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Biomedical subjects

J Fang

Publications and source records attributed to J Fang.

At least 199 records · Page 11Linked to original sources

Motor unit discharge behaviors in stroke patients.

We studied 60 motor units from abductor pollicis brevis, first dorsal interosseous, and abductor digiti minimus muscles in 18 patients with upper motor neuron lesions. Both fractional process parameters and serial correlation coefficients were estimated. The results suggest that both serial correlation coefficients and fractional process parameters can be used to objectively document upper motor neuron disorders in stroke patients. However, each of them may be more sensitive to distinct central motor regulatory mechanisms.

Aged↗

The diagnosis of diffuse goitre by ultrasound imaging in children.

In order to find an easy and accurate procedure for diagnosis of diffuse goitre in children, we examined 50 patients with diffuse goitre using fine needle aspiration biopsy cytology, thyroid antibody detection, thyroid hormone analysis and ultrasound imaging. In the meantime, 109 healthy children (control) were examined by ultrasound imaging. The results showed that thyroid imaging in health children was a smooth echo pattern with stronger homogenous echogram than surrounding muscle tissues. The patients with diffuse goitre showed an abnormally enlarged thyroid volume. In 22 (84.6%) of 26 children with chronic lymphocytic thyroiditis, a varied patch hypoechogenicity was found, of whom 18 (81.8%) had positive results of antibody testing. On the contrary, echo-pattern was normal in 17 (70.8%) of 24 patients with diffuse thyroid proliferation and only the remainder (7/24, 29.1%) had abnormal echo-pattern as well as elevated auto-antibody titers, of whom 2 were confirmed as chronic lymphocytic thyroiditis by a repeat fine needle aspiration biopsy 1 year later. By using combined ultrasound imaging and antibody determination, 92% of the cases with chronic lymphocytic thyroiditis could be diagnosed. Our study suggests that ultrasonic imaging is an easy, non-invasive, reproducible and effective procedure in the differential diagnosis of chronic lymphocytic thyroiditis in children.

Adolescent↗

Elucidation of individual cytochrome P450 enzymes involved in the metabolism of clozapine.

The atypical antipsychotic clozapine has been reported to be metabolised mainly to its N-oxide and N-demethylated products. In the present study, individual recombinant cytochrome P450 (CYP) and flavin-containing monooxygenase (FMO) enzymes were used to elucidate which enzymes are responsible for these metabolic conversions. In vitro metabolism of clozapine was investigated using human CYP1A1, CYP1A2, CYP2C8, CYP2E1, CYP2C9-arg144, CYP2C9-cys144, CYP2C19, CYP2D6, CYP3A4, CYP3A5 and FMO3 supplemented with an NADPH generating system. Clozapine and its N-oxidation and N-demethylation metabolites were determined by an HPLC method with a Hypersil CN column and a UV detector. Of the enzymes investigated, CYP1A2, CYP3A4, CYP2D6, CYP2C8, CYP2C19 and, to a lesser extent, CYP2C9-cys, CYP2C9-arg and CYP3A5 were apparently involved in N-demethylation, while CYP1A2, CYP3A4, FMO3 and, to a lesser extent, CYP2C8, CYP2C19 and CYP3A5 were found to catalyse the formation of clozapine N-oxide. A bank of 16 human liver microsome preparations was investigated for ability to catalyze the production of clozapine N-oxide and N-desmethylclozapine. Attempts were made to correlate the rates of formation of these metabolites of clozapine to previously determined catalytic activities of CYP1A2, CYP2C19, CYP2D6, CYP2E1 and CYP3A4. At a clozapine concentration of 20 microM, the rate of formation of clozapine N-oxide showed significant correlations with activities of CYP3A4 (P<0.01) and CYP1A2 (P<0.05). The formation of N-desmethylclozapine exhibited significant correlations with CYP1A2 (P<0.01) and CYP3A4 (P<0.01). Similar correlations were observed when the clozapine concentration was increased to 300 microM except that the formation of clozapine N-oxide no longer correlated with CYP1A2 activity. It can be seen from these results that although some recombinant enzymes individually are capable of metabolising clozapine, the activities of several of these enzymes did not correlate with clozapine metabolism when mixtures of the enzymes are used. By combining the results of the current study and those reported in the literature, it is proposed that CYP3A4 and FMO3 are primarily responsible for the production of clozapine N-oxide, and CYP3A4 and CYP1A2 are primarily responsible for the formation of N-desmethylclozapine. The present study demonstrates the importance of the use of multiple techniques for the elucidation of the enzymes involved in the metabolism of certain drugs.

