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Biomedical subjects

K Zhang

Publications and source records attributed to K Zhang.

At least 253 records · Page 14Linked to original sources

Oncogene-dependent apoptosis in extracts from drug-resistant cells.

Many genotoxic agents kill tumor cells by inducing apoptosis; hence, mutations that suppress apoptosis produce resistance to chemotherapy. Although directly activating the apoptotic machinery may bypass these mutations, how to achieve this activation in cancer cells selectively is not clear. In this study, we show that the drug-resistant 293 cell line is unable to activate components of the apoptotic machinery-the ICE-like proteases (caspases)-following treatment with an anticancer drug. Remarkably, extracts from untreated cells spontaneously activate caspases and induce apoptosis in a cell-free system, indicating that drug-resistant cells have not only the apoptotic machinery but also its activator. Comparing extracts from cells with defined genetic differences, we show that this activator is generated by the adenovirus E1A oncogene and is absent from normal cells. We provide preliminary characterization of this oncogene generated activity (OGA) and show that partially purified OGA activates caspases when added to extracts from untransformed cells. We suggest that agents that link OGA to caspases in cells would kill tumor cells otherwise resistant to conventional cancer therapy. As this killing relies on an activity generated by an oncogene, the effect of these agents should be selective for transformed cells.

Adenosine Triphosphate↗

A MUC1 mucin secreted from a colon carcinoma cell line inhibits target cell lysis by natural killer cells.

The effect of two secreted mucin-type glycoproteins on natural killer (NK) cell cytotoxicity against K562 target cells has been studied. These mucins carry the carcinoma-associated sialyl-Lewis a carbohydrate epitopes and were purified from the human colon adenocarcinoma cell line COLO 205 secretions, where they lack their cytoplasmic parts. The larger one has an apoprotein encoded by the MUC1 gene, and the smaller one has CD43 (leukosialin) as the core protein. The purified MUC1 mucin could inhibit the target cell lysis by NK cells in a dose-response-dependent way, whereas other mucin domains of similar size showed no inhibition. The second mucin, CD43, inhibited lysis by NK cells, although less than the larger one. The MUC1 mucin bound to the enriched natural killer cell preparations in a partial Ca2+-dependent way as well. This mucin also bound to the target cells. The K562 cells, normally expressing high amount of CD43, showed an increased resistance to lysis by NK cells when transfected with MUC1 cDNA compared with nontransfected cells. One can speculate that mucins secreted or expressed in the plasma membrane of cancer cells could interfere with NK cell-mediated lysis.

Adenocarcinoma↗

TNF-alpha-mediated lung cytokine networking and eosinophil recruitment in pulmonary fibrosis.

Despite abundant evidence documenting the importance of TNF-alpha in the pathogenesis of pulmonary fibrosis, its actual role has not been fully elucidated. Recent observations also indicate that eosinophils found in fibrotic lung express elevated levels of cytokines known to be important in lung fibrosis. These findings suggest a possible role for TNF-alpha in eosinophil recruitment and cytokine expression in this disease. To examine this hypothesis, pulmonary fibrosis was induced in mice by endotracheal bleomycin treatment, and separate groups of animals were also treated with either anti-TNF-alpha Ab or control serum. On days 7 and 14 post-bleomycin treatment, lungs were harvested and analyzed for fibrosis, cytokine expression, and eosinophil influx. Anti-TNF-alpha caused a significant reduction in lung fibrosis, as indicated by a reduction in hydroxyproline content, which was accompanied by suppression of lung TGF-beta1, IL-5, and JE mRNA expression. Examination of tissue sections revealed a significant reduction in lung eosinophils and overall cellularity by anti-TNF-alpha treatment without a significant effect on the number of lung macrophages. The number of IL-5-expressing cells was also significantly reduced by anti-TNF-alpha treatment. Since IL-5 is important in eosinophil differentiation, activation, and recruitment, these findings suggest a novel mechanism by which TNF-alpha could mediate pulmonary fibrosis via induction of IL-5-mediated eosinophil recruitment and fibrogenic cytokine production. Since these eosinophil-derived cytokines include JE/monocyte chemotactic factor-1 and TGF-beta1, this cytokine networking orchestrated by TNF-alpha could, in turn, amplify the inflammatory response and drive the progression to fibrosis and end-stage lung disease.

