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Biomedical subjects

A Lin

Publications and source records attributed to A Lin.

At least 73 records · Page 4Linked to original sources

Effects of atypical antipsychotics on the inflammatory response system in schizophrenic patients resistant to treatment with typical neuroleptics.

There is now some evidence that schizophrenia may be accompanied by an activation of the inflammatory response system (IRS) and that typical antipsychotics may suppress some signs of IRS activation in that illness. This study was carried out to examine (i) the serum concentrations of interleukin-6 (IL-6), IL-6 receptor (IL-6R), IL-1R antagonist (IL-1RA) and Clara Cell protein (CC16), an endogenous anticytokine, in nonresponders to treatment with typical neuroleptics and (ii) the effects of atypical antipsychotics on the above IRS variables. The above parameters were determined in 17 patients with treatment-resistant schizophrenia (TRS) to treatment with neuroleptics and in seven normal volunteers and 14 schizophrenic patients who had a good response to treatment with antipsychotic agents. Patients with TRS had repeated measurements of the IRS variables before and 2 and 4 months after treatment with atypical antipsychotics. Serum IL-6 was significantly higher in schizophrenic patients, irrespective of their response to typical antipsychotics, than in normal controls. Serum IL-1RA was significantly higher in the TRS patients than in controls, whereas responders took up an intermediate position. The serum concentrations of CC16 were significantly lower after treatment with atypical antipsychotics during 4 months than before treatment. It is concluded that (i) schizophrenia and, in particular, TRS is characterized by an activation of the monocytic arm of cell-mediated immunity and (ii) atypical antipsychotics may decrease the anti-inflammatory capacity of the serum in TRS patients.

Adult↗

Tryptophan scanning mutagenesis in TM2 of the GABA(A) receptor alpha subunit: effects on channel gating and regulation by ethanol.

1. Each residue in the second transmembrane segment (TM2) of the human GABA(A) receptor alpha(2) subunit was individually mutated to tryptophan. The wild-type or mutant alpha(2) subunits were expressed with the wild-type human GABA(A) receptor beta(2) subunit in Xenopus oocytes, and the effects of these mutations were investigated using two-electrode voltage-clamp recording. 2. Four mutations (V257W, T262W, T265W and S270W) produced receptors which were active in the absence of agonist, and this spontaneous open channel activity was blocked by both picrotoxin and bicuculline, except in the alpha(2)(V257W)beta(2) mutant receptor, which was not sensitive to picrotoxin. 3. Six mutations (V257W, V260W, T262W, T267W, S270W and A273W) enhanced the agonist sensitivity of the receptor, by 10 - 100 times compared with the wild-type alpha(2)beta(2) receptor. Other mutations (T261W, V263W, L269W, I271W and S272W) had little or no effect on the apparent affinity of the receptor to GABA. Eight of the tryptophan mutations (R255, T256, F258, G259, L264, T265, M266 or T268) resulted in undetectable GABA-induced currents. 4. The S270W mutation eliminated potentiation of GABA by ethanol, whereas T261W markedly increased the action of ethanol. The T262W mutation produced direct activation (10% of maximal GABA response) by ethanol in the absence of GABA, while other mutations did not alter the action of ethanol significantly. 5. These results are consistent with a unique role for S270 in the action of ethanol within the TM2 region, and with models of GABA(A) receptor channel function, in which specific residues within TM2 are critical for the regulation of channel gating (S270, L264), while other residues (L269, I271 and S272) have little effect on these functions and may be non-critical structural residues.

Amino Acid Sequence↗

Variations in the expression of granulocyte antigen NB1.