Animals↗

Metabolic drug interactions with selective serotonin reuptake inhibitor (SSRI) antidepressants.

The selective serotonin reuptake inhibitor (SSRI) antidepressants have become an important component of the therapeutic armamentarium in psychiatry and have attracted a great deal of public attention. Another interesting aspect of the SSRIs is their interaction with various isozymes of the cytochrome P450 (CYP) system which are responsible for metabolism of numerous drugs. This effect on the CYP isozymes has drawn attention to the importance of metabolic drug-drug interactions when dealing with drugs used to treat psychiatric disorders. Such interactions are of great relevance since psychiatry patients are frequently treated with multiple drugs and often these drugs undergo extensive biotransformation to metabolites which contribute to therapeutic and/or adverse effects. The present review deals with various aspects of metabolism mediated by CYP isozymes, particularly as they relate to pharmacokinetic interactions between the SSRIs and other drugs which are coadministered with them.

Animals↗

Residential segregation and mortality in New York City.

The objective of this research was to determine the effect of residential racial segregation on all-cause and cardiovascular disease mortality in New York City. A cross-sectional study of residents in New York City was conducted linking mortality records from 1988 through 1994, to the 1990 United States Census data stratified by zipcode. All-cause and cardiovascular disease mortality rates for non-Hispanic blacks and whites were estimated by zipcode. Zipcodes were aggregated according to the degree of residential segregation (predominantly (> or = 75%) white and black areas) and mortality rates were compared. Multiple regression analysis was used to associate population characteristics with mortality. In New York City, although overall mortality rates of blacks exceed whites, these rates varied substantially by locality according to the pattern of racial segregation. Whites living in the higher (mainly white) socioeconomic areas had lower mortality rates than whites living in predominantly black areas (1473.7 vs 1934.1 for males, and 909.9 vs 1414.7 for females for all-cause mortality). This was true for all age groups. By contrast, elderly blacks living in black areas, despite their less favorable socioeconomic status, had lower mortality rates for all-cause, total cardiovascular disease, and coronary heart disease, than did those living in white areas, even after adjusting for available socioeconomic variables. Racial segregation in residence is independently associated with mortality. Within racially segregated areas, members of the dominant group, for all age, among whites and elderly blacks, enjoy outcomes superior both to members of the minority racial group of their community, and to members of the same race residing in other areas, where they are in the minority, independent of socio-economic status.

Adult↗

Voltage-sensitive dyes for monitoring multineuronal activity in the intact central nervous system.

Optical monitoring of activity provides new kinds of information about brain function. Two examples are discussed in this article. First, the spike activity of many individual neurons in small ganglia can be determined. Second, the spatiotemporal characteristics of coherent activity in the brain can be directly measured. This article discusses both general characteristics of optical measurements (sources of noise) as well as more methodological aspects related to voltage-sensitive dye measurements from the nervous system.

Action Potentials↗

Sleep-associated changes in interleukin-1beta mRNA in the brain.

Much evidence implicates interleukin-1beta (IL-1beta) in sleep regulation. Two previous studies indicated that levels of IL-1beta in mRNA were affected by sleep. In the current study, levels of IL-1beta mRNA and IL-1 receptor assessory protein (IL-1RAP) mRNA were determined 1 h after the beginning of light and dark periods and after sleep deprivation, using the reverse transcriptase-polymerase chain reaction (RT-PCR) and mutated internal standards. Daytime samples contained relatively more IL-1beta mRNA than nighttime samples, and levels of IL-1beta mRNA were higher after sleep deprivation. These changes occurred in the hypothalamus, hippocampus, cerebral cortex, and mesencephalon/pons. In contrast, the IL-1 RAP mRNA level did not seem to be affected by sleep.

