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Biomedical subjects

M Xu

Publications and source records attributed to M Xu.

At least 145 records · Page 8Linked to original sources

DNA fragmentation in apoptosis.

Cleavage of chromosomal DNA into oligonucleosomal size fragments is an integral part of apoptosis. Elegant biochemical work identified the DNA fragmentation factor (DFF) as a major apoptotic endonuclease for DNA fragmentation in vitro. Genetic studies in mice support the importance of DFF in DNA fragmentation and possibly in apoptosis in vivo. Recent work also suggests the existence of additional endonucleases for DNA degradation. Understanding the roles of individual endonucleases in apoptosis, and how they might coordinate to degrade DNA in different tissues during normal development and homeostasis, as well as in various diseased states, will be a major research focus in the near future.

Animals↗

Exercise training prevents maturation-induced decreases in insulin receptor substrate-1 and phosphatidylinositol 3-kinase in rat skeletal muscle.

We have previously reported that exercise training prevents a maturation-induced decrease in insulin sensitivity and suggested that an improvement of insulin sensitivity by exercise training was attributable, in part, to an increase in insulin-sensitive GLUT-4 on the skeletal muscle plasma membrane. In this study, we examined the effects of maturation and exercise training on the gene expression and protein content of the components of post-insulin receptor signal transduction in rat skeletal muscle. Rats aged 3 weeks were sedentary or trained by voluntary running through 4 or 27 weeks of age, and then the rats in both the sedentary and trained groups were killed and the gastrocnemius muscle was immediately removed for analysis of mRNA and protein content. The concentration of mRNA and protein for insulin receptor substrate-1 (IRS-1) in sedentary rats significantly decreased with maturation (49% and 63%, respectively, at age 27 weeks v age 4 weeks), but in trained rats they did not decrease with maturation. Although the level of phosphatidylinositol 3-kinase (PI 3-kinase) mRNA in sedentary rats was not altered with maturation, PI 3-kinase protein in sedentary rats significantly decreased with maturation (73% at 27 weeks v 4 weeks). However, PI 3-kinase protein in trained rats did not decrease with maturation. These results suggest that the prevention of maturation-induced decreases in the protein content of IRS-1 and PI 3-kinase is involved in the mechanisms responsible for the improvement of insulin sensitivity by exercise training, and exercise training may affect transcriptional regulation of the IRS-1 gene and posttranscriptional regulation of PI 3-kinase expression.

Animals↗

Stability of rapidly adapting afferent entrainment vs responsivity.

Spike discharge activity was recorded from low-threshold, rapidly adapting, skin mechanoreceptive afferents (RA afferents) dissected from the median (forelimb) or tibial (hindlimb) nerves in anesthetized monkeys and cats. The spike activity was evoked by delivery of controlled sinusoidal vertical skin displacement ("flutter") stimuli to the receptive field (RF). The stimuli (15-30 Hz; 30-400 microm peak-to-peak amplitude; duration 0.8-15 s) were superimposed on a static skin indentation (0.5-1.0 mm) which was either maintained continuously throughout the run or applied trial-by-trial. The neural activity and the analog signal of the position of the stimulator probe were digitized at 10 kHz resolution and stored for off-line analysis. The main goal was to determine whether changes in the RA afferent response to skin flutter stimulation may be responsible for the enhanced capacity to discriminate stimulus frequency that accompanies a relatively brief (approximately 1 min) pre-exposure to such stimulation in humans. To this end, the spike train data were evaluated using methods that enabled independent measurement of entrainment and responsivity. Responsivity (response intensity) was measured as the average number of spikes/stimulus cycle, while entrainment (the degree to which evoked spike train activity is phase-locked to the stimulus) was quantitatively assessed using statistical techniques developed for the analysis of "circular" (directional) data, supplemented by methods based on the calculation of power spectra from point process data. The methods are demonstrated to enable quantification of RA afferent entrainment over a range of stimulus durations and amplitudes substantially greater than reported in previous studies. While RA afferent responsivity was found to decline to a minor extent (10-20%) both across and within stimulus trials, entrainment remained consistently high and stable, and exhibited no temporal trends or dependence on any other measured factor. The average phase angle of the entrained RA afferent response also remained stable both within and across trials, showing only a tendency to increase slightly during the initial 100-500 ms after stimulus onset. The results imply that the improved capacity to discriminate stimulus frequency that develops in response to an exposure to cutaneous flutter stimulation is not attributable to a change in RA afferent entrainment per se.