BACKGROUND: Between 87 and 97 percent of whites express NB1 alloantigen on some but not all of their granulocytes. The expression of NB1 has not been compared among large groups of adults of different sexes, ages, and ethnic groups. Previous testing of whites suggests that the expression of NB1 is variable. STUDY DESIGN AND METHODS: Serologic testing of granulocytes from 224 persons with two examples of MoAb to NB1 (1B5 and 7D8) was performed to distinguish phenotypic differences among age, sex, and ethnic groups and differences in reactivity to MoAbs. The donors were from 17 to 82 years of age, and 87 were female. They were from four ethnic backgrounds: 54 were African American (black), 10 were Asian, 9 Hispanic, and 152 white. Granulocytes were tested by flow cytometry. Parallel testing with MoAbs to CD16, CD11b, and CD45 served as controls. The size of the granulocyte population reacting with 1B5 and 7D8 and the respective mean, median, and peak cell fluorescence intensities were analyzed. RESULTS: The expression of 7D8 and 1B5 was greater on granulocytes from female donors. The expression of 7D8 fell in older women but not in men. There were no differences among the four racial groups in either the frequency of NB1 as determined by 1B5 or 7D8 or in the size of the population of granulocytes reacting with either antibody. When the fluorescence intensities of the antibody reactions were compared among groups, there were no differences in reactivity with 1B5. However, reactions with 7D8 were all greater in blacks. Comparison of the size of the antigen-positive granulocyte population, as determined by antibody reactivity, showed that only 30 donors differed by more than 10 percent. These discordant results were more likely to occur in whites than in blacks (18% vs. 4%, p<0.02). CONCLUSIONS: NB1 is composed of at least two epitopes as determined by serologic studies. The expression of both antigens is greater in females. The 7D8-reactive epitope appears to be more prevalent or more accessible on granulocytes of blacks. Variations in the expression of NB1 are more likely to occur in whites. The biochemical and molecular basis of these variations are not known.

Adolescent↗

Cyclooxygenase-2 expression in human pancreatic adenocarcinomas.

Cyclooxygenase-2 (COX-2) expression is up-regulated in several types of human cancers and has also been directly linked to carcinogenesis. To investigate the role of COX-2 in pancreatic cancer, we evaluated COX-2 protein expression in primary human pancreatic adenocarcinomas (n = 23) and matched normal adjacent tissue (n = 11) by immunoblot analysis. COX-2 expression was found to be significantly elevated in the pancreatic tumor specimens compared with normal pancreatic tissue. To examine whether the elevated levels of COX-2 protein observed in pancreatic tumors correlated with the presence of oncogenic K-ras, we determined the K-ras mutation status in a subset of the tumors and corresponding normal tissues. The presence of oncogenic K-ras did not correlate with the level of COX-2 protein expressed in the pancreatic adenocarcinomas analyzed. These observations were also confirmed in a panel of human pancreatic tumor cell lines. Furthermore, in the pancreatic tumor cell line expressing the highest level of COX-2 (BxPC-3), COX-2 expression was demonstrated to be independent of Erk1/2 activation. The lack of correlation between COX-2 and oncogenic K-ras expression suggests that Ras activation may not be sufficient to induce COX-2 expression in pancreatic tumor cells and that the aberrant activation of signaling pathways other than Ras may be required for up-regulating COX-2 expression. We also report that the COX inhibitors sulindac, indomethacin and NS-398 inhibit cell growth in both COX-2-positive (BxPC-3) and COX-2-negative (PaCa-2) pancreatic tumor cell lines. However, suppression of cell growth by indomethacin and NS-398 was significantly greater in the BxPC-3 cell line compared with the PaCa-2 cell line (P = 0.004 and P < 0.001, respectively). In addition, the three COX inhibitors reduce prostaglandin E(2) levels in the BxPC-3 cell line. Taken together, our data suggest that COX-2 may play an important role in pancreatic tumorigenesis and therefore be a promising chemotherapeutic target for the treatment of pancreatic cancer.

Adenocarcinoma↗

Factor structure of the Alcohol Use Disorders Identification Test (AUDIT) in a mental health clinic sample.

