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Biomedical subjects

N Kaiser

Publications and source records attributed to N Kaiser.

At least 73 records · Page 4Linked to original sources

Regulation of insulin release in persistent hyperinsulinaemic hypoglycaemia of infancy studied in long-term culture of pancreatic tissue.

Pancreatic tissue was obtained during therapeutic subtotal pancreatectomy from five infants with persistent hyperinsulinaemic hypoglycaemia of infancy (so-called nesidioblastosis). Collagenase digests of the specimens were cultured in RPMI 1640 medium on extracellular matrix-coated plates. Acute insulin secretion showed minimal sensitivity to changes in glucose concentration. Sensitivity to other nutrient secretagogues such as glyceraldehyde, leucine, alpha-ketoisocaproic acid and arginine was variable, showing either diminished or absent response. On the other hand, stimulators of Beta cell cAMP and modulators of the phosphoinositide-protein kinase C pathway were effective inducers of insulin release. The response to cAMP stimulators was independent of the glucose concentration. Although insulin output was high in the absence of glucose, this was not due to passive leak of hormone, since both removal of calcium and addition of somatostatin and epinephrine inhibited the secretion. Beta cells were more sensitive to somatostatin than epinephrine; however, both agents failed to completely suppress the release even at suprapharmacological concentrations. Although it cannot be excluded that the culture conditions affected Beta cell function, the present findings may suggest that cultured Beta cells in persistent hyperinsulinaemic hypoglycaemia of infancy behave like fetal Beta cells at early developmental stages.

Cells, Cultured↗

[Ergospirometry and blood lactate data in the assessment of conditioning of soldiers in relation to physical activity within the scope of military service in the Austrian army].

21 soldiers completing their military service in the Austrian army were assessed before and at the finalizing of their basic military training, also to disarmament by spiroergometric and lactate tests according to their physical condition. Soldiers employed in fighting duties improved slightly in physical fitness at commencement of the basic training. By the time they reached disarmament there was significant improvement. The monitoring of administration personal significantly increased their physical fitness after the basic training, nevertheless the physical condition achieved before disarmament relapsed to the same standard as prior to military service. As a conclusion we suggest that the physical inactive group should be kept as small as possible and get an efficient training program in future.

Adult↗

Monolayer culture of adult rat pancreatic islets on extracellular matrix: long term maintenance of differentiated B-cell function.

Fragmented islets, obtained by mild overdigestion of the adult rat pancreas with collagenase, readily formed monolayer cultures on dishes coated with extracellular matrix derived from bovine corneal endothelial cells. Contaminating fibroblasts were removed by treatment with sodium ethylmercurithiosalicylate. The cultured islets remained functional for over 6 weeks in primary culture and up to 9 weeks in secondary culture, as indicated by their substantial insulin response to an acute glucose stimulus. Insulin secretion from islet monolayers showed biphasic kinetics. The functional competence of the monolayers was further evaluated by studying glucose-stimulated insulin release in the presence of various modulators of B-cell function. The response to physiological agents such as somatostatin, epinephrine, glucagon, and arginine was retained for at least 4 weeks in culture. The sensitivity to inhibition by somatostatin and epinephrine (ID50 = 10 ng/ml) and that to stimulation by glucagon (ED50 = 3 ng/ml) were similar to or better than those for freshly isolated islets. We have thus obtained a fibroblast-free monolayer culture of pancreatic islets from adult rats containing B-cells that retain normal function for long periods. This experimental system appears ideally suited for studying chronic modulations of islet cell function under controlled in vitro conditions, which can allow the stimulation of normal and diabetic environments.

1-Methyl-3-isobutylxanthine↗

Polymyxin B is an inhibitor of insulin-induced hypoglycemia in the whole animal model. Studies on the mode of inhibitory action.