Afferent Pathways↗

Effects of radolmidine, a novel alpha2 -adrenergic agonist compared with dexmedetomidine in different pain models in the rat.

BACKGROUND: Intrathecally administered alpha2-adrenoceptor agonists produce effective antinociception, but sedation is an important adverse effect. Radolmidine is a novel alpha2-adrenoceptor agonist with a different pharmacokinetic profile compared with the well-researched dexmedetomidine. This study determined the antinociceptive and sedative effects of radolmidine in different models of acute and chronic pain. Dexmedetomidine and saline served as controls. METHODS: Male Sprague-Dawley rats were studied in acute pain (tail flick), carrageenan inflammation, and the spinal nerve ligation model of neuropathic pain. Mechanical allodynia was assessed with von Frey filaments, cold allodynia with the acetone test, and thermal hyperalgesia with the paw flick test. Locomotor activity-vigilance was assessed in a dark field. Dexmedetomidine and radolmidine were administered intrathecally in doses of 0.25 microg, 2.5 microg, 5 microg, and 10 microg. RESULTS: In the tail flick test, radolmidine showed a dose-dependent antinociceptive effect, being equipotent compared with dexmedetomidine. In carrageenan inflammation, intrathecal doses of 2.5 microg or 5 microg of dexmedetomidine/radolmidine produced significant antinociception compared with saline (P < 0.01). The two drugs were equianalgesic. In the neuropathic pain model, an intrathecal dose of 5 microg dexmedetomidine-radolmidine had a significant antiallodynic effect compared with saline (P < 0.01). The two drugs were equipotent. Intrathecal administration of both dexmedetomidine and radolmidine dose dependently decreased spontaneous locomotor acitivity-vigilance, but this effect was significantly smaller after intrathecal administration of radolmidine than after intrathecal dexmedetomidine. CONCLUSIONS: Radolmidine and dexmedetomidine had equipotent antinociceptive effects in all tests studied. However, radolmidine caused significantly less sedation than dexmedetomidine, probably because of a different pharmacokinetic profile.

Adrenergic alpha-Agonists↗

Crystallization and preliminary crystallographic characterization of recombinant L-methionine-alpha-deamino-gamma-mercaptomethane lyase (methioninase).

L-Methionine-alpha-deamino-gamma-mercaptomethane lyase (rMETase) is involved in the alpha,gamma-elimination of methionine to alpha-ketobutyrate, methanethiol and ammonia. The reaction catalyzed by rMETase reduces the methionine concentration of methionine-dependent tumor cells, arresting their growth. Towards the goal of developing rMETase into an effective antitumor therapeutic and also to understand the catalytic mechanism of this enzyme, rMETase from Pseudomonas putida has been expressed, purified and crystallized. The crystals belong to space group P2(1)2(1)2 and diffract X-rays to at least 2.68 A resolution at 100 K using synchrotron radiation. The unit cell has parameters a = 152.8, b = 154.6, c = 80.8 A and contains four molecules in the asymmetric unit.

Carbon-Sulfur Lyases↗

Probing the role of the dopamine D1 receptor in psychostimulant addiction.

Pharmacological studies have shown that blockade of the dopamine D1 receptor attenuates locomotor behaviors and prevents sensitization to psychostimulants. However, due to possible cross-reactivities of the D1 receptor antagonists, the exact role of the D1 receptor in response to psychostimulants is still not definitive. To address this issue, we used D1 receptor mutant mice and tested locomotor responses of the mutant mice and wild-type control mice after cocaine and amphetamine treatments. We found that the D1 receptor mutant mice exhibit significantly reduced locomotor responses to repeated cocaine administration compared to wild-type mice. Moreover, D1 receptor mutant mice were less sensitive than the wild-type mice to acute amphetamine administration over a dose range, although they exhibited apparently similar behavioral responses to those of the wild-type mice after repeated amphetamine administration at the 5 mg/kg dose. These studies suggest that the D1 receptor plays an essential role in mediating cocaine-induced locomotor responses in mice. In addition, the D1 receptor also participates in behavioral responses induced by amphetamine administration. Further molecular studies are in progress to address the intracellular signaling mechanisms in response to D1 receptor activation by psychostimulants.

