【Abstract】ObjectiveTo explore the effect of hepatocyte growth factor/scatter factor (HGF/SF) on apoptosis of colorectal cancer cells induced with curcumin. MethodsMTT assay was used to evaluate the cytotoxicity of curcumin to colorectal cancer cells. Flow cytometry was used to detect the antiapoptosis effect of HGF. ResultsFlow cytometry showed only 64 μg/ml curcumin could play the proliferationinhibiting role in Caco-2 cells leading to their apoptosis; at the same time, different concentrations of HGF could antagonize this inhibitory effect resulting in the decrease of apoptosis, but HGF worked without a concentration-dependent manner. The study on MAPK pathway showed that the protective effect of HGF on the apoptosis of Caco-2 cells was not influenced by inhibiting p42/p44 MAPK and p38 MAPK pathway. ConclusionHGF/SF antagonizes the apoptosis of Caco-2 cells induced with curcumin, but MAPK signaling pathway might not participate in this process.
Objective To investigate the effect of hepatocyte growth factor (HGF) on the barrier function of retinal peigment epithelium (RPE) and to detect the pathological mechanism of retinal detachment (RD) induced by over expression of HGF in RPE. Methods Sub-retina injection of E1/E3deleted adenoviral vectors encoding HGF (Ad CMV.HGF) and green fluorescent protein (Ad CMV.GFP) in adult pigmented rabbits [5times;104 plaque-forming units (pfu)/eye] to set up the model of retinal detachment. The ocular fundus and pathological changes were observed 3, 7, 14, and 28 days after injection. The expression level of HGF in retina and vitreous body was detected by immunohistochemistry and enzyme linked immunosorbent assay (ELISA). Results In the control eyes injected with AdCMV.GFP, expression of GFP only detected in RPE monolayer. The eyes injected with AdCMV.HGF had b HGF immune positive action in RPE cells at the injection site. The expression level of HGF in vitreous body reached the peak 7 days after injection and decreased to the basic level 28 days after injection. Chronic RD and chronic choroidal inflammation were found in the eyes injected with AdCMV.HGF within the time frame of HGF expression. Proliferative RPE cells were found in subretinal space in the region of RD, and multilayered cellular membranes developed in some eyes. Conclusion Over expression of HGF in RPE may induce chronic serous RD with subretinal proliferation of RPE, which suggests that HGF should be further studied as a target for therapeutic intervention in RD. (Chin J Ocul Fundus Dis, 2007, 23: 193-197)
Objective To study the effects of hepatocyte growth factor (HGF) and receptor c-met on the development of primary breast carcinoma, and the relationship between it and prognosis. Methods The study of HGF and c-met related to breast carcinoma was reviewed by history document and experimental study in recent years. Results HGF is a growth factor which has mitogenic, migrating, invasive and angiogenic activities in breast carcinoma cells. The carcinogenic mechanism of breast carcinoma was more clear with the discovery of the relationship between HGF and its receptor c-met. Conclusion The HGF/c-met plays an important role in the generation and progress of breast carcinoma. Studying the effects of HGF/cmet on breast carcinoma is significant in guiding clinical treatment.