Animals↗

Effects of low-energy gallium-aluminum-arsenide laser irradiation on cultured fibroblasts and keratinocytes.

BACKGROUND AND OBJECTIVE: To assess whether the gallium-aluminum-arsenide low energy laser will increase cell proliferation, cell attachment, or cell migration in cultured fibroblasts and keratinocyte models. STUDY DESIGN/MATERIALS AND METHODS: Monolayer cultures of fibroblasts and keratinocytes were subjected to gallium-aluminum-arsenide laser irradiation at varying power densities for varying time intervals. Cell proliferation was assessed by absorbent spectrophotometry while cell adhesion was assessed by a microcolorimetric assay for cells attached to bovine dermis collagen. Cell migration was assessed through a filter utilizing high power microscopic fields. RESULTS: There were no differences in cell proliferation, adhesion, or migration in either the fibroblasts or keratinocyte culture treated with the gallium-aluminum-arsenide laser at any power density or time compared with nontreated controls. CONCLUSION: The gallium-aluminum-arsenide laser, when utilized at powers 5-100 milliwatts and times of between 10-120 seconds has no biostimulatory effects on fibroblasts or keratinocyte cultures as assessed by cell proliferation, adhesion, or migration.

Aluminum↗

Slowly inactivating sodium currents are reduced by exposure to oxidative stress.

Exposure of cardiac myocytes to oxidant stress has been implicated in the development of reperfusion arrhythmias. Studies on the effects of free radical generating systems on the fast sodium current have suggested an increase in a "window" current. The resulting increase in sodium influx has been hypothesized to cause an intracellular sodium load that stimulates Na+, Ca2+ exchange and promotes a Ca2+ overload. To test this proposal, the time course for effects of oxidative stress on a sodium current elicited with voltage ramps was investigated in feline ventricular myocytes. No window current was observed; instead, a slowly inactivating sodium current was generated at negative voltages near the sodium threshold potential. At room temperature there were no effects of a 30-min exposure to 1 mm H2O2 on this slowly inactivating sodium current. Likewise, there were no effects of either 1 mm H2O2 or 1.5 mm t-butyl hydroperoxide on fast sodium currents recorded at cool temperatures (12-15 degrees C). Experiments were repeated with t-butyl hydroperoxide at warm temperatures (30-33 degrees C), and the fast sodium current was reduced in magnitude and the reversal potential shifted to more negative voltages. These results demonstrate a temperature dependence for the loss of the fast sodium current during exposure to t-butyl hydroperoxide. Two exponentials were fit to the decaying phase of the fast sodium current and the slow time constant of inactivation was prolonged, suggesting delayed inactivation of the sodium current. Currents elicited with a steady-state inactivation protocol suggested development of a non-inactivating component during exposure to t-butyl hydroperoxide at warm temperatures. Direct evaluation of the slowly inactivating sodium current elicited by voltage ramps at warm temperatures (33-35 degrees C), and analysed as subtraction currents to remove background leak currents, showed a gradual reduction. It is concluded that the non-inactivating component identified during analysis of the fast sodium current was not the result of enhancement of either a slowly inactivating sodium current or a window current. Thus, an increase in sodium influx through voltage-dependent sodium channels does not occur during exposure to oxidative stress, and therefore, cannot induce an intracellular sodium load.

