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Biomedical subjects

Lixin Sun

Publications and source records attributed to Lixin Sun.

10 recordsLinked to original sources

Cloning and overexpression of ribosomal protein L39 gene from deltamethrin-resistant Culex pipiens pallens.

The complete sequence of ribosomal protein L39 has been cloned from deltamethrin-resistant strain of Culex pipiens pallens (DR1 strain). Quantitative RT-PCR analysis indicated that the RPL39 transcription level was 23.4 times higher in DR1 strain than in susceptible strain at 4th instar larvae. The RPL39 expression was also found to be consistently higher throughout the life cycle of DR1 strain. A protein of predicted size 17 kDa has been detected by Western blotting in RPL39-transfected mosquito C6/36 cells. These RPL39-transfected cells also showed enhanced deltamethrin resistance compared to plasmid vector-transfected cells as determined by methyl tritiated thymidine ((3)H-TdR) incorporation. These results indicate that RPL39 is expressed at higher levels in DR1 strain, and may confer some insecticide resistance in Cx. pipiens pallens.

Actins↗

Neuronal and glioma-derived stem cell factor induces angiogenesis within the brain.

Stem cell factor (SCF) is overexpressed by neurons following brain injury as well as by glioma cells; however, its role in gliomagenesis remains unclear. Here, we demonstrate that SCF directly activates brain microvascular endothelial cells (ECs) in vitro and induces a potent angiogenic response in vivo. Primary human gliomas express SCF in a grade-dependent manner and induce normal neurons to express SCF in brain regions infiltrated by glioma cells, areas that colocalize with prominent angiogenesis. Downregulation of SCF inhibits tumor-mediated angiogenesis and glioma growth in vivo, whereas overexpression of SCF is associated with shorter survival in patients with malignant gliomas. Thus, the SCF/c-Kit pathway plays an important role in tumor- and normal host cell-induced angiogenesis within the brain.

Animals↗

Harvest active recombinant Rho kinase from Escherichia coli.

Rho kinase (ROCK) inhibitors are effective candidates for treating nerve or myocardial injury, erectile dysfunction, and other cardiovascular diseases. Purified ROCK is a foundation for ROCK inhibitors screening and for its function research in vitro. This article established an easy way to harvest active recombinant ROCK catalytic domain (ROCK-CD) of rat in Escherichia coli (E. coli). The cDNA of ROCK-CD was amplified by RT-PCR, and subcloned to pET28a(+) vector to express the protein in E. coli BL(21) as inclusion bodies. The protein was purified by HiTrap chelating column, and its refolding was achieved by gradient dilution from guanidine hydrochloride solution, and desalinated by ultrafiltration. The result of DNA sequencing and protein sequence analysis indicate there were three amino acid residua of mutation, but the activity was not significantly affected. The activity of the recombinant protein was confirmed by ROCK II activity fluorescence polarization kit. Therefore, this is an easy and rapid procedure to harvest a large quantity of activity recombinant ROCK-CD at low cost.

Amino Acid Sequence↗

Larvicidal activity of extracts of Ginkgo biloba exocarp for three different strains of Culex pipiens pallens.

Ethanolic extracts from the Ginkgo biloba L. exocarp from the Chinese ginkgo were assayed against larvae of three strains of Culex pipiens pallens Coquillett. The chemical compositions were detected using a Hewlett-Packard 6890/5973 mass spectrometric detector. The larvicidal bioassay was carried out according to the recommendations of the World Health Organization. The analysis of the essential oil of ginkgo exocarp showed that its major components are ginkgo acid (85.3%) and ginkgo phenolic (5.69%). The larvicidal bioassay showed that extracts of ginkgo exocarp have LC50 of 18.6, 12.7, and 25.0 mg/liter for deltamethrin-susceptible, deltamethrin-resistant, and field strains, respectively. The acute toxicity concentrations of the ginkgo extracts that killed 50% (LD50) of Wistar rats within 2 wk and young carp within 96 h were 4947.2 mg/kg and 557.9 mg/liter, respectively. These results are promising in creating new, effective, and affordable approaches to mosquito control.

