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Biomedical subjects

L Chang

Publications and source records attributed to L Chang.

At least 307 records · Page 17Linked to original sources

Rapid flow cytometric assay for the assessment of natural killer cell activity.

A new assay using flow cytometry has been established to assess natural killer (NK) lytic activity with common bench top instrumentation. This assay uses a cyanine membrane dye to stain live K562 target cells and an iodide nuclear dye to evaluate dead cells, and provides a method of reliably separating target and effector cell populations. Effector cells remain unstained (fluorescent negative) throughout the procedure. The damaged pre-labeled targets appear doubly stained as their membranes become permeable to the nuclear stain during incubation. Percent cytotoxicity of various effector:target cell ratios is discerned using flow cytometric analysis after a 2 h incubation in this new assay, as compared to 4 h with the 51Cr-release 'gold standard' assay for cell-mediated cytotoxicity. Comparisons of normal individuals tested in parallel with the fluorescent dyes and the 51Cr-release assay have shown direct correlations. This new two-color flow cytometric technique has proven to be uncomplicated and reproducible when used in the clinical setting.

Adult↗

Insulin activates p21Ras and guanine nucleotide releasing factor in cells expressing wild type and mutant insulin receptors.

Insulin stimulates the formation of p21RasGTP in Rat-1 fibroblasts overexpressing wild type (HIRc) or mutant (delta CT and Y/F2) insulin receptors. Maximal insulin effect was observed at 7 min in Y/F2 cells, at 10 min in delta CT cells, and at 15 min in HIRc cells. Mutant insulin receptors which display enhanced mitogenic signaling properties stimulated p21Ras.GTP formation to a greater extent than wild type receptors. The amount of p21Ras was not affected by insulin (Western blotting). Tyrosine kinase inhibitor, Lavendustin A (10 nM), completely prevented insulin-induced activation of p21Ras in all cell lines. Insulin did not lead to GAP phosphorylation, or a change in cellular GAP activity, but did result in marked stimulation of Ras guanine nucleotide releasing factor (GRF) activity (by 48% in HIRc, 71% in delta CT, and 120% in Y/F2 cells). These results indicated that p21Ras.GTP is an important signaling molecule in insulin's mitogenic pathway, but may not participate in metabolic signaling and that insulin's stimulatory effects on p21Ras.GTP formation are mediated through Ras GRF.

Animals↗

Cerebral abnormalities in myotonic dystrophy. Cerebral blood flow, magnetic resonance imaging, and neuropsychological tests.

OBJECTIVE: To study cerebral abnormalities in myotonic dystrophy (MD) and determine the different patterns of cerebral function in patients with MD with maternal (mMD) vs paternal (pMD) inheritance. DESIGN: Patients with MD and normal controls were studied with neuropsychological testing, magnetic resonance imaging, and single photon emission computed tomography. SETTING: Studies were done at Harbor-UCLA Medical Center, Torrance, Calif. PATIENTS AND OTHER PARTICIPANTS: Twenty-two consecutive-patients with MD, 11 of whom had pMD and eight mMD, and 10 normal controls were studied. Diagnoses were made on the basis of family history, electromyography, and clinical examinations. Normal subjects in the same age distribution were studied for comparisons. RESULTS: We found significantly lower neuropsychological performance and cerebral blood flow in the patients with MD compared with the controls. Patients with mMD had statistically lower scores on IQ tests and more extensive cerebral hypoperfusion when compared with those with pMD. Changes in cerebral blood flow were most severe in the frontal and temporoparietal association cortex. Cerebral blood blow measures strongly correlated with IQ. CONCLUSIONS: Patients with mMD had earlier onset of disease and lower IQs than the pMD group. The pattern of cerebral perfusion in the mMD group was consistent with a diffuse brain injury, while cerebral perfusion in pMD showed more minor changes. These findings emphasize the cognitive differences between mMD and pMD.

Adolescent↗

Brain vessels near muscle autografts are sites for entry of isogeneic macrophages into brain.