Animals↗

Fourier Transform Infrared Emission Spectroscopy of NaCl and KCl

The infrared emission spectra of NaCl and KCl have been recorded at high resolution with a Fourier transform spectrometer. A total of 929 lines belonging to 8 vibrational bands, 1-0 to 8-7, for Na35 Cl, 252 lines of 1-0, 2-1, and 3-2 bands of Na37 Cl, and 355 lines of 1-0, 2-1, 3-2, and 4-3 bands of K35 Cl have been measured and combined with the existing microwave and millimeter-wave data to obtain a set of refined molecular constants. The data for Na35 Cl and Na37 Cl have also been fitted to determine the Dunham Yij constants and mass-reduced Dunham constants Uij . In one fit all Uij 's were treated as adjustable parameters while in a second fit only Ui 0 's and Ui 1 's were allowed to vary freely with the remaining Uij constants determined by the constraints imposed by the Dunham model. In addition, the internuclear potential energy parameters were determined by fitting the entire NaCl data set to the eigenvalues of the Schrodinger equation containing a parameterized potential energy function.

Journal Article↗

Automated correlation and averaging of three-dimensional reconstructions obtained by electron tomography.

We have developed a least-squares refinement procedure that in an automated way performs three-dimensional alignment and averaging of objects from multiple reconstructions. The computer implementation aligns the three-dimensional structures by a two-step procedure that maximizes the density overlap for all objects. First, an initial average density is built by successive incorporation of individual objects, after a global search for their optimal three-dimensional orientations. Second, the initial average is subsequently refined by excluding individual objects one at a time, realigning them with the reduced average containing all other objects and including them into the average again. The refinement is repeated until no further change of the average occurs. The resulting average model is therefore minimally biased by the order in which the individual reconstructions are incorporated into the average. The performance of the procedure was tested using a synthetic data set of randomly oriented objects with Poisson-distributed noise added. The program managed well to align and average the objects at the signal/noise ratio 1.0. The increase in signal/noise ratio was in all investigated cases almost equal to the expected square root of the number of objects. The program was also successfully tested on a set of authentic three-dimensional reconstructions from an in situ specimen containing Escherichia coli 70S ribosomes, where the immediate environment of the reconstructed objects may also contain variable amounts of other structures.

Automation↗

Experimental study on the effects of aprotinin on myocardial ischemia and reperfusion.

Direct effects of a high-dose aprotinin on the normally perfused hearts and the myocardial protection after ischemia and reperfusion were investigated in an isolated working rat heart model. In trial I, hearts had no ischemia and were perfused with either K-H solution or the K-H solution containing aprotinin (200 KIU/ml) for 55 min. No statistically significant difference was observed in hemodynamics between the two groups. In trial II, hearts were exposed to 150 min period of global ischemia at 15 degrees C with 4 degrees C multidose St. Thomas' II solution (STS). The control group I received normal K-H solution; the group II was treated with the solution with aprotinin added. The group III was similar to the group I and received the STS enriched with aprotinin. On reperfusion, the recovery of hearts in group III was significantly better than those of the group I and II, as reflected by better hemodynamics and myocardial ATP levels and milder myocardial ultrastructural injury. There was no difference between the group I and II. These results suggest that the aprotinin a dose of 200 KIU/ml has no harmful effects on normally perfused hearts and has a marked myocardial protective effect on the prolonged myocardial ischemia when used in cold crystalloid cardioplegia.

Animals↗

Effect of amino acid cardioplegia on myocardial metabolism and function of ischemic canine heart.

To evaluate the effect of amino acid cardioplegia on myocardial metabolism and function of ischemic canine heart, canine cardiopulmonary bypass (CPB) model was established and the dog heart was subjected to a 120 min ischemic arrest. Animals were divided into 3 groups, group 1: warm blood cardioplegia induction and terminal perfusion plus 4 C ST. Thomas hospital solution (STS) during ischemia; group 2: warm blood cardioplegia enriched with amino acid (L-asparte and L-glutamate 13 mmol/L each) and STS without amino acid (A. G.) and group 3: both warm blood cardioplegic solution and STS enriched with A. G. . The result demonstrated that the cardiac function of animals in group 2 and 3 had a significantly better recovery after ischemic-re-perfusion. By the end of ischemia the content of myocardial ATP in group 3 was distinctly higher than that in group 1 (P < 0.05), with the release of cardiac enzyme being the least. Myocardial ultra-structure almost remained intact before and after ischemia. Our experiment suggests that the cardioplegia arrest with warm blood and cold crystalloid solution enriched with amino acids could diminish the ischemia-re-perfusion injuries of the heart and enhance the effect of myocardial protection.