Amphetamine↗

Attenuation of luteinizing hormone surges in neuropeptide Y knockout mice.

To clarify the role of neuropeptide Y (NPY) in the regulation of the reproductive axis, these experiments evaluated the extent to which reproductive hormone secretions may be compromised in the absence of NPY expression. In NPY knockout (NPY-KO) and wild-type (WT) mice, hormone secretions were analyzed under conditions of basal release, following ovariectomy (OVX), in proestrus, after estrogen treatments which induce gonadotropin surges and after injection of gonadotropin-releasing hormone (GnRH). Radioimmunoassays of serum from metestrous females revealed that basal luteinizing hormone (LH), follicular-stimulating hormone (FSH), estrogen and progesterone levels, as well as hypothalamic GnRH tissue concentrations, were not different between the two genotypes. The LH and FSH levels and GnRH tissue concentrations were likewise similar in WT and NPY-KO mice 5 and 10 days following OVX. Significant differences in LH levels were observed however when animals were exposed to pheromone stimulation (male mouse urine) to induce preovulatory LH surges. In proestrous animals, mean LH levels at 18.30-19.00 h were reduced by about 66% in NPY-KO versus WT mice (4.33 +/- 1.12 ng/ml in the WT mice vs. 1.47 +/- 0.42 ng/ml in the NPY-KO mice, p = 0.028). Despite diminishment of LH surges in NPY-KO mice, corpora lutea were equally abundant in the ovaries of NPY-KO and WT mice. In an additional experiment, a surge-inducing regimen of estradiol-17-beta (E2) and estradiol benzoate (E2B) was administered to OVX animals. The LH surges in the NPY-KO animals treated in this manner were again diminished by approximately 50% compared to corresponding values in WT animals (WT mice 7.33 +/- 0.97 ng/ml, NPY-KO mice 3.58 +/- 0.74 ng/ml; p = 0.0063). To assess the contribution of altered pituitary responsiveness to the diminishment of LH surges, LH responses to a GnRH challenge (200 ng/kg subcutaneously) were determined; NPY-KO animals exhibited LH responses that were significantly reduced compared to values in WT mice (WT mice 4.88 +/- 0.56 ng/ml, NPY-KO mice 3.00 +/- 0.41 ng/ml; p = 0.013). Taken together, these observations do not support the idea that NPY plays a major role in the regulation of basal gonadotropin secretion or in mediating negative feedback actions of gonadal hormones. They demonstrate however that preovulatory NPY release is required for normal amplification of the LH surge that occurs on proestrus. Involvement of NPY in the generation of normal LH surges is partially mediated by the ability of the peptide to prime the anterior pituitary gland to GnRH stimulation.

Animals↗

Regulation of hypothalamic neuropeptide Y Y1 receptor gene expression during the estrous cycle: role of progesterone receptors.

Neuropeptide Y (NPY) stimulates the release of GnRH in an estrogen (E2)-dependent manner, which is important in generating preovulatory GnRH surges. We tested the hypothesis that E2 up-regulates NPY's actions by stimulating NPY Y1 receptor (Y1r) gene expression through a mechanism mediated by E2's ability to induce progesterone (P) receptors (PRs). In initial experiments, a specific Y1r antagonist BIBP3226 was used to confirm the involvement of Y1r in the stimulatory effects of NPY on in vivo GnRH release. Hypothalamic Y1r messenger RNA (mRNA) levels were then measured using competitive RT-PCR and were found to be significantly increased at 1000, 1200, and 1400 h on proestrus compared with other times of the day or cycle stage. Ovariectomy eliminated these increases, and E2 treatment restored them. Additional P treatment produced even larger increases in Y1r mRNA levels. To assess the role of PRs in stimulating Y1r expression, proestrous rats were treated with PR antagonist or oil vehicle and killed at 1200 h. Treatment with PR antagonist completely blocked the proestrous rise in Y1r gene expression. In parallel experiments, the same in vivo PR antagonist treatments also blocked NPY stimulation of GnRH release in vitro. Together our findings reveal that 1) Y1r mRNA levels are increased during the late morning and afternoon of proestrus; 2) Y1r mRNA levels are similarly increased by E2, and to an even greater extent by additional P; and 3) PR antagonism blocks both increased Y1r mRNA and induction of GnRH responsiveness to NPY. These observations support the idea that E2 up-regulates GnRH neuronal responses to NPY through stimulation of Y1r gene expression, and that E2's actions are mediated by the induction and subsequent activation of PRs.

