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Zhuo-Sheng Lai

Publications and source records attributed to Zhuo-Sheng Lai.

14 recordsLinked to original sources

[Effects of angiotensin II and aldosterone on NF-kappaB binding activity in hepatic stellate cells].

OBJECTIVE: To investigate the signal transduction mechanism underlying the effects of angiotensin II (AngII) and aldosterone (Aldo) on nuclear factor-kappaB (NF-kappaB) DNA binding activity. METHODS: Sixty male Wistar rats were randomly divided into 4 groups: model group (Mo group), injected with CCl(4) subcutaneously twice a week to establish a model of hepatic fibrosis; perindopril group (Pe group), injected with CCl(4) subcutaneously twice a week and perfused with perindopril once a day; losartan group (Lo group), injected with CCl(4) subcutaneously twice a week and perfused with losartan once a day; and control group (Nc group), injected with olive oil subcutaneously. The rats were killed in batches respectively 4 and 6 weeks after and their livers were collected to undergo Masson staining and be observed by light microscope. Electrophoretic gel mobility shift assay (EMSA) was used to detect the NF-kappaB DNA binding activity in the liver tissues. Western blotting was used to detect the expression of IkappaBalpha in the plasma protein. Hepatic stellate cells (HSCs)-T6 were cultured and preincubated for 1 h or not with U0126 (an inhibitor of MAPK/ERK kinase MEK), irbesartan (an AT-1 receptor blocker), and N-acetylcysteine (NAC, an antioxidant), angiotensin-converting enzyme inhibitor (ACEI), or tumor necrosis factor alpha (TNFalpha) prior to exposure to AngII or Aldo for 0.5 h, 1 h, 2 h, and 4 h respectively. The binding activities of NF-kappaB DNA were observed by EMSA. The expression of IkappaBalpha protein was detected with Western blotting. Histochemistry was used to detect the expression of NF-kappaB p65. RT-PCR was used to detect the expression of TNFalpha mRNA in HSC-T6 cells. RESULTS: The binding activity to NF-kappaB of the liver tissues was the strongest in the Mo group, followed by the Pe and Lo groups and Nc group. The IkappaBalpha expressions in liver tissues 4 and 6 weeks after the beginning of experiment in the Pe and Lo groups were significantly stronger than that in the Mo group (both P < 0.05). 0.5 hour after the intervention of AngII the DNA binding activity of the HSCs began to increase and peaked 1 hour later and then gradually decreased. The increase of NF-kappaB activity induced by AngII could be inhibited by irbesartan, ACEI and NAC pretreatment and could not be inhibited by U0126 pretreatment. Combined action of AngII and TNFalpha significantly increased the NF-kappaB DNA binding activity. The IkappaBalpha expression began to decrease 0.5 hour after the intervention of AngII and reached the lowest value 2 hours after. The expression of IkappaBalpha protein was increased by ACEI (P < 0.05), irbesartan and NAC (both P < 0.01). EMSA showed that 0.5 hour after the intervention of Aldo the DNA binding activity began to be increased and peaked by 1 hour and then began to be decreased. NAC, but not U0126 partly inhibited the increased of NF-kappaB activity induced by Aldo. Combined action of Aldo and TNFalpha significantly increased the NF-kappaB activity. Aldo increased the expression of IkappaBalpha protein in the HSCs at different time points (all P < 0.05). 0.5 hour after the AngII intervention the IkappaBalpha protein expression began to decrease and reach the lowest value 1 hour later and then began to increase 2 hours later. the IkappaBalpha protein expression was significantly decreased in the NAC and NAC+ Aldo intervention groups (both P < 0.05). There was no significant difference in IkappaBalpha protein expression between the Aldo intervention group and U0126 + Aldo, TNFalpha, and Aldo + TNFalpha treatment groups (all P > 0.05). Before stimulation, NF-kappaB was expressed in the plasma of HSCs, however, after the stimulation of AngII or Aldo for 1 hour it was expressed in the nuclei, and then transferred from the nuclei to the plasma 4 hours after the stimulation. However, little nuclear transfer was observed after pretreatment of NAC followed by AngII or Aldo intervention. The TNFalpha mRNA expression was significantly increased in the AngII and Aldo treatment groups in comparison with the control group (both P < 0.05). The TNFalpha mRNA expression was significantly weaker in the irbesartan + AngII, NAC + AngII, and ACEI groups in comparison with the AngII group (all P < 0.05). CONCLUSION: Stimulation of NF-kappaB activity mediates hepatic fibrosis induced by intrahepatic renin-angiotensin-aldosterone system (RAAS).

