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Biomedical subjects

L Lu

Publications and source records attributed to L Lu.

At least 397 records · Page 22Linked to original sources

Differential coupling of rat D2 dopamine receptor isoforms expressed in Spodoptera frugiperda insect cells.

By using a baculovirus expression system, the two isoforms of the rat D2 dopamine receptor were expressed at densities ranging up to 15 pmol/mg of protein. D2L and D2S dopamine receptors expressed in aline of Spodoptera frugiperda (Sf9) insect cells Sf9cells, displayed high affinity for the antagonists spiroperidol and (+)-butaclamol and the agonist N-propylnorapomorphine. Antisera raised against the D2 receptor immunoprecipitated binding sites for a radiolabeled D2 antagonist from solubilized extracts of infected Sf9cells. In immunoblots of Sf9cells infected with recombinant D2 baculovirus, these antisera recognized a major species of protein of approximately 46 kDa. Photoaffinity-labeling of infected Sf9cells using N-(p-azido-m-[125I]iodophenethyl)spiperone also identified a protein of this size, suggesting that D2 receptors expressed in Sf9cells are largely unglycosylated. In cells expressing receptors at a density greater than 1 pmol/mg, GTP-sensitive, high-affinity binding of agonists was not detected in studies of the inhibition of the binding of a radiolabeled D2 antagonist. When expression levels were under 1 pmol/mg, the binding of agonists was sensitive to the addition of guanine nucleotides, indicating that D2 receptors were coupled to endogenous G proteins. Endogenous G proteins enable both isoforms of D2 receptors to couple to the inhibition of adenylyl cyclase activity. The high-affinity state of the D2 receptor was directly measured using a radiolabeled agonist. Although the density of receptors increased with longer times after infection, the density of high-affinity sites reached a maximum of approximately 40 fmol/mg 30 to 36 hr after infection. Coexpression of D2 receptors and G protein subunits in Sf9cells dramatically increased the density of high-affinity sites, whereas the total density of receptors was unchanged, confirming that D2 receptors in Sf9 cells can exist in the high-affinity-coupled state, but that appropriate G proteins are expressed at relatively low levels. The density of D2S receptors converted to a coupled, agonist-preferring state when coexpressed with G proteins subunits (alpha i1, beta 1 and gamma 2) was 5 times greater than that of D2L receptors expressed under the same conditions, consistent with the hypothesis that D2 dopamine receptor isoforms differentially couple to alpha i1.

Animals↗

Pharmacological and immunological characterization of N-methyl-D-aspartate receptors in human NT2-N neurons.

NT2 cells are a clonal line of human teratocarcinoma cells that exhibit N-methyl-D-aspartate (NMDA) receptor-mediated excitotoxicity after terminal differentiation into NT2-N neurons. In this study, we used modulation of glutamate excitotoxicity to characterize the pharmacological properties and specific antibodies to determine the individual subunits of NMDA receptors expressed by NT2-N neurons. The glycine site antagonist 7-chlorokynurenic acid completely blocked glutamate toxicity in a dose-dependent manner. Histamine and the polyamine agonists spermine and spermidine enhanced glutamate toxicity in a dose-dependent manner consistent with expression of an NR1-NR2B combination of subunits. The efficacy of polyamine agonists suggests the expression of one or more splice variants of the NR1 subunit that lack the putative surface loop encoded by exon 5. Surprisingly, the putative inverse agonists diaminodecane and diaminododecane also enhanced toxicity in a dose-dependent manner. The antagonists arcaine and ifenprodil completely blocked glutamate toxicity in NT2-N cells. The atypical antagonist ifenprodil inhibited toxicity with a uniformly high affinity characteristic of interaction with the NR1-NR2B combination of subunits. Expression of both NR1 and NR2 subunits were detected by Western blot analysis. Neither protein was detectable in undifferentiated cells. In contrast, 70-fold lower levels of the NR2A subunit were detected in both differentiated and undifferentiated cells. The pharmacological and immunological results indicate that a functional NR1-NR2B combination of subunits is expressed by NT2-N neurons. Despite the immunological detection of NR2A subunit, no functional combination of NR1 and NR2A subunits could be demonstrated.

Animals↗

Influence of retroviral-mediated gene transduction of both the recombinant human erythropoietin receptor and interleukin-9 receptor genes into single CD34++CD33-or low cord blood cells on cytokine-stimulated erythroid colony formation.

