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Biomedical subjects

L Feng

Publications and source records attributed to L Feng.

At least 145 records · Page 8Linked to original sources

Chemokine receptor expression in cultured glia and rat experimental allergic encephalomyelitis.

Chemokines are a group of pro-inflammatory peptides that mediate leukocyte migration and activation. Several members of the chemokine family have been shown to be synthesized by cells of the central nervous system (CNS). To begin to address the role of chemokine receptors in CNS physiology, we identified, by molecular cloning techniques, the rat orthologs of the chemokine receptors, CCR2, CCR3, CCR5, and CXCR4. CCR2 and CCR5 expression was detected in rat spleen, lung, kidney, thymus and macrophages; CCR5 mRNA was also detected in rat brain. Primary cultures of rat microglia expressed CCR5 mRNA that was regulated by IFN-gamma, while both cultured astrocytes and microglia were found to contain mRNA for CXCR4 and CX3CR1. Induction of experimental allergic encephalomyelitis (EAE) in the rat was accompanied by increased levels of CCR2, CCR5, CXCR4, and CX3CR1 mRNAs in the lumbar spinal cords of animals displaying clinical signs of the disease. These data identify the rat orthologs of chemokine receptors and demonstrate that brain, spinal cord, and cultured glial cells express chemokine receptors that can be regulated both in vitro and in vivo.

Amino Acid Sequence↗

Effect of the RF cavity temperature on low-energy injection at HLS.

The resonant frequency shift caused by the temperature of the RF cavity at the Hefei Light Source has been measured and the results analysed. The effect of this frequency shift on low-energy injection with a low cavity voltage is discussed, and a new injection mode is proposed.

Journal Article↗

The APOE-epsilon4 allele and the risk of Alzheimer disease among African Americans, whites, and Hispanics.

CONTEXT: Although the association between Alzheimer disease (AD) and the apolipoprotein E epsilon4 (APOE-epsilon4) allele has been confirmed worldwide, it appears to be inconsistent among African Americans, Hispanics, and Nigerians. OBJECTIVE: To investigate the association between the APOE-epsilon4 allele and AD in elderly African Americans, Hispanics, and whites. DESIGN: Prospective, population-based, longitudinal study over a 5-year period (1991-1996). SETTING: The Washington Heights-Inwood community of New York City. PARTICIPANTS: A total of 1079 Medicare recipients without AD or a related disorder at baseline. MAIN OUTCOME MEASURES: Risk of clinically diagnosed AD in the 3 ethnic groups and among individuals with and without an APOE-epsilon4 allele. RESULTS: Compared with individuals with the APOE-epsilon3/epsilon3 genotype, the relative risk (RR) of AD associated with 1 or more copies of the APOE-epsilon4 allele was significantly increased among whites (RR, 2.5; 95% confidence interval [CI], 1.1-6.4), but not among African Americans (RR, 1.0; 95% CI, 0.6-1.6) or Hispanics (RR, 1.1; 95% CI, 0.7-1.6). In the absence of the APOE-epsilon4 allele, the cumulative risks of AD to age 90 years, adjusted for education and sex, were 4 times higher for African Americans (RR, 4.4; 95% CI, 2.3-8.6) and 2 times higher for Hispanics (RR, 2.3; 95% CI, 1.2-4.3) than for whites. In the presence of an APOE-epsilon4 allele, the cumulative risk of AD to age 90 years was similar for individuals in all 3 ethnic groups. CONCLUSION: The presence of an APOE-epsilon4 allele is a determinant of AD risk in whites, but African Americans and Hispanics have an increased frequency of AD regardless of their APOE genotype. These results suggest that other genes or risk factors may contribute to the increased risk of AD in African Americans and Hispanics.

Aged↗

Saccharomyces cerevisiae Cdc6 stimulates Abf1 DNA binding activity.

