Objective To explore the expression of tumor necrosis factor (TNF) mRNA, TNF and TNFR in the gallbladder mucosa which developed from hyperplasia, dysplasia to carcinoma, and to further discuss the relationship between TNF and pathogenesis of gallbladder carcinoma. Methods In situ hybridization and immunohistochemistry were used to determine TNF mRNA, TNF protein and TNFR protein expression in hyperplasia, dysplasia and carcinoma of gallbladder. Results ①No one of 20 cases of gallbladder hyperplasia was found to express TNF mRNA, while 4 of 20 (20%) cases of dysplasia and 18 of 20 (90%) cases of carcinoma were found to express TNF mRNA (P<0.05). ②For the expression of TNF mRNA in mononuclear cells (MNC), positive staining was found in 15% of gallbladder hyperplasia, 85% of dysplasia and 90% of carcinoma, respectively (P<0.05). The cell numbers of positive staining MNC were 4.85±1.50, 6.00±2.71 and 9.33±3.07, respectively (P<0.05). ③In gallbladder carcinoma, the cell number of carcinoma and MNC with positive TNF mRNA expression was correlated with clinical stage (P<0.05). The higher the clinical stage, the more the positive staining cell numbers. The positive staining cell numbers of carcinoma in stage Ⅰ-Ⅲ and Ⅳ-Ⅴ were 9.13±4.39 and 14.80±4.02, respectively (P<0.01), and the positive staining cell numbers of MNC were 7.13±2.53 and 11.10±2.23, respectively (P<0.05). ④The cell numbers of carcinoma and MNC with TNF mRNA expression increased with tumor size. In tumors with diameter over 2 cm and less than 2 cm, the positive staining cell numbers of carcinoma were 14.00±4.20 and 8.83±4.96, respectively (P<0.05), and that of MNC were 10.50±2.54 and 7.00±2.83, respectively (P<0.05). ⑤The region of TNF protein expression was similar to that of TNF mRNA, but TNF protein expression was more frequent and wider than that of TNF mRNA. ⑥The tumor necrosis factor receptor was expressed in tumoral vascular endothelial cells and MNC in all cases of carcinoma, but was negatively stained in mucosa epithelial cells and tumor cells of all cases. ⑦There was positive linear correlation in TNF mRNA between tumor cell and MNC (r=0.687, P<0.01), same as that in TNF protein expression (r=0.742, P<0.01); and there was positive linear correlation in tumor cell between TNF mRNA and TNF protein expression (r=0.847, P<0.01), same as that in MNC (r=0.643, P<0.01). Conclusion The TNF mRNA and TNF protein expression are increasing during the development of gallbladder mucosa epithelial from hyperplasia, dysplasia to carcinoma, and increasing with tumor stage. It suggests that TNF may contribute to carcinogenesis of gallbladder carcinoma induced by gallstone, and related to the progression of gallbladder carcinoma.
Objective To observe the expression of proinflammatory factors messenger RNA(mRNA) in periretinal membrane of proliferative vitreoretinopathy. Methods Fourteen specimens of periretinal membrane were collected during vitrectomy, and they were made into paraffin sections.The presence of mRNA coding for IL-1,IL-6,IL-8 and TNF alpha was observed by in situ hybridization(ISH) with biotin labeled oligonuclotide probes respectively.The eyeball after corneal grafting was made as normal control. Results No expression of proinflammatory factors mRNA was found in normal human retina.Positive staining was present in 5 specimens.In these specimens, IL-1βmRNA was found in 3 specimens and TNFαmRNA was found in 3 specimens,there is 1 specimen expressed IL-8 mRNA and 3 specimens expressed IL-6 mRNA.In these positive specimens, one contained cells expressing mRNA for IL-1βbeta and IL-6, and one exhibited cells expressing mRNA for IL-1β、IL-8 and TNFα,two membranes possessed positive cells for IL-6 and TNFαmRNA, one membrane contained IL-1βmRNA positive cells only. Conclusion These findings suggest that these cytokines may be locally produced by cells infiltrating epiretinal membranes. The expression of IL-1β, IL-6, IL-8 and TNFαmRNA within retinal membranes provides further evidence of a pathogenic role of these cytokines in proliferative vitreoretinopathy. (Chin J Ocul Fundus Dis, 2002, 18: 286-288)
ObjectiveTo observe the expression of connective tissue growth factor (CTGF) in injured model of retinal pigment epithelial (RPE) cells and the promoting effect of CTGF on migration of RPE cells.MethodsCultured monolayer-confluent human RPE cells were scraped with a trephine and a cotton stick, and set up the injured model of RPE cells with round scraped area. Immunohistochemistry and in situ hybridization(ISH) were used to detect the expression of CTGF protein and mRNA in injured RPE cells at distinct time points after injury. The number of RPE cells migrated to injured area was measured and the effect of CTGF on migration of RPE cells and the effect of dexamethasone (DEX) on the promoting process of CTGF were observed.ResultsThe results of immunohstochemistry and ISH indicated the weak positive expression of CTGF in RPE cells at the edge of scrape 6 hours after injury, and the positive expression increased gradually as time goes by after the injury. Strong positive expression of CTGF in RPE cells at the edge of scrape was found 24 and 48 hours after injury. Rebuilt human CTGF stimulated migration of RPE cells in a dose-depended manner, and DEX significantly inhabited the migration.ConclusionCTGF involves in the procedure of repair of injury of RPE cells, which may play an important role in the pathogenesis of intraocular proliferative diseases such as proliferative vitreoretinaopathy.(Chin J Ocul Fundus Dis, 2005,21:306-309)
