Search PubMed⌕ Search

Biomedical subjects

R Larsson

Publications and source records attributed to R Larsson.

At least 181 records · Page 10Linked to original sources

Heparin surface modified intraocular lenses implanted in the monkey eye.

The biocompatibility of heparin surface modified poly(methyl methacrylate) intraocular lenses (IOLs) was evaluated in two experiments following implantation in the anterior and posterior eye chambers of adult cynomolgus monkeys. Throughout the study, large inflammatory cells and prominent pigment deposits were seen on the unmodified lenses, whereas the heparin surface modified IOLs remained almost free of precipitates. Similarly, fewer posterior synechias were observed in eyes implanted with surface modified IOLs in the posterior chamber than in eyes implanted with control lenses. Histopathological examination of enucleated eyes confirmed the clinical findings. These experiments strongly support the idea that surface modification with heparin is a useful way to reduce clinical complications following cataract surgery with IOL implantation.

Animals↗

Oxidants induce phosphorylation of ribosomal protein S6.

We have investigated the phosphorylation of the ribosomal S6 protein which may be on the pathway of mitogenic stimulation in response to oxidants. Mouse epidermal cells JB6 (clone 41) were exposed to active oxygen generated extracellularly by glucose/glucose oxidase (producing H2O2) or xanthine oxidase (producing H2O2 plus superoxide) or active oxygen produced intracellularly by the metabolism of menadione (producing mostly superoxide). All three sources of active oxygen induced rapidly a protein kinase activity which phosphorylated S6 in cellular extracts prepared in the presence of the phosphatase inhibitor beta-glycerophosphate. Maximal activity was reached within 15 min of exposure, and phosphorylation occurred specifically at serine residues. Strong activation of the protein kinase activity was also observed by diamide which selectively oxidizes SH functions. The following observations characterize the reaction: 1) Extracellular addition of catalase but not Cu,Zn-superoxide dismutase was inhibitory, implicating H2O2 rather than superoxide as the active species. 2) Exposure of JB6 cells to reagent H2O2 or H2O2 released by glucose/glucose oxidase resulted in a measurable increase in intracellular free Ca2+. 3) The intracellular Ca2+ complexer quin 2 suppressed the reaction. 4) The calmodulin antagonist trifluoperazine prevented the activation of the protein kinase. 5) Exposure of cells to Mn2+ and La3+, which stimulate calmodulin-dependent activities, potently increased the S6 kinase activity of the cell extracts. 6) Desalted extracts strictly required the addition of Mg2+ and their activity was inhibited by Mn2+. In contrast, the phosphorylation of a 95-kDa protein was strongly stimulated by Mn2+. 7) For several agonists, i.e. active oxygen, phorbol 12-myristate 13-acetate, and serum, tryptic peptide analysis yielded the same phosphopeptides, suggesting that a common S6 kinase is involved in these reactions. From these data we propose that oxidants induce an increase in intracellular free Ca2+ which activates a Ca2+/calmodulin-dependent protein kinase and, as a consequence, an S6 kinase.

Animals↗

Phorbol-ester-induced stable changes in the regulation of DNA synthesis and intracellular pH are accompanied by altered expression of protein kinase C in the monoblastoid cell line U-937.

