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Biomedical subjects

W Lin

Publications and source records attributed to W Lin.

At least 181 records · Page 10Linked to original sources

Immunonephelometric quantification of group-specific component protein in patients with acute liver failure.

Serum levels of group-specific component (Gc) protein are useful in evaluating the likelihood of survival in patients with acute liver failure (ALF) who may be candidates for liver transplant surgery. Most methods for quantifying Gc protein concentration are either isotopic, manual, technically demanding, and/or time consuming to perform, and thus are not well suited for routine clinical use in a hospital setting. We modified and evaluated a recently described nonisotopic, fully automated, immunonephelometric method for quantifying serum Gc protein concentration and compared it to our previous immunoblotting method. In addition, we evaluated the effect of G-actin on the immunonephelometric measurement of Gc protein. Serum samples from 20 patients with ALF and from 20 age- and sex-matched clinic patients without liver disease were quantified by both immunoblotting and immunonephelometry. We assessed the intra-assay precision, correlation, and diagnostic accuracy of these methods in discriminating between individuals with no preexisting liver disease and those with ALF. Actin in 1.3- to 4-fold excess of Gc protein levels demonstrated minimal to no interference in the quantification of Gc protein by immunonephelometry. Immunonephelometry was more precise than immunoblotting. Gc protein values by immunonephelometry were similar to those obtained by immunoblotting, and the diagnostic accuracy of Gc protein concentration by immunonephelometry was similar to that observed by immunoblotting. Immunonephelometry provides a nonisotopic, fully automated, rapid, precise, accurate, and cost-effective method for quantifying serum levels of total Gc protein that is well suited for routine use in a hospital-based clinical laboratory.

Actins↗

Quantitative regional brain water measurement with magnetic resonance imaging in a focal ischemia model.

Therapeutic approaches to cerebral edema require an understanding of both the magnitude and location of changes in brain water content. It is desirable to have a sensitive, accurate means of measuring brain water noninvasively so that effective therapies for cerebral edema in stroke, head trauma, and other conditions can be investigated. In this work, a three-dimensional magnetic resonance imaging technique that is able to provide both spin density and T1 simultaneously is described. This method was used to quantitate regional changes in brain water content in a rat model of focal cerebral ischemia. Brain water contents estimated from both relative spin density and relative T1 measurements made in vivo were compared with ex vivo measurements of relative tissue water content based on the wet-dry technique. Correlation coefficients of 0.95 and 0.98 were obtained between the wet-dry measurements and magnetic resonance measurements of T1 and spin density, respectively. Notably, the slope of the relationship between T1 and tissue water content changed dramatically after the injection of a paramagnetic contrast agent while precontrast and postcontrast spin density measurements remained essentially invariant. In addition, a plot of absolute spin density (obtained by normalizing spin density from agar gelatin phantoms of different water contents to the spin density of a sample of 100% water) was linearly related to wet-dry measurements with a slope of 0.99 (R2 = 0.99).

Animals↗

Quantitative measurements of regional cerebral blood volume using MRI in rats: effects of arterial carbon dioxide tension and mannitol.

A three-dimensional (3D) T1-weighted sequence was used to acquire high spatial resolution whole brain images in rats before and after the injection of an intravascular contrast agent. These T1-weighted images were used to estimate regional cerebral blood volume (rCBV) as a percentage of blood volume in each voxel. Ventilation was manipulated to investigate the effects of altered arterial carbon dioxide tension (PaCO2) on rCBV. In addition, different doses of a hypertonic mannitol solution were used to investigate the sensitivity of the proposed method in a serial monitoring paradigm. An rCBV of 2.40% +/- 0.34% was obtained before any physiological manipulation, in good agreement with literature values using alternative techniques. Using this method, it was found that there exists a linear relationship between PaCO2 and rCBV (R2 = 0.77) and that rCBV increased in a dose and time dependent fashion in mannitol-treated rats. High signal-to-noise was available due to the substantial increase in blood signal from the intravascular contrast agent.