Aldosterone↗

[Expression and significance of ADP-ribosylation factor 1 (ARF1) in colorectal laterally spreading tumor].

BACKGROUND & OBJECTIVE: Laterally spreading tumor (LST) behaves close to malignant tumor. This study was to search for the genes and functional proteins correlated to growth and development of colorectal LST (CLST), and to reveal the molecular mechanisms of CLST growth pattern and malignant transformation. METHODS: cDNA microarray was used to screen differentially expressed genes among CLST cell line and other 2 colorectal cell lines LoVo and SW480. Different mRNA and protein expressions of the genes were confirmed by reverse transcription-polymerase chain reaction (RT-PCR) and Western blot. RESULTS: Compared with LoVo and SW480 cells, 58 genes were up-regulated and 39 genes were down-regulated in CLST cells. mRNA level of ADP-ribosylation factor 1 (ARF1) was significantly higher in CLST cells than in SW480 and LoVo cells (0.93 vs. 0.74 and 0.47, P = 0.04); protein level of ARF1 was significantly higher in CLST cells than in LoVo cells. CONCLUSIONS: CLST has specific gene expression profile. ARF1 is overexpressed in CLST, and may mediate specific biological function of CLST.

ADP-Ribosylation Factor 1↗

Competitive inhibition of adherence of enterotoxigenic Escherichia coli, enteropathogenic Escherichia coli and Clostridium difficile to intestinal epithelial cell line Lovo by purified adhesin of Bifidobacterium adolescentis 1027.

AIM: To observe competitive inhibition of adherence of enterotoxigenic Escherichia coli (ETEC), enteropathogenic Escherichia coli (EPEC) and Clostridium difficile (C. difficile) to intestinal epithelial cell line Lovo by purified adhesin of Bifidobacterium adolescentis 1027 (B. ado 1027). METHODS: The binding of bacteria to intestinal epithelial cell line Lovo was counted by adhesion assay. The inhibition of adherence of ETEC, EPEC and C. difficile to intestinal epithelial cell line Lovo by purified adhesin of B. ado 1027 was evaluated quantitatively by flow cytometry. RESULTS: The purified adhesin at the concentration of 10 microg/mL, 20 microg/mL and 30 microg/mL except at 1 microg/mL and 5 microg/mL could inhibit significantly the adhesion of ETEC, EPEC and C. difficile to intestinal epithelial cell line Lovo. Moreover, we observed that a reduction in bacterial adhesion was occurred with increase in the concentration of adhesin, and MFI (Mean fluorescent intensity) was decreased with increase in the concentration of adhesin. CONCLUSION: The purified adhesin of B. ado 1027 can inhibit the adhesion of ETEC, EPEC and C. difficile to intestinal epithelial cell line Lovo in a dose-dependent manner.

Adhesins, Bacterial↗

Pleckstrin homology domain of G protein-coupled receptor kinase-2 binds to PKC and affects the activity of PKC kinase.

AIM: To study the detail mechanism of interaction between PKC and GRK(2) and the effect of GRK(2) on activity of PKC. METHODS: The cDNA of pleckstrin homology (PH) domain located in GRK(2) residue 548 to 660 was amplified by PCR with the mRNA of human GRK(2) (beta1-adrenergic receptor kinase) as template isolated from human fresh placenta, the expression vector pGEX-PH inserted with the aboved cDNA sequence for GRK(2) PH domain protein and the expression vectors for GST (glutathion-s-transferase) -GRK(2) PH domain fusion protein, BTK (Bruton's tyrosine kinase) PH domain and GST protein were constructed. The expression of GRK(2) in culture mammalian cells (6 cell lines: PC-3, MDCK, SGC7901, Jurkat cell etc.) was determined by SDS-PAGE and Co-immunoprecipitation. The binding of GRK(2) PH domain, GST-GRK(2) PH domain fusion protein and BTK PH domain to PKC in Vitro were detected by SDS-PAGE and Western blot, upon prolonged stimulation of epinephrine, the binding of GRK(2) to PKC was also detected by western blot and Co-immunoprecipitation. RESULTS: The binding of GRK(2) PH domain to PKC in Vitro was confirmed by western blot, as were the binding upon prolonged stimulation of epinephrine and the binding of BTK PH domain to PKC. In the present study, GRK(2) PH domain was associated with PKC and down-regulated PKC activity, but Btk PH domain up-regulated PKC activity as compared with GRK(2) PH domain. CONCLUSION: GRK(2) can bind with PKC and down-regulated PKC activity.

