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Biomedical subjects

K Kirk

Publications and source records attributed to K Kirk.

At least 73 records · Page 4Linked to original sources

Swelling-induced chloride currents in neuroblastoma cells are calcium dependent.

The effects of osmotic stress on chloride (CI-) currents in the human neuroblastoma cell line CHP-100 were evaluated. Following exposure to hypoosmotic solution, an increase in whole-cell CI- current was observed. This current was blocked by the CI- channel blocker 5-nitro-2-(3-phenylpropylamino)-benzoic acid (NPPB). In cells loaded with the CI- permeability marker 125I, exposure to hypoosmotic solution increased 125I efflux by 197 +/- 14% (n = 41, p < 0.05) over controls. This increase was sensitive to NPPB. Hypoosmotic stress also increased cytosolic calcium levels (Ca2+) in fura-2-loaded cells. Pretreatment with EGTA inhibited the increase in cytosolic Ca2+, 125I efflux, and whole-cell CI- current produced by hypoosmotic solution. Antagonists of N-, L-, and T-type Ca2+ channels did not alter stimulation in 125I efflux or cytosolic Ca2+ levels during osmotic stress. However, omega-conotoxin MVIIC, a P-type Ca2+ channel blocker, inhibited hypoosmotically activated whole-cell CI- currents and increases in cytosolic Ca2+. It is concluded that a Ca(2+)-dependent change in CI- permeability is activated in CHP-100 cells in response to osmotic stress.

Barium Compounds↗

Inhibition of volume-activated I- and taurine efflux from HeLa cells by P-glycoprotein blockers correlates with calmodulin inhibition.

P-glycoprotein, an active transporter that pumps a diverse range of hydrophobic compounds out of cells, has recently been proposed to function as, or regulate, a volume-activated, anion-selective channel (Valverde, M.A., Diaz, M., Sepulveda, F. V., Gill, D. R., Hyde, S. C., and Higgins, C. F. (1992) Nature 355, 830-833). In this study a number of compounds known to inhibit P-glycoprotein-mediated drug pumping were tested for their effect on the osmotically activated release from HeLa cells of I-, a known substrate of volume-activated anion channels, and taurine, a sulfonic amino acid that serves as an important organic osmolyte in many cell-types. Tamoxifen, 4-iodotamoxifen, and pyrrolidino-4-iodotamoxifen (idoxifene) were potent blockers of osmotically activated I- and taurine efflux. Other known P-glycoprotein inhibitors (verapamil, cyclosporin A, pimozide, trifluoperazine, ICI 164, and ICI 182) were less effective. For all compounds tested the effect on taurine release was the same as that on I- release, consistent with the hypothesis that swelling-activated taurine release is via anion-selective channels. There was no positive correlation between the effect of the inhibitors on osmotically activated solute release and their effect on P-glycoprotein-mediated drug transport. In contrast, there was a strong positive correlation between the IC50 values for the effect of the inhibitors on volume-activated solute release and those for their effect on calmodulin. These data raise doubts as to whether the effect of P-glycoprotein inhibitors on volume-activated channels is a consequence of their interaction with P-glycoprotein and indicate a possible role for calmodulin, or a cell component having at least some physical similarities, in controlling channel activity.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Transport of diverse substrates into malaria-infected erythrocytes via a pathway showing functional characteristics of a chloride channel.