An autograft of skeletal muscle on rat dorsal medulla is a permanent opening in the blood-brain barrier to solutes. Is the graft also a site for the entry of exogenous, isogeneic leukocytes? Five weeks after inserting the graft, peritoneal macrophages (M phi) from inbred Fischer rats were activated by phorbol myristate acetate, labeled with a fluorescent dye, and infused as a bolus of about 2 x 10(6) cells into the axillary artery of Fischer hosts. The cells circulated for 2 h. The brains were then fixed, frozen, and sectioned. Only when M phi had been activated and a muscle autograft inserted did appreciable numbers of M phi enter the medulla. Nonactivated M phi invaded the grafts but very few entered the brain at 2 h. In rats with gel foam grafts, only a few activated M phi invaded gel and brain. Before entering tissues, M phi must adhere to the lumenal face of vessels. Cell adhesion molecules, e.g., I-CAM-1 and its ligand adhesion molecule, leukocyte function antigen (LFA-1), are known to mediate adhesion. I-CAM-1, detected immunohistochemically, increased in graft vessels and in nearby brain vessels. The rise may have been mediated by cytokines, interleukin-6, and tumor necrosis factor-beta, found in the grafts. LFA-1, however, assayed by fluorescence-activated cell sorting, was on both activated and nonactivated, exogenous M phi. Thus, M phi-endothelial attachment may have involved other adhesion molecules, e.g., selectins. The autograft also induced major histocompatibility complex class I on microglia and classes I and II on brain vessels near the graft. These vessels, by expressing adhesion molecules, are entry routes into brain for activated, isogeneic leukocytes that can then migrate for a limited distance of 1-2 mm in an otherwise intact brain.

Animals↗

Studies to demonstrate inhibition of functional activity of neutrophil lysosomal enzymes with ANCA.

Many autoantibodies that have enzymes as their targets bind to the catalytic sites and inhibit enzymatic activity. We have established functional assays for the targets of anti-neutrophil cytoplasm antibodies (ANCA) in order to determine whether these antibodies are directed against the corresponding catalytic sites. Anti-proteinase 3 activity was measured by the cleavage of alpha-naphthyl acetate; myeloperoxidase activity by peroxidation of monochlorodimedon or guaiacol using hydrogen peroxide; and elastase activity by a fluorimetric assay of the hydrolytic product of N-succ (ala)3 amido-methyl coumarin. The addition of immunoglobulin from patients with ANCA to these assays did not result in inhibition of functional activity of the corresponding enzyme when compared with normal immunoglobulin. Furthermore the removal of specific immunoglobulin by solid phase adsorption to the corresponding antigen did not result in an increase in enzymatic activity compared with the starting material. However preliminary results suggest that anti-neutrophil proteinase 3 binding may be inhibited in a solid-phase ELISA by preincubation with a peptide corresponding to the catalytic site.

Antibodies, Antineutrophil Cytoplasmic↗

Anti-neutrophil cytoplasm antibodies in HIV infection.

Sera from 105 HIV-infected patients were tested for anti-neutrophil cytoplasm antibodies (ANCA) by indirect immunofluorescence (IIF), by specific ELISAs using target proteins of ANCA and by a neutrophil cytoplasm extract ELISA. Forty-four sera were positive. These included 18 positive by IIF, 7 with anti-neutrophil proteinase 3 antibodies, 26 with anti-myeloperoxidase antibodies and 2 with anti-elastase antibodies. Four sera were positive in the neutrophil cytoplasm extract ELISA but not in the specific ELISAs. None of these patients had clinical evidence of a cutaneous or systemic vasculitis. In addition there was no correlation between the presence of ANCA and the stage of disease, intercurrent bacterial or viral infection, anti-nuclear antibodies (ANA) and positive hepatitis B or syphilis serology.

AIDS-Related Complex↗

Activin induces cell death in hepatocytes in vivo and in vitro.