OBJECTIVE: To examine the factor structure of the Alcohol Use Disorders Identification Test (AUDIT) and to identify the implications of this structure for its clinical use. METHOD: The AUDIT was administered to mental health clinic outpatients (N = 197; 86% men) at high risk for alcohol-use disorders. Confirmatory and exploratory factor analyses were used to determine the underlying factor structure of the AUDIT for this high-risk population. RESULTS: Confirmatory analyses indicated that the a priori three- and one-factor solutions did not fit the observed data. The exploratory analyses supported a two-factor solution that included level of alcohol consumption and drinking problems, with both factors explaining substantial variance in AUDIT scores. These findings contrast the original three-factor design of the AUDIT and the conventional use of the AUDIT as a one-factor screening device with a single cutoff score. CONCLUSIONS: Other screening methods that incorporate this two-factor model may be important for mental health patient populations. Replication of these findings among other mental health samples is needed.

Adolescent↗

[Contrast observation on preventive effect of different traditional Chinese medicine treatments on coronary artery ligation induced myocardial ischemia in rats with diabetes mellitus].

OBJECTIVE: To compare the preventive effect of different TCM treatment on coronary artery ligation induced myocardial ischemia in rats with diabetes mellitus. METHODS: Model rats of diabetes mellitus induced by streptozotocin were used to form myocardial ischemia models by coronary artery ligation, which were treated by modified Taohe Chengqi Decoction (TCD) and different combination of its ingredients. The effect of different TCM treatment on ischemic area, arrhythmia rate and T-wave in electrocardiogram, and 2 hrs postoperational survival rate were observed. RESULTS: Effect of reducing ischemic area and raising survival rate (P < 0.05, P < 0.01) showed in all the groups treated by different TCM treatment, especially in the group treated with comprehensive TCM. Obvious improvement on T-wave revealed in the groups treated with TCD and comprehensive TCM (P < 0.05, P < 0.01). CONCLUSION: Invigorating Qi and Nourishing Yin, Expelling Heat by purgation and accentuating on activating blood circulation is an effective method of TCM in treating and preventing diabetic coronary heart disease.

Animals↗

[Cataract extraction with rotated-chipping phacoemulsification in the capsule].

OBJECTIVE: To observe the clinical effects of rotated-chipping phacoemulsification in the capsule. METHODS: The operation of continuous circular capsulectomy, nuclear hydrodissection, cataract extraction with rotated-chipping phacoemulsification in capsule and intraocular lens implantation was performed on 215 eyes. RESULTS: Rotated-chipping technique was successfully completed in 215 eyes. In the operation 2 to 4 circles were rotated with the ultrasonic energy 19.3% for 12 seconds on average. The rate of corneal endothelium loss was 7.5%. CONCLUSION: The technique of rotated-chipping phacoemulsification in capsule is safe and rapid which can be used for cataracts with nuclei of various degrees in sclerosis.

Aged↗

[Pharmacognostical studies on the stem and leaf of Mussaenda pubescens].

Morphological and microscopic chracteristics of Mussaenda pubescens Ait. f, a traditional Chinese medicine were described and illustrated with line drawings. TLC and UV analysis of the medicinal material were also undertaken. These studies provide referential information for identification and development of this medicinal material.

Chromatography, Thin Layer↗

Constitutively active mitogen-activated protein kinase kinase 6 (MKK6) or salicylate induces spontaneous 3T3-L1 adipogenesis.

