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Biomedical subjects

C B Jensen

Publications and source records attributed to C B Jensen.

15 recordsLinked to original sources

In vitro and in vivo ultrastructural changes induced by macrolide antibiotic LY281389.

High doses of LY281389 (9-N-(n-propyl)-erythromycylamine) cause cytoplasmic vacuolar changes in striated and smooth muscle characteristic of drug-induced phospholipidosis. This study characterized phospholipidosis in striated and smooth muscle of rats and dogs, compared in vivo observations with those in a cultured rat myoblast model, and attempted to confirm the lysosomal origin of the drug-induced vacuoles. Standard transmission electron microscopy and acid phosphatase cytochemistry techniques were used to evaluate ultrastructural changes in vivo and in vitro. Rats and dogs exposed to LY281389 had a time- and dose-related increase in number and size of vacuoles containing concentric lamellar figures in cardiac and skeletal muscle. Cytochemical staining of dog stomach smooth muscle for acid phosphatase, a lysosomal enzyme, stained the periphery of vacuoles that contained concentric lamellar figures. Cultured rat L6 myoblast cells were exposed to 0.25 mg LY281389/ml for 2.5, 5, 10, 20, 30, or 90 min and 2, 6, 12, 24, or 48 hr. Cell cultures exposed for 2 hr had several predominantly large, clear, membrane-bound vacuoles, and at 6 and 12 hr there were greater numbers of large vacuoles that contained increased amounts of membranous figures. Following 24- or 48-hr exposures, vacuoles occupied most of the cytoplasmic volume, and were engorged predominantly with amorphous or granular material. These findings indicate that LY281389 can induce similar phospholipidosis-like vacuolar changes in rat and dog muscle and in a cultured rat muscle cell line. Further, positive acid phosphatase staining of drug-induced vacuolar structures, in conjunction with standard transmission electron microscopy techniques, strongly suggests that vacuoles seen in vitro and in vivo are lysosomal in origin.

Acid Phosphatase

Nafenopin-induced peroxisome proliferation in vitamin A deficient rats.

Induction of peroxisome proliferator responsive genes is thought to be mediated through binding of a peroxisome proliferator-activated receptor (PPAR) to specific peroxisome proliferator response elements in the upstream region of these genes. Binding of PPAR to the acyl-CoA oxidase promoter requires heterodimerization with the retinoid X receptor (RXR), and subsequent transactivation is strongest when ligands for both PPAR and RXR are present. Therefore, we hypothesized that depletion of ligand for the retinoid receptor would limit the induction of peroxisome proliferation in rats. Hepatic retinol content was reduced by more than 90% by feeding weanling rats a vitamin A deficient (VAD) diet for approximately 3 months. Nafenopin treatment for 7 days induced peroxisomal beta-oxidation 18-fold in VAD rats compared with 16-fold in rats fed a vitamin A sufficient (VAS) diet. Nafenopin induced microsomal laurate hydroxylase and mitochondrial beta-oxidation to comparable rates of specific activity in both VAD and VAS rats. However, the activities in VAD controls were significantly lower than in VAS controls, so the magnitude of the nafenopin-induced increases was greater in the VAD rats. Relative liver weights were increased nearly 2-fold in both VAS and VAD rats treated with nafenopin. Ultrastructural examination of the livers demonstrated that nafenopin increased the number and size of peroxisomes in both VAD and VAS rats. These data demonstrate that rats with severely depleted vitamin A stores remained responsive to the peroxisome proliferator nafenopin. Whether critical retinoid pools that supply RXR ligand (9-cis-retinoic acid) are spared in the vitamin A deficient rats remains to be determined.

Animals

First web space contracture and hand function.