While studying endocrine responses to activin in female rats, we discovered that activin caused a marked reduction in liver mass. The regressed livers exhibited no gross signs of necrosis or infarction, but histopathological evaluation revealed extensive cell death in the centrilobular regions. The dying cells appeared to fragment into structures resembling apoptotic bodies. Liver mass and histological appearance were restored after cessation of activin infusion, indicating that on an organ level, this effect was reversible. To determine whether the effects observed in vivo were caused by direct actions on the liver, we then tested activin on isolated hepatocytes in serum-free medium. Under these conditions, activin caused many hepatocytes to undergo fragmentation, which was accompanied by a loss of 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT)-reducing activity, an index of viability. We compared the effects of activin with those of transforming growth factor-beta because activin is structurally related to transforming growth factor-beta and because transforming growth factor-beta has been shown previously to induce cell death in hepatocytes. Both proteins caused cell death of comparable magnitude, as defined by the extent of loss of MTT-reducing activity, but transforming growth factor-beta was active at one tenth of the effective activin concentrations. A neutralizing monoclonal antibody to transforming growth factor-beta blocked the response to transforming growth factor-beta but had no effect on the response to activin. Conversely, follistatin, an activin-binding protein, blocked the response to activin but not to transforming growth factor-beta. Inhibin, which antagonizes the effects of activin in many systems, had little effect on the response to activin. Activin and transforming growth factor-beta differed in their onset of action; exposure to transforming growth factor-beta for only 1 hr induced a maximal response, whereas maximal response to activin required its continuous presence for 24 hr. These results show a novel effect of activin on cell death in hepatocytes in vivo and in vitro, suggesting that activin may have a previously unrecognized role in regulating hepatic function.

Activins↗

Cytoskeleton of living, unstained cells imaged by scanning force microscopy.

Subsurface cytoskeletal structure can be visualized in either fixed or living mammalian cells in aqueous medium with approximately 50 nm resolution using the Scanning Force Microscope (SFM). In living cells, changes in cell topography, or subsurface cytoskeleton caused by the introduction of drugs (colchicine) or cross-linking of surface receptors (by antibodies against IgE bound to the IgE receptor) can be followed in time. Contrast in SFM images of cell surfaces result from both topographic features of the cell and from variations in cell surface "stiffness". The SFM is therefore capable of measuring local compliance and stress in living cells, and so should make it possible to map the cytoskeletal forces used to generate cell motions and changes in cell shape.

Animals↗

Treatment of severe combined immunodeficiency disease (SCID) due to adenosine deaminase deficiency with CD34+ selected autologous peripheral blood cells transduced with a human ADA gene. Amendment to clinical research project, Project 90-C-195, January 10, 1992.

Significant increases in lymphocyte adenosine deaminase activity, T cell numbers and immune function have been achieved in the two children with SCID thus far treated with autologous T cells genetically-corrected by retroviral-mediated insertion of a normal ADA gene. Although the data obtained to date demonstrate that the use of ADA gene corrected peripheral T cells appears to be an effective treatment for ADA(-)SCID, it is theoretically preferable to try to develop a treatment for these children that will result in stem cell gene correction. The genetic correction of T cell progenitors with long-term immune reconstituting ability would be more desirable because repeated infusions of genetically altered cells should not be necessary and the generation of a more complete repertoire of T cell specificities might also be possible. Furthermore, the present treatment protocol involves indefinite continuation of enzyme replacement treatment with PEG-ADA. The demonstration of ADA gene expression in the progeny of transduced stem cells may simplify the decision concerning cessation of this very costly enzyme treatment (approximately $250,000/yr./patient). Recent evidence suggests that a small fraction of bone marrow or peripheral blood mononuclear cells bearing the CD34 antigen contains hematopoietic stem cells with both lymphoid and myeloid reconstituting ability. We propose in this amendment to supplement the infusion of human ADA gene-transduced autologous T cells in children with ADA(-)SCID with autologous peripheral blood CD34+ cells transduced with a second, readily distinguishable ADA vector.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenosine Deaminase↗

A study of the safety and survival of the adoptive transfer of genetically marked syngeneic lymphocytes in HIV-infected identical twins.