In budding yeast Saccharomyces cerevisiae, an ARS binding factor 1 (Abf1) binds to the sequence-specific DNA element involved in DNA replication and transcription. We describe in this study how yeast Cdc6 protein stimulates Abf1 protein DNA binding activities. The Abf1 binding activity was reduced approximately 20-fold in a cdc6-1 mutant than in the wild-type strain. Introducing a copy of the wild-type CDC6 gene into the cdc6-1 mutant strain restored the Abf1 DNA binding activity. We demonstrated that recombinant Abf1 binds to ARS1 in vitro, and its DNA binding activity can be highly stimulated by the addition of a fusion glutathione S-transferase (GST)-Cdc6 protein. Deletion analysis revealed that the stimulating region is located at the amino terminus of the Cdc6 protein. However, we could not find the direct physical interaction between Cdc6 and Abf1. Instead, we found that the GST-Cdc6 can compete with distamycin A for binding to the DNA molecule. As distamycin A is a specific reagent that binds noncovalently to DNA at (A + T)-rich tracks, the stimulation of Abf1 DNA binding activity may be mediated by the Cdc6/DNA interaction. Our results favor a hypothesis that Cdc6 may function as an architectural factor in the assembly of a functional initiation replication complex.

Antiviral Agents↗

Quantitation of transcription and clonal selection of single living cells with beta-lactamase as reporter.

Gene expression was visualized in single living mammalian cells with beta-lactamase as a reporter that hydrolyzes a substrate loaded intracellularly as a membrane-permeant ester. Each enzyme molecule changed the fluorescence of many substrate molecules from green to blue by disrupting resonance energy transfer. This wavelength shift was detectable by eye or color film in individual cells containing less than 100 beta-lactamase molecules. The robust change in emission ratio reveals quantitative heterogeneity in real-time gene expression, enables clonal selection by flow cytometry, and forms a basis for high-throughput screening of pharmaceutical candidate drugs in living mammalian cells.

Animals↗

Regulated expression of matrix metalloproteinases and TIMP in nephrogenesis.

The roles of the matrix metalloproteinases (MMPs) and their specific inhibitors, the tissue inhibitors of metalloproteinases (TIMP), in embryologic development in general, and in nephrogenesis in particular, have not been fully elucidated. The activities of these enzymes and their inhibitors may be critical in the extensive extracellular matrix remodeling that accompanies the formation of the full complement of mature nephrons in the developing kidney. The temporal and spatial expression of two critical basal lamina modifying enzymes, the 72 kDa gelatinase A (MMP-2) and the 92 kDa gelatinase B (MMP-9), as well as TIMP-1, -2, and -3 molecules were evaluated in the developing rat kidney. Additionally, transcripts for the recently described membrane-associated matrix metalloproteinase, MT1-MMP (MMP-14), which can act as an activating receptor for MMP-2/TIMP-2 complexes (Strongin et al.[1995] J. Biol. Chem. 270:5331-5338) were localized by in situ hybridization. Our immunohistochemical data demonstrate distinct localization of MMP-2 within immature nephron structures undergoing epithelial differentiation, while MMP-9 localizes only to the invading vascular structures within immature glomeruli. In contrast, by in situ hybridization, MMP-2 transcripts localize to the background undifferentiated mesenchyme and not to those structures undergoing epithelial differentiation. In a pattern similar to the MMP-2 protein, MT1-MMP transcripts were found within developing epithelial structures. Neither MMP-2, MMP-9 nor MT1-MMP were detected in mature nephrons. TIMP-2 and -3 follow a pattern of expression similar to the MMP-2 protein. We conclude that MMP-2 and TIMP play important roles in the remodeling of basal laminae associated with the epithelial structures of the developing kidney, that these enzymes are temporally and spatially regulated, and that the co-localization of MT1-MMP to sites of basement membrane remodeling suggests a potential role for this molecule as a receptor for and/or modulator of MMP-2/TIMP complexes.

Animals↗

Nonspecific and immune-specific up-regulation of cytokines in rabbit dermal tuberculous (BCG) lesions.

To our knowledge, this is the first sequential study of cytokines in tissue sections of developing and healing tuberculous (BCG) lesions. In situ hybridization, immunohistochemical, and RT-PCR techniques were used. Cytokine mRNAs showed a biphasic pattern. The percentage of mononuclear cells (MN) containing IL-1beta, TNF-alpha, MCP-1, and IL-8 mRNAs was highest in 1- to 3-day lesions, apparently because of the nonspecific inflammatory response caused by the tubercle bacilli in the BCG vaccine. At 5 days, this percentage was significantly reduced. With IFN-gamma, the peak and trough were delayed by 2 days. By 9 days, the percentage of MN containing the mRNAs of all five cytokines had again increased and the rabbits had become tuberculin-positive. In general, MCP-1 and TNF-alpha proteins and the vascular adhesion molecules, ICAM, VCAM, and perhaps ELAM, peaked at about 3 days. Many mononuclear cells surrounding the central areas of solid and liquefied caseous necrosis contained chemokine IL-8 mRNA. IL-8 is known to attract PMN, and PMN were present nearby. In contrast, MN containing chemokine MCP-1 mRNA were present more peripherally in areas rich in macrophages and lymphocytes. The early nonspecific cytokine response seems to be an adjuvant effect of the mycobacteria in BCG vaccine in that it causes a rapid entry of macrophages, lymphocytes, granulocytes, and probably dendritic cells into local sites of antigen deposition. This effect should be considered in developing improved vaccines for the prevention of tuberculosis, because BCG vaccines producing a strong early cytokine response should be more immunogenic than BCG vaccines with similar antigens producing a weak response.