Amino Acids↗

The effect of change in skin temperature due to evaporative cooling on sweating response during exercise.

The purpose of this study was to investigate whether there are any effects of skin temperature changes on sweating response in the first few minutes of mild exercise. Six healthy males performed a bicycle exercise at 100 W (50 rpm) for 30 min under an ambient temperature of 23 degrees C (40% RH). Esophageal temperature (Tes), mean skin temperature (Tsk), local skin temperature at the lower left scapula (Tsl), local sweating rate (Msw) and cutaneous blood flow by laser-Doppler flowmetry (LDF) were measured continuously. Although Tsl decreased markedly just after the onset of sweating, Tsk did not change. Msw did not increase constantly in the early stages of exercise, and there was a temporary interruption in the increase of Msw. This interruption in sweating was affected by the rate of change in Tsl rather than by the absolute value of Tsl, since there was a positive and significant correlation between the time of the interruption in the increase of Msw and the rate of decrease in Tsl (y = 6.47 x +0.04; r = 0.86, P < 0.05). The results suggest that sweating response in the early stages of exercise may be influenced by changes in local skin temperature due to evaporative cooling.

Adult↗

Studies of cation binding in ZnCl2-regenerated bacteriorhodopsin by x-ray absorption fine structures: effects of removing water molecules and adding Cl- ions.

The binding of Zn2+ in Zn2+-regenerated bacteriorhodopsin (bR) was studied under various conditions by x-ray absorption fine structures (XAFS). The 0.9:1 and 2:1 Zn2+:bR samples gave similar XAFS spectra, suggesting that Zn2+ might have only one strong binding site in bR. It was found that in aqueous bR solution, Zn2+ has an average of six oxygen or nitrogen ligands. Upon drying, two ligands are lost, suggesting the existence of two weakly bound water ligands near the cation-binding site in bacteriorhodopsin. When excess Cl- ions were present before drying in the Zn2+-regenerated bR samples, it was found that two of the ligands were replaced by Cl- ions in the dried film, whereas two remain unchanged. The above observations suggest that Zn2+ has three types of ligands in regenerated bR (referred to as types I, II, and III). Type I ligands are strongly bound. These ligands cannot be removed by drying or by exchanging with Cl- ions. Type II ligands cannot be removed by drying, but can be replaced by Cl- ligands. Type III ligands are weakly bound to the metal cation and are most likely water molecules that can be removed by evaporation under vacuum or by drying with anhydrous CaSO4. The results are discussed in terms of the possible structure of the strongly binding site of Zn2+ in bR.

Bacteriorhodopsins↗

Peripheral noradrenergic turnover in streptozotocin-induced diabetic rats.

Our goal was to determine whether basal sympathetic tone to the kidney and various peripheral tissues is altered in conscious diabetic rats. Norepinephrine (NE) turnover was determined by measuring the decline in tissue NE concentration ([NE]) at 4 and 8 h after administering alpha-methyl-p-tyrosine to animals from each of three groups, diabetic (STZ injected 4 weeks prior to experimentation), diabetic + insulin (STZ injected; insulin injected; 2 U/day per rat for 4 weeks) and control (n = 18-20 per group). Various peripheral tissues (duodenum, left ventricle of the heart, kidney, skeletal muscle, left adrenal gland and liver) were examined. [NE] was significantly increased in the kidney and liver, but decreased in the duodenum of the diabetic compared to the control rats. In contrast to the changes in [NE], the rate constant, which provides an index of sympathetic tone, increased in the duodenum and liver, and a decreased in the adrenal gland. The turnover of NE, which is a composite of [NE] and rate constant, increased in the kidney and liver, and decreased in the adrenal gland of diabetic rats. Chronic treatment of diabetic rats with insulin normalized NE turnover in the liver, but not in the adrenal gland. Diabetic rats treated with insulin exhibited a reduced turnover of NE in the kidneys. These data demonstrate that there are differential changes in the [NE], rate constant, and turnover of NE in diabetic rats. Overall, these data indicate that there is increased noradrenergic activity to the kidney, possibly related to sodium retention, and a differential change in noradrenergic activation to various peripheral tissues in diabetic rats.