Animals↗

Monensin-induced reversal of positive force-frequency relationship in cardiac muscle: role of intracellular sodium in rest-dependent potentiation of contraction.

We have investigated the role of a rest-dependent inotropic factor in determining species-related differences in cardiac force-frequency relationships (FFR). Isolated rat, rabbit or guinea-pig papillary muscles, as well as guinea-pig ventricular myocytes were superfused with 1.8 mM Ca2+ Tyrode. In rat muscles, isometric force amplitude decreased, while in rabbit or guinea-pig muscles force increased with frequency (0.02-1 Hz). Paired-pulse pacing potentiated contraction markedly at all frequencies in rabbit muscles, but not at low frequencies in rat muscles. We tested the hypothesis that high intracellular Na+ levels (Nai) are responsible for negative FFR. The ionophore monensin increased Nai, reversed the FFR of rabbit and guinea-pig muscles from positive to negative, by increasing force mostly at low frequencies, and decreased the paired-pulse potentiation of contraction at low frequencies. Monensin added during rest also reversed rest-induced decay. In isolated myocytes, monensin had qualitatively similar effects on cell shortening as well as on Cai transients. Monensin also decreased the action potential duration (APD) but did not change the pattern of its variation with frequency. Cells intracellularly dialyzed with 20 mM Na+ via a patch pipette also showed rest potentiation of the Cai transients, in contrast to cells dialyzed with 10 mM Na+, which showed rest decay of the transients. APD was also shorter in myocytes dialyzed with 20 mM Na+ than in those dialyzed with lower Na+. The results indicate that in the presence of high Nai, sarcoplasmic reticular Ca2+ load is increased during diastole, possibly via reverse-mode Na+/Ca2+ exchange, and therefore that Nai is an important factor determining the FFR. In addition, the data suggest that short APDs in preparations showing negative FFR may be partly a consequence of increased Nai.

Action Potentials↗

Possible effect of pneumoperitoneum on the spreading of colon cancer tumor cells.

PURPOSE: By using a murine hepatic metastatic model, we tried to investigate the possible influence of gas insufflation in colon cancer cells spreading from the portal system to the liver. METHODS: After transducing the human placental ALP gene into murine colon cancer cell line CT26, we successfully selected a clone of CT26/DAP that would yield a specific color following histochemical staining. Fifty mice were assigned into two groups, receiving either an intrasplenic injection of 10(6) CT26/DAP cells alone or the cells followed by intra-abdominal helium insufflation with the pressure of 15 cm H2O for ten minutes. Five mice in each group were used to observe their survival and the other mice were killed at four different time periods: 10 minutes, 24 hours, 48 hours, and 72 hours following cell injection. The livers and spleens were removed for histochemical staining. By counting the numbers of specific dark reddish spots of CT26/DAP cells, we could estimate the number of tumor cells on the hepatic surface. RESULTS: At the very beginning following tumor cell injection, we found a significantly greater number of tumor cells on the hepatic surface in mice with gas insufflation (6354 +/- 1072 vs. 2133 +/- 223, respectively; P = 0.012). But the difference of these two groups became smaller and smaller as time went by. The number of tumor cells on the hepatic surface would reach the lowest level at postoperative 48 hours, and the tumor foci then began to grow both in size and number. The above patterns of dynamic change in tumor cell distribution were similar in mice both with and without gas insufflation. Average survival was slightly shorter in mice with gas insufflation, but the difference was not statistically significant. CONCLUSION: Pneumoperitoneum caused by gas insufflation may increase tumor cell spread from the portal system to the liver at the very beginning stage; however, there was no significant difference in long-term survival between mice with and without gas insufflation in this murine animal model.

Adenocarcinoma↗

Preparation of surface-modified albumin nanospheres.