Following infection by the malaria parasite, Plasmodium falciparum, human erythrocytes show increased permeability to a variety of low molecular weight solutes. In this study a number of anion transport blockers were identified as potent inhibitors of the transport of a wide range of solutes into human erythrocytes infected in vitro with P. falciparum. 5-Nitro-2-(3-phenyl-propylamino)benzoic acid (NPPB), furosemide, and niflumate blocked the malaria-induced transport of monovalent cations, neutral amino acids, sugars, nucleosides, and monovalent anions. For all of the substrates tested the order of potency of these three inhibitors was the same (NPPB > furosemide > niflumate) and dose-response curves for the effect of these inhibitors on malaria-induced choline transport were similar to those for malaria-induced thymidine transport. The data suggest that much, if not all, of the high capacity (non-saturable) transport of low molecular weight solutes into P. falciparum-infected erythrocytes is via a single type of pathway. The broad specificity of the pathway, its non-saturability in the physiological concentration range, and its failure to distinguish between stereoisomers (L- and D-alanine) are consistent with its being a type of pore or channel. For those substrates for which quantitative influx measurements were made the magnitude of the malaria-induced (inhibitor-sensitive) transport was in the order: Cl- > lactate > thymidine, adenosine > carnitine > choline > K+. The pathway is therefore anion-selective. The pharmacological and substrate-selectivity properties of the pathway show marked similarities to those of chloride channels in other cell types; this raises the possibility that the high capacity transport of small organic solutes may be an important and, as yet, largely unrecognized role for such channels in other tissues.

4,4'-Diisothiocyanostilbene-2,2'-Disulfonic Acid↗

Methicillin-resistant Staphylococcus aureus colonization in a new nursing home.

Methicillin-resistant Staphylococcus aureus (MRSA) has been detected in nursing homes and long-term care facilities. Studies disagree about the risk of infection with MRSA in colonized patients. MRSA colonization and infection were tracked for one year in all admissions to a 60-bed ward at the Philadelphia VA Nursing Home Care Unit (NHCU) from the time of its opening in June, 1990. Patients and staff were blinded to culture results, and the NHCU followed universal precautions for all patients. Of the first 72 patients, 7 were found to be colonized with MRSA; only one of them was known to have had MRSA prior to NHCU transfer. Three patients died (2 had negative cultures prior to death), and 1 was discharged home. Three patients spontaneously cleared MRSA colonization and lived to the end of the study. Three patients appeared to be colonized by MRSA after admission; subsequent cultures were negative. No patients were infected by MRSA in the NHCU. At the close of the study, one year after the nursing home opened, no patient in the nursing home had a culture positive for MRSA. In conclusion, colonization with MRSA at the time of admission to the nursing home is not uncommon, but patients can spontaneously clear it. Besides, nursing homes that pre-screen only those patients with classic risk factors may be admitting many MRSA-colonized patients. Nonetheless, universal precautions appear to be effective in limiting transmission of MRSA in the nursing home; in this study, MRSA acquisition was sporadic and brief.

Aged↗

Swelling-activated and isoprenaline-activated chloride currents in guinea pig cardiac myocytes have distinct electrophysiology and pharmacology.

We have used the whole-cell patch clamp recording technique to characterize a swelling-activated chloride current in guinea pig atrial and ventricular myocytes and to compare the electrophysiological and pharmacological properties of this current with the isoprenaline-activated chloride current in the same cell types. Osmotic swelling of guinea pig cardiac myocytes caused activation of an outwardly rectifying, anion-selective current with a conductance and permeability sequence of I- approximately NO3- > Br- > Cl- > Asp-. This current was inhibited by tamoxifen, 4,4'-diisothiocyano-stilbene-2,2'-disulphonate and anthracene-9-carboxylic acid, in decreasing order of potency. The isoprenaline-activated anion current, like the swelling-activated current, had a higher permeability to I- relative to Cl-, but it had a markedly reduced conductance for I- compared to Cl-. The isoprenaline-activated current was insensitive to inhibition by tamoxifen, 4,4'-diisothiocyanostilbene-2,2'-disulphonate and anthracene-9-carboxylic acid. The swelling-activated current could be elicited in > 90% atrial myocytes studied but only 34% ventricular myocytes. Conversely, the isoprenaline-activated current was elicited in < 10% atrial myocytes and > 90% ventricular myocytes. In those ventricular myocytes where it was possible to elicit swelling-activated and isoprenaline-activated currents simultaneously, the currents retained the same distinguishing characteristics as when they were elicited in isolation. Thus, while guinea pig atrial cells appear to preferentially express swelling-activated chloride channels and guinea pig ventricular myocytes preferentially express isoprenaline-activated chloride channels, the presence of these two channel types are not necessarily mutually exclusive. This raises the possibility that there may be coordinated regulation of the expression of different Cl- channels within the heart.