Animals↗

Suppression of glycogen consumption during acute exercise by dietary branched-chain amino acids in rats.

The effects of a diet supplemented with branched-chain amino acids (BCAA; 4.8% or 6.2%) on BCAA catabolism and glycogen metabolism in rats were examined. Rats were fed a BCAA diet or control diet for 4 wk and part of the rats were subjected to exercise training during the experimental period. Feeding the BCAA diet increased serum BCAA concentrations and activity of the hepatic branched-chain alpha-keto acid dehydrogenase complex, the rate-limiting enzyme in the catabolism of BCAA, suggesting that dietary BCAA promotes BCAA catabolism. Although the serum glucose concentration and glycogen contents in the liver and gastrocnemius muscle of rested rats were not significantly affected by feeding of the BCAA diet, those in rats exhausted by acute exercise were 2-4-fold higher in rats fed the BCAA diet than in rats fed the control diet. The activity of pyruvate dehydrogenase complex in the liver and gastrocnemius muscle after acute exercise showed reverse trends; the complex activities (especially in liver) tended to be less in the BCAA diet group than in the control diet group. These results suggest that dietary BCAA spares glycogen stores in liver and skeletal muscle during exercise and that the decrease in pyruvate dehydrogenase complex activity in these tissues by dietary BCAA is involved in the mechanisms.

Amino Acids, Branched-Chain↗

[The effects of PDGF-AB on pro alpha 1 (III). mRNA expression of fibroblasts].

OBJECTIVE: To investigate the mechanism of PDGF-AB to promote wound healing and its role during the process of scar formation. METHODS: In vitro cultured fibroblasts of human normal skin and hypertrophic scar were treated with PDGF-AB. The expression of Pro alpha 1 (III) mRNA of the fibroblasts was evaluated by in situ hybridization technique. RESULTS: PDGF-AB could increase Pro alpha 1 (III) mRNA expression of fibroblasts of both normal skin and hypertrophic scar in a dose-dependent manner. However, the effect of PDGF-AB on hypertrophic scar fibroblasts was stronger. CONCLUSIONS: PDGF-AB may promote wound healing by stimulating extracellular matrix synthesis, e.g. collagen. PDGF-AB may also play a role in scar formation through collagen deposition.

Biomarkers↗

Molecular cloning, sequencing and expression of obese gene in the Chinese.

OBJECTIVE: To construct the human obese (ob) cDNA clone in the Chinese, and analyze the expression of the ob gene in adipose tissue of obese, non-obese subjects and nooinsulin-dependent diabetes mellitus (NIDDM) Chinese patients. METHODS: A ob cDNA clone was isolated by reverse transcription polymerase chain reaction (RT-PCR). Four groups of Chinese subjects participated in the study: 1) 12 obese subjects [body mass index (BMI): 28.5 +/- 2.3 kg/m2]; 2) 11 non-obese subjects (BMI: 21.0 +/- 1.5 kg/m2); 3) 8 obese NIDDM patients (BMI: 27.0 +/- 1.4 kg/m2); 4) 11 non-obese NIDDM patients (BMI: 21.2 +/- 1.4 kg/m2). The expression of ob gene mRNA in abdominal subcutaneous adipose tissue was examined using RNA dot blot hybridization with a digoxigenin-labeled human ob cDNA probe. The hybridized signals were quantitated by densitometry. RESULTS: A full human ob cDNA fragment which included a glutamine codon at +49 was obtained. A base substitution (A to G) in the coding region at position 287 was found, resulting in a glutamine being replaced by an arginine. Expression of the ob gene was significantly higher in Chinese obese subjects compared to non-obese ones (P < 0.05), and positively correlated with the BMI. No significant difference in the amount of ob mRNA was detected between non-diabetic and diabetic groups at the same BMI level. CONCLUSIONS: We constructed a full length human ob cDNA clone. The expression of the ob gene was significantly higher in Chinese obese subjects than in non-obese ones. The metabolic and hormonal changes associated with NIDDM are not the main factors regulating the expression of the ob gene.

