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Biomedical subjects

Ping Ye

Publications and source records attributed to Ping Ye.

At least 55 records · Page 3Linked to original sources

In vivo effects of insulin-like growth factor-I (IGF-I) on prenatal and early postnatal development of the central nervous system.

The in vivo actions of insulin-like growth factor-I (IGF-I) on prenatal and early postnatal brain development were investigated in transgenic (Tg) mice that overexpress IGF-I prenatally under the control of regulatory sequences from the nestin gene. Tg mice demonstrated increases in brain weight of 6% by embryonic day (E) 18 and 27% by postnatal day (P) 12. In Tg embryos at E16, the volume of the cortical plate was significantly increased by 52% and total cell number was increased by 54%. S-phase labeling with 5-bromo-2'-deoxyuridine revealed a 13-15% increase in the proportion of labeled neuroepithelial cells in Tg embryos at E14. In Tg mice at P12, significant increases in regional tissue volumes were detected in the cerebral cortex (29%), subcortical white matter (52%), caudate-putamen (37%), hippocampus (49%), dentate gyrus (71%) and habenular complex (48%). Tg mice exhibited significant increases in the total number of neurons in the cerebral cortex (27%), caudate-putamen (27%), dentate gyrus (69%), medial habenular nucleus (61%) and lateral habenular nucleus (36%). In the cerebral cortex and subcortical white matter of Tg mice, the total numbers of glial cells were significantly increased by 37% and 42%, respectively. The numerical density of apoptotic cells in the cerebral cortex, labeled by antibodies against active caspase-3, was reduced by 26% in Tg mice at P7. Our results demonstrate that IGF-I can both promote proliferation of neural cells in the embryonic central nervous system in vivo and inhibit their apoptosis during postnatal life.

Animals↗

The thymus during HIV disease: role in pathogenesis and in immune recovery.

The thymus is the primary lymphoid organ supplying new lymphocytes to the periphery. Clinical and morphologic studies of HIV-infected children and adults indicate that the thymus is affected by HIV. Thymic dysfunction and thymic involution occur during HIV disease and have been associated with rapid progression in infants infected perinatally with HIV. In vitro information of thymic organ culture, thymic epithelial cell culture, the SCID-hu mouse system and SHIV infection of primates have supported HIV-induced thymic damage. The mechanisms underlying this could be many, including direct thymocyte killing by the virus, apoptosis, or disruption of thymic stromal architecture. T cell receptor excision circles (TREC) have been developed as a marker of new thymic emigrants. Decreases in TREC concentrations have been found in both HIV-infected pediatric and adult patients. Mathematical models have suggested that thymic infection in children is more severe than in adults, particularly during infection with strains that use CXCR4 as coreceptor. Recent evidence suggests that thymic recovery may be achieved in some patients as a result of potent antiretroviral therapy. Extensive thymic damage may, however, hamper immune reconstitution, particularly in pediatric patients. This review attempts to summarize evidence for thymic involvement during HIV infection in children and in adults, the role of thymic infection in disease progression, and the contribution of the thymus to immune restoration following potent antiviral therapy. Immunologic interventions aiming at restoring thymic function in AIDS patients are also reviewed.

Adult↗

[The role of duodenogastroesophageal reflux in gastroesophageal reflux disease].

OBJECTIVE: To investigate the role of duodenogastroesophageal reflux (DGER) in the pathogenesis of gastroesophageal reflux disease (GERD) and its value for the diagnosis of non-erosive reflux disease (NERD). METHODS: 95 cases of GERD were divided into two groups according to endoscopic findings: reflux esophagitis (RE) (n = 51) and NERD (n = 44). Simultaneous 24-hour esophageal pH and bilirubin monitoring were performed. RESULTS: The index values of DGER in RE group such as percent of time with Abs > 0.14, total reflux time and time with reflux > 5 min were 19.05 +/- 23.44, 30.56 +/- 34.04 and 5.90 +/- 6.37 respectively, they were significantly higher than those of NERD, 7.26 +/- 11.08, 15.68 +/- 20.92 and 2.59 +/- 3.57, respectively (P < 0.05), but no significant difference was found in acid reflux. The occurrence of DGER was more common in more severe esophagitis. Isolated DGER were found in 18.2% of NERD, and combined bilirubin monitoring could elevate the positive diagnosis rate of NERD from 65.9% to 84.1%. CONCLUSIONS: DGER could be present isolatedly and played an obvious role in the genesis of RE and GERD symptoms. Simultaneous 24-hour esophageal pH and bilirubin monitoring were helpful for the diagnosis of NERD.