Animals↗

Cloning and characterization of glial cell line-derived neurotrophic factor receptor-B: a novel receptor for members of glial cell line-derived neurotrophic factor family of neurotrophic factors.

Glial cell line-derived neurotrophic factor (GDNF) is a potent neurotrophic factor with diverse biological functions. Signal transduction of GDNF is mediated by binding to a glycosyl-phosphatidylinositol (GPI)-linked receptor GDNFR-alpha and activation of c-RET tyrosine kinase. The recent discovery of a new GDNF homolog neurturin raises the possibility that multiple receptors exist for the members in the GDNF family. Here we report isolation of the gene encoding a new receptor called GDNFR-beta. Sequence analysis indicated that GDNFR-beta is also a GPI-linked protein, with 47% identity to GDNFR-alpha. The GDNFR-beta transcript was preferentially expressed in the brain, spleen and lung, but moderate levels of GDNFR-beta mRNA were also found in kidney and the entire gastrointestinal track. In situ hybridization revealed high expression levels in the entorhinal cortex and olfactory bulb, followed by cortex, septum, inferior and superior colliculus, and zona inserta. A laminar pattern of expression was detected in layer III of the cortex. Treatment with GDNF of PC12 cells transfected with the GDNFR-beta gene activated mitogen-activated protein kinase (MAPK) and elicited neurite outgrowth. GDNFR-alpha and GDNFR-beta together form a new family of GPI-linked receptors for GDNF-like molecules.

Amino Acid Sequence↗

Chondrocyte apoptosis in development, aging and disease.

There is increasing evidence that chondrocyte apoptosis plays an important role in cartilage development, aging and disease. A variety of morphological and biochemical studies have identified apoptotic chondrocytes in both growth plate and articular cartilage of a variety of species. In addition, there is an ever increasing list of diverse stimuli that can induce chondrocyte apoptosis in vitro. A feedback loop regulating chondrocyte apoptosis in the growth plate has been described that includes Indian Hedgehog, parathyroid hormone-related protein and Bcl-2. The molecular mechanism regulating apoptosis in articular cartilage is still under investigation. Future studies should elucidate more fully how abnormal regulation of chondrocyte apoptosis may contribute to the development of chondrodysplasias and chondrosarcomas. Also, it will be of importance to define the relationship between chondrocyte apoptosis and the regulation of chondrocyte-specific gene expression.

Aging↗

Mouse models of Hermansky Pudlak syndrome: a review.

Hermansky Pudlak Syndrome (HPS) is a recessively inherited disease affecting the contents and/or the secretion of several related subcellular organelles including melanosomes, lysosomes, and platelet dense granules. It presents with disorders of pigmentation, prolonged bleeding, and ceroid deposition, often accompanied by severe fibrotic lung disease and colitis. In the mouse, the disorder is clearly multigenic, caused by at least 14 distinct mutations. Studies on the mouse mutants have defined the granule abnormalities of HPS and have shown that the disease is associated with a surprising variety of phenotypes affecting many tissues. This is an exciting time in HPS research because of the recent molecular identification of the gene causing a major form of human HPS and the expected identifications of several mouse HPS genes. Identifications of mouse HPS genes are expected to increase our understanding of intracellular vesicle trafficking, lead to discovery of new human HPS genes, and suggest diagnostic and therapeutic approaches toward the more severe clinical consequences of the disease.

Albinism, Oculocutaneous↗

The mobile hospital--an experimental telemedicine system for the early detection of disease.

