Search PubMed⌕ Search

Biomedical subjects

A Kiss

Publications and source records attributed to A Kiss.

At least 127 records · Page 7Linked to original sources

[Synthesis of hetero-condensed quinazolones: 1,2,4-triazino[6,1-b]- and 1,2,5-triazino[2,3-b]quinazolones].

In the course of the systematic investigation of heterocondensed quinazolones derivatives of a new heterocyclic ring system, [1,2,5]triazepino[2,3-b]quinazolone have been developed as potential biologically active agents, which are new bioisoteric analogues of cholecystokinin antagonist diazepino[2,1-b]quinazolones. The authors worked out an original synthetic route for preparation of ring analogue [1,2,4]triazino[6,1-b]quinazolines from intermediates of the synthesis, too. Starting 2-alkyl-3-amino-quinazolones are easily prepared by reaction of 2-alkyl-benzoxazone with hydrazine hydrate. In the next step bromination reaction of the alpha-methylene group of 2-alkyl-substituents gave a mono-bromo derivative as major product. In the reaction of the bromo compound with N-nucleophyles 2-alkylamino-3-amino-quinazolones were obtained which reacted with alpha-halogeno-carbonyl compounds and led to the tricyclic quinazolones in ring closure reaction. The structural properties of the heterocyclic compounds were characterized by UV-VIS and NMR data and molecular modelling calculation.

Azepines↗

Morphological aspects of the median eminence--place of accumulation and secretion of regulatory neurohormones and neuropeptides.

The median eminence (ME) is a small brain area forming both the structural and functional bridge between the hypothalamus and the hypophysis. It is supplied by a variety of neurohormones and neuropeptides which are delivered to the ME by different hypothalamic and extrahypothalamic pathways. These biologically active substances may act in the ME locally influencing the activity of secretion of the neighbouring terminals or, after being released from the neuronal endings into the network of fenestrated capillaries and transported to the hypophysis, they may be involved in the regulation of secretion of adenohypophyseal hormones. Recent demonstrations of extensive colocalizations of these biologically active substances in individual axonal endings in the ME with wide spectrum of biological actions further emphasizes the ME as an important place involved in the neuroendocrine regulatory processes.

Animals↗

Analysis of transforming growth factor (TGF)-alpha/epidermal growth factor receptor, hepatocyte growth Factor/c-met,TGF-beta receptor type II, and p53 expression in human hepatocellular carcinomas.

Experimental data suggest that dysregulation of growth factors and the cognate receptors may play an important role in hepatocarcinogenesis. The objective of the present study was to characterize the expression of two hepatotrophic growth factor/receptor systems [transforming growth factor-alpha/epidermal growth factor receptor (TGF-alpha/EGFR) and hepatocyte growth factor/c-met receptor (HGF/c-met)], both of which are implicated in the development of human liver tumors. In addition, we have analyzed the expression of transforming growth factor-beta receptor type II (TGF-beta-RII) and p53, genes associated with growth inhibition and tumor suppression, respectively. Surgical biopsy specimens from 86 human hepatocellular carcinomas were analyzed. TGF-alpha was overexpressed in 17%, equally expressed in 21%, and down-regulated in 62% of the hepatocellular carcinomas when compared to the surrounding hepatic tissue. No major changes were found with EGFR expression. HGF was over-expressed in 33% and down-regulated in 21% of the tumors. The c-met receptor was overexpressed in 20%, equally expressed in 48%, and down-regulated in 32% of the neoplasms. In contrast, TGF-beta-RII was overexpressed in only 8%, equal in 42%, and down-regulated in 50% of tumors. Nuclear staining of p53, indicative of a mutation(s), was observed in the great majority of the tumors (80%), whereas no nuclear p53 was detected in peritumoral tissues. Interestingly, simultaneous down-regulation of c-met and TGF-beta-RII was observed in 23% of the hepatocellular carcinomas, 85% of which also showed nuclear p53 staining. Taken together, our data suggest that down-regulation of c-met and TGF-beta-RII may, together with p53 mutations, play a significant role in human liver carcinogenesis.