Animals↗

Transmission of human T-cell leukemia virus type 1 to mice.

Human T-cell leukemia virus type 1 (HTLV-1) is associated with adult T-cell leukemia/lymphoma, HTLV-1-associated myelopathy/tropical spastic paraparesis, and other diseases. For prevention of the transmission of HTLV-1 and manifestation of these diseases, a small-animal model, especially a mouse model, would be useful. We injected HTLV-1-producing T cells (MT-2) intraperitoneally into neonatal C3H/HeJ mice. While the antibody against HTLV-1 antigens was not detectable in C3H/HeJ mice, HTLV-1 provirus was frequently detected in the spleen, lymph nodes, and thymus by PCR. HTLV-1 provirus was present at the level of 0 to 30 molecules in 10(5) spleen cells at the age of 15 weeks. In addition, a 59-bp flanking sequence of the HTLV-1 integration site was amplified from the spleen DNA by linker-mediated PCR and was confirmed to be derived from the mouse genome. HTLV-1 provirus was found in the T-cell fraction of the mouse spleen. These results indicate that mice can be infected by HTLV-1 and could serve as an animal model for the study of HTLV-1 infection and its pathogenesis in vivo.

Animals↗

Cafeteria diet-induced sleep is blocked by subdiaphragmatic vagotomy in rats.

Feeding rats a cafeteria diet results in increased food intake and excess sleep. Furthermore, vagal afferent activity is altered by a variety of gastrointestinal factors, and vagal stimulation can induce sleep. We investigated, therefore, the hypothesis that the vagal nerve plays a critical role in mediating the sleep-inducing effects of cafeteria feeding. We examined the effects of a cafeteria diet on sleep, electroencephalographic (EEG) slow-wave activity (SWA), and brain temperature (Tbr) in control and vagotomized rats. EEG, electromyogram, and Tbr were recorded for 7 consecutive days. Day 1 was considered a baseline day; normal rat chow was available ad libitum. On days 2-4, the animals were fed, in addition to normal chow, a mixed, energy-rich diet (cafeteria diet). On days 5-7, the rats were again fed only normal rat chow. In control rats, the cafeteria diet resulted in an increase in non-rapid eye movement sleep (NREMS), which was the result of a significant lengthening of the NREMS episodes. In contrast, feeding vagotomized rats the cafeteria diet resulted in a decrease in NREMS. Cafeteria feeding decreased REMS and EEG SWA and increased Tbr in both control and vagotomized rats. These results suggest that an intact vagus plays a key role in the NREMS-inducing effects of the cafeteria diet.

Afferent Pathways↗

Effects of interleukin-1 beta on sleep are mediated by the type I receptor.

Interleukin-1 beta (IL-1 beta) is a well characterized sleep regulatory substance. To study receptor mechanisms for the sleep-promoting effects of IL-1 beta, sleep patterns were determined in control and IL-1 type I receptor knockout (IL-1RI KO) mice with a B6x129 background after intraperitoneal injections of saline or murine recombinant IL-1 beta. The IL-1RI KO mice had slightly but significantly less sleep during the dark period compared with the controls. IL-1 beta dose dependently increased non-rapid eye movement sleep (NREMS) and suppressed rapid eye movement sleep (REMS) in the controls. The IL-1RI KO mice did not respond to IL-1 beta. In contrast, the IL-1RI KO mice increased NREMS and decreased REMS after administration of tumor necrosis factor-alpha (TNF-alpha), another well characterized sleep-promoting substance. These results 1) provide further evidence that IL-1 beta is involved in sleep regulation, 2) indicate that the effects of IL-1 beta on sleep are mediated by the type I receptor, and 3) suggest that TNF-alpha is capable of inducing sleep without the involvement of IL-1.

Animals↗

Epidermal growth factor enhances spontaneous sleep in rabbits.