Adult↗

[Potential of cdc25A-Fas chimeric expression vector in inducing apoptosis of Tca8113 cells in vitro].

BACKGROUND & OBJECTIVE: Previous studies have revealed the close relationship between Fas/FasL pathway and carcinogenesis of oral squamous cell carcinoma (OSCC). This study was designed to explore the potential of cdc25A-Fas chimeric expression vector in inducing apoptosis of human OSCC cell line Tca8113. METHODS: The 2 chimeric expression vector pAdTrack-CMV-cdc25A-Fas (pCCF), and pAdTrack-cdc25A-Fas (pCF) were constructed by gene engineering, pCCF, pCF, and the control plasmid pAdTrack-CMV were transfected into Tca8113 cells by liposome, respectively. The transfection efficiency was presented by the expression of the report gene, green fluorescence protein (GFP). The mRNA and protein levels of Fas were determined by Northern blot analysis, reverse transcription-polymerase chain reaction (RT-PCR), Western blot analysis, and immunohistochemistry methods. The apoptosis of transfected Tca8113 cells was analyzed by techniques of DNA agarose gel electrophoresis, TUNEL, Annexin V label, and flow cytometry (FCM). RESULTS: (1) The chimeric expression vectors pCCF, and pCF were successfully transfected into Tca8113 cells and the maximum transfection (15%) was observed at the 5th-7th day after transfection. (2) Up-regulation of Fas expression was detected at the 3rd day after transfection in pCCF, and pCF transfection groups. At 3rd, 5th, and 7th day after transfection, Fas protein was found to express on membrane and in plasma of transfected Tca8113 cells with distinct morphology of partial apoptosis. (3) From 2.5 days after transfection, early apoptosis had been observed in pCCF, and pCF transfection groups. At 3rd day, the increased apoptosis index (AI,=25%) of pCCF, and pCF transfection groups was significant higher than that of control group (P< 0.05), whereas there was no significant difference in AI between pCCF transfection group and pCF transfection group (P >0.05). (4) FCM analysis showed that the peak of GFP-expression cells was identical to that of the apoptotic cells. CONCLUSION: The cdc25A-Fas chimeric expression vector was able to initiate the apoptosis of Tca8113 cells by up-regulating Fas expression. This result indicated that the 27 bp cdc25A fragment can be designed as a cis-regulatory element to modulate the effects of C-Myc/Max in cellular proliferation and apoptosis.

Apoptosis↗

[An exploratory study on mechanism of PPARalpha activators-induced plasminogen activator inhibitor-1 expression in HepG-2 cells].

OBJECTIVE: To investigate the influence of peroxisome proliferator-activated receptor alpha activators on plasminogen activator inhibitor-1 (PAI-1) expression in HepG-2 cells and the mechanism possibly involved. METHODS: Linoleic acid and fenofibrate were used in the treatment of HepG-2 cell culture. PAI-1 activity and mRNA expression were determined with colorimetric assay and reverse transcription-polymerase chain reaction, respectively. Using gene recombination techniques, two types of chloramphenicol acetyl transferase (CAT) reporter gene plasmid containing different deletions in PAI-1 promoter were constructed and transiently transfected into HepG-2 cells, respectively. Linoleic acid and fenofibrate were added to induce the transfected cells. CAT activity was measured to demonstrate the transcriptional activity of PAI-1 gene in HepG-2 cells. RESULTS: The mRNA expression and protein activity of PAI-1 was significantly induced by linoleic acid, but was obviously suppressed by fenofibrate. In the HepG-2 cells transfected with PAI-pCAT promoter constructs the PAI-1 transcription activity was significantly induced by linoleic acid, but suppressed by fenofibrate. The level of PAI-1 transcription was also significantly increased when co-transfected with PAI-pCAT promoter construct and PPAR alpha-pSG5 expression plasmid to HepG-2 cells. Furthermore, in the condition of transfection with NF-kappaB-response element-deletion-pCAT construct, both linoleic acid and fenofibrate increased the PAI-1 transcriptional activity, whereas in those cells transfected with VLDL/fatty acid response element-deletion-pCAT construct, fenofibrate significantly reduced PAI-1 transcriptional activity, but no change in PAI-1 transcription activity was found with linoleic acid stimulation. CONCLUSIONS: Linoleic acid induces PAI-1 activity and mRNA expression in HepG-2 cells. PPAR alpha may be one of transcription factors playing a role in the upregulation of PAI-1 gene expression. The inhibition of NF-kappaB signaling pathway may be involved in the downregulation of PAI-1 gene expression by fenofibrate.