12-O-tetradecanoylphorbol-13-acetate (TPA)-induced changes in cytoplasmic pH, cytoplasmic Ca2+-concentration, rate of DNA synthesis, and concentration and activity of protein kinase C (PKC) were studied in human monoblastoid cell lines. The cell line U-937 GTB was compared to the subline U-937 RES (adapted to growth in the presence of 10(-9) M TPA) and another subline U-937 RESREV (U-937 RES grown in TPA-free medium) established in order to analyze the stability of the TPA-induced differences. TPA induced half maximal inhibition of DNA synthesis in the wild-type U-937 GTB cell line at 10(-9) M, whereas 10 times higher concentrations of phorbol ester were needed for a corresponding inhibition of the U-937 RES and U-937 RESREV lines. Furthermore, the U-937 RES cells exhibited a decreased sensitivity to TPA, and the U-937 RESREV cells did not respond at all to this agent with regard to cytoplasmic alkalinization by an intracellular mechanism independent of Na+/H+ exchange. A Na+-dependent system for extrusion of protons, which was activated by the Ca2+ ionophore ionomycin, was also severely depressed as a result of TPA-adaptation. The concentration of PKC, measured by immunoblotting, was reduced by 34 and 24% in U-937 RES and U-937 RESREV cells, respectively, as compared to the wild-type U-937 GTB line. The corresponding reductions in PKC activity were 32 and 54% when histone III-S was used as substrate. The data suggest that adaptation to growth in the presence of TPA results in stable modifications of several parameters, which are assumed to be involved in the regulation of proliferation and differentiation. Furthermore, the data from the U-937 RESREV cells question a causal relationship between cytoplasmic alkalinization and control of proliferation.

Cell Line↗

Kinetic evidence for cytoplasmic calcium as an inhibitory messenger in parathyroid hormone release.

A sudden change of extracellular Ca2+ from 0.5 to 3.0 mM resulted in a transient rise of the cytoplasmic Ca2+ concentration (Ca2+i) followed by a sustained increase in parathyroid cells loaded with the Ca2+-indicator fura-2. The initial transient could be eliminated by increasing the Ca2+ buffering capacity of the cytoplasm. Under such conditions the rise of Ca2+i exhibited kinetics reminiscent of those for 45Ca uptake and cell depolarization. Addition of 0.5 mM Mn2+ mimicked the effect of raising the extracellular Ca2+ concentration, since there was an initial Ca2+i transient followed by a slower entry of Mn2+ into the cells. This reaction pattern was different from that of pancreatic alpha 2-cells in which there was no substantial influx of Mn2+ before depolarization with arginine. When measuring the kinetics of parathyroid hormone (PTH) release it was apparent that Ca2+ inhibition of secretion followed Ca2+i and thus became substantially delayed after eliminating the initial transient. The results support the concept of a depolarizing Ca2+ permeability in the parathyroid cell membrane which can be activated by external Ca2+, and indicate that Ca2+i is an inhibitory messenger of importance for the physiological regulation of PTH release.

Animals↗

Modulation of the Ca2+-sensing function of parathyroid cells in vitro and in hyperparathyroidism.

When raising the extracellular Ca2+ concentration stepwise from 0.5 to 3.0 mM, bovine parathyroid cells reacted with initial transient and sustained elevations of the cytoplasmic Ca2+ concentration (Ca2+i), as well as more than 50% inhibition of parathyroid hormone (PTH) release. Human parathyroid adenoma cells and bovine cells cultured for 1 day or exposed to a low concentration of a monoclonal antiparathyroid antibody exhibited right-shifted dependencies of PTH release and Ca2+i on extracellular Ca2+ and reduced Ca2+i transients. The protein kinase C activator 12-O-tetradecanoylphorbol-13-acetate (TPA) further right-shifted the dose response relationship for Ca2+ regulated Ca2+i of the adenoma cells, whereas the protein kinase C inhibitor 1-(5-isoquinolinylsulfonyl)-2-methylpiperazine (H-7) tended to normalize it, without affecting Ca2+i of normal bovine cells. In cells from an oxyphil adenoma and a parathyroid carcinoma as well as in bovine cells cultured 4 days or exposed to a high concentration of the antiparathyroid antibody, there were no Ca2+i transients, very small increases in steady-state Ca2+i and nonsuppressible PTH release. The results suggest that reduced availability of a putative Ca2+-receptor and increased protein kinase C activity may be important factors in the decreased Ca2+ sensitivity of abnormal parathyroid cells.

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine↗

1,25(OH)2D3 inhibits hormone secretion and proliferation but not functional dedifferentiation of cultured bovine parathyroid cells.