Although much has been learned regarding the importance of p38 mitogen-activated protein kinase in inflammatory and stress responses, relatively little is known concerning its role in differentiation processes. Recently, we demonstrated that p38 mitogen-activated protein kinase activity is necessary for the differentiation of 3T3-L1 fibroblasts into adipocytes (Engelman, J. A., Lisanti, M. P., and Scherer, P. E. (1998) J. Biol. Chem. 273, 32111-32120). p38 activity is high during the initial stages of differentiation but decreases drastically as the fibroblasts undergo terminal differentiation into adipocytes. However, it remains unknown whether activation of p38 is sufficient to stimulate adipogenesis and whether the down-regulation of p38 activity in mature adipocytes is critical for maintaining adipocyte homeostasis. In this report, we have directly addressed these questions by analyzing 3T3-L1 cell lines harboring a specific upstream activator of p38 (a constitutively active mitogen-activated protein kinase kinase 6 (MKK6) mutant, MKK6(Glu)) under the control of an inducible promoter. Induction of MKK6(Glu) in 3T3-L1 fibroblasts spurs adipocyte conversion in the absence of the hormonal mixture normally required for efficient differentiation of wild-type cells. However, activation of p38 in adipocytes leads to cell death. Furthermore, treatment of 3T3-L1 fibroblasts with salicylate, a potent stimulator of p38, produces adipocyte-specific changes consistent with those observed with induction of MKK6(Glu). Expression of MKK6(Glu) in NIH-3T3 fibroblasts (cells that do not differentiate into adipocytes under normal conditions) is capable of converting these fibroblasts into lipid-laden fat cells following hormonal stimulation. Thus, p38 activation has pro-adipogenic effects in multiple fibroblast cell lines.

3T3 Cells↗

The JNKK2-JNK1 fusion protein acts as a constitutively active c-Jun kinase that stimulates c-Jun transcription activity.

c-Jun N-terminal protein kinase (JNK), a member of the mitogen-activated protein (MAP) kinase family, regulates gene expression in response to various extracellular stimuli. JNK is activated by JNK-activating kinase (JNKK1 and JNKK2), a subfamily of the dual specificity MAP kinase kinase (MEK) family, through phosphorylation on threonine (Thr) 183 and tyrosine (Tyr) 185 residues. The physiological functions of the JNK pathway, however, are not completely understood. A major obstacle is the lack of specific and activated kinase components that can stimulate the JNK pathway in the absence of any stimulus. Here we show that fusion of JNK1 to its upstream activator JNKK2 resulted in its constitutive activation. In HeLa cells, the JNKK2-JNK1 fusion protein showed significant JNK activity, which was comparable with that of JNK1 activated by many stimuli and activators, including EGF, TNF-alpha, anisomycin, UV irradiation, MEKK1, and small GTP binding proteins Rac1 and Cdc42Hs. Immunoblotting analysis indicated that JNK1 was phosphorylated by JNKK2 in the fusion protein on both Thr(183) and Tyr(185) residues. Like JNKK2, the JNKK2-JNK1 fusion protein was highly specific for the JNK pathway and did not activate either p38 or ERK2. Transient transfection assays demonstrated that the JNKK2-JNK1 fusion protein was sufficient to stimulate c-Jun transcriptional activity in the absence of any stimulus. Immunofluorescence analysis revealed that the JNKK2-JNK1 fusion protein was predominantly located in the nucleus of transfected HeLa cells. These results indicate that the JNKK2-JNK1 fusion protein is a constitutively active Jun kinase, which will facilitate the investigation of the physiological roles of the JNK pathway.

Fluorescent Antibody Technique↗

Cytokines in detoxified patients with chronic alcoholism without liver disease: increased monocytic cytokine production.

BACKGROUND: The aim of the present study was to examine the production of interferon-gamma, tumor necrosis factor-alpha (TNF-alpha), granulocyte-macrophage colony stimulating factor (GM-CSF), interleukin-6 (IL-6), IL-10, IL-4, IL-5, IL-1 receptor antagonist (IL-1RA), and prostaglandin E2 in relation to the number of leukocytes in the blood of detoxified, chronic alcoholic patients without apparent liver disease (AWLD). METHODS: Phytohemagglutinin + lipopolysaccharide-induced production of the above variables as well as the number of white blood cells and differentials were determined in detoxified AWLD patients and normal volunteers. RESULTS: Detoxified AWLD patients have a significantly higher production of IL-6, IL-10, TNF-alpha, GM-CSF, and IL-1RA and significantly increased numbers of leukocytes and neutrophils compared to normal volunteers. CONCLUSIONS: Detoxified AWLD patients show an increased production of proinflammatory cytokines, i.e., IL-6, TNF-alpha, and GM-CSF, as well as negative immunoregulatory proteins, such as IL-10 and IL-1RA.