Amino Acid Sequence↗

Contribution of eIF-4E inhibition to the expression and activity of heparanase in human colon adenocarcinoma cell line: LS-174T.

AIM: Heparanase degrades heparan sulfate proteoglycans (HSPGs) and is a critical mediator of tumor metastasis and angiogenesis. Recently, it has been cloned as a single gene family and found to be a potential target for antimetastasis drugs. However, the molecular basis for the regulation of heparanase expression is still not quite clear. The aim of this study was to determine whether the expression of eukaryotic initiation factor 4E (eIF-4E) correlated with the heparanase level in tumor cells and to explore the correlation between heparanase expression and metastatic potential of LS-174T cells. METHODS: A 20-mer antisense s-oligodeoxynucleotide (asODN) targeted against the translation start site of eIF-4E mRNA was introduced into LS-174T cells by lipid-mediated DNA-transfection. eIF-4E protein and mRNA levels were detected by Western blot analysis and RT-PCR, respectively. Heparanase activity was defined as the ability to degrade high molecular weight (40-100 kDa) radiolabeled HS (heparan sulfate) substrate into low molecular weight (5-15 kDa) HS fragments that could be differentiated by gel filtration chromatography. The invasive potential of tumor cell in vitro was observed by using a Matrigel invasion assay system. RESULTS: The 20-mer asODN against eIF-4E specifically and significantly inhibited eIF-4E expression at both transcriptional and translational levels. As a result, the expression and activity of heparanase were effectively retarded and the decreased activity of heparanase resulted in the decreased invasive potential of LS-174T. CONCLUSION: eIF-4E is involved in the regulation of heparanase production in colon adenocarcinoma cell line LS-174T, and its critical function makes it a particularly interesting target for heparanase regulation. This targeting strategy in antisense chemistry may have practical applications in experimental or clinical anti-metastatic gene therapy of human colorectal carcinoma.

Adenocarcinoma↗

[A novel method for fabrication of tissue microarray].

BACKGROUND & OBJECTIVE: Tissue chip (tissue microarray, TMA) is one of the most important biochip techniques, just following the gene chip and the protein chip, which is one of the most important functional genomics and proteomics research methods in the post-genomic era. However, the present TMA technology has certain shortcomings, such as lack of advanced instruments, tedious procedure, and low sampling accuracy, etc. This new method was designed to improve the technology of TMA. METHODS: A common microscope was installed with a special holing needle, a sampling needle, and a proper box to fix paraffin blocks on the microscope carrier. With the precise mechanical control of microscope, the holing procedure on the recipient paraffin blocks and sampling procedure of core tissue biopsies were performed with the re-equipped microscope. The precise observation and localization of sampling regions were also performed using the same microscope equipped with a stereoscope. RESULTS: The new method simplified TMA procedure, and the whole process of holing, locating, and sampling was performed with the same instrument on the same platform. The single-use holing and sampling needles were first applied to maintain higher accuracy and to avoid the tissue remains and contamination among different samples. And high-qualified tissue chips of colorectal tumors were produced successfully by the new method. CONCLUSION: Using the re-equipped common microscope to fabricate tissue microarrays is a simple, reliable, cost-effective,and well-applicable technique.

Histocytological Preparation Techniques↗

[Role of eukaryotic initiation factor-4E (eIF-4E) in regulation of expression of NF-kappaB and its subsequent influence on transcription and activity of heparanase in human colon adenocarcinoma cell line].