Adult↗

Association of coagulation factor VII with the risk of myocardial infarction in the Chinese.

OBJECTIVE: To elucidate the association of plasma factor VII coagulant activity (FVIIc) with the risk of myocardial infarction (MI) and to assess the influence of factor VII gene MspI polymorphism and lipid metabolism on FVIIc in the Chinese. METHODS: A total of 137 patients with angiographically confirmed MI and 125 healthy individuals were evaluated retrospectively. Plasma FVIIc was measured by one-stage prothrombin time, and FVII genotype was determined after MspI digestion of polymerase chain reaction-amplified genomic DNA. Serum lipid levels were assessed by routine methods. RESULTS: MI patients had significantly higher levels of FVIIc (119.5% +/- 22.7% vs 99.9% +/- 21.8%, P < 0.01) and total serum cholesterol (5.80 +/- 1.06 mmol/L vs 5.53 +/- 1.08 mmol/L, P < 0.05) than controls, but only FVIIc independently correlated with the risk of MI (OR = 1.04, P < 0.01). There were no significant differences in FVII genotype or allele frequency between patients and controls (P > 0.05). Subjects with the Gln353 allele were associated with significantly lower FVIIc levels than Arg353 homozygotes (99.7% +/- 19.3% vs 111.4% +/- 24.6%, P < 0.05). Serum triglyceride was positively correlated with plasma FVIIc in both control (r = 0.25, P < 0.01) and case (r = 0.87, P < 0.01) groups, but this correlation was restricted to Arg/Arg genotype (r = 0.68, P < 0.01). A significant correlation of total serum cholesterol with FVIIc only appeared in Arg/Arg homozygotes (r = 0.17, P < 0.01). CONCLUSIONS: Our findings support the role of plasma FVIIc as a risk factor for MI in Chinese. Plasma triglyceride and FVII gene MspI polymorphism are two independent determinants of FVIIc. Assay of this polymorphism will be helpful in determining who will benefit most from lipid-lowing therapy.

Adolescent↗

[Development of drug resistance and alteration of cell cycle in lung cancer: a flow cytometric study].

OBJECTIVE: To study the relationship between the expression of multidrug resistance-associated protein (MRP) and P-glycoprotein (P-gp) and alteration of cell cycle during the process of drug resistance in lung cancer. METHODS: Lung adenocarcinoma cell line GLC-82 was treated with low concentration of adriamycin. At 0, 24, 48, 72 and 96 hr following adriamycin treatment, the expression of MRP and P-gp, and cell cycle were examined by bi-parameter flow cytometry. RESULTS: Treatment of GLC-82 cells with adriamycin at a final concentration of 0.05 microgram/ml resulted in progressive decrease in cells in G1 phase and increase in cells in S phase of the cell cycle. The expression level of P-gp was very low and showed little change with time. In contrast, MRP expression was significantly increased in a time-dependent manner, and was positively correlated with changes in S phase of the cell cycle. CONCLUSION: MRP expression may play a major role in the development of resistance to adriamycin.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

[Experimental study on combination of Ad-p53 with CDDP or As(2)O(3) in human lung adenocarcinoma cell line GLC-82].

