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Biomedical subjects

D Xu

Publications and source records attributed to D Xu.

At least 379 records · Page 21Linked to original sources

Reversal of ongoing heart, kidney, and pancreas allograft rejection and suppression of accelerated heart allograft rejection in the rat by rapamycin.

Rapamycin was examined for its effects on reversal of ongoing rejection of heart, kidney, and pancreas allografts and on suppression of accelerated heart allograft rejection in the rat. A 14-day continuous intravenous infusion of RAPA by an osmotic pump at 0.02, 0.08, and 0.8 mg/kg/day to WFu recipients, starting 4 days postoperation, significantly protected the BUF heart allografts with a mean survival time (MST) +/- 1 SD of 33.2 +/- 19.8 (p < 0.001), 48.2 +/- 14.8 (p < 0.001), and 107.0 +/- 86.3 (p < 0.001) days, respectively, as compared with 7.2 +/- 0.8 days in vehicle-treated controls. Combination of low dose RAPA (0.02 mg/kg or 0.08 mg/kg) and low dose CsA (2 mg/kg) achieved significantly longer cardiac allograft survival than RAPA or CsA alone. RAPA's effect in reversing ongoing rejection of renal and pancreatic allografts was also significant. The BUF kidney and pancreas in WFu recipients treated with a 14-day course of RAPA (0.8 mg/kg/day starting 4 days postoperation) had an MST of 44.7 +/- 15.9 (p < 0.001) and 46.4 +/- 12.5 (p < 0.001), while in vehicle-treated controls, the grafts were rejected within 10 days. RAPA could also suppress accelerated cardiac allograft rejection. Hyperimmunized WFu recipients were treated with two 14-day courses of continuous i.v. RAPA at 0.8 mg/kg/day before and after BUF heart allografting. Significantly longer survival of the grafts (25.5 +/- 3.7 days, p < 0.001) was achieved compared with that of the vehicle-treated controls (3.8 +/- 1.0 days). One-course RAPA treatment before or after heart transplantation was considerably less effective. RAPA was also shown to prevent the increase of serum IgG levels and to inhibit the production of specific cytotoxic Ab in the rat receiving repetitive immunizations. Such effects presumably contribute to the inhibition of the accelerated rejection. The results of this study suggest that RAPA is potentially useful in treatment of ongoing as well as accelerated allograft rejection.

Animals↗

Polydnavirus genome segment families in the ichneumonid parasitoid Hyposoter fugitivus.

Sequences homologous to encapsidated polydnavirus genome segments are routinely detected in parasitoid chromosomal DNA; typically, each viral genome segment hybridizes to a single cognate chromosomal locus. In the present study, we show that in some cases, two or more viral genome segments may hybridize to the same chromosomal locus. Genome segments of this type invariably share a majority of restriction enzyme sites, a fact suggesting derivation from a common template. Families of viral genome segments appear to be relatively common in the Hyposoter fugitivus polydnavirus genome.

Animals↗

Treatment of autoimmune uveoretinitis in the rat with rapamycin, an inhibitor of lymphocyte growth factor signal transduction.

Rapamycin (RAPA) is a macrolide antibiotic with unique immunosuppressive properties. RAPA inhibits T-cell function by interfering with IL-2 and IL-4 signal transduction. It does not prevent IL-2 production or IL-2R expression. The efficacy of RAPA in the treatment of autoimmune diseases was evaluated using the experimental autoimmune uveoretinitis (EAU) model. EAU was actively induced in Lewis rats by immunization with S-antigen in Hunter's adjuvant. RAPA and control vehicle were administered by continuous intravenous infusion over a 14 day period by miniosmotic pump. RAPA treatment initiated on the day of immunization or 7 days later was found to efficiently inhibit EAU induction. The minimal effective dose was 0.1 mg/kg/d. EAU inhibition was correlated with reduced number of cells in the immunization site draining lymph nodes, as well as with a shift and lowering of the peak of the lymphocyte proliferative response curve. The anti-S-antigen antibody response was delayed by 3 days under RAPA treatment and the serum levels lowered in a dose dependent manner. An initial body weight loss was observed during the first week of drug administration, but there was a normal weight gain afterward.