Introduction of genes for cytokine receptors into hematopoietic stem/progenitor cells (HSC/HPC) may be of clinical use in the future. We recently reported that retroviral-mediated transduction of either the human erythropoietin receptor (hEpoR) or interleukin-9 receptor (hIL-9R) genes into highly purified HSC/HPC from cord blood (CB) resulted in increased numbers of detectable cytokine-responsive erythroid progenitors (burst-forming units-erythroid [BFU-E]). In the present study, we evaluated if this increase could be further enhanced by cotransducing both these genes into single isolated HSC/HPC. Single CD34++CD33-or low-expressing cells from CB were transduced with viral supernatant containing the hEpoR or hIL-9R genes or cotransduced with both genes. In the presence of Steel factor (SLF), interleukin-3 (IL-3), granulocyte-macrophage colony-stimulating factor (GM-CSF), erythropoietin (Epo), and IL-9, the numbers of erythroid colonies formed were significantly increased after transduction of cells with either the hIL-9R or hEpoR gene compared to mock-transduced cells. This increase was significantly enhanced in cells cotransduced with both genes compared with either gene alone. Integration and expression of both genes was confirmed by polymerase chain reaction (PCR) and reverse-transcriptase (RT)-PCR analysis, respectively. The data demonstrate that myeloid progenitors can be transduced at the single-cell level with both hEpoR and hIL-9R genes with resultant enhanced proliferation of these progenitors in the erythroid lineage by combinations of cytokines including Epo and IL-9.

Antigens, CD34↗

Flt3-ligand production by human bone marrow stromal cells.

Bone marrow stromal cells are important sources of cytokines and growth factors which participate in regulation of proliferation and differentiation of hematopoietic stem and progenitor cells. Recently flt3/flk-2-ligand (flt3-L), a new growth factor which uses a membrane tyrosine kinase receptor, was cloned. It is expressed in transmembrane and soluble forms and stimulates/co-stimulates proliferation and colony formation of hematopoietic stem/progenitor cells. It has not been reported whether flt3-L is produced by cells of the hematopoietic bone marrow microenvironment. We demonstrate the expression of flt3-L in bone marrow fibroblasts (BMF) and in stromal cells of adherent layers of long-term bone marrow cultures by RT-PCR, Northern blot, immunocytochemistry and FACS analysis. The latter two methods localized flt3-L intracellularly and on cell membranes. Treatment with interleukin-1 alpha increased the expression of flt3-L in BMF. This demonstrates production and modulation of flt3-L in stromal cells of human bone marrow.

Base Sequence↗

[8 species of peroxidase isozymes and 2 varieties of Corydalis].

The peroxidase isozymes of 8 species and 2 varieties of Corydalis were analysed by means of polyacrylamide gel electrophoresis. According to the isozymic zymograms, these plants may be divided into 3 groups. The taxonomy based on isozymic zymograms is in accord with that by morphology. The problem that the action of enzymes of Corydalls species is easily weakened or lost is also discussed.

Electrophoresis, Polyacrylamide Gel↗

Transduction of human interleukin-9 receptor gene into human cord blood erythroid progenitors increases the number of erythropoietin-dependent erythroid colonies.

We constructed a retroviral vector, pLhIL-9RSN, containing CDNA encoding the human interleukin-9 receptor (IL-9R) along with a neomycin phosphotransferase gene (Neo). In order to study the biological effects of the IL-9R, high titer (1-5 x 10(5) CFU/ml) viral supernatant, generated from the packaging cell lines, ecotropic GPE86 and amphotropic PA317, was used to transduce the IL-9R gene into sorted populations of CD34++ CD33-cells from human cord blood which are highly enriched for erythroid progenitor cells (BFU-E). Colony formation by BFU-E transduced with the IL-9R gene and grown without selection in G418 and in the presence of erythropoietin (Epo) and interleukin (IL)-9 was significantly increased up to three-fold and the size of the erythroid colonies was significantly increased 50-100% compared to colony formation by mock virus transduced cells. Moreover, colony formation by IL-9R-transduced cells was more sensitive to stimulation with lower doses of IL-9 and Epo. Individual colonies formed with or without selection in G418 were evaluated. Proviral integration and mRNA expression were respectively assessed by polymerase chain reaction (PCR) and reverse transcriptase (RT) PCR analysis and were apparent in 93% and 84% of the G418-resistant colonies and 52% and 48% of the colonies grown in the absence of G418. Our study demonstrates that a functional human IL-9R gene can be efficiently transduced into human cord blood hematopoietic progenitors using retroviral vectors with increased cytokine-dependent erythroid colony formation.

Cell Division↗

[A toxicological study on ammonium oxofluoromolybdate [(NH4)2MoO2F4]].