The cyclic decapeptide, polymyxin B (PMXB), was found to inhibit hypoglycemia in mice receiving exogenous insulin (Amir, S., and Shechter, Y. (1985) Eur. J. Pharmacol. 110, 283-285). In this study, we have extended this observation to rats. Insulin-dependent hypoglycemia in rats is efficiently blocked at a 12:1 molar ratio of PMXB to insulin. This effect is highly specific, as it could not be mimicked by a variety of antibiotics or positively charged substances. Chemical modifications of PMXB have revealed that the ring structure, rather than the tail structure, is important for anti-insulin-like activity. Colistin A, which differs from PMXB by one conservative amino acid substitution in the ring structure, is devoid of this activity. Polymyxin B does not interact with insulin, nor does it alter the rate of insulin absorption and/or degradation, or the ability of insulin to bind to target tissues. This peptide inhibits hypoglycemia by blocking insulin-dependent activation of the hexose transport mechanism, as deduced by in vitro studies. The effect of insulin in stimulating hexose uptake (and subsequent glucose metabolism) in both isolated muscle tissue and adipocytes is blocked with little or no effect on the basal activities of these processes. Colistin A has no significant inhibiting effect. Other insulin-dependent activities, such as inhibition of lipolysis in adipocytes or synthesis of DNA in muscle cells, are not inhibited. It is concluded that PMXB inhibits, in a highly specific manner, the action of insulin in stimulating hexose transport and subsequent glucose metabolism, both in vitro and in the whole animal model.

Animals↗

Plasminogen activator and protease inhibitor activities in isolated rat thymocytes.

Plasminogen Activator (PA) and its response to glucocorticoids and androgens was studied in viable rat thymocytes in suspension. PA was measured by its ability to convert plasminogen to plasmin, and the formed plasmin determined by cleavage of 14C-labeled globin. Using this functional assay, PA was found to be associated with the outer surface of thymic cells, and only negligible activity recovered from the incubation medium. Rat thymocytes also contain cytoplasmic and nuclear inhibitor(s) of the serine proteases plasmin, trypsin, chymotrypsin and thymic PA. Release of these inhibitors prevented determination of thymic PA activity in presence of lysed cells. The specific activity of PA in thymocytes isolated from adrenalectomized-castrated rats did not differ significantly from the specific activity associated with cells from intact animals. Furthermore, treatment of adrenalectomized-castrated rats with 0.1 mg of dexamethasone/kg for 2 days induced thymic involution without affecting thymic PA activity. These observations suggest that PA activity of thymocytes is not involved in glucocorticoid-mediated thymic involution.

Animals↗

The antiproliferative effect of interferon and the mitogenic activity of growth factors are independent cell cycle events. Studies with vascular smooth muscle cells and endothelial cells.

We studied the antagonistic effects of interferon (IFN) and growth factors in G0/G1-arrested normal bovine aortic smooth muscle cells (SMC) which were stimulated by serum, or purified platelet derived growth factor (PDGF), supplemented with plasma-derived serum (PDS). The growth response, measured as [3H]thymidine incorporation into DNA, was dependent on the concentration of the mitogen. Human IFN alpha, recombinant human IFN alpha 2, or a crude bovine-IFN preparation prepared from virus-infected bovine aortic endothelial cells, inhibited SMC growth induced by either serum or PDGF with PDS. The extent of IFN inhibition was inversely related to the concentration of the mitogenic stimulus. We also investigated whether IFN inhibited the early events in G1 phase, stimulated by the competence factor PDGF, or the progression of the cell into the S phase induced by PDS. The results indicated that IFN inhibited these two stages of the G1 phase independently. In addition, we investigated the antiproliferative effect of IFN on bovine aortic endothelial cells (BAEC), which do not respond to PDGF but to the mitogenic activity of fibroblast growth factor (FGF). IFN inhibited the mitogenic activity of FGF in a dose-dependent manner. The results indicate that the anti-proliferative activity of IFN and the mitogenic effects of different growth factors are independent.

Animals↗

The effect of estradiol on human myelomonocytic cells. 1. Enhancement of colony formation.