Objective To research the gene expression of transforming growth factor β1 (TGF-β1) in zone Ⅱ flexor tendon wound healing of rabbit. Methods Sixty New Zealand white rabbits forepaws(left side) underwent complete transection and the middle digit flexor digitorum profundus tendon in zone Ⅱ were repairedby Kessler methods as the experimental group. The normal right forepaws served as the control group. The tendons and tendon sheaths were harvested at 1, 7, 14, 21, 28and 56 days after repair(n=10). The expression patterns ofTGF-β1 wereanalyzed by in situ hybridization and immunohistochemistry staining methods. Results The in situ hybridization examination revealed thatTGF-β1 mRNA expression upregulated at 1 day, reached the peak levels at 1421 days and remained high levels up to 56 days in the experimental group. The expression ofTGF-β1 mRNA in control group was lowerthan that in the experimental group, showing statistically significant difference (Plt;0.05). The results of immunohistochemical staining was similar to that of in situ hybridization. Conclusion The normal tendon and tendon sheath cells are capable ofTGF-β1 production. The cytokine is activated in tendon wound condition. The upregulation of this cytokine in both tendon and tendon sheath cells are coincidence with both extrinsic and intrinsic mechanisms for tendonrepair.
Objective To investigate the relationships between circulating tumor cells (CTCs), circulating tumor endothelial cells (CTECs) and treatment methods in patients with nasopharyngeal carcinoma (NPC) at different stages of treatment. Methods The data of NPC patients at different treatment periods in West China Hospital of Sichuan University from March 2016 to November 2019 were retrospectively collected. The patients received CTCs test and part of those patients received CTECs test, by subtraction enrichment-immunostaining-fluorescence in situ hybridization. The relationships of CTCs and CTECs with radiotherapy and chemotherapy, and the correlations between CTCs and CTECs in NPC patients were analyzed. Results A total of 191 patients were included. Among them, there were 66 cases before initial treatment, 38 cases after induction chemotherapy, and 87 cases after concurrent chemoradiotherapy. A total of 127 patients received CTECs test, including 41 cases before initial treatment, 29 cases after induction chemotherapy, and 57 cases after concurrent chemoradiotherapy. The positive rates of CTCs were 89.4%, 81.6% and 69.0% respectively in the three stages of treatment, and the difference was statistically significant only between the pre-treatment group and the post-concurrent chemoradiotherapy group (P=0.003). The number of CTCs in the post-concurrent chemoradiotherapy group was lower than that in the pre-treatment group and the post-induction chemotherapy group (P<0.001, P=0.002). The number of triploid CTCs in the post-concurrent chemoradiotherapy group was significantly different from that in the pre-treatment group and the post-induction chemotherapy group (P=0.009, P=0.013). The number of tetraploid CTCs in the post-concurrent chemoradiotherapy group was significantly different from that in the post-induction chemotherapy group (P=0.007). The number of polyploidy (pentaploid or > 5 copies of chromosome 8) CTCs in the post-concurrent chemoradiotherapy group was significantly different from that in the pre-treatment group (P<0.001). The positive rates of CTECs were 70.7%, 82.8% and 64.9% respectively in the three stages of treatment, and the difference was not statistically significant (P>0.05). The number of CTECs in the post-concurrent chemoradiotherapy group was only lower than that in the post-induction chemotherapy group (P=0.009). There was no significant difference in the number of triploid or tetraploid CTECs among the three groups (P=0.265, P=0.088). The number of polyploid CTECs was statistically different only between the post-concurrent chemoradiotherapy group and the post-induction chemotherapy group (P=0.007). Spearman correlation analysis showed that there was a significant positive correlation between CTCs and CTECs (rs=0.437, P<0.001). Conclusions Concurrent chemoradiotherapy plays a decisive role in reducing the number of CTCs in the blood of NPC patients, while induction chemotherapy does not appear to directly cause changes in the number of CTCs. In NPC patients, different types of CTCs have different responses to different treatments. There is a significant positive correlation between CTECs level and CTCs level in NPC.