(NH4)2MoO2F4 is a new effective anticarious agent. In order to ensure the safety in clinical application of (NH4)2MoO2F4, six toxicity tests were conducted. Results indicated that: (1) The LD50 was 203. 6 mg/kg after oral administration, which showed that the toxicity of (NH4)2MoO2F4 wasn't higher than that of silver ammounium fluoride which was used routinely. (2) After 90 days of oral administration, no toxicity reaction was found in the lowest dosage group (25 mg/kg), but gastric mucosa was found to have slight injury in the highest dosage group (100 mg/kg), which was conformable to the result of the cumulative toxicity test. (3) Injuries of mucosa, allergic reactions and pulp damages were not observed when (NH4)2MoO2F4 contacted with mucosa, skin and surface of dental crown. Therefore, clinical application of (NH4)2MoO2F4 is safe while using it in the stipulated dosage.

Animals↗

Functional maturation of mouse CD4+CD8- thymocytes induced by medullary-type thymus epithelial cells.

Murine CD4+CD8-(CD4SP) thymocyte subset is a heterogeneous population, in which the Qa-2- cells are less functional, whereas the Qa-2+ cells are fully functional. Evidence is provided here that the transition from Qa-2- to Qa-2+ CD4SP thymocytes is an intrathymic process of differentiation induced by thymic medullary-type epithelial cells. The separated Qa-2-CD4SP could be induced to express Qa-2 molecules up to 84%-89% of the total viable cells after cocultured for 3 d with MTEC1 cells, a murine thymic medullary type epithelial cell line established in our laboratory. Kinetic study showed that both the percentage of Qa-2+ cells and the density of the expressed Qa-2 molecules on CD4SP thymocytes induced by MTEC1 were progressively increasing in 72-h cultures. The MTEC1-induced Qa-2+CD4SP thymocytes were fully functional, which exhibited capabilities of proliferation and cytokine secretion in response to Con A stimulation as high as those of freshly isolated Qa-2+CD4SP thymocytes. The profile of cytokines secreted by MTEC1-induced Qa-2+CD4SP thymocytes was Thy 0 type specified by the production of IL-2, IL-4 and IL-6. The results suggest that Qa-2-CD4SP thymocytes may give rise to the Qa-2+CD4SP thymocytes, and acquire fully functional competence in thymic medulla under the foster of local epithelial cells.

Animals↗

[Thrombogenic cause of low extremity veins in patients undergoing pelvic operation].

Postoperative fatal pulmonary embolism caused thrombi from low extremity deep veins of patients after abdominal operation remains a major cause of death. Blood biorheology in 34 patients having pelvic operation and 41 patients having non-pelvic operation was studied. Blood viscosity was significantly higher in pelvic operation than in non-pelvic operation. The low extremity venous blood viscosity was significantly higher than the upper extremity venous blood viscosity. These suggest that hyperviscosity status and hypercogulable of low extremity veins may be an important cause that deep venous thrombogensis occurs prone to the low extremities in patients with pelvic operation.

Adult↗

[Study of pathogenesis of age-related macular degeneration].

OBJECTIVES: To explore the pathogenesis of age-related macular degenerastion (AMD) for its early prevention and treatment. METHODS: The enzymes of red blood cells, levels of serum mineral elements and antiretinal antibodies were determined in AMD and controls. Electronic microscopy, immunohistochemical survey of the AMD patient subretinal neovascular membrane were performed. The light exposure of animal experiment was also made. RESULTS: The levels of superoxide dismutase and catalase as well as serum zinc were decreased in AMD patients, the ratio of copper and zinc was increase. The retinal antibody reaction was higher than that of controls, and the subretinal neovascular membrane showed inflammatory granulomatous appearance. CONCLUSIONS: In addition to age, AMD may be related to light damage, change in human defense system and chronic inflammatory process.

Age Factors↗

[Comparison of 4 extraction methods for antidotal granules of Coptis].

Four extraction methods for Antidotal Cranules of coptis were compared, with berberine, barcalin and gardenoside taken as the indexes. The result shows that the total contents of three components appear in the following order: semi-bionic extraction > semi-bionic extraction with precipitation with alcohol > extraction with water > extraction with water plus precipitation with alcohol.

Anti-Infective Agents↗

Cord blood transplantation and the potential for gene therapy. Gene transduction using a recombinant adeno-associated viral vector.

Cord blood, which contains a high frequency of immature stem/progenitor cells with extensive proliferative and replating capacity in vitro was used as a clinical source of transplantable stem and progenitor cells. These cells can be efficiently transduced with new genetic material by using AAV or retroviral vectors. Using a recombinant AAV vector, high level expression of the lacZ gene under a CMV promoter was demonstrated in immature subsets of cord blood progenitor cells.

DNA, Recombinant↗

Bone marrow-derived dendritic cell progenitors (NLDC 145+, MHC class II+, B7-1dim, B7-2-) induce alloantigen-specific hyporesponsiveness in murine T lymphocytes.