We studied 125 normal volunteers to determine the normal first web space angle and to evaluate the influence of thumb-index finger web space contracture on hand function. One hundred ninety-five hands were measured and found to have a mean web space angle of 100 degrees. There was no significant difference in the mean angle in relation to sex or hand dominance. The mean angle was significantly smaller for persons 50 to 79 years of age than for the two younger age groups. Twenty-five normal volunteers (50 hands) took the Jebsen-Taylor test three times: first, with no restrictions; second, with splints simulating a 60-degree web space contracture; and third, with splints simulating a 30-degree contracture. More than half of the volunteers had abnormal small-object subtests. Other abnormal subtests included card turning, feeding, and stacking checkers. Grasping large light and heavy objects was less difficult because of compensatory techniques used by the volunteers.

Adolescent

The role of N-hydroxyphenetidine in phenacetin-induced hemolytic anemia.

Phenacetin is well known to cause hemolytic anemia and methemoglobinemia in humans. Early mechanistic studies clearly established a causal role for active/reactive drug metabolites in the process but did not unequivocally identify these metabolite(s) or resolve the question of whether these two hemotoxicities are mechanistically linked. As part of ongoing studies on the mechanism underlying arylamine-induced hemotoxicities, we have recently shown that the arylhydroxylamine metabolites of aniline and dapsone mediate the hemolytic activity of aniline and dapsone, respectively. The present study was undertaken to determine if N-hydroxyphenetidine (PNOH), the known arylhydroxylamine metabolite of phenacetin, is responsible for phenacetin-induced hemolytic anemia. As measured by decreased survival of 51Cr-labeled erythrocytes in rats, phenacetin, p-phenetidine, and PNOH were all hemolytic in vivo, with PNOH being significantly the most potent of the three. In vitro exposure of 51Cr-tagged erythrocytes to PNOH, followed by transfusion into isologous rats, resulted in a concentration-dependent reduction in erythrocyte survival, indicating that PNOH is a direct-acting hemolytic agent. Phenacetin and p-phenetidine were inactive. Phenacetin, p-phenetidine, and PNOH all produced dose-dependent methemoglobinemia in rats. In parallel in vitro studies, PNOH elevated methemoglobin levels, p-phenetidine and phenacetin did not. However, attempts to identify PNOH in the blood of phenacetin- and p-phenetidine-treated rats were unsuccessful, despite the use of a highly sensitive analytical method. Hemotoxic concentrations of PNOH were found to be highly unstable in the presence of red cells, though relatively stable in the buffer vehicle alone. Inhibitors of acetylation (p-aminobenzoic acid [PABA]) and deacetylation (bis-[p-nitrophenyl]phosphate [BNPP]), used to alter the cyclic interconversion of phenacetin and p-phenetidine, caused changes in phenacetin hemotoxicity that indicated the hemotoxin was a deacetylated metabolite distal to p-phenetidine. These data are consistent with the hypothesis that PNOH, formed during the metabolic clearance of phenacetin, mediates phenacetin-induced hemolytic anemia and methemoglobinemia through direct toxic actions in the erythrocyte.

Anemia, Hemolytic

Two ubiquitin-long-tail fusion genes arranged as closely spaced direct repeats in barley.

Ubiquitin (Ubi) genes encode two types of fusion proteins: polyUbi with a varying number of direct repeats of Ubi, and Ubi-tail fusions with long or short basic C-terminal extensions. A barley (Hordeum vulgare) genomic clone has been isolated with two very similar, intronless genes encoding monoUbi-long-tail fusion peptides. The genes are arranged as direct repeats separated by 3 kb of DNA and account for two of the probable three long-tail genes in the haploid barley genome. Both genes are active and give rise to messengers about 800 nt long. The sequence of the encoded Ubi moieties is identical to the sequence of Ubi repeats of polyUbi precursors from barley and other plants. The basic tails of the peptides are 79 aa long and 71-72% homologous to corresponding sequences from yeast and man. Recently, it was found that the long and short tails are ribosomal proteins in yeast [Finley et al., Nature 338 (1989) 394-401] and the evolutionary conservation of the structure of the Ubi-tail fusion genes suggests that they serve the same function in plants. The similarity between yeast and barley Ubi-long-tail fusion genes may extend to the regulatory regions, since upstream activating sites characteristic of ribosomal protein-encoding genes in yeast (UASrpg) were found in the barley genes.