ObjectiveTo study the clinicopathological features of mediastinum nodular sclerosis Hodgkin lymphoma (NSHL) in order to improve the recognition of it. MethodsThe clinical data of 3 cases of mediastinum NSHL between 2003 and 2012 were collected. Then we analyzed the carcinoma pathologic samples by pathomorphology, immunophenotypic phenotype, related gene rearrangement and situ hybridization with EBER. ResultsThe pathomorphologic results showed that broad fibrotic bands subdivided the lymphoid parenchyma into large nodules, the tumoral cells had distinct boundary with empty cytoplasm and small-to-medium-sized nucleoli, and the nodules contained inflammatory cell components. The immunophenotypic phenotype of the tumoral cells were CD15, CD30, PAX-5 and CD20 partly, but anaplastic lymphoma kinase, CD45, cytokeratin, CD79α and S-100 were not expressed. T cell receptor γ and IgH gene were no rearranged, and EBER in situ hybridization was not detected. ConclusionVarious lymphomas occur in the mediastinum and mediastinum NSHL is just one of them. Mastering its distinctive pathomorphology and immunophenotypic phenotype is highly significant for diagnosis, differential diagnosis and treatment of the disease.
Objective To investigate the influnce of L-arginine (L-Arg) and L-nitro-arginine-methyl-ester(L-NAME) to purified retinal ganglion cells(RGCs) apoptosis of rats cultured in different consistencies of L-Arg and L-NAME. Method RGCs from Sprague Dawley (SD) neonatal rats(postnatal 1~5 day) were cultured in assimilative culture solution in vitro and RGCs were purified by Thy1.1 with sheep anti rat FITC monoclonal antibody. RGCs were cultured in different consistencies of L-Arg and L-NAME: 1×10-6, 1×10-5,1×10-4, 1×10-3, 1×10-2 and 1×10-1 mol/L for 24 hours and 48 hours, respectively. The changes of bcl-2, bax and p53 mRNA in RGCs in different consistencies of L-Arg and L-NAME were demonstrated qualitatively and quantitatively by in situ hybridization, and their apoptosis were detected by terminal deoxynucleotidyl transferase mediated dUTP nick end labeling(TUNEL) method, respectively. Results After 24 hours in vitro, the purification rate of RGCs in the experiment arrived at 97 %. After 48 hours, there were a few apoptotic cells expression in the control group. Apoptotic cells expression in L-Arg≥1×10-3 mol/L and L-NAME≥1×10-1 mol/L groups increased that had a significant difference with the control group (Plt;0.05). In the group of L-Arg≥1×10-3 mol/L and L-NAME≥1×10-1 mol/L, the expression of bcl-2 mRNA in RGCs became weaker and weaker as the consistencies were increased, but the expression of bax and p53 mRNA in RGCs became higher and higher and had a significant difference with control group (Plt;0.05). Conclusion Lower concentration of L-Arg can promote the growth of purified RGCs in vitro and higher concentration of L-Arg can promote the apoptosis of RGCs. (Chin J Ocul Fundus Dis, 2002, 18: 137-139)
Objective To investigate the changes in the expression level of PDGF in the bone callus of rats with femoral fracture and brain injury to explore the effect of brain injury on the fracture heal ing and the related mechanism. Methods Sixty-four 12-week-old SD rats weighing (356 ± 25) g were randomly divided into 8 groups with 8 rats in each. The rats in groups A1, B1, C1 and D1 had a femoral fracture and a brain injury for 1, 2, 3 and 4 weeks, respectively; the rats in groups A2, B2, C2 and D2 had a mere fracture without a brain injury for 1, 2, 3 and 4 weeks, respectively. After the CR films were taken, the bone callus was obtained 1, 2, 3 and 4 weeks after operation, respectively. Then, the bone callus and its histology were examined by HE staining, the expressions and changes in the level of PDGF were examined by the immunohistochemical staining, and the level of PDGF mRNA was measured by in situ hybridization. Results The CR films showed that the callus formation in the A1-D1 groups was earl ier and greater than that in the A2-D2 groups at the same time point. The HE staining indicated that more fibroblasts and early-stage chondrocytes were found in group A1; some fibroblasts in the fracture interspace and few early-stage chondrocytes were found in group A2; some newly-formed trabecular bones were found at the end of the fracture in group