Surface-modified human serum albumin (HSA) nanospheres with a size of around 100 nm in diameter were prepared from poly(amidoamine)-poly(ethylene glycol) copolymer grafted human serum albumin (HSA-PAA-PEG) and poly(thioetheramido acid)-poly(ethylene glycol) copolymer grafted human serum albumin (HSA-PTAAC-PEG). The nanospheres were produced using a pH-coacervation method and cross-linked with glutaraldehyde. The cross-linking efficiency was affected by the type of albumin conjugate used. The zeta potential of the surface-modified nanospheres was significantly lower than that of unmodified particles. The existence of a hydrated steric barrier surrounding the nanospheres was confirmed by electrolyte- and pH-induced flocculation tests. The surface-modified nanospheres showed a reduced plasma protein adsorption on the particle surface compared with unmodified particles.

Adsorption↗

Interferon-alpha-2C and LD ara-C for the treatment of patients with CML: results of the Austrian multi-center phase II study.

Small pilot studies of patients with CML have reported on encouraging response rates after treatment with interferon-alpha (IFNalpha) in combination with low-dose cytosine arabinoside (LD ara-C). We therefore initiated a multi-center phase II trial in order to investigate the efficacy and tolerability of this combination in newly diagnosed patients with Ph-positive chronic myelogenous leukemia (CML). Eighty-four patients were treated with IFN-alpha-2c at daily subcutaneous doses of 3.5 MU and LD ara-C added subcutaneously for 10 days every month at a dose of 10 mg/m2, following an initial reduction of WBC to less than 20 x 10(9)/l with hydroxyurea (HU). Within a median observation period of 28 (5-59) months the patients received a median of 7 (1-35) IFNalpha and LD ara-C cycles. Treatment was stopped due to side effects in 16 cases (19%) and to primary or secondary treatment failure in 38 cases (45%). In 45 patients (54%) complete hematological response (CHR) was achieved; in 39 patients (46%) cytogenetic responses including 15 (18%) complete cytogenetic responses (CHR) were observed. Median duration of cytogenetic responses was 15 months. Relapses were seen in 8/15 patients (53%) with complete cytogenetic remission (CCR), in 3/6 patients (50%) with partial cytogenetic response and in 9/18 patients (50%) with minor cytogenetic response. In conclusion, the combination of IFNalpha and LD ara-C resulted in encouraging rates of hematological and cytogenetic responses in patients with CML with low to moderate toxicity.

Adolescent↗

Statistical assessment of crosscorrelation and variance methods and the importance of electrocardiogram gating in functional magnetic resonance imaging.

Processing of functional magnetic resonance imaging (fMRI) data is a critical step in evaluating experimental results. We address the question of choosing between a Student t-test method, crosscorrelation method, or a weighted z-score method in analyzing functional MR images. We present an analytic analysis that makes it possible to make a statistical decision in setting the threshold for the crosscorrelation coefficient. Specifically, the theory for an receiver operating characteristic (ROC) analysis (description of type I and type II error) has been applied to the crosscorrelation method. Both theoretical predictions as well as model simulations are presented to prove that the crosscorrelation and weighted z-score method have the same statistical power. We introduce the concept of a variance image and use it to not only choose between the correlation image and a simple t-test image but also to obtain a final image that combines the efficient aspects of both the correlation and the simple t-test images. The variance image itself is shown to be an indicator of both patient motion and/or internal physiological motion in the brain. Furthermore, we delineate the importance of electrocardiogram (ECG) gating in reducing the variance in fMRI of human motor cortex.

Electrocardiography↗

Decreased plasma gelsolin concentrations in acute liver failure, myocardial infarction, septic shock, and myonecrosis.