Adult↗

Influence of psychological stress on immune-inflammatory variables in normal humans. Part II. Altered serum concentrations of natural anti-inflammatory agents and soluble membrane antigens of monocytes and T lymphocytes.

The effects of academic examination stress on serum concentrations of interleukin (IL)-1 receptor (R) antagonist (A), soluble(s) IL-2R, sIL-6R, soluble glycoprotein 130 (sgp130), Clara cell protein (CC16), sCD8 and sCD14 were evaluated in 38 university students. The relationships among changes in the above immune-inflammatory variables, levels of serum cortisol, and scores on the Perceived Stress Scale (PSS) or the State-Trait Anxiety Inventory (STAI) were examined. Academic examination stress was associated with significant increases in PSS and STAI scores, and in serum sgp130 and sCD8 values. Academic examination stress was associated with significantly decreased serum sCD14 concentrations in students with high, but not low, stress perception. There were stress-induced differences in serum IL-1RA, sIL-6R and CC16 concentrations between students with high vs. low stress-induced anxiety. The stress-induced increase in serum sCD8 was significantly more pronounced in male students, whereas the increase in serum sgp130 was more pronounced in female students taking contraceptive drugs. These results suggest that: (1) psychological stress induces immune-inflammatory changes pointing toward complex regulatory responses in IL-6 signalling, a decreased anti-inflammatory capacity of the serum, and interactions with T cell and monocytic activation; and that (2) sex hormones may modify stress-induced immune-inflammatory responses.

Adaptation, Psychological↗

Self-glucosylation of glycogenin, the initiator of glycogen biosynthesis, involves an inter-subunit reaction.

Glycogenin is a dimeric self-glucosylating protein involved in the initiation phase of glycogen biosynthesis. As an enzyme, glycogenin has the unusual property of transferring glucose residues from UDP-glucose to itself, forming an alpha-1,4-glycan of around 10 residues attached to Tyr194. Whether this self-glucosylation reaction is inter- or intramolecular has been debated. We used site-directed mutagenesis of recombinant rabbit muscle glycogenin-1 to address this question. Mutation of highly conserved Lys85 to Gln generated a glycogenin mutant (K85Q) that had only 1-2% of the self-glucosylating activity of wild-type enzyme. Consistent with previous work, mutation of Tyr194 to Phe in a GST-fusion protein yielded a mutant, Y194F, that was catalytically active but incapable of self-glucosylation. The Y194F mutant was able to glucosylate the K85Q mutant. However, there was an initial lag in the self-glucosylation reaction that was abolished by preincubation of the two mutant proteins. The interaction between glycogenin subunits was relatively weak, with a dissociation constant inferred from kinetic experiments of around 2 microM. We propose a model for the glucosylation of K85Q by Y194F in which mixing of the proteins is followed by rate-limiting formation of a species containing both subunit types. The results provide the most direct evidence to date that the self-glucosylation of glycogenin involves an inter-subunit reaction.

Amino Acid Substitution↗

Reduction of acute renal allograft rejection by daclizumab. Daclizumab Double Therapy Study Group.