To detect early disease, especially lung disease, we created a new telemedicine system, called the Mobile Hospital. It consists of a satellite or ground communication system using a large vehicle in which is installed a whole-body spiral computerized tomography scanner and a multimedia telecommunications system. The Mobile Hospital goes to small villages and carries out mass screening for early lung disease, especially lung cancer. It travelled over 8000 km from May 1996 to March 1997. In this period 6358 persons aged 50-85 years and younger heavy smokers were screened in the Matsumoto area. As a result, 37.7% of the subjects were suspected of having various latent lung diseases. The cost of medical treatment for the lung cancers detected by the Mobile Hospital was 44% of that for a conventional medical care group, and the length of hospital treatment with surgical operation was 30% of that of the conventional group.

Aged↗

Expression and localization of cyclooxygenase isoforms and cytosolic phospholipase A2 in anti-Thy-1 glomerulonephritis.

Glomerular expression of the major rate-limiting enzymes for prostanoid synthesis, cyclooxygenase isoforms (COX-1 and COX-2) and cytosolic phospholipase A2 (cPLA2), was investigated in anti-Thy-1 nephritis in rats. Ribonuclease protection assay demonstrated minimal COX-1 mRNA expression in glomeruli of control rat kidneys and a gradual increase of expression from day 1 to day 10 after administration of monoclonal anti-rat Thy-1 antibody. On the other hand, COX-2 mRNA expression, also minimal in the normal glomeruli, was enhanced in a biphasic pattern with two peaks at 1 h and day 10. Expression of cPLA2 mRNA, which was undetectable in normal glomeruli, was induced on day 1 and increased gradually in a pattern similar to that of COX-1 mRNA expression. Immunofluorescence microscopy, using antibodies against COX isoforms, showed that both COX-1 and COX-2 were negligible or faintly detectable in the glomeruli of control rat kidneys. In contrast, the immunofluorescence for COX-1 was intensified on days 4 and 10 along the glomerular capillary walls probably in glomerular epithelial and/or endothelial cells, whereas COX-2 staining was exclusively enhanced in the glomerular epithelial cells at 1 h and day 10 during the course of anti-Thy-1 nephritis. These findings indicate that prostanoids generated through induction of COX-1, COX-2, and cPLA2 are implicated in the mediation of the mesangial cell injury model. In particular, the upregulation of COX-2 expression in glomerular epithelial cells in the selective mesangial cell injury model suggests an intercellular interaction between mesangial cells, and glomerular epithelial cells.

Animals↗

[Cloning and expression of a gene associated with HL60 cell apoptosis induced by inhibition of polyamine biosynthesis].

OBJECTIVE: To clone the gene associated with apoptosis induced by an inhibitor of polyamine biosynthesis, alpha-difluoromethylomithine (DFMO). METHODS: The differential substraction screening was used for gene cloning. The gene expression and apoptosis of transfected HL60 cells were detected by Northern blot, morphological assay, FCM and ladder map of DNA electrophoresis, respectively. RESULTS: An apoptosis-associated gene named dF4 was cloned from HL60 cells treated with polyamine biosynthesis inhibitor. The programmed cell death was demonstrated in the HL60 cells transfected by dF4 gene. CONCLUSION: dF4 gene cloned in this study could be a gene regulating apoptosis of HL60 cells.

Antineoplastic Agents↗

Combination of hysteroscopy and laparoscopy in gynecologic operation: an analysis of 65 cases.

OBJECTIVE: To introduce the procedures, preliminary experience, and advantages of operation using combination of hysteroscopy and laparoscopy. METHODS: Sixty-five women underwent transcervical resection of endometrium (11), myoma (38), polyp (2), septa (9), adhesion (1) or foreign body (4). All had the indications for simultaneous laparoscopic monitoring and operation. They were first diagnosed laparoscopically to decide the type of laparoscopic operation. Then they were treated hysteroscopically and finally received laparoscopic operation. RESULTS: Laparoscopic examinations confirmed the original diagnoses, revealed the causes of pelvic pain in 8 patients, and detected ovarian cyst, endometriosis, and pelvic adhesion in 5. Two cases of uterine perforation were found by laparoscopic monitoring. Thirty laparoscopic operations included removal or puncture of ovarian cyst, lysis of adhesion, coagulation of endometriosis, Rubin's test, and partial salpingectomy. The postoperative course was smooth and the operative result was satisfactory. CONCLUSIONS: Operations using combination of hysteroscopy and laparoscopy are safe and effective. They also reduce the pain, and save the time and money of patients. Laparoscopic monitoring may detect uterine perforation in time.

