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Biomedical subjects

Y J Liu

Publications and source records attributed to Y J Liu.

At least 19 recordsLinked to original sources

Retinopathy in a Chinese population with type 2 diabetes: factors affecting the presence of this complication at diagnosis of diabetes.

This study examined the prevalence of retinopathy in 2131 patients with type 2 diabetes attending a Beijing hospital for the first time. The median age of patients was 58 years (IQR 50-65). The overall prevalence of retinopathy was 27.3% (95% CI: 25.4-29.2) and for proliferative retinopathy 7.8% (95% CI: 6.7-8.9). When all patients were considered together, duration of diabetes (OR=1.8; P=0.001) and albumin excretion rate (OR=1.5; P=0.019) were independent risk factors for retinopathy. Blue-collar occupation (OR=1.5; P=0.047) and blood pressure (OR=1.2; P=0.021) were additional risk factors for non-proliferative and proliferative retinopathy respectively. Amongst the 773 newly diagnosed patients, 21% (95% CI: 17.8-23.6) already had retinopathy. The median age of those patients with retinopathy at diagnosis of diabetes was 3 years higher that those without retinopathy, and blue-collar workers (OR=2.2; P=0.012) as well as female gender were particularly at risk (OR=2.0; P=0.033). There was a strong correlation between duration of diabetes with the presence of retinopathy (r=0.95; P=0.01). By extrapolation, it could be estimated that some degree of hyperglycaemia might have been present for more than 20 years before diabetes was diagnosed. These findings emphasise the importance of earlier diagnosis of diabetes and its complications, especially in socially disadvantaged groups.

Age of Onset↗

Oncospheres of Taenia solium develop into cysticerci in normal mice.

In vitro-hatched oncospheres of Taenia solium, prepared by the sodium hypochlorite method and adjusted to approximately 5 x 10(2)/2ml phosphate buffer saline, were injected intramuscularly or intravenously into normal Balb/c mice. When these mice were sacrificed 2 months later, all cysticerci were exclusively recovered in the lungs from the mice with intravenous inoculation, but not with intramuscular injection. A high infection rate of 76% was obtained and a total of 45 cysticerci were collected from 50 mice. Thirty-five cysticerci were mature and with normal appearance but the rest were either with abnormal appearance (4) or degenerated (6). These findings give strong evidence that T. solium oncospheres may migrate to the normal mouse lung through venous circulation and develop in this organ.

Animals↗

Subsets of human dendritic cell precursors express different toll-like receptors and respond to different microbial antigens.

Toll-like receptors (TLRs) are ancient microbial pattern recognition receptors highly conserved from Drosophila to humans. To investigate if subsets of human dendritic cell precursors (pre-DC), including monocytes (pre-DC1), plasmacytoid DC precursors (pre-DC2), and CD11c(+) immature DCs (imDCs) are developed to recognize different microbes or microbial antigens, we studied their TLR expression and responses to microbial antigens. We demonstrate that whereas monocytes preferentially express TLR 1, 2, 4, 5, and 8, plasmacytoid pre-DC strongly express TLR 7 and 9. In accordance with these TLR expression profiles, monocytes respond to the known microbial ligands for TLR2 (peptidoglycan [PGN], lipoteichoic acid) and TLR4 (lipopolysaccharide), by producing tumor necrosis factor (TNF)-alpha and interleukin (IL)-6. In contrast, plasmacytoid pre-DCs only respond to the microbial TLR9-ligand, CpG-ODNs (oligodeoxynucleotides [ODNs] containing unmethylated CpG motifs), by producing IFN-alpha. CD11c(+) imDCs preferentially express TLR 1, 2, and 3 and respond to TLR 2-ligand PGN by producing large amounts of TNF-alpha, and to viral double-stranded RNA-like molecule poly I:C, by producing IFN-alpha and IL-12. The expression of distinct sets of TLRs and the corresponding difference in reactivity to microbial molecules among subsets of pre-DCs and imDCs support the concept that they have developed through distinct evolutionary pathways to recognize different microbial antigens.

Biomarkers↗

Depletion of circulating natural type 1 interferon-producing cells in HIV-infected AIDS patients.