Adult↗

Inhibition of neoplastic development in the liver by hepatocyte growth factor in a transgenic mouse model.

Overexpression of the c-myc oncogene is associated with a variety of both human and experimental tumors, and cooperation of other oncogenes and growth factors with the myc family are critical in the evolution of the malignant phenotype. The interaction of hepatocyte growth factor (HGF) with c-myc during hepatocarcinogenesis in a transgenic mouse model has been analyzed. While sustained overexpression of c-myc in the liver leads to cancer, coexpression of HGF and c-myc in the liver delayed the appearance of preneoplastic lesions and prevented malignant conversion. Furthermore, tumor promotion by phenobarbital was completely inhibited in the c-myc/HGF double transgenic mice, whereas phenobarbital was an effective tumor promoter in the c-myc single transgenic mice. The results indicate that HGF may function as a tumor suppressor during early stages of liver carcinogenesis, and suggest the possibility of therapeutic application for this cytokine.

Animals↗

[Fibrinolysis studied by an in vitro clot lysis test in polycythemia vera].

Results obtained by a simple in vitro clot lysis test in polycythemia vera, polyglobulia, essential thrombocythemia and chronic immun thrombocytopenic purpura are reported. Increased lysis resistance of the platelet-rich clots was demonstrated in polycythemia and essential thrombocythemia, ostensibly caused by the high plasma level of plasminogen activator inhibitor-1. Following retraction of platelet-rich clots no further increase of lysis-resistance occurred in polycythemia and essential thrombocythemia. This phenomenon is most likely due to abnormal platelet function. The well known thromboembolic complications may at least partly result from the impaired fibrinolysis in diseases with high platelet counts.

Adult↗

Early detection of metastasis by alterations in the cellular immune system in the murine liver and blood.

We investigated the reaction of the cellular immune system of liver and blood in the C57BL/6 mouse to a metastasizing Lewis lung carcinoma. The cellular immune system of the liver consists of mature and immature macrophages, B-cells, T-cells including their subpopulations, and natural killer cells, and their percentage frequencies differ significantly from those in the corresponding mononuclear blood cell (MBC) compartment. This suggests that the hepatic immune cells represent a system with autonomous function showing a typical homing of its members. Imminent metastasis to the liver is signalled by impressive alterations in the percentage frequencies of nonparenchymal liver cells (NPLC). There are a dramatic loss of mature macrophages, an increase in immature macrophages, a reduction of T-helper cells leading to a low CD4/CD8 ratio, and an increase in natural killer cells. In the blood, the corresponding precursor cells show comparable changes with a delay of at least 2 days. Early metastasis is accompanied by a significant increase in mononuclear NPLC producing tumour necrosis factor alpha. The alterations in percentage frequencies of the NPLC during tumour metastasis differ markedly from the changes in these cells in the liver during endotoxinaemia.

Animals↗

Intrascrotal and testicular solid masses in childhood.

A retrospective study was performed between 1985 and 1994 on paediatric patients operated for asymptomatic intrascrotal or testicular palpable masses. Tumour was suspected in each case and it was surgically explored. Twenty-six children were affected, their age ranging between 9 days and 14 years. In 11 cases testicular torsion, in 4 epididymitis and in another 2 dystrophic calcification were found. Tumours, including rather rare alterations, were observed in only 9 children. The present results draw attention to the tumour-like occurrence of testicular torsions and other benign alterations of the scrotum.

Adolescent↗

Susceptibility to natural killer cells and down regulation of MHC class I expression in adenovirus 12 transformed cells are regulated by different E1A domains.