Increasing the extracellular Ca2+ concentration from 0.5 to 3.0 mM induced marked increments in cytoplasmic Ca2+ concentration (Ca2+i) and inhibition of parathyroid hormone (PTH) release of freshly isolated bovine parathyroid cells. 1,25-dihydroxycholecalciferol (1,24(OH)2D3; 0.1-100 ng/ml) did not affect (Ca2+i) and was also without acute effect on the secretion. During 4 days of monolayer culture, the parathyroid cells underwent significant increases in both number and size, and presence of 10-100 ng/ml 1,25(OH)2D3 almost completely inhibited the cell proliferation, whereas the hypertrophy was unaffected. One day of culture with 0.1-100 ng/ml 1,25(OH)2D3 was without effect on PTH release but after 4 days there was a dose-related reduction of secretion. At this time point and irrespective of the culture condition, PTH release was no longer suppressed by high extracellular Ca2+. Furthermore, Ca2+i increased little upon increments in the extracellular Ca2+ concentration as compared with freshly isolated cells. It is concluded that after prolonged exposure to 1,25(OH)2D3, PTH release is inhibited and, at high concentrations, the parathyroid cells cease to proliferate. However, 1,25(OH)2D3 does not affect the development of functional dedifferentiation of parathyroid cells during monolayer culture.

Animals↗

Cytoplasmic pH is differently regulated in the monoblastic U-937 and erythroleukemic K-562 cell lines.

Regulation of cytoplasmic pH (pHi) of the human monoblastic U-937 and erythroleukemic K-562 cell lines was investigated. The apparent resting pHi, as assessed by the fluorescent pH probe quenel, were 6.61 and 6.75 for the U-937 and K-562 cells, respectively. When extracellular Na+ was substituted by equimolar choline+, pHi decreased by about 0.2 units. The protein kinase C activating beta-form of the phorbol ester 12-O-tetradecanoyl-phorbol-13-acetate (TPA; 10(-10) and 10(-7) M) induced a dose-dependent alkalinization in both cell types of 0.03-0.12 units, whereas the alpha-form was inactive. The response was detectable after about 2 min and reached steady-state 10-15 min later. In the K-562 cells the alkalinization was mediated by Na+/H+ exchange as it was accompanied by stimulation of H+ extrusion and abolished by Na+ removal. The TPA response in the U-937 cells, however, was unaffected by Na+ removal, not accompanied by H+-efflux, and thus unrelated to Na+/H+ exchange. Since electron microscopy indicated development of multivesicular bodies with an acidic interior, the alkalinization can probably be accounted for by an intracellular mechanism. Ionomycin (10(-5) M) induced a rapid increase in the cytoplasmic Ca2+ concentration of both cell types and this response was accompanied by acidification followed by a Na+-dependent recovery. In the U-937, but not in the K-562, cells this recovery was followed by a net alkalinization. It is concluded that both cell types possess a Na+/H+ exchange of importance for pHi but that this mechanism is regulated differently in the U-937 and K-562 cells.

Calcium↗

Calcium-agonistic action of Mn2+ in the parathyroid cell.

The effects of 3.0 mM Mn2+ on parathyroid hormone (PTH) release, 45Ca fluxes and the cytoplasmic Ca2+ concentration (Ca2+i) were studied in vitro with use of parathyroid glands from rats and cattle. Mn2+ inhibited PTH release by about 70 and 60% at Ca2+ concentrations of less than 10 nM or 0.5 mM, respectively, and like the inhibitory effect of Ca2+, that of Mn2+ was rapid and reversible. Mn2+-induced inhibition of the PTH release was associated with reduction of 45Ca uptake by about 50% and a marked but temporary increase in 45Ca efflux. Mn2+ induced a rapid transient increase in Ca2+i provided that the intracellular release of Ca2+ had not already been triggered by previous exposure to 3.0 mM Ca2+. This initial action was apparently followed by influx of Mn2+, since pronounced quenching of the fluorescence from the Ca2+ indicator fura-2 was observed. The results indicate that Mn2+ behaves in several respects like a calcium analogue in parathyroid cells and may inhibit PTH release by interfering directly with the secretory machinery.

Animals↗

Active oxygen induced DNA strand breakage and poly ADP-ribosylation in promotable and non-promotable JB6 mouse epidermal cells.