Abstract: Objective To investigate the effects of hepatocyte growth factor(HGF)gene transfected bone marrow mesenchymal stem cells (MSCs)transplantation in pigs with chronic ischemic heart disease. Methods MSCs were isolated from pig bone marrow by density gradient centrifugation and adherent cell culture, purified, and determined by cellsurface antigens(CD34, CD44, CD71, Ⅷ factor and desmin). MSCs were transfected by adenovirus expressing hepatocyte growth factor(AdHGF), and the influence of HGF on the biological characteristics of MSCs was tested. The pig model of chronic myocardial ischemia was established by placing Ameroid ring inside the left circumflex coronary artery via leftthoracotomy. A total of 40 pigs were randomly divided into 5 groups (n=8) and were injected 5×106/ml MSCs+ 4×109 pfu 200 μl AdHGF (MSCs+ AdHGF group), 4×109 pfu 200 μl AdHGF (AdHGF group), 5×106/ml MSCs 200 μl(MSCs group),4×109 pfu 200 μl AdNull (AdNull group)and 1 ml saline(control group) into the ischemic myocardiumrespectively. Echocardiogram, digital subtraction angiography (DSA) of coronary artery, single photon emission computed tomography(SPECT) myocardial perfusion imaging and cardiomyocyte apoptosis were examined after 4 weeks. Results Positive CD44 and CD71 and negative CD34, Ⅷ factorand desmin were detected in MSCs by flow cytometer. HGF had a b influence on stimulating the proliferation and differentiation of MSCs. Echocardiogram examination showed that left ventricular end-diastolic volume(LVEDV),left ventricular ejection fraction(LVEF),fractional shortening(FS)of MSCs+ AdHGF group were significantly increased after treatment (P< 0.05). DSA detection showed that ischemic neovascularization of MSCs+ AdHGF group was significantly higher than those of AdHGF group and MSCs group (P< 0.05). SPECT showed that the left ventricular myocardium of MSCs+ AdHGF group appeared thickened,myocardial perfusion was significantly improved and the myocardial motion was significantly increased (P< 0.05). Vascular density of MSCs+ AdHGF group was significantly higher than those of AdHGF group and MSCs group by HE stain of myocardium [(39.4±1.2)/ HPF vs. (36.5±1.4)/ HPF and(34.5±1.7)/ HPF,P< 0.05]. Cardiomyocyte apoptosis rate of MSCs+ AdHGF group was significantly lower than those of AdHGF group and MSCs group by TUNEL stain (P< 0.05). Conclusion Combination transplantation can promote the angiogenesis of chronic ischemic myocardium, inhibit cardiomyocyte apoptosis and improve heart function in pigs with chronic ischemic heart disease. The effect of HGF gene transfected MSCs transplantation is better than that of MSCs or HGF transplantation alone.
Objective To investigate the possible association between serum level of hepatocyte growth factor( HGF) and obstructive sleep apnea hypopnea syndrome( OSAHS) with hypertension.Methods 58 cases of OSAHS without hypertension, 61 cases of OSAHS with hypertension, and 50 normal controls were enrolled. Serum level of HGF was measured by enzyme-linked immunosorbent assay( ELISA) , and the relationships between the serum HGF level and blood pressure( BP) , apnea hypopnea index( AHI) , lowest SaO2 ( LSaO2 ) were analyzed by linear correlation analysis. Results The serum HGF level ( pg/mL) was 761. 46 ±60. 18, 970. 87 ±60. 94, and 487. 34 ±45. 52 in the OSAHS patients without hypertention, OSAHS patients with hypertention, and normal subjects, respectively. Which was significantly higher in the OSAHSpatients than the normal subjects, and highest in the OSAHS patients with hypertension( P lt; 0. 05) . The serum HGF level was positively related to AHI( r = 0. 452, P lt;0. 05) and negatively related to LSaO2 ( r =- 0. 328, P lt;0. 05) in the OSAHS patients without hypertention, positively related to AHI, SBP, DBP( r =0. 670, P lt;0. 01; r =0. 535, P lt;0. 05; r =0. 424, P lt;0. 05) and negatively related to LSaO2 ( r = - 0. 572,P lt;0. 01) in the OSAHS patients with hypertension. Conclusions SerumHGF level increases significantly in patients with OSAHS especialy in OSAHS patients with hypertension, and positively correlates with the severity of OSAHS and hypertension.
ObjectiveTo study the protective effect of hepatocyte growth factor(HGF) on grafted mucous membrane of transplanted small bowel.MethodsTotal small bowel transplantation was made in inbred Wistar (RT1k) rats heterotopically,either total parenteral nutrition (control group,n=10) or hepatocyte growth factor supplemented TPN (HGF group,n=10) was given to the recipients from the 2nd day to the 10th day postoperatively. Morphological parameters of the transplanted intestinal mucosa, such as mucosal villous height, villous width, crypt depth, mucosal thickness and villous surface area were observed. Variation of ultrastructure of transplanted epithelial cells was observed. Composition of mucosal protein and DNA content were tested. ResultsComparison between HGF group and the control group were as follows. Mucosal villous height (298.79±22.31) μm vs (176.45±14.62) μm, P=0.001, villous width (107.46±12.34) μm vs (74.20±16.85) μm, P=0.004, crypt depth (104.56±11.17) μm vs (74.45±8.34) μm, P=0.000 5, mucosal thickness (409.53±35.83) μm vs (259.38±24.65) μm, P=0.003, and villous surface area (0.101±0.011) mm2 vs (0.041±0.005) mm2, P=0.001 were found significantly increased in HGF group compared with control group, there were no obvious difference decrease as compared to pretransplant parameters.Mucosal protein composition was higher in HGF group than that in control group (89.65±9.28) mg/g wet wt vs (53.73±11.45) mg/g wet wt, P=0.012, baseline (92.64±10.52) mg/g wet wt, nearly equal to baseline; DNA composition was also high in HGF group (0.89±0.09) mg/g wet wt vs (0.51±0.06) mg/g wet wt, P=0.008, baseline (0.91±0.09) mg/g wet wt. Nearly normal ultrastructure of the graft was maintained in HGF group, atrophied microvilli and broken mitochondrial crista were observed in control group.ConclusionHepatocyte growth factor can improve mucosal structure, preserve enterocyte ultrastructure of isograft after small bowel transplantation in rat.