OBJECTIVE: To quantitate gelsolin concentrations in serum of patients with a variety of conditions involving actin release into the circulation. DESIGN: Prospective evaluation of sera on consecutive patients. SETTING: Metropolitan county hospital. PATIENTS: Ninety hospital patients with a variety of well-characterized diseases. INTERVENTIONS: None. MEASUREMENTS AND MAIN RESULTS: Sera were studied from patients with acute liver failure (n = 18), chronic hepatitis (n = 17), cirrhosis of varying etiology (n = 17), pancreatitis (n = 10), acute myocardial infarction (n = 10), myonecrosis due either to polymyositis or crush injuries (n = 12), and septic shock (n = 6); results were compared with sera from healthy individuals (n = 25). Gelsolin was quantified by Western blotting with monoclonal anti-gelsolin and laser densitometry. Significant reductions in mean gelsolin concentrations compared with healthy controls were observed in patients with acute liver failure (47%), myocardial infarction (69%), sepsis (51%), and myonecrosis (66%). An inverse correlation was observed between gelsolin concentration and severity of illness, as indicated by the magnitude of serum enzyme concentrations. CONCLUSIONS: Gelsolin depletion occurs in a variety of tissue injury syndromes. Depletion of actin-scavenger capacity in the presence of continued actin release may affect outcome in situations of severe organ damage.

Actins↗

Patterns of hyaluronan staining are modified by fixation techniques.

The apparent intensity of hyaluronan (HA) staining in tissue sections can vary as a function of fixation techniques. We examined the histochemical distribution of HA in normal human skin using an HA-specific binding peptide derived from bovine nasal cartilage. The HA, particularly in the dermis, was best preserved in sections fixed in 10% acid-formalin with 70% ethanol. In contrast, sections fixed in the routine 10% neutral-buffered formalin had a much weaker intensity of HA staining. Furthermore, acid-formalin/ethanol-fixed sections retained much of their apparent HA after incubation with saline, in contrast to the neutral formalin-fixed sections, in which most of the stainable HA was lost. Such marked differences in staining intensity were not observed in slides stained with Alcian blue, a procedure presumed to stain HA as well as other glycosaminoglycans. Staining using the HA binding peptide was entirely absent when sections were first preincubated in hyaluronidase, whereas similar Alcian blue-stained sections retained most of their staining intensity. Caution should be exercised in evaluating the distribution of HA in tissues using the HA binding peptide, particularly when different fixation techniques among several laboratories are being compared. In addition, the ability to evaluate the HA content of tissues using Alcian blue staining should be reconsidered. The sulfated glycosaminolglycans of the "ground substance" appear to be the predominant substrates for Alcian blue.

Adult↗

Localization of language cortices by functional MR imaging compared with intracarotid amobarbital hemispheric sedation.

OBJECTIVE: We undertook this study to investigate functional MR imaging as a new clinical method for determining hemispheric language dominance. Seven patients undergoing surgical evaluation for chronic intractable epilepsy were studied. Intracarotid amobarbital injection was also performed and the findings compared with the functional MR imaging results. CONCLUSION: Functional MR imaging studies enabled localization of the frontal and temporal lobe language cortices. The results of functional MR imaging and intracarotid amobarbital testing of hemispheric language dominance agreed in all seven patients, including two right-handed patients with right-hemisphere language dominance. These preliminary results show that functional MR imaging is an accurate noninvasive method of determining language dominance that may replace the amobarbital test for some purposes if confirmed by additional research.

Adult↗

Effects of Ro 31-8220 on lipopolysaccharides-induced hepatotoxicity and release of tumor necrosis factor from rat Kupffer cells.

AIM: To investigate protein kinase C (PKC) functions on lipopolysaccharide (LPS)-induced hepatotoxicity, a new potent PKC inhibitor Ro 31-8220 (Ro) was used to detect its effect on LPS-induced hepatotoxicity in rat hepatocytes and tumor necrosis factor (TNF) release from rat Kupffer cells (KC). METHODS: Hepatocytes (containing KC) were incubated with LPS (10 mg.L-1) and Ro (0.1-10 mumol.L-1) for 24 h, alanine aminotransferase (AlaA) leakage in the culture as indication of hepatotoxicity. The TNF activity in the supernatant of rat KC culture with LPS in the presence of Ro (0.1-10 mumol.L-1) was monitored by the L929 target cell lytic assay. RESULTS: Ro (0.1-10 mumol.L-1) reduced AlaA leakage in the hepatocyte culture. Ro inhibited dose-dependently the LPS-induced TNF production from rat KC. CONCLUSION: PKC inhibitor Ro protects the hepatocytes from LPS-induced cytotoxicity and inhibits the LPS-induced TNF production from rat KC.