4,4'-Diisothiocyanostilbene-2,2'-Disulfonic Acid↗

Two pathways for choline transport in eel erythrocytes: a saturable carrier and a volume-activated channel.

Choline transport in eel (Anguilla anguilla) erythrocytes was investigated in cells suspended in isotonic and hypotonic media. In cells in isosmotic solution choline transport was mediated by a saturable system with a Michaelis constant (Km; 62 +/- 6 microM) similar to that of the choline carrier of human erythrocytes but a maximal transport rate (Vmax; 4.5 +/- 0.4 mmol.1 red blood cells-1.h-1) almost two orders of magnitude higher than that in human red blood cells. This pathway was inhibited by hemicholinium-3 and dodecyltrimethylammonium, but not by any of a range of anion transport inhibitors tested. Swelling the cells by suspending them in hyposmotic media activated a second choline transport component that was kinetically and pharmacologically distinct from the saturable system. The volume-activated component was nonsaturable (up to 50 mM choline). It was not inhibited by hemicholinium-3 or dodecyltrimethylammonium but was inhibited by anion transport inhibitors, the most potent of which was 5-nitro-2-(3-phenylpropylamino)benzoic acid (NPPB; half-maximal inhibitory concentration = 14 microM). Dose-response curves for the effect of NPPB on swelling-activated choline transport and the swelling-activated transport of taurine, a sulfonic amino acid, were superimposable. It is postulated that the transport of choline and taurine (as well as that of other small organic solutes) in osmotically swollen fish erythrocytes is mediated by a volume-activated, anion-selective channel.

Animals↗

Volume-regulatory taurine release from a human lung cancer cell line. Evidence for amino acid transport via a volume-activated chloride channel.

Exposure of a human lung epithelial cancer cell-line to hypo-osmotic media led to a marked increase in the rate of efflux from the cells of taurine, a non-essential sulfonic amino acid. The osmotically-activated taurine efflux was inhibited by a range of known Cl- channel blockers, the most potent of which were NPPB and 1,9-dideoxyforskolin. These reagents were similarly effective at inhibiting the osmotically-activated efflux of I-, a known substrate of volume-activated Cl- channels. The results are consistent with the hypothesis that volume-regulatory taurine release from these cells is mediated by a volume-activated Cl- channel.

Amino Acids↗

1H-NMR spectroscopy can accurately quantitate the lipolysis and oxidation of cardiac triacylglycerols.

Triacylglycerol metabolism in isolated, perfused hearts from rats fed a diet containing 20% rapeseed oil (RSO) was studied using 1H-NMR spectroscopy. RSO-induced elevation in cardiac triacylglycerols is associated with an increase in the peak area of fatty acid 1H-NMR resonances. The ratio of methyl, gamma-methylene or methylene protons adjacent to a carbon-carbon double bond to the number of methylene protons in these hearts measured by 1H-NMR spectroscopy gives values similar to those derived from previously reported chemical analyses. In addition, the triacylglycerol content of these hearts determined by chemical analysis directly correlates with their content of 1H-NMR visible fatty acid resonances. This quantitative relationship allows the real-time measurement of the rates of cardiac triacylglycerol lipolysis using 1H-NMR spectroscopy. Rates of triacylglycerol lipolysis measured using 1H-NMR spectroscopy are similar to those previously measured by chemical methods. Triacylglycerol lipolysis measured using 1H-NMR spectroscopy occurs at a significantly faster rate in hearts perfused in the presence or absence of glucose when compared to hearts perfused with glucose and acetate or medium-chain fatty acids. Finally, the rate of triacylglycerol lipolysis in glucose perfused hearts is linearly related to work output. These results demonstrate that 1H-NMR spectroscopy can accurately quantitate triacylglycerol content and metabolism in the rapeseed oil-fed rat model. 1H-NMR spectroscopic or imaging techniques may be useful in the real-time evaluation of cardiac triacylglycerol content and metabolism.

Animals↗

Glibenclamide and meglitinide block the transport of low molecular weight solutes into malaria-infected erythrocytes.