This phase I/II pilot project will evaluate the survival, tolerance, safety, and efficacy of infusions of activated, gene marked, syngeneic T lymphocytes obtained from HIV seronegative identical twins on the functional immune status of HIV infected twin recipients. T cells from each seronegative twin will be obtained by periodic apheresis, separated into CD4 and CD8 enriched populations by monoclonal antibody affinity binding techniques, induced to polyclonal proliferation with anti-CD3 and rIL-2 stimulation, transduced with distinctive neoR retroviral vectors, and expanded 10-1,000 fold in numbers during approximately 2 weeks of culture. These marked T cell fractions will then be infused into the seropositive twins and the survival of the uniquely marked T cell populations will be monitored by vector-specific PCR, while the recipients' functional immune status is monitored by standard in vitro and in vivo testing protocols. A total of 3 cycles of treatment will be given at intervals of 6 weeks between infusions.

Adolescent↗

Myelodysplasia, vasculitis and anti-neutrophil cytoplasm antibodies.

A cutaneous or systemic vasculitis occurs in myelodysplasia as well as in myeloproliferative and lymphoproliferative disorders. The most common lesion is a leucocytoclastic vasculitis, with neurological or joint involvement occurring less often. The vasculitis may appear contemporaneously with or precede the clinical onset of the blood dyscrasia. Occasionally the lesions respond dramatically to the use of steroids but in general, patients with vasculitis have a worse prognosis than those with uncomplicated myelodysplasia. Vasculitis and myelodysplasia appear together too often for the association to be coincidental and the vasculitis in most cases cannot be attributed to intercurrent infections, therapeutic agents or a pre-existing rheumatological disorder. While autoantibodies are frequently present in myelodysplasia, and ANA and anti-neutrophil cytoplasm antibodies (ANCA) are found in other vasculitides, neither of these antibodies is associated with the vasculitis of myelodysplasia. There has however been one report of ANCA in Sweet's syndrome a non-vasculitic skin condition that also occurs in the myelodysplastic syndromes.

Adult↗

Expression of N-myc, c-myc, and MDR-1 proteins in newly established neuroblastoma cell lines: a study by immunofluorescence staining and flow cytometry.

A methodology for rapid isolation of neuroblastoma cells from marrow with metastatic neuroblastoma cells was developed using a cocktail of five antibodies and magnetic microspheres coated with secondary antibodies. Cells bound to microspheres were released by brief exposure to chymopapain, followed by repeated culture of released cells in serum-supplemented Dulbecco's modified Eagle's medium and selection for adherent cells. Using this methodology, over 35 primary cell lines were obtained free of contaminating normal cells. Detailed analyses of over 14 cell lines revealed gross differences in cell phenotype, size, morphology development of neurite processes, and doubling time (40 to 80 h). All cell lines expressed the M(r) 145,000 neurofilament, and a few expressed the M(r) 200,000 neurofilament, with very little or no expression of the M(r) 68,000 neurofilament. Eight % of all cells lines had near-diploid DNA content. High expression of the MDR-1 protein was detected in six of the 22 cell lines tested. Great heterogeneity was observed in the expression of N-myc oncoprotein, with ten of 13 patients overexpressing the protein. c-myc oncoprotein was also expressed in all cell lines; however, the level of expression was 4- to 10-fold lower than the N-myc oncoprotein. Localization studies of c-myc and N-myc oncoproteins on the level of light microscopy and electron microscopy revealed exclusive nuclear localization of c-myc, whereas N-myc was localized to the nucleus and to the cytoplasm.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Development of a two color immunofluorescence stain and immunolocalization method for N-myc and c-myc oncoproteins with a newly generated mouse IgM anti N-myc antibody.

A new mouse monoclonal antibody specific for N-myc oncoprotein was generated and used in combination with an anti-c-myc antibody to develop two color immunofluorescence staining and ultrastructural immunolocalization of N-myc and c-myc in well established (SK-N-SH; CHP 126) and in newly established neuroblastoma (NB) cell lines. Analysis and quantitation of c-myc and N-myc in dually stained cells was done by flow cytometry. Immunolocalization was done by staining with immunogold secondary antibodies and transmission electron microscopy. The results obtained from analysis of 13 newly established NB cell lines revealed, great heterogeneity in the expression of N-myc oncoprotein with 10/13 cell lines over expressing the protein. C-myc oncoprotein was also expressed in all cell lines, however, the level of expression was 4-10-fold lower than the N-myc oncoprotein. Localization studies of c-myc and N-myc oncoproteins on the level of light microscopy and electron microscopy revealed exclusive nuclear localization of c-myc whereas N-myc was localized to the nucleus and to the cytoplasm.