Cells, Cultured↗

Effect of peroxisome proliferator-activated receptor activators on tumor necrosis factor-alpha expression in neonatal rat cardiac myocytes.

OBJECTIVE: To investigate the effect of peroxisome proliferator-activated receptor-alpha (PPAR alpha) and PPAR gamma activators on tumor necrosis factor-alpha (TNFalpha) expression in neonatal rat cardiac myocytes. METHODS: Primary cultures of cardiac myocytes from 1- to 3-day-old Wistar rats were prepared, and myocytes were exposed to lipopolysaccharide (LPS) and varying concentrations of PPAR alpha or PPAR gamma activator (fenofibrate or pioglitazone). RT-PCR and ELISA were used to measure TNFalpha, PPAR alpha, and PPAR gamma expression in cultured cardiac myocytes. Transient transfection of TNFalpha promoter with or without nuclear factor-kappaB (NF-kappaB) binding site to cardiac myocytes was performed. RESULTS: Pretreatment of cardiac myocytes with fenofibrate or pioglitazone inhibited LPS-induced TNFalpha mRNA and protein expression in a dose-dependent manner. However, no significant changes were observed on PPAR alpha or PPAR gamma mRNA expression when cardiac myocytes were pretreated with fenofibrate or pioglitazone. Proportional suppression of TNFalpha promoter activity was observed when myocytes was transiently transfected with whole length of TNFalpha promoter (-721/+17) after being stimulated with LPS and fenofibrate or pioglitazone, whereas no change of promoter activity was observed with transfection of TNFalpha reporter construct in deletion of NF-kappaB binding site (-182/+17). CONCLUSIONS: PPAR alpha and PPAR gamma activators may inhibit cardiac TNFalpha expression but not accompanied by change of PPAR alpha or PPAR gamma mRNA expression. Therefore PPAR alpha and PPAR gamma activators appear to play a role in anti-inflammation. The mechanism may partly be involved in suppression of the NF-kappaB pathway.

Animals↗

Protective effects of green tea polyphenols on human HepG2 cells against oxidative damage of fenofibrate.

The aim of this work was to investigate the protective effects of green tea polyphenols on the cytotoxic effects of hypolipidemic agent fenofibrate (FF), a peroxisome proliferator (PP), in human HepG2 cells. The results showed that high concentrations of FF induced human HepG2 cell death through a mechanism involving an increase of reactive oxygen species (ROS) and intracellular reduced glutathione (GSH) depletion. These effects were partially prevented by antioxidant green tea polyphenols. The elevated expression of PP-activated receptors alpha (PPARalpha) in HepG2 cells induced by FF was also decreased by treatment with green tea polyphenols. In conclusion, this result demonstrates that oxidative stress and PPARalpha are involved in FF cytotoxicity and green tea polyphenols have a protective effect against FF-induced cellular injury. It may be beneficial for the hyperlipidemic patients who were administered the hypolipidemic drug fenofibrate to drink tea or use green tea polyphenols synchronously during their treatment.

Cell Line, Tumor↗

Increased expression of insulin-like growth factor I augments the progressive phase of synaptogenesis without preventing synapse elimination in the hypoglossal nucleus.

The in vivo actions of insulin-like growth factor I (IGF-I) on synaptogenesis in the hypoglossal nucleus were investigated in transgenic mice that overexpress IGF-I in the brain postnatally and in normal nontransgenic littermate controls. In a previous study using these mice, we found that IGF-I increases the total volume of the hypoglossal nucleus by increasing the volume of neuropil rather than by increasing total neuron number; therefore, the progressive and regressive phases of synaptogenesis could be evaluated without the confounding effects of altered neuron number. The volume of the hypoglossal nucleus was significantly increased by 28% to 59% in transgenic mice after postnatal day (P) 7, whereas the total number of hypoglossal neurons did not differ significantly from controls. The numerical density of neurons was significantly decreased by 21% to 38% after P7, and the density of myelinated axons was significantly increased by 19%. Although the numerical density of synapses did not differ between groups at any age, the total number of synapses in transgenic mice was increased by 42% to 52% after P14. Total synapse number in controls increased from P7 (7.9 million) to peak values at P21 (36.0 million), followed by a significant decrease (33%) at P130 (24.2 million). In transgenic mice, total synapses increased from 8.2 million on P7 to 51.1 million on P21, followed by a significant decrease (28%) to 36.7 million at P130. Our results demonstrated that IGF-I can stimulate a persistent increase in the number of hypoglossal synapses, thereby augmenting the progressive phase of synaptogenesis without preventing synapse elimination during the regressive phase.