Cyclic changes were observed in the content of blood monocytes during the menstrual cycle of normal women. Elevated blood monocytes were found during the ovulation period as well as in other conditions which are associated with increased blood estradiol (E2). To understand the possible association between E2 and monocytosis, we analysed the in vitro effect of E2 on the development of myelomonocytic colonies in culture. E2 in physiological concentrations was found to increase the number of colonies developed from peripheral blood mononuclear cells (PBM) of both females and males. The optimal concentration for the augmenting effect on males' PBM was lower than that for females. Mononuclear cells derived from cord blood, which yielded much higher numbers of colonies than adult PBM, also responded to the stimulatory effect of E2. Estrone and estriol were less effective than E2 in adult PBM. In contrast, progesterone, diethylstilbestrol and testosterone did not affect the number of colonies at the range of physiological concentrations tested. The anti-estrogen Tamoxifen did not inhibit the stimulatory effect of E2. The augmenting effect of E2 on monomyelocytic colony formation may explain at least in part the increase in blood monocyte content of women with high E2 as well as other phenomena of macrophage and granulocyte changes associated with the menstrual cycle.

Adult↗

Effect of lysine vasopressin in depressed patients on mood and 24-hour rhythm of growth hormone, cortisol, melatonin and prolactin.

Lysine-8-vasopressin (LVP) for 10 days and in doses up to 13.5 LVP units did not significantly alter the Hamilton Depression Rating Scale scores of 12 severely depressed, treatment-resistant patients who were evaluated in a double-blind crossover study. The 24-h rhythms of melatonin, cortisol, growth hormone and prolactin appeared remarkably stable over the course of repeated measurement. LVP administration did not affect these 24-h rhythms.

Adult↗

Development of macrophage and granulocyte colonies from human peripheral blood.

The presence of macrophage and granulocyte progenitor cells in the human peripheral blood enabled the establishment of colonies from this accessible tissue and obviated the need for bone marrow to achieve this task. We have developed a method of obtaining reproducible growth of macrophage/granulocyte colonies from human peripheral blood. Colonies of macrophages and granulocytes were obtained by plating peripheral blood mononuclear cells (PBM) in methylcellulose containing medium in the presence of medium conditioned by nonstimulated PBM (CM). At early stages of colony growth both macrophage and granulocyte colonies were detected while following 20-25 days in culture all colonies tested revealed monocyte-macrophage morphology. To obtain higher numbers of colonies, we tested different cell sources, different CM preparations and the effect of steroid hormones on colony development. We found that the mononuclear cells obtained from cord blood (CB) or from some patients with inflammatory bowel disease yielded much higher numbers of colonies than PBM from normal individuals. Colony development from these two sources did not depend on an external source of colony stimulating factor (CSF) but was augmented as a result of CSF supplementation. CM obtained from CB mononuclear cells as well as supernatants from some human monoblastic cell lines were similar in their CSF activity to CM from normal PBM and made possible the development of macrophage/granulocyte colonies. Higher numbers of colonies were induced by including physiological concentrations of estradiol in the culture medium, in the absence of external sources of CSF. The system described above enabled the analysis of cloned macrophages and their circulating progenitor cells as well as the assay of different preparations of CSF.

Adolescent↗

Binding, degradation, and biological activity of insulin in vascular smooth muscle cells.

The interaction of insulin with the vascular smooth muscle was studied using cultures derived from the bovine aortic arch. The cultured cells exhibited specific binding of 125I-insulin that was reversible and dependent on pH. Both insulin and insulinlike growth factor (IGF) I competed for 125I-insulin binding; IGF I, however, was less effective than insulin by at least an order of magnitude. Insulin binding was accompanied by internalization and degradation of the hormone in a temperature- and time-dependent manner. Chloroquine and other lysosomotropic agents elevated the internalized insulin and reduced its degradation. Pre-exposure of cell cultures to insulin resulted in downregulation of cell surface receptors. Insulin stimulated alpha-aminoisobutyric acid transport in confluent smooth muscle cells. The maximal response was observed at 100 ng/ml insulin with a half-maximal effect at 10 ng/ml. Sparse, serum-starved smooth muscle cells responded to insulin with a dose-dependent increase in [3H]-thymidine incorporation into DNA. Although the effect was already apparent at 1 ng/ml insulin, it reached near maximal level only at 10,000 ng/ml. IGF I also stimulated DNA synthesis in smooth muscle cells; however, at low concentrations insulin was more efficient in this respect. Human growth hormone was inactive. The data indicate the presence of specific receptors for insulin in bovine aortic smooth muscle cells. These receptors appear to mediate the metabolic activity as well as part of the mitogenic effect of insulin in these cells.

Aminoisobutyric Acids↗