OBJECTIVE: To evaluate the therapeutic efficiency of combining p53-expressing adenovirus with chemotherapy agents on GLC-82 human lung adenocarcinoma cells. METHODS: Human lung adenocarcinoma cell line GLC-82 was transfected with adenovirus-mediated p53 gene (Ad-p53) combining with administration of either kind of chemotherapeutic agents-cisplatin (CDDP) and arsenic trioxide (As(2)O(3)). The cell growth, morphological changes, cell cycle, apoptosis and molecular changes were measured using cell counting, reversmicroscope, flow cytometry, TUNEL, RT-PC, immunocytochemical assays, and in vivo therapy experiments to evaluate the therapeutic efficiency of such combined regimen. RESULTS: Ad-p53 transfer and CDDP (or As(2)O(3)) administration to GLC-82 cells could exertubstantially stronger therapeutic effects than the single agent treatment. Especially in in vivo experiments, combined administration of Ad-p53 and CDDP induced almost complete tumor remission (89.0%) compared to the partial tumor remission induced by single agent (43.9% or 57.3%). Moreover, delivery of Ad-p53, or administration of minimal-dose CDDP or As(2)O(3) or combined regimen could induce massive apoptosis of GLC-82 cells. Cell cycle analysis demonstrated that administration of CDDP or As(2)O(3) remarkably arrested GLC-82 cells in G(2)/M prior to apoptotic cell death. When treated with combined regimen, cells were arrested in G(2)/M to a greater extent prior to apoptotic cell death. CONCLUSION: After introduced into GLC-82 cells, Ad-p53 shows enhanced therapeutic efficiency for GLC-82 cells when combined with CDDP or As(2)O(3).

Adenocarcinoma↗

Effect of extensive excision of burn wound with invasive infection on hypermetabolism in burn patients with sepsis.

OBJECTIVE: To evaluate the effect of extensive excision of invasive burn wound infection on hypermetabolic response in burn patients with sepsis. METHODS: Eight patients with major burn, complicated by invasive burn wound infection and sepsis, were consecutively admitted to our hospital from September 1997 to October 1998. Resting energy expenditures (REEs) were monitored by means of cardiorespiratory diagnostic system (Medical Graphics Corporation, USA) at patients' bedside. Plasma concentration of IL-6, IL-8, TNF-alpha, and LPS were assayed before and after surgical intervention and at the time when the patients' vital signs became stable. Correlation analysis between REEs and IL-6, IL-8, TNF-alpha, and LPS were made, respectively. RESULTS: A total of 8 treated patients survived. Values of REE before surgical intervention were significantly higher than those after surgical intervention (P < 0.01), and when patients' vital signs became stable the values were significantly lower than those after surgical intervention (P < 0.01). The plasma concentrations of IL-6, IL-8, TNF-alpha, and LPS after excision of invasive burn wound infection were significantly lower than those before surgical intervention (P < 0.05). The lowest levels of these inflammatory mediators were observed when the conditions of patients became stable, and the values were significantly lower than those before surgical intervention (P < 0.001). There was a significant positive correlation between REE level and respective values of plasma IL-6, IL-8, TNF-alpha, and LPS (P < 0.01). CONCLUSIONS: It seemed that the extensive excision of invasively infected burn wound in patients with major burn should be performed as early as possible to reduce an increased release of inflammatory mediators and to control the hypermetabolic response during sepsis.

Adolescent↗

[Surgical treatment of left main stenosis in coronary artery disease].

OBJECTIVE: To study the efficacy of surgical treatment in the patients with left main stenosis of 50% or more. METHODS: Forty-two patients with left main stenosis (LMS) underwent coronary artery bypass grafting (CABG). Their mean age was 68.7 years. 16 patients had 50% to 75% LMS and 26 patients more than 75%. Twenty-nine patients had unstable angina. Seventeen patients with angina were in class III according to CCSS and 18 were in class IV. Preoperative left ventricular ejection fraction in 24 patients was beyond 50%. RESULTS: The mean preoperative hospital stay was 2.3 days. The mean number of grafts was 3.3 per patient. There was no operative death. The patients were all free from angina postoperatively. The mean follow up time was 42 (3 to approximately 78) months without death. CONCLUSIONS: Coronary artery bypass grafting is the first choice to treat left main stenosis. It is a safe and effective method. To determine properly the time of surgical intervention is helpful to reduce preoperative cardiac affairs and improve operative efficacy.

Aged↗