Following infection by the malaria parasite, human erythrocytes show increased uptake of a wide variety of low molecular weight solutes via pathways with functional characteristics different from those of the transporters of normal erythrocytes. In this study glibenclamide and meglitinide were shown to inhibit the induced transport of a sugar alcohol (sorbitol), an amino acid (threonine), an inorganic anion (Cl-) and an organic cation (choline) into human erythrocytes infected in vitro with Plasmodium falciparum. The results are consistent with the hypothesis that a diverse range of substrates enter malaria-infected cells via common pathways which have features in common with Cl- channels in other cell types. glibenclamide and meglitinide were also shown to inhibit the in vitro growth of the intracellular parasite which would suggest that these pathways may be a viable chemotherapeutic target.

Animals↗

One-step affinity isolation of recombinant protein using the baculovirus/insect cell expression system.

We have developed two baculovirus transfer vectors which allow single-step affinity isolation of recombinant proteins after expression in insect cells. Using these vectors, recombinant proteins are synthesized as fusions with glutathione-S-transferase and are amenable to enrichment from a crude insect cell lysate using glutathione affinity agarose. After affinity isolation, glutathione-S-transferase can be cleaved from the recombinant polypeptides of interest at an engineered thrombin cleavage site. We used this approach to successfully isolate glutathione-S-transferase, the human low density lipoprotein receptor, two large polypeptides containing cytoplasmic domains of the cystic fibrosis transmembrane conductance regulator (CFTR), and the full-length CFTR. The approach has potential advantages over prokaryotic overexpression of foreign polypeptides, including: (i) eukaryotic post-translational modification of expressed protein, (ii) increased solubility of recombinant fusion proteins synthesized in insect cells leading to increased affinity yield under mild conditions, and (iii) production of large and/or complex polypeptides which might be difficult to purify from prokaryotic cells. The method also allows enrichment of recombinant protein representing a small fraction (less than 5%) of total insect cell protein produced and provides a general method for eukaryotic protein synthesis and isolation which is independent of the particular protein being expressed.

Animals↗

Pregnancy lactogens in the rat conceptus and fetus: circulating levels, distribution of binding, and expression of receptor messenger ribonucleic acid.

To clarify the roles of the rat placental lactogens in embryogenesis and fetal development, we measured the concentrations of rat placental lactogen-II (rPL-II) in fetal rat serum and examined the distribution and expression of rPL-I- and rPL-II-binding sites in rat uteroplacental and fetal tissues. The concentration of rPL-II in fetal rat serum on day 20 of gestation was 28.3 +/- 0.8 ng/ml (mean +/- SEM; n = 6), approximately 1/14th its concentration in maternal serum (398.3 +/- 45.3 ng/ml; n = 6). In the midgestational uterus and placenta, rat PL-I bound specifically to mesometrial decidua and to a capsular layer of stroma overlying the antimesometrial decidua. The binding of radiolabeled rPL-I to these tissues was inhibited by unlabeled rat PRL and human (h) GH, but not by rat GH, suggesting that the rPL-I-binding sites are lactogenic in nature. In the late gestational fetus, rat PL-II bound specifically to fetal adrenal, kidney, small intestine, liver, and pancreas; its binding, like that of rPL-I, was inhibited by rPRL, but not by rGH. rPL-II-binding sites in fetal adrenal were detected as early as day 16, whereas rPL-II-binding sites in fetal kidney and small intestine were not demonstrable until day 18. Lactogenic binding sites in fetal liver and pancreas did not appear until days 19-20. The relative amounts of specific binding of rPL-II to fetal tissues correlated positively with tissue levels of expression of the 4.2- and 1.8-kilobase PRL receptor mRNA transcripts. Radiolabeled hGH, which interacts with somatogenic receptors as well as lactogenic receptors, bound specifically to mesometrial decidua, fetal adrenal, kidney, small intestine, liver, and pancreas. In addition, radiolabeled hGH bound specifically, but with low intensity, to fetal brain. In mesometrial decidua and fetal adrenal, kidney, and small intestine, the binding of hGH was blocked by rPL-II and rPRL, but not by rGH or ovine GH, suggesting the predominance of lactogenic receptors. In contrast, in fetal brain, the binding of hGH was inhibited by rGH, but not by rPL-II, suggesting that the fetal brain contains somatogenic receptors. The presence of rPL-I-binding sites in maternal decidua suggests a paracrine role for the hormone in decidual function at midgestation. The presence of rPL-II in fetal serum and the widespread distribution of rPL-II-binding sites in fetal tissues indicate a role for rPL-II in fetal development.