Objective To evaluate the effect of hepatocyte growth factor(HGF) on intestinal permeability and bacterial translocation after small bowel transplantation in rats. Methods Twenty Wistar rats were as recptors and twenty SD rats as donors. After heterotopic intestinal grafting, cyclosporine A was administered at 6mg/kg·day intramuscularly for inhibiting rejection. The SD rats were divided into 2 groups(n=10). HGF was administered at 150 μg/kg·day (HGF group) and normal saline was administered at 150 μg/kg·day (controlgroup). Intestinal permeability and bacterial translocation to the mesenteric lymph nodes and portal vein were assessed at the 8th postoperative day. Results The lactulose and lactulose/ mannitol of control group (0.0931%±0.008 5% and 0.132± 0.021) were higher than those of normal reference value (0.015 0%±0.002 0% and 0.020±0.005)(Plt;0.05). The lactulose and lactulose/ mannitol of HGF group (0.039 6%±0.009 0% and 0.056±0.013) were also higher than those of normal reference value(Plt;0.05).The bacterial culture positive proportion of lymphaden in HGF group and control group were 10% and 60%, showing statistically significant difference(Plt;0.05). The bacterial culture positive proportion of portal vein in HGF group and control group were 10% and 20% respectively(P>0.05). Conclusion HGF can decrease intestinal permeability and bacterial translocation from the lumen of the graft to the mesenteric lymph nodes,thus improve gut barrier function, may be of help to reduce the incidence of septic complications after intestinal grafting.
Objective To investigate the effects of human recombinant hepatocyte growth factor(rh-HGF) on the expression of c-Met in intima of allograft vessels after cardiac transplantation in rats. Methods Heterotopic heart transplantation were established in abdominal cavity with eighty Wistar rats and forty SD rats. Donors’ cardiac grafts from Wistar rats were transplanted to SD rats(allograft) or Wistar rats(isograft).Sixty recipient rats were divided into three groups, control group:20 Wistar rats were injected with normal saline 1ml/kg·d intraperitoneally after transplantation; cyclosporine A (CsA) group:20 SD rats were injected with CsA 5mg/kg·d intraperitoneally on operation day; rhHGF group:20 SD rats were injected with rh-HGF 500μg/kg·d and CsA 5mg/kg·d intraperitoneally on operation day. The cardiac grafts were harvested at the 15th day and 60th day after transplantation. The crosssection of vascular tissues were used for immunohistochemistrical staining of c-Met, and investigated the expression of c-Met messenger ribonucleic acid (mRNA ) in intima of allograft vessels by reverse transcriptionpolymerase chain reaction(RT-PCR). The pathologic changes of allograft coronary vessels were observed with histopathological method. Results The allograft coronary arteries showed minimal intimal thickening, the endothelium and internal elastic lamina remained almost intact in rh-HGF group after transplantation.The expression of c-Met and c-Met mRNA in intima of allograft vessels after transplantation in rhHGF group were significantly higher than those in CsA group and control group(expression of c-Met at 60d: 1.85±0.26 vs. 0.96±0.10, t=8.491,P=0.000;1.85±0.26 vs. 0.58±0.03, t=13.725,P=0.000; expression of c-Met mRNA at 60d: 192±0.22 vs. 0.88±0.07, t=11.940,P=0.000;1.92±0.22 vs. 0.42±0.02,t=19.206,P=0.000). Conclusion rh-HGF may prevent the progression of cardiac allograft vasculopathy through upregulating the expression of c-Met to stimulate endothelial cell repair and growth.