Animals↗

Parkinsonism induced with 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP) in cats: behavioral, biochemical and pathological studies.

Intraperitoneal injection of 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP) in four cats produced akinesia, bradykinesia, crouched posture, feeding difficulty, and so on, lasting for two weeks. Madopar therapy ameliorated these motor impairments. Reduction of the concentration of dopamine and its metabolites was determined in the substantia nigra and putamen by high performance liquid chromatography (HPLC). Depletion of noradrenaline, serotonin and their metabolites was also seen. Loss of nerve cells and proliferation of glial cells in the substantia nigra were observed under the light microscope. The results indicate that MPTP-induced Parkinsonism in the cat provides an animal model that can be used for basic and therapeutic research on Parkinson's disease.

1-Methyl-4-phenyl-1,2,3,6-tetrahydropyridine↗

Structure-function studies of the C-terminal alpha-helix of human interleukin-2 by site-directed mutagenesis.

By using oligonucleotide-mediated site-directed mutagenesis, we obtained three human interleukin-2 analogs with substitution of Pro in the C-terminal amphiphilic alpha-helix, 125Pro-IL-2, 127Pro-IL-2 and 125Pro-127Pro-IL-2. The bioactivities of all these analogs were decreased. The extent of the decrease in bioactivity coincided with the degrees of secondary and tertiary structure destroyed, as evaluated by circular dichroism and intrinsic fluorescence analysis. The results suggested that the integrity of the hydrophobic face in the C terminal alpha-helix is crucial for the structure and function of interleukin-2.

Base Sequence↗

Treatment of chronic allograft rejection.

Chronic renal allograft rejection at present the most important factor affecting long-term graft survival, and effective therapeutic method is still lacking. This article reports 43 cases of chronic renal rejection treated from January 1989 to April 1992. Effective result was obtained in 27 cases (62.8%). The authors believe that increasing dosage of the immunosuppressants is an effective method for the management of chronic renal rejection and the earlier the treatment is given the better the results would be. The selection and the regulation of the dosage of the immunosuppressants should be determined according to the individual situation.

Adolescent↗

The mechanism(s) of the alcohol-induced impairment in glycogen synthesis in oxidative skeletal muscles.

Ethanol is known to acutely inhibit glucose-stimulated glycogen deposition in skeletal muscles in the rat. This effect is selective for oxidative as opposed to non-oxidative muscles. This paper explores the biochemical basis for this selective impairment in muscle glycogen metabolism. 4-Methylpyrazole, a potent inhibitor of alcohol dehydrogenase, potentiated the ethanol-mediated impairment in glycogen deposition in oxidative muscles and was associated with abnormalities in glycogen deposition in non-oxidative muscles. By contrast, disulfiram, a potent inhibitor of aldehyde dehydrogenase had no effect on the ethanol-mediated impairment in glycogen deposition in both oxidative and non-oxidative muscles. The implication is that it is the ethanol molecule itself, and not one of its metabolites (acetaldehyde, acetate, excess NADH), that mediates the defect in glycogen metabolism.

Animals↗

Role of xanthine oxidase and prostaglandins in inflammatory-induced bacterial translocation.

We have previously documented that a nonlethal dose of zymosan causes gut mucosal injury associated with increased xanthine oxidase activity and bacterial translocation. The current study was performed to investigate the role of xanthine oxidase activation and other potential mediators of intestinal injury in an LD50 zymosan model. Specific pathogen-free rats and mice were pretreated with saline, allopurinol, or ibuprofen prior to intraperitoneal injection of either saline or the LD50 dose of zymosan. Bacterial translocation to the mesenteric lymph node and systemic organs was measured at 6 or 24 hr following injection. In addition, separate animals in each group were followed for 7 days for survival. Pretreatment with allopurinol or ibuprofen reduced both the incidence and the magnitude of translocation at 6 hr in rats and mice (P < 0.05). In the rats pretreated with allopurinol or ibuprofen, no reduction in the incidence or magnitude of translocation occurred at 24 hr. In the mice pretreated with allopurinol or ibuprofen, although the incidence of translocation was not reduced at 24 hr, the magnitude of translocation was reduced (P < 0.05). Pretreatment with allopurinol or ibuprofen also resulted in an improvement in survival, when compared to zymosan alone (P < 0.01). Allopurinol and ibuprofen provide protection against bacterial translocation and improvement in survival following challenge with a lethal dose of zymosan.