Antibodies, Monoclonal↗

Does ethnicity influence the prevalence of adrenal hyperandrogenism and insulin resistance in polycystic ovary syndrome?

OBJECTIVE: Our purpose was to determine the prevalence of adrenal hyperandrogenism and insulin resistance in patients with hyperandrogenic chronic anovulation, also called polycystic ovary syndrome, living in the United States, Italy, and Japan. STUDY DESIGN: Seventy-five women with polycystic ovary syndrome, 25 each from the United States, Italy, and Japan, and 10 ovulatory controls were studied. Hirsutism, obesity, and the presence of cystic ovaries were assessed, as were blood levels for estrogen, luteinizing hormone, testosterone, adrenal androgens, and insulin. All patients received an insulin tolerance test to assess insulin resistance. RESULTS: Women from Japan were less obese (p < 0.05) and did not have hirsutism, although the percentage of cystic ovaries (68% to 80%) was comparable. Serum luteinizing hormone, testosterone, and estradiol were similar, but levels of 3 alpha-androstanediol glucuronide, which was elevated in women from the United States and Italy, was normal in women from Japan. The adrenal androgens, dehydroepiandrosterone sulfate and 11 beta-hydroxyandrostenedione were elevated in 48% to 64% of the patients and by a similar percentage in the three groups. Fasting insulin was elevated in all groups, but was significantly higher in women from the United States and Italy compared with women from Japan (p < 0.05). However, insulin resistance as assessed by dissociation constant of insulin tolerance test values was significantly elevated but similar in the three groups and occurred in 68% to 76% of patients. CONCLUSION: In polycystic ovary syndrome, although obesity and hirsutism vary according to dietary, genetic, and environmental factors, the prevalence of adrenal androgen excess and insulin resistance appear to be fairly uniform. These results suggest that these factors may be involved in the pathophysiologic features of the disorder.

Adrenal Gland Diseases↗

The ratio of androstenedione:11 beta-hydroxyandrostenedione is an important marker of adrenal androgen excess in women.

OBJECTIVE: To determine if the ratio of serum androstenedione (A):11 beta-hydroxyandrostenedione (OHA) would be helpful in differentiating adrenal from ovarian hyperandrogenism. DESIGN/SETTING: Prospective study of outpatients being evaluated for hyperandrogenism. PATIENTS/PARTICIPANTS: Normal women (n = 27), those with hyperandrogenic chronic anovulation (n = 25), and 7 with adult onset of congenital adrenal hyperplasia (CAH) because of 21-hydroxylase deficiency. INTERVENTIONS: Fasting serum between 8:00 A.M. and 9:00 A.M. Patients with hyperandrogenic chronic anovulation and CAH received dexamethasone (DEX) 2 mg for 7 days. MAIN OUTCOME MEASURES: Serum testosterone (T), unbound T, dehydroepiandrosterone sulfate (DHEAS), A, and 11 beta-OHA by radioimmunoassay. RESULTS: Serum 11 beta-OHA and DHEAS were elevated in 52% and 40% of patients with hyperandrogenic chronic anovulation and in 7 of 7 and 1 of 7 patients with CAH. The ratio of A:11 beta-OHA was significantly higher (P less than 0.05) in hyperandrogenic chronic anovulation and significantly lower (P less than 0.05) in CAH compared with controls. Serum A:11 beta-OHA correlated with T (r = 0.58, P less than 0.05). The ratios of A:11 beta-OHA were similar and significantly lower in CAH and hyperandrogenic chronic anovulation patients who were DEX sensitive compared with those who were not DEX sensitive. The ratio correlated with the percentage suppression of T, unbound T, and A after DEX (P less than 0.01). There were no differences with measurements of DHEAS and 11 beta-OHA. Using the mean ratio of controls (1.3) as a cutoff value, the sensitivity of the A:11 beta-OHA in detecting adrenal hyperandrogenism, as assessed by DEX sensitivity, was 100%, the specificity was 84%, and the predictive value was 67%. CONCLUSIONS: The ratio of A:11 beta-OHA appears to be an excellent marker for identifying patients with adrenal hyperandrogenism and CAH.