Natural interferon-alpha producing cells (IPCs) are a newly characterized blood cell type, which is the major source of type I interferons in antiviral innate immune responses. The relationship between the number of circulating IPCs, HIV disease progression, and the occurrence of HIV-related complications was investigated. The study of 25 healthy donors and 54 HIV-infected subjects demonstrated a direct correlation between blood IPC number, interferon-alpha production, and clinical state of HIV-infected subjects. Asymptomatic long-term survivors had increased IPC number and function relative to uninfected controls and infected individuals with progressive disease. IPC numbers were markedly reduced in AIDS patients developing opportunistic infections and cancer. A negative correlation was found between the IPC number in the blood and the HIV viral load, suggesting that IPCs are important in controlling HIV replication. This study provides the first evidence that IPCs are being affected during the course of HIV infection and suggests that these cells can play a vital role in the protection against opportunistic pathogens and cancer. (Blood. 2001;98:906-912)

AIDS-Related Opportunistic Infections↗

Human thymic stromal lymphopoietin preferentially stimulates myeloid cells.

The sequence of a novel hemopoietic cytokine was discovered in a computational screen of genomic databases, and its homology to mouse thymic stromal lymphopoietin (TSLP) suggests that it is the human orthologue. Human TSLP is proposed to signal through a heterodimeric receptor complex that consists of a new member of the hemopoietin family termed human TSLP receptor and the IL-7R alpha-chain. Cells transfected with both receptor subunits proliferated in response to purified, recombinant human TSLP, with induced phosphorylation of Stat3 and Stat5. Human TSLPR and IL-7Ralpha are principally coexpressed on monocytes and dendritic cell populations and to a much lesser extent on various lymphoid cells. In accord, we find that human TSLP functions mainly on myeloid cells; it induces the release of T cell-attracting chemokines from monocytes and, in particular, enhances the maturation of CD11c(+) dendritic cells, as evidenced by the strong induction of the costimulatory molecules CD40 and CD80 and the enhanced capacity to elicit proliferation of naive T cells.

Amino Acid Sequence↗

Distinct cytokine profiles of neonatal natural killer T cells after expansion with subsets of dendritic cells.

Natural killer T (NKT) cells are a highly conserved subset of T cells that have been shown to play a critical role in suppressing T helper cell type 1-mediated autoimmune diseases and graft versus host disease in an interleukin (IL)-4-dependent manner. Thus, it is important to understand how the development of IL-4- versus interferon (IFN)-gamma-producing NKT cells is regulated. Here, we show that NKT cells from adult blood and those from cord blood undergo massive expansion in cell numbers (500-70,000-fold) during a 4-wk culture with IL-2, IL-7, phytohemagglutinin, anti-CD3, and anti-CD28 mAbs. Unlike adult NKT cells that preferentially produce both IL-4 and IFN-gamma, neonatal NKT cells preferentially produce IL-4 after polyclonal activation. Addition of type 2 dendritic cells (DC2) enhances the development of neonatal NKT cells into IL-4(+)IFN-gamma(-) NKT2 cells, whereas addition of type 1 dendritic cells (DC1) induces polarization towards IL-4(-)IFN-gamma(+) NKT1 cells. Adult NKT cells display limited plasticity for polarization induced by DC1 or DC2. Thus, newly generated NKT cells may possess the potent ability to develop into IL-4(+)IFN-gamma(-) NKT2 cells in response to appropriate stimuli and may thereafter acquire the tendency to produce both IL-4 and IFN-gamma.

Adult↗

Interferon-beta induces the development of type 2 dendritic cells.