The functional maturation of dendritic cells (DC) and other antigen-presenting cells is believed to reflect the upregulation of cell surface major histocompatibility complex (MHC) class II and other T cell co-stimulatory molecules, especially the CD28 ligands B7-1 (CD80) and B7-2 (CD86). In this study, we propagated cells exhibiting characteristics of DC precursors from the bone marrow (BM) of B10 mice (H-2b; I-A+) in response to granulocyte-macrophage colony stimulating factor (GM-CSF). The methods used were similar to those employed previously to propagate DC progenitors from normal mouse liver. Cells expressing DC lineage markers (NLDC 145+, 33D1+, N418+) harvested from 8-10-day GM-CSF stimulated BM cell cultures were CD45+, heat-stable antigen+, CD54+, CD44+, MHC class II+, B7-1dim but B7-2- (costimulatory molecule-deficient). Supplementation of cultures with interleukin-4 (IL-4) in addition to GM-CSF however, resulted in marked upregulation of MHC class II and B7-2 expression. These latter cells exhibited potent allostimulatory activity in primary mixed leukocyte cultures. In contrast, the cells stimulated with GM-CSF alone were relatively weak stimulators and induced alloantigen-specific hyporesponsiveness in allogeneic T cells (C3H; H-2k; I-E+) detected upon restimulation in secondary MLR. This was associated with blockade of IL-2 production. Reactivity to third-party stimulators was intact. The hyporesponsiveness induced by the GM-CSF stimulated, costimulatory molecule-deficient cells was prevented by incorporation of anti-CD28 monoclonal antibody in the primary MLR and was reversed by addition of IL-2 to restimulated T cells. The findings show that MHC class II+ B7-2- cells with a DC precursor phenotype can induce alloantigen-specific hyporesponsiveness in vitro. Under the appropriate conditions, such costimulatory molecule-deficient cells could contribute to the induction of donor-specific unresponsiveness in vivo.

Animals↗

Identification of donor-derived dendritic cell progenitors in bone marrow of spontaneously tolerant liver allograft recipients.

Multilineage donor-derived hematopoietic cell chimerism is a persistent feature of spontaneously tolerant mouse liver allograft recipients. We have shown previously that normal liver-derived precursors of "chimeric" dendritic cells (DC) propagated in vitro migrate in vivo to T-dependent areas of allogeneic lymphoid tissue, where they or their progeny appear to persist indefinitely. In this study, granulocyte-macrophage colony-stimulating factor (GM-CSF)+interleukin-4 (IL-4) were used to propagate DC progenitors from freshly isolated mouse bone marrow. The progenitor cells gave rise in 7-10 days to potent antigen-presenting cells (APC) that stimulated naive allogeneic T cells in primary mixed leukocyte cultures (MLC). The culture method, together with the reverse transcriptase-polymerase chain reaction (RT-PCR) for the detection of donor and recipient strain major histocompatibility complex (MHC) class II mRNA was used to test whether donor-derived DC could be propagated from the bone marrow of unmodified, orthotopic liver allograft recipients. Freshly isolated bone marrow from these transplanted animals contained small numbers of donor cells and responded to GM-CSF+IL-4 stimulation. In addition to cells expressing recipient (B10) phenotype (H-2Kb+; Iab+), a minor population of donor (B10.BR)-derived cells (H-2Kk+; Iak) were also propagated from liver graft recipients euthanized two weeks posttransplant. DC sorted from these cultures exhibited stimulatory activity for recipient strain T cells consistent with a low level (< 1%) of donor DC propagation. The immunologic role of donor-derived DC progenitors in liver allograft recipients and its relation to the induction and maintenance of donor-specific unresponsiveness remains to be determined.

Animals↗

Granulocyte/macrophage colony-stimulating factor-stimulated hepatic dendritic cell progenitors prolong pancreatic islet allograft survival.

Liver-derived dendritic cell (DC) progenitors propagated in liquid culture in granulocyte/macrophage colony-stimulating factor exhibit low levels both of cell surface MHC class II antigens and of counter-receptors for CTLA-4/CD28. They fail to stimulate allogeneic T cells in mixed leukocyte cultures. To evaluate their in vivo functional significance, we determined their influence on survival of pancreatic islet allografts. Cultured B10.BR (H2k;I-E+) mouse liver-derived DC progenitors were injected (2 x 10(6) i.v.) into streptozotocin-diabetic B10 (H2b; I-E-) recipients 7 days before transplantation of pancreatic islets (700 IEq/mouse) from the same donor strain. No immunosuppressive agents were administered. Mean islet allograft survival time was prolonged from 15.3 days (in animals pretreated with syngeneic cells) to 30.3 days (P < 0.001) in mice pretreated with the donor-derived liver cells. In 20% of these animals, islet allograft survival exceeded 60 days. These data suggest that liver-derived DC progenitors may contribute both to the inherent tolerogenicity of the mouse liver and to its capacity to protect other allografts of the same donor strain from rejection.

Animals↗