Adolescent↗

Oxidants and antioxidants in alveolar epithelial type II cells: in situ, freshly isolated, and cultured cells.

Antioxidant enzyme activities, H2O2 clearance, and H2O2 generation by rat alveolar epithelial type II cells were compared between in situ, freshly isolated (6 h ex vivo), and cultured cells (48 h ex vivo). Immunocytochemical studies did not show changes in catalase, Mn superoxide dismutase, or CuZn superoxide dismutase labeling density in cytoplasm, peroxisomes, or mitochondria. Numbers of peroxisomes and mitochondria per cell decreased in cultured cells. Biochemical studies showed that cell culture resulted in a significant decrease in activities of catalase (49%), glutathione reductase (50%), glutathione peroxidase (74%), and in the capacity of the cells to scavenge extracellular H2O2. Addition of the specific catalase inhibitor, aminotriazole, decreased the rate of consumption of exogenously added H2O2 in freshly isolated cells but not in cultured cells. Neither aminotriazole nor 1,3-bis (2-chloroethyl)-1-nitrosourea, which inactivates glutathione reductase, altered H2O2 consumption by cultured cells. The rate of extracellular H2O2 release in both freshly isolated and cultured cells was 0.71 nmol.min-1.mg protein-1. It can be concluded that levels of some antioxidant enzymes fall in cultured alveolar epithelial type II cells, and that, although catalase likely plays a significant role in protection of freshly isolated cells against oxidant stress, this pathway may be less important after culture.

Amitrole↗

Neurophysiological assessment of skeletal muscle fatigue in patients with congestive heart failure.

BACKGROUND: Recent research has demonstrated that patients with congestive heart failure (CHF) exhibit significant functional impairment of skeletal muscle and that these changes may be important determinants of exercise capacity. Although muscle strength may be mildly reduced, the most significant abnormality is markedly enhanced muscle fatigue. The goal of the present study is to determine whether accelerated fatigue is caused by impaired muscle activation, as a result of inadequate central motor drive or neuromuscular transmission, or by a change in the muscle itself. METHODS AND RESULTS: The study population consisted of nine patients with New York Heart Association class I-III CHF and eight sedentary, age- and sex-matched control subjects. Maximal voluntary contraction force of the foot dorsiflexors (primarily the tibialis anterior) was quantified as a measure of muscle strength, isometric endurance was quantified by the time required for force to decline to 60% of maximal during a sustained maximal contraction, and dynamic endurance was defined as the number of maximal contractions required for force to decline to 60% of maximal under a protocol of six repetitions per minute with an incremental duty cycle. The degree of central motor drive failure was quantified by the degree of force augmentation produced by a superimposed tetanic stimulus delivered to the peroneal nerve during the initial maximal voluntary contraction and at the time when force during the sustained isometric contraction declined to 60% of maximal. Neuromuscular junction transmission was examined by quantifying the amplitude of the compound muscle action potential (M wave) in response to a single nerve stimulus during fatiguing exercise. Muscle strength was relatively preserved in the CHF patients versus the control subjects (93 +/- 41 versus 105 +/- 34 lb; p = NS), but isometric endurance (time to decline to 60%, 34 +/- 15 versus 54 +/- 19 seconds; p less than 0.02) and dynamic endurance (number of repetitions before decline to 60%, 30 +/- 6 versus 43 +/- 7 contractions; p less than 0.001) were both impaired. Tetanic nerve stimulation increased force by similar degrees in the two groups, and the amplitude of the M wave did not decline in either group during exercise. CONCLUSIONS: These findings indicate that enhanced muscle fatigue in patients with CHF is not caused by impaired central motor drive or an abnormality of neuromuscular junction transmission but rather by an abnormality in the muscle itself.

Action Potentials↗