Animals↗

Predicting mixture phase equilibria and critical behavior using the SAFT-VRX approach.

The SAFT-VRX equation of state combines the SAFT-VR equation with a crossover function that smoothly transforms the classical equation into a nonanalytical form close to the critical point. By a combinination of the accuracy of the SAFT-VR approach away from the critical region with the asymptotic scaling behavior seen at the critical point of real fluids, the SAFT-VRX equation can accurately describe the global fluid phase diagram. In previous work, we demonstrated that the SAFT-VRX equation very accurately describes the pvT and phase behavior of both nonassociating and associating pure fluids, with a minimum of fitting to experimental data. Here, we present a generalized SAFT-VRX equation of state for binary mixtures that is found to accurately predict the vapor-liquid equilibrium and pvT behavior of the systems studied. In particular, we examine binary mixtures of n-alkanes and carbon dioxide + n-alkanes. The SAFT-VRX equation accurately describes not only the gas-liquid critical locus for these systems but also the vapor-liquid equilibrium phase diagrams and thermal properties in single-phase regions.

Journal Article↗

Regulation of TGFbeta1-mediated growth inhibition and apoptosis by RUNX2 isoforms in endothelial cells.

Runx transcription factors regulate viral growth, hematopoiesis, bone formation, angiogenesis, and gastric epithelial development through specific DNA-binding motifs on target gene promoters. Vascular endothelial cells (ECs) express RUNX genes that are activated by angiogenic factors. The RUNX2 gene also activates the vascular endothelial growth factor promoter. Alternatively spliced forms of RUNX genes have been described, but their functions in angiogenesis have not been elucidated. In this study, expression of a novel alternatively spliced variant of RUNX2 (RUNX2Delta8), lacking the region encoded by exon 8, was detected in aortic tissue undergoing angiogenesis in vitro and in ECs. Expression of RUNX2 and RUNX2Delta8 increased in vascular sprouts concomitant with expression of cellular proteases and cytokines known to mediate angiogenesis. RUNX2 DNA-binding activity was expressed in proliferating but not quiescent ECs. Ectopic expression of RUNX2 in ECs increased cell sprouting, cell proliferation, DNA synthesis, and phosphorylation of phosphorylated retinoblastoma relative to control transfectants while RUNX2, but not RUNX2Delta8 transfectants, acquired resistance to growth inhibition by transforming growth factor (TGFbeta1). Furthermore, RUNX2Delta8-transfected cells were more sensitive to TGFbeta1-induced apoptosis than RUNX2 transfectants. Consistent with these data, the RUNX2 gene was a strong repressor of the promoter of the cyclin-dependent kinase inhibitor, p21(CIP1), while RUNX2Delta8 was a competitive inhibitor of RUNX2 and exhibited weak repression activity. These results support the hypothesis that ECs regulate growth and apoptosis, in part, by alternative splicing events in the RUNX2 transcription factor to affect the TGFbeta1 signaling pathway. The exon 8 domain of RUNX2 may contribute to the strong repression activity of RUNX2 for some target gene promoters.

Alternative Splicing↗

Neuronally expressed stem cell factor induces neural stem cell migration to areas of brain injury.

Neural stem/progenitor cell (NSPC) migration toward sites of damaged central nervous system (CNS) tissue may represent an adaptive response for the purpose of limiting and/or repairing damage. Little is known of the mechanisms responsible for this migratory response. We constructed a cDNA library of injured mouse forebrain using subtractive suppression hybridization (SSH) to identify genes that were selectively upregulated in the injured hemisphere. We demonstrate that stem cell factor (SCF) mRNA and protein are highly induced in neurons within the zone of injured brain. Additionally, the SCF receptor c-kit is expressed on NSPCs in vitro and in vivo. Finally, we demonstrate that recombinant SCF induces potent NSPC migration in vitro and in vivo through the activation of c-kit on NSPCs. These data suggest that the SCF/c-kit pathway is involved in the migration of NSPCs to sites of brain injury and that SCF may prove useful for inducing progenitor cell recruitment to specific areas of the CNS for cell-based therapeutic strategies.