Amino Acid Sequence

Influenza A virus enhances Staphylococcus aureus-induced basophil histamine release in normal individuals and patients with intrinsic asthma.

Influenza A virus was found to enhance Staphylococcus aureus-induced histamine release in human leukocyte suspensions, but did not per se release histamine. This potentiating effect was found to be similar in cells from normal individuals and from patients with intrinsic asthma. The enhancement of mediator release could be due to viral neuraminidase on the surface of the virus, since a similar potentiating effect was caused by a purified neuraminidase preparation obtained from Vibrio cholerae, and the effect of virus as well as of the purified neuraminidase was completely abolished by a potent neuraminidase inhibitor. The potentiating effect of virus on bacteria-induced mediator release might be of importance for the conversion from latent to manifest asthma in upper respiratory tract infections.

Adult

Virus enhances histamine release from human basophils.

Histamine release from human basophil leukocytes was triggered by Staph. aureus or by complement activation caused by endotoxins isolated from E. coli or Salmonella bacteria. Influenza A virus was found to enhance the mediator release and the effect was caused by synergism, since the virus itself did not release histamine. The potentiating effect of the virus was abolished by a potent neuraminidase inhibitor. Furthermore, a purified neuraminidase preparation obtained from Vibrio cholerae caused a similar potentiating effect, which was also abolished by the neuraminidase inhibitor. These findings indicate that the neuraminidase on the surface of influenza A virus is responsible for the potentiating effect of the virus on basophil histamine release.

Basophils

Influenza A virus potentiates basophil histamine release caused by endotoxin-induced complement activation. Examination of normal individuals and patients with intrinsic asthma.

Histamine release from human basophil leukocytes was triggered by complement activation by means of endotoxins isolated from E. coli and Salmonella bacteria. Influenza A virus was found to enhance the mediator release, and the effect was caused by synergism, since virus itself did not release histamine. The potentiating effect was similar in cells from normal individuals and from patients with intrinsic asthma. The involvement of viral neuraminidase was examined by a potent neuraminidase inhibitor and this inhibitor completely abolished the potentiating effect by virus. A purified neuraminidase preparation obtained from Vibrio cholerae caused a similar potentiating effect in mediator release and the effect was abolished by the neuraminidase inhibitor. These findings indicate that viral neuraminidase is responsible for the potentiating effect of virus on the histamine release. This effect might play a role in septic conditions and possibly contribute to asthmatic attacks by infections.

Aged

Bacteria and their products peptidoglycan and teichoic acid potentiate antigen-induced histamine release in allergic patients.

Histamine release was examined in leukocyte suspensions from patients allergic to grass pollen, mite or cat dander or to bacteria (antigen). When the cells were challenged with specific antigen plus bacteria to which the person was not sensitized, these bacteria were found to potentiate the allergic histamine release. The potentiating effect by bacteria might be due to the bacterial cell wall components, peptidoglycan and teichoic acid, which mimic the effect of bacteria.

Antigens, Bacterial

Influence of nimodipine, verapamil and lanthanum on histamine release from human basophils: effect of pretreatment with sialidase.

Our previous studies suggest that the membrane content of sialic acid influences histamine release from human basophils by interfering with the transmembraneous calcium fluxes preceding histamine release. In this study we investigated a possible interaction between membrane sialic acid and the calcium channels, using the calcium antagonists nimodipine, verapamil and lanthanum. Anti-IgE-induced histamine release was inhibited by verapamil, nimodipine and lanthanum. When cells were pretreated with sialidase in order to remove sialic acid from the cell membrane, the inhibitory action of nimodipine was abolished, whereas the inhibition by verapamil or lanthanum was unaffected. This difference may be explained by the different mode of action of the calcium channel antagonists, and the results suggest an association between membrane sialic acid and the calcium channel.

Basophils

Determination of liothyronine and levothyroxine in thyroid preparations by liquid chromatography.