Suppression of interleukin 12 (IL-12) production by dendritic cells (DCs) has been hypothesized to be a principal mechanism underlying the biological action of interferon (IFN)-beta used for treatment of multiple sclerosis (MS), a chronic inflammatory disease of the central nervous system with possible autoimmune origin. How IFN-beta interacts with DCs to inhibit IL-12 production remains unclear. In this study, we found that DCs derived from human blood monocytes, upon culture in the presence of IFN-beta with granulocyte-macrophage colony- stimulating factor (GM-CSF) and IL-4, differentiated into a population expressing CD14- CD1a- HLA-DR+. This population expressed CD123 (IL-3Ralpha). IFN-beta dose-dependently increased IL-3Ralpha+ DCs and decreased CD1a+ DCs. After 7 days' culture with IFN-beta at a concentration of 10 000 U/ml, more than 40% of DCs expressed IL-3Ralpha. IFN-beta, together with GM-CSF and IL-4, also induced maturation of IL-3Ralpha-expressing cells, as reflected by upregulation of HLA-DR and of the costimulatory molecules CD40, CD80 and CD86. In contrast to control DCs, IFN-beta-treated DCs produced predominantly IL-10 but only low levels of IL-12p40. Correspondingly, IFN-beta-treated DCs strongly suppressed IFN-gamma production but enhanced IL-10 production by allogeneic blood mononuclear cells. Our data suggest that IFN-beta in vitro can induce the development of DC2, which provide a permissive environment for Th2 differentiation. This finding represents a novel mechanism for action of IFN-beta in MS.

Antigens, CD1↗

Distinct CpG DNA and polyinosinic-polycytidylic acid double-stranded RNA, respectively, stimulate CD11c- type 2 dendritic cell precursors and CD11c+ dendritic cells to produce type I IFN.

Two classes of nucleic acids, bacterial DNA containing unmethylated CpG motifs and dsRNA in viruses, induce the production of type I IFN that contributes to the immunostimulatory effects of these microbial molecules. Thus, it is important to determine which cells produce type I IFN in response to CpG DNA and dsRNA. CD4(+)CD11c(-) type 2 dendritic cell precursors (pre-DC2) were identified as the main producers of type I IFN in human blood in response to viruses. Here we asked whether pre-DC2 also produce type I IFN in response to CpG DNA and dsRNA. Oligodeoxynucleotides containing particular palindromic CpG motifs induced pre-DC2, but not CD11c(+) blood DC or monocytes, to produce IFN-alpha. In contrast, a synthetic dsRNA, polyinosinic polycytidylic-acid, induced CD11c(+) DC, but not pre-DC2 or monocytes, to produce IFN-alphabeta. These data indicate that CpG DNA and polyinosinic-polycytidylic acid stimulate different types of cells to produce type I IFN and that it is important to select oligodeoxynucleotides containing particular CpG motifs to induce pre-DC2 to produce type I IFN, which may play a key role in the strong adjuvant effects of CpG DNA.

Cell Differentiation↗

Dendritic cell lineage, plasticity and cross-regulation.

Dendritic cells (DCs) are professional antigen-presenting cells that have an extraordinary capacity to stimulate naïve T cells and initiate primary immune responses. Here we review progress in understanding the additional functions of DCs in regulating the types of T cell-mediated immune responses and innate immunity to microbes. In addition, evidence for the existence of myeloid and lymphoid DC lineages and their different functions are summarized. We propose that the diverse functions of DCs in immune regulation are dictated by the instructions they received during innate immune responses to different pathogens and from their evolutionary lineage heritage.

Animals↗

Survey of polycyclic aromatic hydrocarbons (PAHs) in arterial street air of Hangzhou.

The presence of particulate and vapor PAHs, SO2 and NOx and other interrelated conditions (temperature, traffic intensity and wind velocity) were investigated in the arterial street air of Hangzhou. The concentration of the nine PAHs in the air was mean to 11.7 micrograms/m3, and the content of benzo(a) pyrene was up to 0.108 microgram/m3. The contents of PAHs in the sampling sites were in good relation to the traffic intensity, and would be also affected by the terrain and meteorological conditions. The occurrences of PAHs in ambient air were mainly affected by their physical, chemical characters and temperature. The three- and four-ring PAHs (MW < or = 228) mainly existed in the vapor phase and the five-ring PAHs (MW > 228) existed predominately in the particulate phase. The fraction of vapor PAHs in the total nine PAHs was 84.2% in the air of the sampling sites. In the morning and evening, the concentrations of PAHs in the arterial street air were higher than that on the noon and the diurnal variation of PAHs was similar to that of the traffic gas NOx. A conclusion would be drawn that the major source of PAHs in the arterial street air was the traffic. And the results indicated that 75% of BaP would come from traffic source and remaining 25% of BaP would come from non-traffic source.

Air Pollutants↗

[Determination of anions in liquid crystal samples by UV-photolysis-ion chromatography].