The evidence is convincing that oxidants and agents which induce a cellular pro-oxidant state can act as carcinogens, in particular as promoters and progressors. Importantly, infiltrated phagocytes represent a source of oxidants in inflamed tissues. We have studied the mechanism of the promotional action of active oxygen (AO) in mouse epidermal cells JB6 by comparing the non-promotable clone 30 to the promotable clone 41. In order to mimick AO released by phagocytes we used xanthine/xanthine oxidase as a source of extracellular superoxide and hydrogen peroxide. We found that AO stimulated the growth only of promotable clone 41 after an initial period of moderate inhibition while it was strongly cytostatic for non-promotable clone 30. Reasons for the higher cytostatic effect of AO on the non-promotable clone 30 were discovered when we measured DNA strand breakage and poly ADP-ribosylation of chromosomal proteins. At equal doses AO induced 4-5 times more DNA breaks in clone 30 in reactions which required iron--and probably also calcium--ions. The higher amount of DNA breakage in clone 30 was reflected in a higher extent of poly ADP-ribosylation. Excessive DNA breakage and poly ADP-ribosylation which causes the depletion of NAD and ATP may be responsible for the strong cytostatic effect of AO in clone 30. We conclude that differential resistance to the cytostatic/cytotoxic effect of AO in part determines the promotability of mouse epidermal cells JB6.

Animals↗

Pharmacokinetics of chloral hydrate poisoning treated with hemodialysis and hemoperfusion.

In a severe case of chloral hydrate intoxication treated with combined hemodialysis and hemoperfusion the pharmacokinetics of the metabolites trichloroethanol (TCE), trichloroethanol glucuronide (TCE-Glu) and trichloroacetic acid (TCA) were studied. Indications of delayed absorption and some slowing of metabolism were found. At a blood flow rate of 200 ml/min clearances by hemodialysis and hemoperfusion, respectively, in ml/min were estimated to be 188 and 156 for TCE, 184 and 181 for TCE-Glu, 142 and 91 for TCA. Clearance by hemoperfusion declined with time. The half-lives of TCE and TCA were 3.2 and 4.3 hours during combined hemodialysis and hemoperfusion. After termination of treatment the half-life of TCE was 12.8 hours, whereas TCA was metabolized so slowly, that no reliable calculation could be performed. We conclude that hemodialysis and hemoperfusion are equally and highly efficient in the treatment of chloral hydrate poisoning, but hemoperfusion may increase the risk of gastric bleeding more than hemodialysis. Hemodialysis may therefore be preferable and should be tried in spite of low blood pressure.

Adult↗

Relationship between external and cytoplasmic calcium concentrations, parathyroid hormone release and weight of parathyroid glands in human hyperparathyroidism.

Parathyroid hormone (PTH) release and cytoplasmic calcium concentrations were investigated at ambient calcium concentrations of 0.5-3.0 mmol/l in dispersed parathyroid cells from 44 hypercalcaemic patients with primary or uraemic hyperparathyroidism (HPT). In comparison with parathyroid cells from adult cattle, release of PTH by human preparations was reduced and values of the ambient calcium concentration causing half-maximal inhibition of PTH release (median effective dose, ED50) were significantly increased. Half-maximal inhibition of PTH release was obtained with concentrations of cytoplasmic calcium almost identical to the concentrations of ionized calcium in the plasma of the individual patients. Cytoplasmic concentrations of calcium in the parathyroid cells were inversely related to release of PTH. Concentrations of cytoplasmic calcium were significantly lower in human than in bovine cells and the ED50 for ambient calcium increase on cytoplasmic calcium was raised to the same extent as the ED50 for ambient calcium inhibition of PTH release in human compared with bovine cells. The magnitude of the increased ED50 for ambient calcium inhibition of PTH release and increase of cytoplasmic calcium concentration was similar in adenomas and sporadic as well as hereditary primary hyperplasias, but the secretion was the least aberrant in uraemic hyperplasias, although they had by far the largest glandular mass. Serum concentrations of total calcium before surgery correlated with the ED50 for ambient calcium effects of PTH release and cytoplasmic calcium, but not with glandular weight. These findings demonstrate a universally abnormal regulation of cytoplasmic calcium in HPT and its importance for PTH release, and that disturbance of cytoplasmic calcium rather than the increased glandular mass contributes to the hypercalcaemia in adenomatous and hyperplastic HPT.