Animals↗

Transport of organic substrates via a volume-activated channel.

We have investigated the volume-activated transport of organic solutes in flounder erythrocytes. Osmotic swelling of cells suspended in a Na(+)-free medium led to increased membrane transport of taurine, glucose, and uridine. For each compound there was a significant lag period (1-2 min at 10 degrees C) between cell swelling and activation of the flux. The volume-activated fluxes of each of the substrates increased in parallel with increasing cell volume, and those of taurine and uridine increased linearly with concentration (up to 19 mM). The volume-activated fluxes of each of the three compounds showed similar sensitivities to a number of anion-selective channel blockers (5-nitro-2-(3-phenylpropylamino)benzoic acid > 4,4'-diisothiocyanatostilbene-2,2'-disulfonic acid approximately MK-196 > niflumic acid > furosemide); the IC50 for the inhibition of the volume-activated fluxes by NPPB was around 12 microM. The results are consistent with the hypothesis that the volume-activated transport of organic osmolytes is via a pathway with the characteristics of a volume-activated "chloride channel." This raises the question of whether the transport of organic substrates might represent a physiological role for such channels in other cell types.

4,4'-Diisothiocyanostilbene-2,2'-Disulfonic Acid↗

The increased K+ leak of malaria-infected erythrocytes is not via a Ca(2+)-activated K+ channel.

Charybdotoxin and nitrendipine both inhibited K+(86Rb+) influx via the Ca(2+)-activated channel of uninfected erythrocytes but had no effect on K+(86Rb+) transport in malaria-infected cells. Activation of the channel in uninfected cells in which the cytoplasmic [Na+]/[K+] ratio was adjusted to be comparable with that of late-stage malaria-infected erythrocytes resulted in a large (nitrendipine-sensitive) increase in K+(86Rb+) influx. These results suggest that the endogenous Ca(2+)-activated K+ channel remains inactive in human red cells infected with late-stage parasites. The identity of the pathway which mediates the increased K(+)-leak in infected erythrocytes remains to be established.

Animals↗

Nitrendipine is a potent inhibitor of the Ca(2+)-activated K+ channel of human erythrocytes.

Nitrendipine, a classical blocker of L-type Ca2+ channels, is shown to be a potent inhibitor of the Ca(2+)-activated K+ channel of human erythrocytes. In erythrocytes suspended in a solution with physiological Na+ and K+ concentrations and in which the channel was activated using the Ca2+ ionophore ionomycin, nitrendipine inhibited K+(86Rb+) influx with an I50 of around 130 nM. Similar results were obtained for K+(86Rb+) efflux, and for K+(86Rb+) influx into cells suspended in a high-K+ medium.

Calcium↗

Confidence as a factor in chronic illness care.

Confidence is generally regarded as a positive quality which enhances personal coping and success. For those who are chronically ill and face a life of uncertainty, confidence becomes especially important. In a recent qualitative study examining chronically ill patients' perceptions of nursing care, confidence was found to be the grand essence which tied together all the informants' experiences with good nursing care. The informants entered the hospital with the expectation that the nurses would and could look after them. Observing and receiving good nursing care reinforced this confidence. In addition to this, the informants referred to confidence that was developed by the interest and value the nurses placed on the patient as an individual. Showing an interest in the patient as an individual gave the patient confidence in self-worth and in personal coping ability. These two sources of confidence combined to give the informants confidence in their futures. In the nursing literature the exploration of the concept of confidence is minimal. This paper discusses confidence as a factor in the care of the chronically ill using data from the study for illustration.

Adaptation, Psychological↗