Aging↗

Down-regulation of 14-3-3 eta gene expression by IGF-I in mouse cerebellum during postnatal development.

Insulin-like growth factor I (IGF-I) overexpression in the postnatal cerebellum of transgenic (Tg) mice results in remarkable cerebellar overgrowth characterized by a near doubling of granule cell number that is predominantly due to inhibition of apoptosis. Using this Tg model we set out to investigate IGF-I anti-apoptotic mechanisms by defining the influence of IGF-I on gene expression. Using a cDNA array technique, we screened a total of 243 mouse apoptosis-related genes, and found that 14-3-3 eta gene expression was significantly reduced in the cerebella of Tg mice compared with their wild-type (Wt) littermates. Using Northern blot analysis to corroborate our microarray finding, we showed that 14-3-3 eta mRNA abundance was decreased from postnatal day P5 through P17. Nonetheless, the expression pattern of 14-3-3 eta in Tg mice followed the same pattern observed in Wt mice, and was indistinguishable from that in Wt mice at P20 and P23. 14-3-3 eta protein abundance, as determined by Western immunoblot analyses, showed similar decreases in the cerebella of Tg mice. In situ hybridization demonstrated that 14-3-3 eta was predominantly, if not exclusively, expressed and regulated in Purkinje cells. 14-3-3 proteins have multiple functions, including participation in pathways that favor cell survival. Our finding of IGF-I-induced down-regulation of 14-3-3 eta expression in Purkinje cell at a time when IGF-I promotes granule cell survival leads us to speculate that down-regulation of 14-3-3 eta may: (a) serve a negative feedback role to modulate Purkinje cell survival, i.e. limit Purkinje cell number, and/or (b) function as part of a distinct signaling mechanism, perhaps one that augments the capacity of Purkinje cells to promote granule cell survival.

14-3-3 Proteins↗

Mouse NG2+ oligodendrocyte precursors express mRNA for proteolipid protein but not its DM-20 variant: a study of laser microdissection-captured NG2+ cells.

Despite recent advances in our understanding of lineage of oligodendrocytes, detailed molecular characterization of this lineage in vivo is limited, primarily because of our inability to obtain a pure population of cells in situ. To define the molecular characteristics of oligodendrocyte lineage cells during development and their response to injury, we developed a strategy that uses laser capture microdissection (LCM) to isolate cells from sections and reverse transcription-PCR to determine mRNA expression. As a first step, we examined the expression of myelin-specific protein genes in NG2+ cells in cerebral cortex. We demonstrate that NG2+ cells in both developing and adult mice express NG2 mRNA but not mRNA for proteins specific for astrocytes, neurons, or microglia, indicating that a highly pure population of antigen-specific cells of the oligodendrocyte lineage can be obtained using LCM. Furthermore, we show that NG2+ cells express mRNAs for proteolipid protein (PLP), myelin basic protein, and 2',3'-cyclic nucleotide 3'-phosphodiesterase, but they dot not express DM-20 mRNA, a PLP mRNA splicing variant. Our data demonstrate that antigen-specific cells of oligodendrocyte lineage differentially express mRNA for myelin-specific proteins and their variants in vivo, partly define the gene expression in NG2+ cells, and raise questions about the cellular sites of DM-20 expression. This work also shows that LCM is a valuable tool to define and analyze gene expression in the cells of the oligodendrocyte lineage.

2',3'-Cyclic-Nucleotide Phosphodiesterases↗

Tumor necrosis factor-alpha regulation of insulin-like growth factor-I, type 1 IGF receptor, and IGF binding protein expression in cerebellum of transgenic mice.