BACKGROUND & OBJECTIVE: Recent studies have revealed that some transcription factors may be translationally regulated by eukaryotic initiation factor-4E (eIF-4E) in human cancer. These modifications in the expression levels of the key transcription factors will alter the expression of some malignancy-related gene products at the transcriptional levels. The current study was designed to investigate the effect of eIF-4E on the expression and activity of NF-kappaB and observe how the activity level of NF-kappaB contributes, as a secondary effect, to the transcription of heparanase in human colon adenocarcinoma LS-174T cells. METHODS: In order to repress the expression of eIF-4E, a 20-mer antisense oligodeoxynucleotide (ASODN) targeted against the translation start site of eIF-4E mRNA was transfected into human colorectal cancer cell line LS-174T via liposome reagent, followed by assessment of the activity and the protein expression of NF-kappaB by an electrophoretic gel mobility shift assay (EMSA) and Western blot analysis respectively. The alterations of heparanase expression were examined by RT-PCR and Western blot analysis, and heparanase activity in LS-174T cells was measured by specific enzymatic activity test using radiolabeled heparan sulfate as the substrate and gel filtration chromatography for the analysis of the degradation product. RESULTS: The 20-mer ASODN against eIF-4E specifically and significantly inhibited eIF-4E expression at both transcriptional and translational levels, and the repression of eIF-4E gene expression was correlated with decreased expression levels and activity of NF-kappaB protein. Furthermore, this down regulation of the ubiquitous transcription factor NF-kappaB led to reduced transcription of the heparanase gene, and the transfected cells also showed a considerable decrease in heparanase protein and activity. CONCLUSION: These results suggest that eIF-4E play an important role in translational regulation of NF-kappaB expression in LS-174T cells.NF-kappaB is an essential factor in the regulatory mechanisms of heparanase gene transcription, and the suppressed NF-kappaB activity in LS-174T cells may significantly reduce the transcriptional expression of heparanase that consequently leads to decreased heparanase protein expression and enzymatic activity.

Adenocarcinoma↗

[Expression and identification of phage display library for Fab fragments of colorectal cancer-related antibodies].

OBJECTIVE: To express the original human Fab antibody phage display library with positive recombined bacterium XL1-blue-Pcomb3 and identify its specific binding activity with colorectal cancer cells in vitro after screening with human colorectal cancer-related antigens. METHOD: The recombination rate of Fd fragment of the heavy chain and insertion of kappa chain of the antibodies was determined with PCR, and the original Fab library was expressed. The antigens were extracted from 3 sensitized colorectal cancer tissues previously used for construction of the original Fab library and from 13 non-sensitized colorectal cancer tissues, along with the antigens from LoVo, HT-29 and LS-174T cells cultured in vitro. The original Fab antibody library was screened with the 3 groups of mixed antigens derived in preceding procedure and 3 tertiary Fab antibody libraries were obtained, which were then mixed in equal volume for subsequent tests of binding activity with human colorectal cancer tissues and cells in vitro using enzyme-linked immunosorbent assay (ELISA) and immunohistochemical staining. Specimens of gastric and esophageal carcinomas and normal intestinal mucosa, together with liver cancer cells and gastric cancer cells were utilized as control. RESULT: The recombination rate of Fd and kappa chain were 40 % and 70 % respectively, and the rate of their simultaneous insertion into Pcomb3 vector was 28%. The capacity of library for Fab fragment genes was 2.1x10(6), and the original antibody libraries screened with the 3 groups of mixed antigens were enriched to varied degrees, which all displayed relatively specific binding activity with human colorectal cancer tissue and cells in vitro. CONCLUSION: Colorectal cancer-related antibody Fab fragments are obtained through screening phage display library, which show relatively specific binding activity with human colorectal cancer tissues and cells.

Antibodies, Neoplasm↗

Establishment of dextran sulfate sodium-induced ulcerative colitis model in mice.

OBJECTIVE: To establish a model of ulcerative colitis in mice. METHODS: The mice were given 5% dextran sulfate sodium (DSS) solution freely for 7 consecutive days after which distilled water was given in stead for another 10 d, to complete one cycle of whole treatment plan that consisted of 4 such cycles. The symptoms were observed daily. At the end of the first and the fourth cycle respectively, the mice were killed for examining the whole colon under anatomic microscopy and serial tissue sections were prepared for histological observation. RESULTS: The symptoms observed in the mice including hematochezia diarrhea and loss of the body weight were similar to those of ulcerative colitis patients. Histological examination revealed infiltration of neutrocytophilia and lymphocythemia, with loss of integrity of the colon mucosa in the gland. CONCLUSION: This mouse model of ulcerative colitis can be easily induced and readily applied in various studies of ulcerative colitis.