Allopurinol↗

Ethanol and glycogen synthesis in cardiothoracic and skeletal muscles following glucose re-feeding after starvation in the rat.

The pattern of glycogen deposition in individual cardiothoracic and skeletal muscles in response to oral and intraperitoneal glucose administration was examined in 40 h-starved rats. Rates of glycogen synthesis were consistently higher in oxidative muscles than in non-oxidative muscles. Intragastric ethanol administration was associated with an impaired glycaemic response and the almost total abolition of glycogen deposition in oxidative muscles in response to oral or intraperitoneal glucose re-feeding. This effect was dose-dependent and differential, in that ethanol produced no equivalent impairment in glycogen deposition in non-oxidative muscles. Ethanol treatment also selectively promoted glycogenolysis in oxidative muscles in the starved state. There was positive correlation (P < 0.001) between the decrease in glycogen levels in soleus and diaphragm muscles in response to increasing ethanol doses and blood glucose and lactate concentrations after intraperitoneal glucose administration, implying that the basis for the impairment in glycogen synthesis may be diminished glucose availability. The mechanism whereby ethanol may differentially compromise carbohydrate metabolism in oxidative muscles is discussed.

Animals↗

Extracellular matrix in the rat spiral limbus.

The matrix of the spiral limbus is obviously a special form of the intercellular substance. In the present study, the rat's spiral limbus was investigated by electron microscopy after fixation with ruthenium red and tannic acid and immunofluorescence to demonstrate matrix components. Collagen types I, II, V, VI, VII, IX and XI and fibronectin were not observed. Collagen type II and cartilage-specific proteoglycans, however, occurred in large quantities. The basal lamina of interdental cells and inner sulcus cells did not contain any collagen type IV, while the basal lamina of the capillaries had only minor amounts. Laminin and nidogen appeared in large amounts in the basal lamina. After fixation with tannic acid, the matrix between the interdental cells and the capillaries contained 20- to 22-nm-thick single and irregularly running fibrils as well as plaques of a fine granular material. After fixation with ruthenium red, 30- to 60-nm-thick, electron-dense granules occurred and most probably consisted of proteoglycans. These findings indicate that the composition of the matrix of the spiral limbus is similar to that of cartilage but not identical.

Animals↗

Expression and pharmacological characterization of a stimulatory subtype of adenosine receptor in fetal chick ventricular myocytes.

Ventricular and atrial myocytes cultured from chick embryos 14 days in ovo were used as model systems to study cardiac adenosine receptors. In membranes of ventricular cultures, blocking of the A1-adenosine receptor pathway by the A1-selective antagonist 8-cyclopentyl-1,3-dipropylxanthine (DPCPX) or by pertussis toxin treatment of the myocyte resulted in a significant adenosine agonist-mediated stimulation of the adenylate cyclase activity. The maximal increases in adenylate cyclase activity caused by the equipotent or the A2-adenosine receptor-selective agonists (from 52.1 +/- 3% to 63 +/- 10% [mean +/- SEM]) were significantly greater than those caused by the A1-selective agonists (from 11 +/- 5% to 34.6 +/- 7%) (p less than 0.01, by t test, n = 4-8). However, in membranes of atrial myocytes, when A1-subtype had been blocked, the various adenosine agonists had no effect on the adenylate cyclase activity. Whether the stimulatory adenylate cyclase-coupled adenosine receptor is also capable of stimulating contractility in the intact ventricular myocyte was next investigated. In ventricular but not in atrial cells, the various adenosine agonists caused an increase in the contractile amplitude in the presence of DPCPX or in myocytes preexposed to pertussis toxin. The increase in contraction amplitude caused by each agonist was expressed as percent of maximum (maximum is the increase in contractility caused by 2.4 mM calcium). In the pertussis toxin-treated myocyte, the maximal increases caused by the equipotent or A2-agonists (NECA, MECA, CV-1808, and CGS21680, from 49.6 +/- 3% to 52.5 +/- 6%, n = 8-12) were significantly greater than those elicited by the A1-agonists (2-CADO, S-PIA, R-PIA, and DCCA, from 12 +/- 4% to 37 +/- 3%, n = 8) (p less than 0.05, by t test). These data demonstrated that a stimulatory adenosine receptor, likely the A2-adenosine receptor, was present on the ventricular but not the atrial myocytes and was linked directly to a stimulation of the cardiac contractility. The functional effects mediated by the A1-subtype became manifested in the presence of isoproterenol, as evidence by an inhibition of the isoproterenol-stimulated increases in adenylate cyclase activity and in cardiac contractility by adenosine agonists. Thus, both subtypes of adenosine receptors, each mediating opposing responses, were present on the ventricular myocytes, whereas only the A1-subtype was found in the atria. The presence of a stimulatory functional A2-adenosine receptor may help explain the absence of a direct negative inotropic response to adenosine in the ventricle.