Animals↗

Regulation of the expression of distinct human secreted IgE proteins produced by alternative RNA splicing.

The use of splice sites for human epsilon mRNAs is tightly regulated, as the potential number of splice products far exceeds that actually produced. Our studies show that use of the epsilon alternative splices is regulated by a limited number of stimuli, and the relative production of the epsilon mRNA variants follows a developmental profile. In addition, we have found disease-related changes in the pattern of epsilon mRNA variants encoding distinctive IgE isoforms. Analysis of the biological activity of expressed recombinant IgE proteins and measurement of their levels in disease conditions will directly answer questions as to the biological relevance of the changes observed in epsilon mRNA splicing. This information will then be able to be used for rational therapeutic design interventions in IgE-mediated disorders.

Alternative Splicing↗

New electrode system for rapid whole-body and segmental bioimpedance assessment.

Skeletal muscle is a clinically important body composition component which at present is difficult to quantify in vivo. Previous studies suggest that measured appendicular resistance at 50 kHz can be used to predict extremity skeletal muscle mass, although accurate technician placement of multiple gel electrodes is required. In the present study we developed a new bioimpedance analysis (BIA) electrode stand designed for rapid whole-body and segmental resistance and reactance measurements. The new system incorporates stainless steel hand and foot contact electrodes in place of gel electrodes and employs a previously reported lead placement algorithm for deriving extremity resistances without the need for placing conventional proximal limb gel electrodes. This report describes the new electrode system's design and examines the relationships between contact and gel electrode-measured resistance and between appendicular resistance measured with the recently reported lead placement algorithm and conventionally placed segmental electrodes. Results in healthy adults demonstrate high correlations between contact and gel electrodes (e.g., hand-to-hand, N = 12, r = 0.994, P < 0.001) and between segmental resistance measured by the recently reported approach and conventionally-measured segmental resistance (e.g., right arm, N = 13; r = 0.997, P < 0.001). These results strongly support the validity of the new electrode system's resistance measurements and suggests the feasibility of developing a BIA system for rapidly measuring extremity skeletal muscle mass.

Adult↗

Purification of an extracellular D-(-)-3-hydroxybutyrate oligomer hydrolase from Pseudomonas sp. strain A1 and cloning and sequencing of its gene.

An extracellular D-(-)-3-hydroxybutyrate oligomer hydrolase was purified from a poly(3-hydroxybutyrate)-degrading bacterium, Pseudomonas sp. strain A1. The purified enzyme hydrolyzed the D-(-)-3-hydroxybutyrate dimer and trimer at similar rates. The enzyme activity was inhibited by a low concentration of diisopropylfluorophosphate. The molecular weight of the hydrolase was estimated to be about 70,000 by sodium dodecyl sulfate-polyacrylamide gel electrophoresis. A 10-kbp DNA fragment of A1 was detected by hybridization with the gene (2 kbp) of an extracellular poly(3-hydroxybutyrate) depolymerase from Alcaligenes faecalis. Subsequent subcloning showed that a SmaI-KpnI fragment (2.8 kbp) was responsible for expression of the hydrolase in Escherichia coli and an in vitro transcription-translation system. The expressed protein detected by immunostaining had the same molecular weight as the purified enzyme from A1. The protein band detected in the in vitro transcription-translation system had a molecular size of 72 kDa. The nucleotide sequence of the SmaI-KpnI fragment was determined, and one open reading frame (2,112 nucleotides) was found. It specifies a protein with a deduced molecular weight of 72,876 (704 amino acids). In this sequence, the consensus sequence of serine-dependent hydrolysis, G-X-S-X-G, did not exist.