Tumor necrosis factor-alpha (TNF-alpha), a proinflammatory cytokine, has been implicated in the pathogenesis of several disorders and injuries in the central nervous system (CNS). Unlike IGF-I, which promotes CNS growth, TNF-alpha causes brain growth retardation and neural damage. Recently TNF-alpha has been shown to inhibit IGF-I signaling and actions in non-neural tissue. To investigate whether TNF-alpha deleteriously influences brain growth by altering the IGF-I system in vivo, we examined the expression of IGF-I, the type 1 IGF receptor (IGF1R) and IGF binding proteins (IGFBPs) in the brain of transgenic (Tg) mice with murine TNF-alpha overexpression. We show that overexpression of TNF-alpha reduces the weights of whole brain and all brain regions examined during development. In adult TNF-alpha Tg mice, cerebellum (CB) exhibited the greatest reduction in weight among the five brain regions examined, being approximately 77% of that in wild-type (WT) mice. IGF-I abundance was decreased in the CB, as well as in cerebral cortex and diencephalon, of TNF-alpha Tg mice. When compared to those in WT mice, CB IGF-I abundance in Tg mice was reduced by approximately 35%, approximately 45%, and approximately 40% at 2, 6, and 9 weeks of age, respectively. Of the IGFBPs studied the abundance of IGFBP-3 and IGFBP-4 was increased by 2-3.7-fold, and the abundance of IGFBP-5 was decreased by approximately 3-fold (as judged by Western immunoblot analysis). Histological analysis and immunocytochemical staining confirmed that TNF-alpha specifically increases IGFBP-3 and IGFBP-4 immunoreactivity, as well as that of the IGF1R, in radial glial and Purkinje cells. In addition, TNF-alpha alters CB cytoarchitecture, apparently by influencing granule cell migration. Our data indicate that TNF-alpha alters the expression of IGF-I system proteins in vivo, and suggest that altered expression of IGF-I system proteins may in part explain TNF-alpha deleterious actions on brain growth.

Age Factors↗

Reconstitution of thymic function in HIV-1 patients treated with highly active antiretroviral therapy.

The extent to which highly active antiretroviral therapy can restore thymic function in HIV-1 infected patients is not known. We simulate treatment using a temporal model of thymopoiesis during HIV-1 infection, tracking thymic function by the number of recent thymic emigrants (RTE) exported to the periphery per day. Our results suggest that suppressing viral load in peripheral blood and improving inherent thymic function are necessary for the reconstitution of RTE levels in adult thymic infection with either R5 or X4 HIV-1 strains. This is also the case in pediatric thymic infection with R5 strains. However, recovery of RTE levels during pediatric infection with X4 strains also depends on high drug efficacy within the thymus. We further predict that protease inhibitors have high levels of efficacy directly suppressing viral replication within the thymus, while reverse transcriptase inhibitors have low efficacy.

Adult↗

Differential expression of transforming growth factors-beta 1, -beta 2, -beta 3 and the type I, II, III receptors in the lining epithelia of inflamed gingiva.

AIMS: To investigate the distribution of transforming growth factor-beta isoforms in chronically inflamed periodontal tissues. METHODS: The present study determined, by immunohistochemistry, the expression patterns of TGF-betas and their receptors in the lining epithelia of inflamed gingiva. Frozen sections were obtained from 22 human gingival biopsies. RESULTS: TGF-beta 1 was not detected in gingival epithelial cells in examined sections. Detection of TGF-beta 2 indicated a progressive reduction of staining from the external oral epithelium through to gingival sulcus and the gingival attachment or pocket epithelium. TGF-beta 3 showed intense staining in all domains of both minimally inflamed gingiva and advanced periodontitis tissues. TGF-beta RI was visualised as focal staining of the spinous layer in the external oral epithelium of both periodontitis lesions and minimally inflamed tissues. TGF-beta RII was present throughout the strata, but with progressive reduction in intensity from the oral epithelium to gingival attachment or pocket epithelium respectively while, conversely, TGF-beta RIII showed an increase in diffuse staining intensity from external oral epithelium to pocket epithelium. CONCLUSIONS: A distinct expression profile was observed within different individuals for TGF-betas and the corresponding receptors. These findings provide a basis for evaluation of the role of these growth factors in the pathogenesis of periodontitis.

Blotting, Western↗

Cosegregation analysis of natriuretic peptide genes and blood pressure in the spontaneously hypertensive rat.