Several growth factors are implicated in sleep regulation. Epidermal growth factor (EGF) is found in the brain, and it influences the production of several sleep-promoting substances. We determined, therefore, whether administration of exogenous EGF affected spontaneous sleep in rabbits. Twenty-five rabbits were implanted with electroencephalographic electrodes, a brain thermistor, and an intracerebroventricular guide cannula. Three doses of EGF (0.5, 5, and 25 microg) were used. The animals were injected intracerebroventricularly with saline as control and one dose of EGF on 2 separate days. Five and twenty-five micrograms of EGF enhanced non-rapid eye movement sleep and increased brain temperature. The 25-microg dose of EGF also inhibited rapid eye movement sleep across the 23-h postinjection recording period. Results are consistent with the hypothesis that EGF, like other growth factors, could be involved in sleep regulation.

Animals↗

Interleukin-4 inhibits spontaneous sleep in rabbits.

Proinflammatory cytokines, including interleukin-1beta (IL-1beta) and tumor necrosis factor-alpha, are involved in sleep regulation. IL-4 is an antiinflammatory cytokine that inhibits proinflammatory cytokine production. The hypothesis that IL-4 should attenuate sleep was studied by determining the effects of IL-4 on rabbit spontaneous sleep. Thirty-six rabbits were used. Four doses of IL-4 (0.25, 2.5, 25, and 250 ng) were injected intracerebroventricularly during the rest (light) period. One dose of IL-4 (25 ng) was injected during the active (dark) cycle. Appropriate time-matched control injections of saline were done in the same rabbits on different days. The three highest doses of IL-4 significantly inhibited spontaneous non-rapid eye movement sleep if IL-4 was given during the light cycle. The highest dose of IL-4 (250 ng) also significantly decreased rapid eye movement sleep. On the other hand, IL-4 administered at dark onset had no effect on sleep. The sleep inhibitory properties of IL-4 provide additional evidence for the hypothesis that a brain cytokine network is involved in the regulation of physiological sleep.

Alpha Rhythm↗

Sleep deprivation increases rat hypothalamic growth hormone-releasing hormone mRNA.

Much evidence indicates that growth hormone-releasing hormone (GHRH) is involved in sleep regulation. We hypothesized that GHRH mRNA would increase and somatostatin (SRIH) mRNA would decrease during sleep deprivation. With the use of RT-PCR and truncated internal standards, rat hypothalamic GHRH mRNA and SRIH mRNA levels were evaluated after sleep deprivation. After 8 or 12 h of sleep deprivation there was a significant increase in rat hypothalamic GHRH mRNA expression compared with time-matched control samples. Hypothalamic GHRH mRNA levels were not significantly different from control values after 1 or 2 h of recovery after 8 h of sleep deprivation or after 2 h of recovery after 12 h of sleep deprivation. In control animals, variations in hypothalamic GHRH mRNA levels were observed. GHRH mRNA expression was significantly higher in the afternoon than at dark onset or during the dark period. SRIH mRNA levels were significantly suppressed at the termination of an 8-h sleep deprivation period and were significantly higher after dark onset than in the morning. The alterations in GHRH and SRIH mRNA expressions after sleep deprivation and recovery support the notion that GHRH plays an important role in sleep homeostasis and suggest that these neuropeptides may interact reciprocally in modulating sleep as they do in the control of growth hormone secretion.

Animals↗

Esculentoside A inhibits tumor necrosis factor, interleukin-1, and interleukin-6 production induced by lipopolysaccharide in mice.

Esculentoside A, a kind of saponin isolated from the root of the Chinese herb Phytolaca esculenta, is reported to possess potent anti-inflammatory effects in acute and chronic experimental models. In the present study, we investigated the effects of esculentoside A on the production of tumor necrosis factor (TNF), interleukin-1 (IL-1) and interleukin-6 (IL-6) induced by lipopolysaccharide (LPS) in mice. In vitro experiments demonstrated that esculentoside A (0.1-10 mumol/l) significantly reduced the release of TNF from the peritoneal macrophages derived from mice pretreated with thioglycolate. IL-1 and IL-6 secretion was also obviously inhibited in a concentration-dependent manner by esculentoside A from 0.01 to 10 mumol/l. In vivo experiments demonstrated that detectable TNF was observed 0.25 h after injection, was maximal at 0.5 h, and returned to baseline at 4 h. Maximal production of IL-1 and IL-6 were observed to be 1 and 2 h, respectively, after injection of LPS. Pretreatment of mice with 5, 10, or 20 mg/kg esculentoside A once a day for 7 consecutive days dose-dependently decreased the TNF, IL-1 and IL-6 levels in the sera of mice following LPS challenge. TNF, IL-1, and IL-6 are important cytokines involved in the pathogenesis of inflammatory lesions. Inhibition of inflammatory cytokine production may contribute to the anti-inflammatory effects of esculentoside A.