Amino Acid Sequence↗

Nitric oxide within the paraventricular nucleus mediates changes in renal sympathetic nerve activity.

The paraventricular nucleus (PVN) of the hypothalamus is known to be involved in the control of sympathetic outflow. The goal of the present study was to examine the role of nitric oxide within the PVN in the regulation of renal sympathetic nerve activity. Renal sympathetic nerve discharge (RSND), arterial blood pressure, and heart rate in response to the microinjection of nitric oxide synthase inhibitor NG-monomethyl-L-arginine (L-NMMA; 50, 100, and 200 pmol) into the PVN were measured in male Sprague-Dawley rats. Microinjection of L-NMMA elicited an increase in RSND, arterial blood pressure, and heart rate. Administration of NG-monomethyl-D-arginine (D-NMMA, 50-200 pmol) into the PVN did not change RSND, arterial pressure, or heart rate. Similarly, microinjection of another nitric oxide inhibitor NG-nitro-L-arginine methyl ester (L-NAME; 100 nmol) also elicited an increase in RSND, arterial blood pressure, and heart rate. L-Arginine (100 nmol) reversed the effects of L-NAME in the PVN. Furthermore, microinjection of sodium nitroprusside (SNP; 50, 100, and 200 nmol) into the PVN elicited a significant decrease in RSND, arterial blood pressure, and heart rate. These effects of L-NMMA, L-NAME, and SNP on RSND and arterial blood pressure were not mediated by their vasoactive action because microinjection of phenylephrine and hydralazine did not elicit similar respective changes. In conclusion, our data indicate that endogenous nitric oxide within the PVN regulates sympathetic outflow via some inhibitory mechanisms. Altered nitric oxide mechanisms within the PVN may contribute to elevated sympathetic nerve activity observed during various diseases states such as heart failure and hypertension.

Animals↗

Comparison of sialyl-Lewis a-carrying CD43 and MUC1 mucins secreted from a colon carcinoma cell line for E-selectin binding and inhibition of leukocyte adhesion.

The colon carcinoma cell line COLO 205 has earlier been shown to express and secrete two mucin-type glycoproteins, the leukocyte-associated sialoglycoprotein CD43 or leukosialin (named L-CanAg) and the MUC1 mucin (named H-CanAg). Both glycoproteins carry sialyl-Lewis a epitopes and could bind transfected COS cells expressing E-selectin in a Ca(2+)- and E-selectin-dependent way. Using the monoclonal antibodies C50, C241 (both against sialyl-Lewis a), and CSLEX1 (against sialyl-Lewis x), the MUC1 mucin was shown to express both sialyl-Lewis a and sialyl-Lewis x epitopes, while the CD43 mucin expressed sialyl-Lewis a and almost no sialyl-Lewis x epitopes. These two secreted glycoproteins could inhibit human polymorphonuclear leukocyte or HL-60 cell adhesion to E-selectin-transfected COS cells or IL-1 beta-stimulated human endothelial cells in vitro. The inhibitory efficiency of the MUC1 mucin was 5-10 times larger than that of the CD43 mucin, when studied on endothelial cells and comparable amounts of sample were used. Removing the sialic acids from the MUC1 or CD43 mucins by sialidase treatment abolished the inhibitory effect. Monoclonal antibodies against sialyl-Lewis a greatly and equally inhibited the binding of the MUC1 or CD43 mucins, whereas an antibody against sialyl-Lewis x (CSLEX1) showed almost no inhibitory effect. The result proposes that the sialyl-Lewis a epitope on at least some mucin-type molecules bind E-selectin better than sialyl-Lewis x and that the potency of tumor-secreted mucins to interfere with leukocyte attachment to E-selectin could be dependent on the apoprotein size or its presentation of the carbohydrate epitopes.

Animals↗