Liothyronine and levothyroxine were quantitatively determined in samples of commercial thyroid tablets and bulk powders. Samples were first hydrolyzed using a bacterial protease and then analyzed by high-performance liquid chromatography. Various hydrolysis conditions were investigated. The liothyronine and levothyroxine contents of commercial tablets and bulk powders were found to be approximately 8-11 micrograms and 25-43 micrograms, respectively, per 65 mg of thyroid. The stability of the iodothyronines in thyroid tablets was also investigated.

Chromatography, High Pressure Liquid

Improved method for determination of cellular thiols, disulfides and protein mixed disulfides using HPLC with electrochemical detection.

The role of glutathione in cellular responses to toxic insult is well established in the literature and is largely based on chemical determinations of GSH. Although these methods have proved to be adequate to demonstrate the relationships between cellular levels of GSH and xenobiotic toxicity, they may be inadequate for careful investigations regarding the regulation of cellular concentrations of GSH, GSSG and GSSProt. Enzymatic and chromatographic methods provide increased specificity and sensitivity, but the problems of variable accuracy or tedious derivitization steps remain. The HPLC-EC method constitutes a significant improvement over previous methods by satisfying the requirements for selectivity, sensitivity, accuracy and convenience. The utility of the HPLC-EC method has been described in two systems of toxicological interest, particularly with regard to the determination of GSSProt. In further studies, the HPLC-EC method has been useful in investigating the mechanism(s) of alternate nucleophiles, such as cysteamine. The capability to determine various thiols simultaneously in a given biological sample greatly facilitates these investigations. In view of its power as an analytical tool, the HPLC-EC method has the potential for widespread application to the study of cellular thiols.

Animals

Stimulation of mitochondrial functions by glucagon treatment. Evidence that effects are not artifacts of mitochondrial isolation.

(1) Activation of rat liver mitochondrial functions following glucagon treatment was demonstrated in mitochondria that had not been isolated by the conventional technique of differential centrifugation and washing in sucrose solutions. Crude liver homogenates in 0.3 M-sucrose or 0.15 M-KCl prepared from rats treated with glucagon showed stimulation of State-3 and uncoupled respiration, carboxylation of pyruvate, and citrulline synthesis comparable with those previously reported in isolated mitochondria. (2) During the isolation procedure of mitochondria the hormonal stimulations of pyruvate carboxylation and citrulline formation were shown not to be enhanced by sequential washing. (3) Mitochondria isolated from glucagon-treated rats by differential centrifugation and washing in 0.3 M-mannitol/1 mM-EGTA, pH 7.0, exhibited a mean rate of citrulline synthesis that was greater than twice that of the control. Liver homogenates prepared in 0.3 M-sucrose or 0.3 M-mannitol showed identical rates of State-3 respiration and percentage stimulations of respiration by glucagon treatment. (4) Addition of glucagon led to a rapid accumulation of malate and aspartate and decreased the amounts of glutamate and citrate in isolated hepatocytes incubated with L-lactate. When gluconeogenesis was inhibited at the phosphoenolpyruvate carboxykinase (EC 4.1.1.32) reaction these phenomena were accentuated, lending support to the interpretation that they are the direct result of stimulation of carboxylation and oxidation reactions in the mitochondria. These results do not support the proposal [Siess, Fahimi & Wieland (1981) Hoppe-Seyler's Z. Physiol. Chem. 362. 1643-1651] that the mitochondrial effects of glucagon treatment result from a stabilization of mitochondria to detrimental effects of sucrose during their isolation. (5) The mean hormonal stimulation of pyruvate carboxylation in mitochondria isolated in 0.3 M-sucrose was shown to be approx. 2.5-fold when assayed either at 37 degrees C or 25 degrees C. In contrast, on the basis of similar experiments, Siess et al. (1981) concluded that the effects of glucagon on hepatic mitochondria are not characteristic of a true hormonal stimulation. Our data indicate this conclusion to be unjustified.

Animals