Objective To evaluate the transfection efficiency and expression level of hepatocyte growth factor (HGF) by transfecting a recombinant adenovirus carrying HGF gene (Ad-HGF) into bone marrow mesenchymal stem cells (BMSCs) and to explore the effect of the expression supernatant on BMSCs in vitro so as to lay a foundation for the manufacture of gene medicine which expresses efficient cell factors. Methods Rat BMSCs were isolated using Percoll density gradient method and cultured according to the adherent property of BMSCs. The expression of c-Met was detected by immunohistochemical examination. BMSCs were infected with a recombinant adenovirus carrying green fluorescent protein gene (Ad-GFP) at multipl icity of infection (MOI, 0, 25, 50, 100, and 200 pfu/cell). To select an optimal MOI, the transfection efficiency and the degree of cell damage were assayed by flow cytometry and MTT, respectively, at 48 hours after transfecting. The expression of HGF in BMSCs transfected with optimal MOI Ad-HGF was measured with ELISA assay. MTT method was used to evaluate the prol iferation effect of HGF expression supernatant on BMSCs. Results Immunohistochemical staining showed that BMSCs expressed c-Met receptor for HGF. At 48 hours after transfecting with different MOI Ad-GFP (0, 25, 50, 100, and 200 pfu/cell), the transfection efficiencies were 0.34% ± 0.04%, 40.72% ± 0.81%, 61.72% ± 1.04%, 85.33% ± 0.83%, and 17.91% ± 0.63%, respectively; and the highest transfection efficiency was observed at 100 pfu/cell MOI. The cell damage was obviously observed when MOI was 200 pfu/cell. The expression of HGF in BMSCs reached the highest level after being transfected with 100 pfu/cell MOI Ad-HGF for 48 hours. The expression product could stimulate the prol iferation of BMSCs. The prol iferation of BMSCs gradually rose with the increase of HGF protein, and reached the highest level at 10% (320 pg). Conclusion BMSCs can be transfected efficiently with Ad-HGF and express HGF protein, which stimulates the prol iferation of BMSCs. It suggests that BMSCs is an ideal repair cells with gene vector.
Objective To investigate the effect of combined delivery of hepatocyte growth factor (HGF) and insulinlike growth factor-1 (IGF-1) on the development of bone mesenchymal stem cells (BMSCs) differentiation by expression of GATA-4,and to supply some evidence for clinical BMSCs transplantation therapy. Methods BMSCs were isolated from the femurs and tibias of the randomly assigned rabbits and cocultured with myocytes in a ratio of 1∶1. Myocytes were obtained from neonatal rabbits ventricles. 150 ng/ml HGF and 200 ng/ml IGF-1 were added into 4 culture bottles of 8 bottles and the other 4 bottles were not. After BMSCs were cocultured with myocytes for 1 day, 3 days, 1 week, and till 6 weeks, differentiated BMSCs were targeted and microdissected with a laser capture microdissection system, and then ribonucleic acid (RNA) was extracted and isolated. The differentiation of BMSCs in coculture was confirmed by immunohistochemistry, electron microscopy, and reverse transcriptionpolymerase chain reaction (RT-PCR). And expression of GATA-4 in BMSCs was detected by semiquantitative RT-PCR. Results Before coculturing, the BMSCs were negative for α-actinin and exhibited a nucleus with many nucleoli. After coculture with myocytes, some BMSCs became αactininpositive and showed a cardiomyocytelike ultrastructure, including sarcomeres, endoplasmic reticulum, and mitochondria. BMSCs cocultured with myocytes expressed cardiac transcription factor GATA-4. IGF-1 and HGF delivery can significantly increased expression of GATA-4 for the differentiated BMSCs as compared with cells of no delivery of HGF and IGF-1. The expression level of GATA-4 in captured BMSCs began to increase at the 1st day, reach the peak at the 2nd week and kept high expression level after the 2nd week. Conclusion BMSCs can transdifferentiate into cells with a cardiac phenotype when cocultured with myocytes. Differentiated myocytes express cardiac transcription factors GATA-4. Administration of HGF and IGF-1 promoted the development of BMSCs transdifferentiate into cardiac phenotype, which is associated with the increase in expression level of GATA-4.