1. The natriuretic peptide precursor A (Nppa) and B (Nppb) genes are candidate genes for hypertension and cardiac hypertrophy in the spontaneously hypertensive rat (SHR). The purpose of the present study was to determine the role of the Nppa and Nppb genes in the development of hypertension in the SHR. 2. A cohort (n = 162) of F2 segregating intercross animals was established between strains of hypertensive SHR and normotensive Wistar-Kyoto rats. Blood pressure and heart weight were measured in each rat at 12-16 weeks of age. Rats were genotyped using 11 informative microsatellite markers, distributed in the vicinity of the Nppa marker on rat chromosome 5 including an Nppb marker. The phenotype values were compared with genotype using the computer package mapmaker 3.0 (Whitehead Institute, Boston, MA, USA) to determine whether there was a link between the genetic variants of the natriuretic peptide family and blood pressure or cardiac hypertrophy. 3. A strong correlation was observed between the Nppa marker and blood pressure. A quantitative trait locus (QTL) for blood pressure on chromosome 5 was identified between the Nppa locus and the D5Mgh15 marker, less than 2 cM from the Nppa locus. The linkage score for the blood pressure QTL on chromosome 5 was 3.8 and the QTL accounted for 43% of the total variance of systolic blood pressure, 54% of diastolic blood pressure and 59% of mean blood pressure. No association was found between the Nppb gene and blood pressure. This is the first report of linkage between the Nppa marker and blood pressure in the rat. There was no correlation between the Nppa or Nppb genes or other markers in this region and either heart weight or left ventricular weight in F2 rats. 4. These findings suggest the existence of a blood pressure-dependent Nppa marker variant or a gene close to Nppa predisposing to spontaneous hypertension in the rat. It provides a strong foundation for further detailed genetic studies in congenic strains, which may help to narrow down the location of this gene and lead to positional cloning.

Animals↗

Regulation of aldosterone synthase gene expression in the rat adrenal gland and central nervous system by sodium and angiotensin II.

We have developed a highly sensitive QRT-PCR method for the measurement of CYP11B1 (11beta-hydroxylase) and CYP11B2 (aldosterone synthase) mRNAs to study their expression in the rat brain in response to dietary sodium manipulation and angiotensin (Ang)II infusion. Male Wistar Kyoto rats (n = 6) were fed normal, high, or low sodium diets for 12 d or were administered AngII or vehicle for 7 d. CYP11B2 and CYP11B1 expression was measured in RNA from adrenal gland and discrete brain regions using real-time QRT-PCR. Sodium restriction increased adrenal CYP11B2 expression 57-fold from 1.0 x 10(5) +/- 0.6 x 10(5) to 57 x 10(5) +/- 22 x 10(5) copies/ microg RNA (mean +/- SEM; P < 0.05);in the hippocampus, 14-fold from 5.4 x 10(2) +/- 0.8 x 10(2) to 74 x 10(2) +/- 31 x 10(2) copies/ microg RNA (P < 0.05); and in the cerebellum, 5-fold from 1.9 x 10(3) +/- 0.7 x 10(3) to 9.9 x 10(3) +/- 3.0 x 10(3) copies/ microg RNA (P < 0.01). CYP11B2 gene expression in the brainstem and hypothalamus was not affected. High-sodium diet reduced adrenal CYP11B2 expression to 0.19 x 10(5) +/- 0.1 x 10(5) copies/ microg RNA (P < 0.05) but did not affect central nervous system (CNS) expression significantly. AngII significantly increased adrenal CYP11B2 expression but did not affect CNS expression. Brain CYP11B1 mRNA levels were 10- to 1000-fold higher than CYP11B2 but were unaffected by dietary sodium or AngII. To summarize, we have identified a local CYP11B2 response to sodium depletion in the hippocampus and cerebellum. This is the first such regulation of CYP11B2 transcription to be identified in the CNS.

Adrenal Cortex Hormones↗

Activation of peroxisome proliferator-activated receptor alpha in human endothelial cells increases plasminogen activator inhibitor type-1 expression.