Adenylate Cyclase Toxin↗

A new effective and non-harmful chemical adjuvant for the induction of experimental autoimmune uveoretinitis.

The induction of T cell mediated disease models in animals is usually dependent on the use of complete Freund's adjuvant (CFA). In order to avoid the painful side effects of CFA on the animals, we tested the capacity to induce experimental autoimmune uveoretinitis (EAU) with Hunter's adjuvant (HA). This new adjuvant makes use of nonionic copolymer surfactants, and does not cause deleterious effects to animals. We have found that EAU could be efficiently induced in rats with low doses of S-Ag (10 micrograms) in very small quantity of HA (10 microliters). The biologic parameters of EAU induction showed a potent stimulation of lymphocytes proliferation maximal 11 days after immunization, as well as high levels of antibody production.

Adjuvants, Immunologic↗

[Application of the regression orthogonal design to the fertilization of Psoralea corylifolia L. for optimum yield].

This paper probes into the determination of the optimum amount of fertilization by applying regression orthogonal design. After a significance test by regression equation, a regression equation can be set up, i. e. Y = 25.21 + 9.18 Xn + 15.68 Xp - 0.4 Xn2 - 0.98 Xp2 + 0.062 Xn Xp. This equation can be used to describe the relationship between yield and amount of fertilization.

Fertilizers↗

Impaired attachment of hepatocytes to extracellular matrix components after chronic ethanol administration.

BACKGROUND: Previous studies have shown that the assembly and properties of the hepatocyte plasma membrane are altered by ethanol administration, indicating possible changes in the receptor-mediated binding of the plasma membrane to extracellular matrix substrates. In the present study, the effects of chronic ethanol consumption on the ability of hepatocytes to attach to various components of the extracellular matrix were investigated. EXPERIMENTAL DESIGN: Rats were pair-fed for 5 weeks with a liquid diet containing either ethanol (as 36% of total calories) or isocaloric carbohydrate. The effects of ethanol treatment on hepatocyte-extracellular matrix interactions was ascertained by determining the ability of isolated hepatocytes to attach to various extracellular matrix substrates. RESULTS: The attachment of hepatocytes, isolated from the ethanol-fed rats, to laminin-coated plates was significantly decreased compared with hepatocytes from chow-fed or pair-fed controls. Greater decreases in attachment were seen when higher numbers of hepatocytes were seeded in the plates. Similar inhibitions of attachment were also observed when fibronectin or type I collagen were used as matrices. Time-course cell attachment assays indicated that the maximum extent of attachment rather than the rate of attachment was primarily altered by chronic ethanol feeding. Hepatocytes from the ethanol-fed rats also detached more readily from the matrix-coated plates than those from the controls. A reduced number of functional surface receptors for matrix components is likely the most important factor that accounts for the ethanol-induced impairment of hepatocyte attachment. CONCLUSIONS: These results indicate that chronic ethanol administration impairs the interactions of hepatocytes with their extracellular matrix and that this defect could lead to alterations of hepatocyte structure and function.

Animals↗