BACKGROUND: Acute rejection is still a major problem in renal transplantation and is one of the most important causes of chronic graft dysfunction and late graft loss. Selective immunosuppression with a humanized antibody against the alpha-chain of the interleukin (IL)-2 receptor (CD25) was evaluated to demonstrate the efficacy of this type of immunoprophylaxis in combination with dual immunosuppression. METHODS: We studied the effect of daclizumab, a humanized monoclonal antibody against the alpha-chain of the IL-2 receptor, in a randomized double-blind, prospective phase III clinical trial in 275 patients receiving a first cadaveric renal allograft. Among them 111 (83%) in the placebo arm and 116 (82%) in the daclizumab arm received the full regimen of five doses (1.0 mg/kg) every other week. Baseline immunosuppression consisted of cyclosporine and corticosteroids. RESULTS: At 6 months, 39 (28%) of the patients in the daclizumab group had biopsy-proven rejections, as compared with 63 (47%) in the placebo group (P=0.001). The need for additional antilymphocyte therapy, antithymocyte globulin, antilymphocyte globulin (ATG, ALG, OKT3) was also lower in the daclizumab group (8% vs. 16%, P=0.02), and they required significantly lower mean (+/- SD) cumulative doses of prednisone (3750+/-1981 mg vs. 4438+/-2667 mg in the placebo group, P=0.01). Graft function was significantly better (P=0.02) in the daclizumab group (graft function rate: 58 vs. 51 ml/min, mean) as was patient survival (P=0.01, 99% vs. 94%). No specific adverse events were observed in daclizumab-treated patients. Patients receiving daclizumab experienced fewer cytomegalovirus infections (18% vs. 25%), and none died from severe infectious complications, compared to four patients in the placebo arm. No patient in the daclizumab group had a lymphoproliferative disorder or any other form of immunosuppression-related tumor during the first year after transplant. CONCLUSIONS: Administration of daclizumab in addition to dual immunosuppression therapy significantly reduced biopsy-proven acute rejection after renal transplantation, improved patient survival, and did not add to the toxicity of the immunosuppressive regimen.

Adrenal Cortex Hormones↗

In vivo magnetic resonance spectroscopy of human fetal neural transplants.

To better define the survival and cellular composition of human fetal neurotransplants in vivo, we performed quantitative 1H MRS to determine the concentration of the neuronal amino acid [N-acetylaspartate] within MRI-visible grafts. In all, 71 grafts in 38 patients [24 Parkinson's disease (PD), 14 Huntington's disease (HD)] were examined, as well as 24 untreated PD and HD patients and 13 age-matched normal controls. MRI appearances of edema were present in three out of 71 grafts, the remainder being consistent with histologically identified viable neural transplant tissue. N-acetylaspartate (NAA), creatine, choline, myoinositol and glutamine plus glutamate (Glx) were identified in all post-transplant putamens, with abnormal metabolites, lactate and/or lipid detectable in only three patients. Of 71 grafts, 19 occupied more than 60% of the MRS-examined volume (VOI) (mean 84.2 +/- 3%; range 61-100%). In those, [NAA] was 8.50 +/- 0.99 mM in eight PD spectra and 6.59 +/- 0.81 mM in 11 HD spectra, and was not significantly different from controls. In contrast, transplanted fetal neurones contain less than 0.4 mM of the neuronal amino acid NAA. This suggests that established fetal neurotransplants in the human putamen of both PD and HD patients are populated by adult neurones, axons and dendrites.

Adult↗

Lower activity of serum peptidases in abstinent alcohol-dependent patients.

This study examines i) the activity of serum prolyl endopeptidase (PEP) and dipeptidlyl peptidase IV (DPP IV) in detoxified alcohol-dependent patients without liver disease versus normal controls, and ii) the relationships between serum DPP IV and PEP activity and the production of cytokines or cytokine receptors, such as interleukin-6 (IL-6), tumor necrosis factor-alpha (TNF-alpha), interferon-y (IFN-y), IL-1 receptor antagonist (IL-1RA), and IL-10, and granulocyte-macrophage colony stimulatory factor (GM-CSF). Alcohol-dependent patients had significantly lower serum PEP and DPP IV activity than normal controls. We found that 58.3% and 50.0% of the alcohol-dependent patients, respectively, had PEP and DPP IV activities, which were lower than the mean control values minus 2 SD. There were significant inverse correlations between lowered serum DPP IV and PEP activity and the increased production of IL-6, INF-gamma, IL-IRA, IL-10, and GM-CSF. These results show that lower serum DPP IV and PEP activity may be related to the pathophysiology of alcohol dependence.

Adult↗