Animals↗

Amantadine as treatment for dyskinesias and motor fluctuations in Parkinson's disease.

OBJECTIVE: To determine the effects of the N-methyl-D-aspartate (NMDA) antagonist amantadine on levodopa-associated dyskinesias and motor fluctuations in Parkinson's disease (PD). BACKGROUND: NMDA receptor blockade can ameliorate levodopa-induced dyskinesias in primates and PD patients. Amantadine, a well-tolerated and modestly effective antiparkinsonian agent, was recently found to possess NMDA antagonistic properties. METHODS: Eighteen patients with advanced PD participated in a double-blind, placebo-controlled, cross-over study. At the end of each 3-week treatment arm, parkinsonian and dyskinesia scores were obtained during a steady-state intravenous levodopa infusion. Motor fluctuations and dyskinesias were also documented with patient-kept diaries and Unified Parkinson's Disease Rating Scale (UPDRS) interviews. RESULTS: In the 14 patients completing this trial, amantadine reduced dyskinesia severity by 60% (p = 0.001) compared to placebo, without altering the antiparkinsonian effect of levodopa. Motor fluctuations occurring with patients' regular oral levodopa regimen also improved according to UPDRS and patient-kept diaries. CONCLUSIONS: These findings suggest that amantadine given as adjuvant to levodopa can markedly improve motor response complications and support the view that hyperfunction of NMDA receptors contributes to the pathogenesis of levodopa-associated motor complications.

Adult↗

Stress distribution in the mandible with unilateral condylar fracture.

OBJECTIVE: The purpose of this study was to investigate the influence of unilateral condylar neck fracture upon the stress distribution in the mandible and the temporomandibular joint (TMJ) to realize primarily the biomechanical mechanism of the temporomandibular joint disorders (TMD) caused by TMJ injury. METHODS: The character of stress distribution in the mandible of a normal human and a patient with TMD induced by unilateral condylar neck fracture followed by malpositioned healing was analyzed quantitatively and compared during centric occlusion by combining spiral computed tomography scanning technology with the three-dimensional finite element method. RESULTS: The patient with unilateral condylar neck fracture followed by malpositioned healing had unbalanced stress distribution in the mandible, such as differing nature and value of stress. The stress in the fractured side was higher than in the nonfractured side, in which the condyle was more evident. The maximum principal stress and minimum principal stress of each region in the fractured mandible were much higher than those in a normal mandible. Stress quality also differed. CONCLUSIONS: The abnormal stress changes after unilateral condylar neck fracture with malpositioned healing may be related to the effect of condylar shape change on masticatory muscle function and occlusion. TMJ injury not only damaged the condylar structure, but also compromised its biomechanic environment. It is preliminarily thought that unbalanced stress distribution, evidently increased stress, and varied stress character are biomechanic mechanisms of TMD. Condylar dislocated fracture should be treated promptly and properly to maintain the proper prognostic stress distribution.

Adult↗

[Relationship between plasma NO and PaO2 of artery blood in the patients with chronic pulmonary heart disease].

The plasma nitric oxide(NO) level in the 28 patients with chronic pulmonary heart disease and health controls were measured. The results showed that NO level in the exacerbating patients and stable patients was significantly lower than that in health controls. The NO level in the patients getting worse was markedly lower than that in the stable patients. The lower the oxygen pressure of the artery blood (PaO2), the lower the NO level. when the patient's situation was improving, the plasma NO level increased with rising PaO2. The plasma NO level in patients was associated with the PaO2. This study suggests that the sustained pulmonary hypertension caused by chronic hypoxia may relate to the reduction of NO synthesis and release, and that NO may play an important role in the pathogenesis in chronic pulmonary heart disease.

Aged↗