B1; but no trabecular bone formation was found in group B2; woven bone formation and a few chondrocytes between trabecular bones in the fracture interspace were found in group C1; only a few trabecular bones in the fracture interspace were found in group C2;woven bones turned to lamellar bones in group D1;and more immature trabecular bones in the fracture interspace were found in group D2. The positive expression of PDGF and PDGF mRNA was b in the cytoplasms of fibroblasts, mesenchymal cells, vascular endothel ial cells, early-stage chondrocytes, osteoblasts and osteoclasts. The percentage of the positive cells for PDGF and PDGF mRNA in the callus was significantly higher in groups A1-D1 than in groups A2-D2 at the same time point (P lt; 0.05). Conclusion Brain injury can promote the fracture heal ing process, which is probably related to an increase in the expression level of PDGF after the brain injury.
Microorganism distributes in the organs of human body which connect with external environment, especially those organs in the gastrointestinal tracts, and it also plays a fundamental role in the physiopathology of the host's body. Because the microorganism is very small and has a great variety, it is difficult to reveal the significance of microorganism in the human physiopathology comprehensively and deeply. With the development of molecular biology, genomics, bioinformatics and other disciplines, the microbiome research will be more possible and easier. There are two key contents of microecology. One of these is to identify and quantify the diversity of microorganism, and the other is to reveal activity and the physiopathological function of microorganism in the host. Microbiome research methods, therefore, can be summarized as the traditional detection methods, construction of gene library, the genetic fingerprint analysis and molecular hybridization techniques and so on.
Objective It is reported that transforming growth factor β1 (TGF-β1) has the protective effects on the articular cartilage in osteoarthritis (OA). To investigate the significance of the expressions of matrix metalloproteinase 9 (MMP-9), TGF-β1 mRNA and corresponding proteins in OA. Methods The specimens of articular cartilage and synovium were collected from voluntary donators, including 60 cases of OA (experimental group) and 20 cases of traumatic amputation,cruciate l igament rupture, discoid cartilage injury, and menisci injury (normal control group). The pathological changes were observed by HE staining. MMP-9 and TGF-β1 protein expressions were detected by immunohistochemical technique, and the mRNA expressions of MMP-9 and TGF-β1 were detected through in situ hybridization technique; and their correlation was analysed. Results HE staining showed: shrinkage, necrosis, and irregular arrange of the articular chondrocytes, extracellular matrix fracture, hypertrophy and hyperplasia synovium, infiltration of lymphoid and mononuclear cells and prol iferation of many small blood vessels in the experimental group; regular arrangement of the articular chondrocytes, the homogeneously staining matrix, and synovial tissue without chronic inflammation and significant prol iferation in the normal control group. The mRNA and protein expressions of MMP-9 and TGF-β1 were positive in 2 groups. The positive-stained cells included chondrocytes, synovial l ining cells, and vascular endothel ial cells, fibroblasts, and inflammatory infiltrated cells in subsynovial layer. The expressions of mRNA and corresponding protein of MMP-9 and TGF-β1 in the experimental group were significantly higher than those in the normal control group (P lt; 0.01). There was a positive correlation between MMP-9 mRNA and protein expression (r=0.924, P=0.000), and between TGF-β1 mRNA and protein expression (r=0.941, P=0.000) in the experimental group. There was a negative correlation between the expression of MMP-9 protein and TGF-β1 protein (r= — 0.762, P=0.000), and between the expression of MMP-9 mRNA and TGF-β1 mRNA (r= — 0.681, P=0.000) in the experimental group. Conclusion The higher expression of TGF-β1 can protect articular cartilage by down-regulating the expression of MMP-9 of chondrocytes and synoviocytes in OA, which may delay the biological behavior of OA such as occurrence and progress, etc.