Animals↗

[Studies on arachidonic acid production by Mortierella].

The effects of the incubation temperature, initial pH of the medium, carbon source and nitrogen source on the production of arachidonic acid by Mortierella sp. M10 were studied. Thought orthogonal experiments, the optimum culture medium was obtained (g/L): glucose, 100; yeast extract, 10; KNO3, 4.0; KH2PO4, 2.0; CaCl2.2H2O, 0.1; MgSO4.7H2O, 0.5; FeCl3.6H2O, 0.015; ZnSO4.7H2O, 0.0075; CuSO4.5H2O, 0.0005. Under the optimum culture conditions, the dry cell weight and arachidonic acid was 33.51 g/L and 0.827 g/L, respectively. The flask culture process was analysed.

Arachidonic Acid↗

[Inhibitory effect of matrine on lipopolysacchride-induced tumor necrosis factor and interleukin-6 production from rat Kupffer cells].

The effect of matrine on the lipopolysacchride (LPS)-induced tumor necrosis factor and interleukin-6 production from rat Kupffer cell was investigated. Results showed that matrine 125, 250 and 500 mg.L-1 suppressed TNF and IL-6 production from Cal-primed Kupffer cells in the presence of lipopolysacchrides (LPS, 100 micrograms.L-1) in a concentration-dependent manner. Treatment with matrine 50 and 100 mg.kg-1 before LPS injection(3.5 mg.kg-1) markedly decreased mouse serum TNF and IL-6. The results suggest that matrine may have protective effect on LPS-induced liver injury.

Alkaloids↗

Essential arginine residues in isoprenylcysteine protein carboxyl methyltransferase.

We used specific amino acid modifying reagents to characterize the isoprenylcysteine carboxyl methyltransferase in kidney membranes. The enzyme was inactivated by reagents specific for arginine, histidine, cysteine, and tryptophan residues. Protection by the product and inhibitor S-adenosyl-L-homocysteine was observed for arginine modification by phenylglyoxal and tryptophan modification by N-bromosuccinimide. We focused on modification by phenylglyoxal, a highly specific modifier of arginine residues. The inactivation of methyltransferase by phenylglyoxal follows pseudo-first-order kinetics and the order of the reaction, n, with respect to phenylglyoxal was 1.2. The inactivation increased with the alkalinity of the preincubation medium and was maximal at pH 10. Kinetic analysis showed that the K(m) for S-adenosyl-L-methionine is not significantly affected by treatment with phenylglyoxal but that the Vmax is reduced p-Hydroxyphenylglyoxal, a more hydrophilic derivative of phenylglyoxal, was a less potent inactivator of methyltransferase than phenylglyoxal, suggesting that arginine residues modified are in a hydrophobic environment. The methyltransferase is protected from phenylglyoxal modification by S-adenosyl-L-homocysteine but not S-adenosyl-L-methionine, sinefungin, N-acetyl-S-farnesyl-L-cysteine, or farnesylthioacetate. The arginine residue modified may thus be located either at the active site or at another additional binding site for S-adenosyl-L-homocysteine. These results indicate that arginine residues are essential for the enzymatic activity of isoprenylcysteine carboxyl methyltransferase.

Adenosine↗

[Experimental study on direct volume reconstruction].