Adult↗

Aging of human mature erythrocytes is like a process of apoptosis in enucleated cell.

Apoptosis of nucleated cells is well known, but how about the unnucleated cells is still not elucidated. In the present paper, the morphological and biochemical features of the aged erythrocytes were observed and compared with the characteristic events of apoptosis. Membrane of aged erythrocytes tends to shrink, protrude, from vesicle and lose lipid asymmetry. Aged erythrocytes were removed by phagocytosis. Both of the events are very similar to the apoptotic nucleated cells. The authors suggested that aging of erythrocytes is also a process of apoptosis.

Apoptosis↗

Production and regulation of monocyte chemoattractant protein-1 in lipopolysaccharide- or monosodium urate crystal-induced arthritis in rabbits: roles of tumor necrosis factor alpha, interleukin-1, and interleukin-8.

The production of monocyte chemoattractant protein-1 (MCP-1) and its regulation by TNFalpha, IL-1, and IL-8 were investigated in two rabbit models of arthritis induced by intra-articular injection of lipopolysaccharide (LPS) or monosodium urate (MSU) crystals. We first prepared recombinant rabbit MCP-1 and antibodies and then developed an immunoassay. The immunoassay detected 3 pg/ml rabbit MCP-1 and did not cross-react with other rabbit chemokines such as IL-8 or GRO. MCP-1 was first detected in synovial fluid (SF) at 1 hour, and peaked at 4 or 2 hours after the injection of LPS or MSU crystals, respectively. Immunohistochemically, MCP-1 was detected in synovial lining cells and infiltrating neutrophils. The amounts of MCP-1 detected in SF from neutrophil-depleted rabbits were similar to those in normal rabbits, suggesting that synovial lining cells were the main source of MCP-1 detected in SF. The peak level of MCP-1 in SF after LPS-injection was inhibited by 57% with anti-TNFalpha mAb and by 41% with IL-1 receptor antagonist (IL-1Ra). Coadministration of anti-TNFalpha mAb and IL-1Ra inhibited 90% of MCP-1 production. In contrast, the peak level of MCP-1 in SF after MSU crystal-injection was not affected by any cytokine inhibitor, but was reduced by 52% with coadministration of anti-TNFalpha mAb and IL-1Ra. Anti-IL-8 IgG had no effect on the production of MCP-1 in either model. Thus, the production of MCP-1 in LPS-induced arthritis was mostly regulated by TNFalpha and IL-1, whereas half the extent of MCP-1 production in MSU crystal-induced arthritis was independent of TNFalpha or IL-1. IL-8 does not seem to regulate the production of MCP-1 in SF either directly or indirectly. Finally, administration of neutralizing anti-MCP-1 antibody inhibited LPS- and MSU crystal-induced monocyte infiltration by 58.4% and 44.9%, respectively, suggesting that synovial production of MCP-1 plays an important role in the recruitment of monocytes in these arthritis models.

Animals↗

Baculovirus-mediated expression of recombinant rat phosphatidylcholine transfer protein.

Phosphatidylcholine transfer protein catalyzes intermembrane transfer of phosphatidylcholines exclusive of all other phospholipid classes. Although postulated to participate in phosphatidylcholine biosynthesis and biliary trafficking in liver, the molecular basis underlying the substrate specificity of phosphatidylcholine transfer protein remains to be elucidated. Having demonstrated the inability of Escherichia coli to express recombinant phosphatidylcholine transfer protein, we infected Spodoptera frugiperda (Sf9) cells with recombinant baculovirus. When assayed in vitro, cytosol of recombinant but not control infected cells demonstrated high levels of intermembrane phosphatidylcholine transfer activity and no transfer activity for phosphatidylethanolamine. A two-step purification protocol in which 10 mg of cytosolic protein was subjected to anion exchange chromatography followed by hydroxylapatite chromatography yielded 0.1 mg active protein which was >92% pure. The identity of purified protein was confirmed by matrix-assisted laser desorption-ionization mass spectrometry and by amino acid sequencing. Based on the recovery of 30% of PC transfer activity after purification, we estimate that recombinant rat phosphatidylcholine transfer protein accounted for approximately 3-6% of cytosolic protein mass of infected cells. These results demonstrate the utility of baculovirus for expressing recombinant phosphatidylcholine transfer protein and should facilitate studies designed to elucidate the structural biology and physiological functions of this uniquely specific phospholipid transfer protein.

Amino Acid Sequence↗