OBJECTIVE: To investigate the effect of peroxisome proliferator-activated receptors (PPARs) activators on plasminogen activator inhibitor 1 (PAI-1) expression in human umbilical vein endothelial cells and elucidate a possible mechanism. METHODS: Human umbilical vein endothelial cells (HUVECs) were obtained from normal fetus, and cultured conventionally. Then the HUVEC were exposed to fatty acids and prostaglandin J(2) in varying concentrations with fresh media. RT-PCR and ELISA were used to determine the expression of PPAR and PAI-1 in HUVECs. Transient co-transfection of PAI-1 promoter and PPARalpha gene or PPARgamma gene to ECV304 was performed. RESULTS: PPARalpha, PPARdelta and PPARgamma mRNA in HUVECs were detected by RT-PCR. Treatment of HUVECs with PPARalpha and PPARgamma activators-linolenic acid, linoleic acid, oleic acid and prostaglandin J(2), but not with stearic acid could augment PAI-I mRNA expression and protein secretion in a concentration-dependent manner. Proportional induction of PAI-1 promoter activity was observed through increasing amounts of PPARalpha DNA in HUVECs through a transient gene transfection assay, although the mRNA expression of the 3 subtypes of PPAR with their activators were not changed compared with controls. CONCLUSIONS: HUVECs express PPARs. PPARs activators may increase PAI-1 expression in endothelial cells (EC). Although PPARs expression was not enhanced after being stimulated by their activators in EC, the functionally active PPARalpha is probably involved in regulating PAI-1 expression in EC.

Cells, Cultured↗

Transfection, overexpression and clinical application of human 60 kDa Ro/SSA autoantigens in HEp-2 cells.

OBJECTIVE: To develop an improved substrate for indirect immunofluorescence test (IIF) for detecting anti-Ro60/Sjogren's syndrome A (Ro/SSA) autoantibodies. METHODS: 60-kDa Ro/SSA autoantigens (Ro60) cDNAs were obtained from human placental cDNA library using polymerase chain reaction (PCR) and were cloned into the mammalian expression vector-pEGFP-C1. Then, the recombinant plasmids were transfected into HEp-2 cells. We confirmed the overexpression, localization and antigenicity of fusion proteins in transfected cells by means of immunoblotting, confocal fluorescence microscopy and IIF. HEp-2 and HEp-Ro60 were analyzed by IIF using a panel of 10 precipitin-positive anti-Ro human sera simultaneously. RESULTS: Stable expression of Ro60-green fluorescent protein (Ro60-GFP) fusion proteins were maintained ten more generations. Ro60-GFP kept the antigenicity of Ro while demonstrating its own characteristic immunofluorescent pattern in HEp-Ro60 cells. The transfectants dramatically increased the sensitivity of IIF testing (a mean increase of 6.7-fold in endpoint titer). Eight over ten (8/10) positive anti-Ro sera showed characteristic immunofluorescent patterns for HEp-Ro60, including two sera that were anti-nuclear antibodies (ANA) negative for untransfected HEp-2. IIF-ANA in all healthy sera was negative for HEp-Ro60. CONCLUSIONS: As a new substrate for IIF, the Ro60 transfectants can be used to detect anti-Ro antibodies. In addition, transfected HEp-2 cells keep the immunofluorescent properties of HEp-2 cells in IIF-ANA tests and can be employed as a substrate for routine IIF-ANA detection.

Antibodies, Antinuclear↗

A survey on the efficacy and tolerability of micronized fenofibrate in patients with dyslipidemia.

OBJECTIVE: To demonstrate the clinical efficacy of micronized fenofibrate on mildly-moderately elevated LDL-C levels and reduced HDL-C levels. METHODS: During 1998 - 1999, 2358 patients with type IIa, IIb and IV hyperlipidemia were monitored in 16 cities in China. They were treated daily with micronized fenofibrate (micronized lipanthyl) 200 mg for 8 weeks. Lipid levels before and after the treatment were measured and analyzed. RESULTS: Micronized fenofibrate significantly increased HDL-C levels by 12.7%, the effect being inversely correlated to the baseline level of HDL-C. Out of the total patient population, a baseline level of HDL-C < 1.0 mmol/L was found in 837 patients: amongst this group, 510 patients (60.9%) were observed to have an increase in the level of HDL-C to > 1.0 mmol/L with a mean of 1.3 mmol/L, after 8-week micronized fenofibrate therapy. Furthermore, the mean LDL-C level decreased by 15.9% following an 8-week treatment of micronized fenofibrate, an effect positively correlated to the baseline level of LDL. In general, all patients tolerated the drug comfortably. CONCLUSIONS: Short-term treatment of micronized fenofibrate in patients with dyslipidemia significantly increases HDL-C level and reduces mildly-moderately elevated LDL-C level. As expected, it also reduces triglyceride levels.

Adult↗