic preconditioning (IPC) group, and each group was further divided into eight sub- groups (n =6). The model of partial liver ischemia/reper- fusion was used. The rats were subjected to 60-minute liver ischemia, preceded by 10-minute preconditioning. After 0-, 0.5-, 1-, 2-, 4-, 8-, 12-, 24-hour reperfusion, the se- rum and liver tissue in each group were collected to detect the level of serum ALT/AST, liver histopathology, expres- sion of c-fos, and c-jun mRNA. Flow cytometer was used to detect Ki67 and Sub-G1 as the quantity indicators of cell regeneration and apoptosis respectively. RESULTS: Compared with IR group, IPC group showed a significantly lower ALT/AST level in 0. 5-hour sub-group to 8-hour sub-group (P<0.05). Ki67 elevated significantly at 0.5, 1, 2 hours, but decreased significantly at 24 hours ( P < 0 . 05). Ap index decreased significantly after 1-hour reperfusion(P<0.05). Expressions of c-fos and c-jun mR- NA were low, especially c-jun at 0.5, 1 and 2 hours after reperfusion. CONCLUSION: Ischemic preconditioning can protect liver cells against ischemia/reperfusion injury, and this protec- tive effect may be related to influence transcription levels of c-fos and c-jun.
文摘Objective: To explore cytotoxicity of Synsepalum dulcificum(S. dulcificum) Daniell(Sapotaceae) on human colon cancer(HCT-116 and HT-29), human monocytic leukemia(THP-1) and normal(HDFn) cell lines, and its effect on the expression of early apoptotic genes, c-fos and c-jun. Methods: Leaf, stem and berry of S. dulcificum were separately extracted by using 2 solvents, 10% ethanol(EtOH) and 80% methanol(MeOH). PrestoB lue~? cell viability assay and q RT-PCR assay were conducted to examine the above objectives respectively. Results: Stem MeOH, stem EtOH, and berry EtOH extracts of S. dulcificum were cytotoxic to HCT-116 and HT-29 human colon cancer cells. For HCT-116, IC_(50) values of these 3 extracts were not significantly different(P>0.05) from that of the positive control bleomycin(IC_(50) of 33.57 μg/mL), while for HT-29, IC_(50) values of these 3 extracts were significantly lower(P<0.05) than that of bleomycin(IC_(50) of 25.24 μg/mL). None of the extracts were cytotoxic to the THP-1 monocytic leukemia cells and HDFn normal human dermal fibroblasts. For both HCT-116 and HT-29, these extracts significantly up-regulated(P<0.05) the expression of c-fos and c-jun compared to the untreated negative control. Conclusions: The results of this study suggest that cytotoxicity of stem MeOH, stem EtOH, and berry EtOH extracts of S. dulcificum on HCT-116 and HT-29 colon cancer cells is due to the induced apoptosis which is caused by the up-regulation of the expression of early apoptotic genes, c-fos and c-jun.
基金a Grant from Department of Health of Hunan Province of China,No.B2005-076
文摘BACKGROUND: Nogo-neutralizing antibody IN-1 accelerates axon growth and enhances recovery of spinal cord function by inhibiting growth inhibitory factors. Neurotrophin-3 (NT-3)contributes to regeneration of nerve fibers in the spinal cord and motor function recovery. The combination of Nogo-neutralizing antibody IN-1 and NT-3 is hypothesized to produce better outcomes and facilitate axonal regeneration by affecting c-Fos and c-Jun protein expression. OBJECTIVE: To investigate the combined effects of Nogo-neutralizing antibody IN-1 and NT-3 on c-Fos and c-Jun protein levels in the injured spinal cord. DESIGN, TIME AND SETTING: A randomized, controlled study was performed at the Laboratory of Neuroanatomy, Xiangya Medical College, Central South University and the Central Laboratory of Third Xiangya Hospital of China from June 2005 to December 2007. MATERIALS: NT-3 (Peprotech, USA) and Nogo-neutralizing antibody IN-1 (Santa Cruz Biotechnology, USA) were used in this study. METHODS: Hemisectioned spinal cord injury models were established by cutting the posterior 2/3 of rat spinal cord, which is equivalent to the T8 level in the human spine. A total of 120 rats were equally and randomly assigned to three groups: model (0.2 μL saline), IN-1 (0.2 μL IN-1), and IN-1/NT-3 (0.2 μL IN-1 + 0.2 μL NT-3). The compounds were separately infused into transection sites on the side of head. MAIN OUTCOME MEASURES: Western blot analysis was employed to measure c-Fos and c-Jun protein expression in the injured spinal cord at 15, 30 minutes, 1,2, 4, 6, 8, and 12 hours following surgery. RESULTS: Following spinal cord injury, c-Fos and c-Jun protein expression were increased and peaked at 4 6 hours. Following injection of IN-1 or the combination of IN-1 and NT-3, c-Fos protein expression was significantly reduced in the injured spinal cord (P 〈 0.05 or P 〈 0.01) (with the exception of the 15 minute time point). However, c-Jun protein expression was significantly increased (P〈 0.05 or P〈 0.01) (with the exception of the 15 and 30 minute time points). Combined application of IN-1 and NT-3 resulted in significantly altered protein expression compared to IN-1 alone. CONCLUSION: IN-1 increases c-Jun protein levels and protects the injured spinal cord by inhibiting c-Fos protein levels. Moreover, the effects of IN-1 combined with NT-3 are more significant than with IN-1 alone.
基金a grant from National Natural Sciences Foundation of China (No. 30500657)
文摘The changes of proto-oncogene c-fos and c-jun mRNA expression in angiotensin Ⅱ (AngⅡ)-induced hypertrophy and effects of sodium tanshinone ⅡA sulfonate (STS) in the primary culture of neonatal rat cardiomyocytes were investigated. Twelve neonatal clean grade Wistar rats were selected. The cardiomyocytes were isolated, cultured and divided according to different treatments in the medium. The cardiomyocyte size was determined by phase contrast microscope, and the rate of protein synthesis was measured by [3H]-Leucine incorporation. The c-fos and c-jun mRNA expression in cardiomyocytes was detected by reverse transcription polymerase chain reaction (RT-PCR). It was found after cardiomyocytes were treated with AngⅡ for 30 min, the c-fos and c-jun mRNA expression in cardiomyocytes was increased significantly (P〈0.01). After treatment with AngⅡ for 24 h, the rate of protein synthesis in AngⅡ group was significantly increased as compared with control group (P〈0.01). After treatment with AngⅡ for 7 days, the size of cardiomyocytes in AngⅡ group was increased obviously as compared with control group (P〈0.05). After pretreatment with STS or Valsartan before AngⅡ treatment, both of them could inhibit the above effects of AngⅡ (P〈0.05 or P〈0.01). It was suggested that STS could ameliorate AngⅡ-induced cardiomyocyte hy- pertrophy by inhibiting c-fos and c-jun mRNA expression and reducing protein synthesis rate of cardiomyocytes.