Animals↗

Effect of protein kinase C on multidrug resistance of multidrug-resistant colorectal cancer LoVo/Adr cells.

OBJECTIVE: To observe the effect of protein kinase C (PKC) on the multidrug resistance of multidrug-resistant colorectal cancer LoVo/Adr cells and explore the mechanism. METHODS: The changes of PKC activity in LoVo/Adr cells in response to treatment with staurosporine (SP) and phorbol-12-myristate-13-acetate (PMA) were detected by way of 32P incorporation. The effect of PKC on adriamycin uptake in LoVo/Adr cells was detected by flow cytometry. Reverse transcriptase-PCR was utilized to observe the effect of PKC on mdr1 gene expression. RESULTS: PMA evinced bi-directional regulation of PKC activity in LoVo/Adr cells, and SP significantly inhibited membrane and cytosol fraction of PKC activity. Preincubation with PMA for 30 min caused the uptake of adriamycin to decrease significantly, but when the preincubation was prolonged to 24 h, significant increase occurred in adriamycin uptake. Neither PMA nor SP, however, could affect the expression of mdr1 gene. CONCLUSION: PKC regulates multidrug resistance of the cells through mechanisms other than regulation of mRNA level of mdr1 gene.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Detection of soluble tumor necrosis factor-p55 levels in the serum and ascitic fluid of patients with hepatocellular carcinoma.

OBJECTIVE: To examine soluble tumor necrosis factor receptor-p55 (sTNFR-p55) levels in the serum and ascitic fluid and investigate the significance of this examination in assessment of the clinical status of patients with primary hepatocellular carcinoma (HCC). METHODS: Enzyme-linked immunosorbent assay (ELISA) was used to examine sTNFR-p55 levels in the serum and ascitic fluid in 25 patients with HCC and 25 with liver cirrhosis (LC). RESULTS: sTNFR-p55 levels in the serum and ascitic fluid in patients with HCC were significantly higher than those in patients with LC and controls (P=0.001). No significant difference was found between LC and the control in terms of serum sTNFR-p55 levels (P=0.19). Positive correlation was observed between sTNFR-p55 levels in the serum and in ascitic fluid of patients with HCC and LC (r=1.000, P<0.001). Logistic regression revealed that in patients with HCC, serum sTNFR-p55 levels were positively correlated with TBil and AFP in the peripheral blood (r=0.524, P=0.01 and r=0.234, P=0.03, respectively). CONCLUSIONS: Increased sTNFRs-p55 levels in the serum and ascitic fluid reflect abnormal immune status of the patients with HCC and help predict the development of tumor.

Adult↗

[Uptake and distribution of adriamycin in multidrug-resistant LoVo/Adr cells].

OBJECTIVE: To investigate adriamycin (Adr) uptake and distribution features in multidrug-resistant LoVo/Adr cells and explore the drug-resistance mechanism of the cells. METHODS: Adr uptake in LoVo/Adr cells was observed by flow cytometry and the distribution of the drug examined by fluorescence microscope. Immunohistochemical method was employed to detect the expression of P-glycoprotein (P-gp) by the cells. RESULTS: In comparison with that in LoVo/Adr cells, Adr level in LoVo cells was significantly higher, but after treatment with verapamil, the former cells showed an increased Adr level. Adr distributed mainly in the nucleus in the drug-sensitive LoVo cells, with only a small quantity in the cytoplasm, while in multidrug-resistant LoVo/Adr cells, significantly reduction of Adr quantity in the nucleus and relative increase in the cytoplasm were observed. In response to verapamil treatment, the Adr uptake in LoVo/Adr cells increased and the distribution of the drug was similar to that in sensitive cells. P-gp expression was positive in LoVo/Adr cells, while negative in LoVo cells. CONCLUSION: Abnormal Adr uptake and distribution in drug-resistant cells is related to P-gp expression which is one of the mechanisms for multidrug resistance.

ATP Binding Cassette Transporter, Subfamily B, Mem↗