Animals↗

Integrated assessment for aerobic biodegradability of organic substances.

In this paper, the amount of oxygen consumption, end products and activities of microorganisms are considered as the three factors which affect the biodegradability of organic substances in water. Two integrated assessment methods for biodegradability of organic substances, fuzzy clustering integrated assessment and weighted integrated assessment, have been developed. Simultaneously, the detail steps for assessing a new organic substance biodegradability with these two integrated assessment methods are proposed.

Bacteria, Aerobic↗

[Expression and hypoxic regulation of vascular endothelial growth factor and matrix metalloproteinase-9 in esophageal carcinoma].

OBJECTIVE: To investigate the the expression and hypoxic regulation of vascular endothelial growth factor(VEGF) and matrix metalloproteinase-9. METHODS: VEGF mRNA and MMP-9 mRNA were examined by reverse transcription-polymerase chain reaction (RT-PCR) in 43 esophageal carcinoma specimens including 18 para-tumorous esophageal tissues. The expression of VEGF protein and mean microvessel density (MVD) in 56 specimens were examined by immunohistochemical stain. The effect of hypoxia on VEGF and MMP-9 expression in esophageal cancer cell lines was quantitatively determined by enzyme linked immunosorbent assay (ELISA). RESULTS: The VEGF expression in the tumorous tissue, being significantly correlated with MVD in the tumor, was remarkably higher than that in the para-tumorous tissue. VEGF and MVD expression in the tumor was significantly associated with stage and metastasis of esophageal carcinoma. The MMP-9 expression in the tumorous tissue, being uncorrelated with vessel count and clinicopathologic features in esophageal carcinoma, was significantly higher than that in the para-tumorous tissue. Hypoxia significantly increased the VEGF expression in esophageal cancer cell lines but did not affect the MMP-9 expression. CONCLUSIONS: The expression of VEGF plays an important role in the angiogenesis and metastasis of esophageal cancer, which is regulated by hypoxia. VEGF may serve as a predictor of progression in esophageal carcinoma and a potential target for antiangiogenic therapy of esophageal carcinoma.

Endothelial Growth Factors↗

Monoclonal antibody to human esophageal cancer endothelium inhibits angiogenesis and tumor growth.

BACKGROUND: Monoclonal antibodies to tumor endothelial cells (TECs) hold great promise for cancer angiogenesis-targeted therapy. The aim of the present study was to develop such an agent for esophageal cancer treatment. MATERIALS AND METHODS: BALB/c mice were immunized with human esophageal tumor endothelial cells (ETECs) cultured with tumor homogenate. MAbs were produced, screened by immunofluorescence and immunohistochemistry (IHC) and an IgG1K mAb 4B3 was selected. The mAb 4B3 antigen was analyzed by IHC and Western blotting. The antibody's effects on ETECs were determined by adhesion and tube formation assays, while its therapeutic potential was evaluated with a tumor model established by co-inoculating mice with the human esophageal cancer cell lines KYSE180 and ETECs. RESULTS: MAb 4B3 recognized a 40-kDa surface antigen preferentially expressed on TECs and other stromal cells in human malignant tissues of esophagus, stomach, colon, liver, lung and breast compared with their normal counterparts. The antigen was not detected on cancer cells or normal epithelia in these tissues, nor was it detectable on any cells in the mouse xenografts of KYSE180, including the host endothelia. MAb 4B3 inhibited ETEC adhesion to extracellular matrix proteins and tube formation in vitro. The antibody inhibited angiogenesis and growth of the tumor formed by coinoculation. CONCLUSION: These results suggest that mAb 4B3 has therapeutic potential for esophageal cancer.

Animals↗