A new method for the determination of anions in liquid crystal samples by UV-photolysis-ion chromatography was developed. The sample pretreatment method, the photolytic conditions and the chromatographic parameters were optimized. The results indicate that there have five anions (F-, Cl-, NO2-, Br-, I-) in the liquid crystal sample. By the filtration with the Dionex OnGuard RP and P cartridges, most of the organic compounds in the photolyzed sample solution can be removed. In the process of photolysis, the efficiency can be remarkably enhanced by the adding of H2O2. Iodide in the liquid crystal sample can be accurately determined by adding of 0.1 mmol/L NaOH. In the five anions, fluoride, choloride, nitrite and bromide can get their maximal responses when the photolysis time is 2 h. With the strongest reducibility, iodide only needs 1.5 h to get the highest response. The separation of the five anions was accomplished with Dionex IonPac AS16 column and the determination can be completed in 25 min. The recoveries for the five anions were between 85.1% and 111.5%.

English Abstract↗

[Clinical observation on effect of baisuifang oral liquid in treating vascular dementia].

OBJECTIVE: To study the effect of Baisuifang Oral Liquid (BSF) in treating vascular dementia. METHODS: Patients selected according to the diagnostic standard of American Association of Psychiatry were randomly divided into two groups, the 37 patients in the BSF treated group and the 28 patients in the control group treated by Naofukang with therapeutic course of 3 months. Changes of clinical symptoms, TCM Syndrome, mini-mental state examination (MMSE) and activity of daily living (ADL) score, hemorrheologic characters, platelet aggregation and blood lipid were observed. RESULTS: BSF could ameliorate the symptoms and TCM Syndrome, decrease blood lipid, improve the hemorrheologic character, elevate the MMSE and ADL score of patients. The total effective rate in the treated group was 75.68% and the markedly effective rate 24.32%, which were obviously superior to those in the control group respectively. CONCLUSION: BSF is an effective Chinese herbal preparation in treating vascular dementia, which could promote the restoration of learning memory, and improve the clinical symptoms.

Administration, Oral↗

[Down regulatory effects of platelet factor four (PF4) on total adherence and respiratory burst of human neutrophil].

OBJECTIVE: The effect of platelet factor four (PF4) on human neutrophil function was studied. METHODS: Crystal violet dye staining, immunofluorescence labeling, PKC kit assay, NBT and HVA fluoro-spectrophotometry were applied to study the effect of PF4 on total adherence, integrin CD11b level, PKC level and respiratory burst level of resting human neutrophils and FMLP/or PMA-stimulated human neutrophils. RESULTS: It was found that PF4 slightly increased the total adherence of resting human neutrophils. There was no change on integrin CD11b level and respiratory burst level of resting human neutrophils after interaction with PF4. However, PF4 significantly down-regulated the total adherence, integrin CD11b level and respiratory burst level of human neutrophils stimulated by FMLP/or PMA. In addition, PF4 did not influence PKC level on resting and activated human neutrophil. CONCLUSION: These results indicate that PF4 plays a down regulation of the function of human neutrophils. Differing from other members of classical CXC-chemokine family, the signaling of PF4 is not through PLC-PKC signal pathway.

CD11b Antigen↗

Generation of interferon alpha-producing predendritic cell (Pre-DC)2 from human CD34(+) hematopoietic stem cells.

Upon viral stimulation, the natural interferon (IFN)-alpha/beta-producing cells (IPCs; also known as pre-dendritic cells (DCs 2) in human blood and peripheral lymphoid tissues rapidly produce huge amounts of IFN-alpha/beta. After performing this innate antiviral immune response, IPCs can differentiate into DCs and strongly stimulate T cell-mediated adaptive immune responses. Using four-color immunofluorescence flow cytometry, we have mapped the developmental pathway of pre-DC2/IPCs from CD34(+) hematopoietic stem cells in human fetal liver, bone marrow, and cord blood. At least four developmental stages were identified, including CD34(++)CD45RA(-) early progenitor cells, CD34(++)CD45RA(+) late progenitor cells, CD34(+)CD45RA(++)CD4(+)interleukin (IL)-3Ralpha(++) pro-DC2, and CD34(-)CD45RA(++) CD4(+)IL-3Ralpha(++) pre-DC2/IPCs. Pro-DC2s have already acquired the capacity to produce large amounts of IFN-alpha/beta upon viral stimulation and to differentiate into DCs in culture with IL-3 and CD40 ligand. CD34(++)CD45RA(-) early progenitor cells did not have the capacity to produce large amounts of IFN-alpha/beta in response to viral stimulation; however, they can be induced to undergo proliferation and differentiation into IPCs/pre-DC2 in culture with FLT3 ligand.