Calcium↗

Inhibition of cell growth retains differentiated function of bovine parathyroid cells in monolayer culture.

Monolayer culture of bovine parathyroid cells for up to 4 days in medium containing 10% serum resulted in cell hypertrophy and proliferation as well as functional dedifferentiation. Compared to freshly isolated cells there was a right-shifted dose-effect relationship for calcium-inhibited parathyroid hormone (PTH) release, a decreased suppressibility of secretion and an inability of the cytoplasmic Ca2+ concentration (Ca2+i) to follow changes in the extracellular Ca2+ concentration. The functional changes seemed not to be due to culture per se, since human parathyroid cells exhibited an essentially unchanged regulation of Ca2+i even after 8 days of culture in 10% serum. During culture in medium containing 0.1% serum, the bovine cells did not proliferate and there was only slight cell hypertrophy. These cells retained much of their ability to regulate Ca2+i and PTH release. The results indicate that functional dedifferentiation of parathyroid cells is related to cell growth.

Animals↗

Dimethyl sulfoxide inhibits proliferation but not hypertrophy and functional dedifferentiation of bovine parathyroid cells in culture.

Primary cultures of bovine parathyroid cells were used to study the relationship between parathyroid hormone (PTH) release, regulation of the cytoplasmic Ca2+ concentration (Ca2+i) and cell growth. Parathyroid cells were seeded into fibronectin-coated culture wells in the absence (control) or presence of 2% (v/v) dimethyl sulfoxide (DMSO). Both groups of cells attached and flattened out, and during 4 days of culture the cell diameters and protein content increased. However, whereas the number of cells in the control group increased by 60% and their 3H-thymidine incorporation tenfold, the DMSO cultured cells exhibited no signs of cell proliferation. Despite this difference in cell replication rate both groups of cells developed similar functional dedifferentiation. There was consequently a decreased Ca2+ suppressibility of PTH release, and Ca2+i did not follow the ambient Ca2+ concentration in a usual manner. It is concluded that during culture bovine parathyroid cells develop morphological and functional abnormalities similar those in parathyroid cells from patients with hyperparathyroidism. Moreover, this functional dedifferentiation could be dissociated from increased cell proliferation but may be related to cell hypertrophy.

Animals↗

Cytosolic free calcium in platelets: relationships to blood pressure and indices of systemic calcium metabolism.

Relationships between cytosolic free calcium ([Ca2+]i) in platelets, indices of systemic calcium metabolism and blood pressure were examined in 86 subjects; 29 patients with untreated and 29 patients with treated essential hypertension, six patients with borderline hypertension and 22 healthy reference subjects. In order to analyse interactions between the variables, multivariate statistical analyses were employed. The patients with untreated hypertension had higher [Ca2+]i values in non-activated platelets (P = 0.04) and lower levels of plasma ionized calcium (P = 0.02) than the reference subjects. In multivariate models analysing platelet [Ca2+]i mean blood pressure (MBP), plasma ionized calcium, serum parathyroid hormone (PTH) and body mass index (BMI), the relationship between platelet [Ca2+]i and blood pressure was attenuated (P = 0.13), whereas the inverse relationships between plasma ionized calcium and MBP (P = 0.01) and between platelet [Ca2+]i and serum PTH (P = 0.06) seen in univariate analyses persisted. According to the multivariate models the [Ca2+]i value explained only 5% of the MBP variability. Thus, the data from this investigation do not support a close relationship between basal platelet [Ca2+]i and blood pressure. The inverse relationship between plasma ionized calcium and blood pressure, independent of platelet [Ca2+]i and serum PTH, suggests a direct interaction between plasma ionized calcium and blood pressure regulation.

Adolescent↗