Application of DVR is investigated with the X-ray equipment under single circle imaging geometry. A real volume model that consists of aluminum bar, lucite and air bar is designed. A prototype imaging system that includes X-ray cone-beams ource, rotating system, fluorescent screen, image intensifier, TV camera, image acquisitor and microcomputer is constructed. The experimental results show that DVR with the current simple X-ray equipment is of interests and values.

Image Processing, Computer-Assisted↗

Effects of intermediate filament disruption on the early development of the peripheral nervous system of Xenopus laevis.

The principal function of intermediate filaments is to strengthen cells. Their developmentally regulated, tissue-specific patterns of expression further suggest that they modulate cellular structural properties during development. To explore the role of intermediate filaments in development, we injected RNA encoding a truncated form of the Xenopus laevis middle-molecular-weight neurofilament protein (NF-M) into embryonic frog blastomeres at the 2-cell stage. A similar truncated form of mammalian NF-M disrupts neurofilaments (Type IV) and vimentin (Type III) intermediate filaments in transfected fibroblasts. In cultures made from dissociated neural tubes and their adjacent myotomes, the resultant protein disrupted both desmin filaments in muscle cells and neurofilaments in neurons during the first day of culture, which corresponds to stage 35/36 in the intact embryo. We next examined the effects of this truncated neurofilament protein on development of the nervous system. The greatest effects were seen on development of cranial and primary motor nerves, which were severely stunted as late as stage 37/38. In addition to these effects, ectopic neurons also appeared immediately beneath the epidermis along the flank of tadpoles expressing the truncated neurofilament protein. Whereas the former effects on peripheral nerve development were nearly identical to effects obtained with injected neurofilament antibodies, the ectopic neurons were novel, suggesting they resulted from the disruption of intermediate filaments other than the neurofilaments. These experiments thus implicate intermediate filaments in several functions important for normal neural development.

Animals↗

Pharmaceutical fingerprinting: evaluation of neural networks and chemometric techniques for distinguishing among same-product manufacturers.

The present study was undertaken to evaluate several computer-based classifiers as potential tools for pharmaceutical fingerprinting by utilizing normalized data obtained from HPLC trace organic impurity patterns. To assess the utility of this approach, samples of L-tryptophan (LT) drug substance were analyzed from commercial production lots of six different manufacturers. The performance of several artificial neural network (ANN) architectures was compared with that of two standard chemometric methods, K-nearest neighbors (KNN) and soft independent modeling of class analogy (SIMCA), as well as with a panel of human experts. The architecture of all three computer-based classifiers was varied with respect to the number of input variables. The ANNs were also optimized with respect to the number of nodes per hidden layer and to the number of hidden layers. A novel preprocessing scheme known as the Window method was devised for converting the output of 899 data entries extracted from each chromatogram into an appropriate input file for the classifiers. Analysis of the test set data revealed that an ANN with 46 inputs (i.e., ANN-46) was superior to all other classifiers evaluated, with 93% of the chromatograms correctly classified. Among the classifiers studied in detail, the order of performance was ANN-46 (93%) > SIMCA-46 (87%) > KNN-46 (85%) = ANN-899 (85%) > "human experts" (83%) > SIMCA-899 (78%) > or = ANN-22 (77%) = KNN-22 (77%) > or = KNN-899 (76%) > SIMCA-22 (73%). These results confirm that ANNs, particularly when used in conjunction with the Window preprocessing scheme, can provide a fast, accurate, and consistent methodology applicable to pharmaceutical fingerprinting. Particular attention was paid to variations in the HPLC patterns of same-manufacturer samples due to differences in LT production lots, HPLC columns, and even run-days to quantify how these factors might hinder correct classifications. The results from these classification studies indicate that the chromatograms evidenced variations across LT manufacturers, across the three HPLC columns and, for one manufacturer, across lots. The extent of column-to-column variations is particularly noteworthy in that all three columns had identical specifications with respect to their stationary-phase characteristics and two of the three columns were from the same vendor.

Chemistry, Pharmaceutical↗