Antigens, CD34↗

Anti-interleukin 10 receptor monoclonal antibody is an adjuvant for T helper cell type 1 responses to soluble antigen only in the presence of lipopolysaccharide.

Soluble foreign antigen usually leads to a transient clonal expansion of antigen-specific T cells followed by the deletion and/or functional inactivation of the cells. As interleukin (IL)-10 is a key immunoregulatory cytokine, we questioned whether neutralization of IL-10 during priming with soluble antigen could prime for a subsequent T helper cell type 1 (Th1) effector recall response. By using an adoptive transfer model to track the fate of antigen-specific T cell receptor (TCR)-transgenic CD4(+) T cells, we show that administration of soluble ovalbumin (OVA) protein, but not OVA(323-339) peptide antigen, together with an anti-IL-10 receptor (R) mAb led to the enhancement of a Th1 response upon rechallenge. Lipopolysaccharide (LPS) present in the protein was necessary for priming for Th1 recall responses in the presence of anti-IL-10R mAb, as removal of LPS abrogated this effect. Moreover, addition of LPS to the peptide did not itself allow priming for recall Th1 effector responses unless endogenous levels of IL-10 were neutralized with an anti-IL-10R mAb. A significant increase in OVA-specific IgG1 and IgG2a isotypes was observed when the protein antigen was administered with anti-IL-10R mAb; however, this was not the case with peptide antigen administered together with anti-IL-10R and LPS. Our data, showing that LPS receptor signaling and neutralization of endogenous immunosuppressive cytokines is essential for Th1 priming, has important implications for the design of relevant vaccines for effective in vivo immunotherapy.

Adjuvants, Immunologic↗

Binding of a de novo designed peptide to specific glycosaminoglycans.

The binding of glycosaminoglycans to a synthetic peptide (SKAQKAQAKQAKQAQKAQKAQAKQAKQW-CONH(2)), consisting of a hybrid consensus heparin binding sequence, is studied using circular dichroism, fluorescence anisotropy and nuclear magnetic resonance techniques. The results unveil certain novel features, most importantly, the peptide binds preferentially to iduronic acid containing glycosaminoglycans and the dissociation constant for the peptide-heparin complex was found to be 30 nM. Interestingly, higher order intermolecular association(s)/aggregation was not observed, especially at saturating concentrations of the ligand. The helical structure of the peptide backbone, induced upon binding to a particular glycosaminoglycan is directly related to their binding affinity. In our opinion, studies on such unconventional hybrid peptide sequences containing low density basic amino acid residues would lead to the design of sequence specific glycosaminoglycan binding peptides.

Amino Acid Sequence↗

Natural interferon alpha/beta-producing cells link innate and adaptive immunity.

Innate immune responses to pathogens critically impact the development of adaptive immune responses. However, it is not completely understood how innate immunity controls the initiation of adaptive immunities or how it determines which type of adaptive immunity will be induced to eliminate a given pathogen. Here we show that viral stimulation not only triggers natural interferon (IFN)-alpha/beta-producing cells (IPCs) to produce vast amounts of antiviral IFN-alpha/beta but also induces these cells to differentiate into dendritic cells (DCs). IFN-alpha/beta and tumor necrosis factor alpha produced by virus-activated IPCs act as autocrine survival and DC differentiation factors, respectively. The virus-induced DCs stimulate naive CD4(+) T cells to produce IFN-gamma and interleukin (IL)-10, in contrast to IL-3-induced DCs, which stimulate naive CD4(+) T cells to produce T helper type 2 cytokines IL-4, IL-5, and IL-10. Thus, IPCs may play two master roles in antiviral immune responses: directly inhibiting viral replication by producing large amounts of IFN-alpha/beta, and subsequently triggering adaptive T cell-mediated immunity by differentiating into DCs. IPCs constitute a critical link between innate and adaptive immunity.

Cell Differentiation↗