All human adenoviruses transform rodent cells in vitro, but only cells transformed by serotypes belonging to subgroups A (Ad12) and B (Ad3) are tumorigenic for immunocompetent animals. In these cells, the expression of MHC-class I antigens is repressed and might allow them to escape from recognition by cytotoxic T lymphocytes (CTL) and to develop in tumor. Furthermore, these cell lines appear resistant to lysis by natural killer (NK) cells. To determine the E1A domain(s) responsible for these properties several cell lines were created by transforming baby rat kidney (BRK) cells with a set of plasmids expressing different Ad2/Ad12 hybrid E1A gene products. The MHC class 1 gene expression was inhibited in cells expressing the Ad12 13S mRNA product and in cells transformed with Ad2/Ad12 hybrid E1A gene product harboring the C-terminal part of the conserved region (CR) 3 of Ad12. Susceptibility of these transformed cell lines to NK cells was determined by cytolytic assays. The results obtained suggest that two Ad12 E1A domains are required to induce resistance of the cell lines to NK cells.

Adenovirus E1A Proteins↗

Regulation of adrenal steroidogenesis during chronic stress.

The mechanism of the altered adrenal responsiveness during chronic stress was studied by analysis of ACTH and Ang II responses and the expression and activity of steroidogenic enzymes in the adrenal cortex of rats subjected to repeated immobilization (2 hr/day for 14 days), or repeated i.p. injection of 1.5 M NaCl. Concomitant with increased pregnenolone production and reduced aldosterone secretion by isolated adrenal glomerulosa cells of chronically stressed rats, P-450scc mRNA were increased and P-450aldo mRNA levels were decreased in adrenal zona glomerulosa. Consistent with elevated plasma corticosterone levels, isolated adrenal fasciculata cells from stressed rats showed higher cAMP, pregnenolone and corticosterone responses to ACTH. Adrenal fasciculata area and levels of P-450scc, but not those of P-450(11s) hydroxylase were significantly increased. The effects of repeated stress on adrenal steroidogenesis were mimicked by repeated ACTH injections. The half life of corticosterone in plasma measured with [3H]corticosterone was increased in stressed rats but not in ACTH injected rats. This study shows that chronic stress leads to a) inhibition of mineralocorticoid secretion due to inhibition of the late biosynthetic pathway, and b) increased circulating glucocorticoids due to increased ACTH receptor activity, expression and activity of the early pathway, and decreased glucocorticoid clearance. Altered adrenal glomerulosa and fasciculata function, but not changes in glucocorticoid clearance, are probably mediated by increased ACTH secretion during chronic stress.

Adrenal Cortex↗

Neural regulation of corticotropin releasing hormone (CRH) and CRH receptor mRNA in the hypothalamic paraventricular nucleus in the rat.

The role of afferent innervation to the hypothalamic paraventricular nucleus (PVN) on CRH mRNA and CRH receptor mRNA levels was studied in control and stressed rats. Groups of rats were subjected to unilateral transection of the stria terminalis (ST), the medial forebrain bundle at the rostral hypothalamic level (RMFB), or the lower brainstem through the medulla oblongata between the obex and the locus coeruleus (CBs). Twelve days after surgery, each group of rats was further divided into controls (basal conditions) and stressed (1 h immobilization), before collecting brains for mRNA analysis by in situ hybridization histochemistry. While ST and RMFB cuts had no effect on basal CRH mRNA levels in the PVN, CBs cut decreased CRH mRNA in the PVN ipsilaterally to the knife cut but it was without effect on the contralateral side (-40% and -37% vs contralateral and sham-operated, respectively, P < 0.01). Acute stress (rats were killed 3 h after immobilization) increased CRH mRNA levels by about 30% bilaterally, an effect which was unchanged by any of the three hemisections. Under basal conditions, CRH receptor mRNA levels in the PVN were indistinguishable from the surrounding areas in sham-operated controls, ST and RMFB operated rats. However, brainstem hemisection resulted in clear expression of CRH receptor mRNA in areas consistent with the dorsal, medial-ventral and lateral parvicellular subdivisions of the PVN, ipsilateral to the transection. CRH neurons in these subdivisions project to the lower brainstem and the spinal cord. Expression of CRH receptor mRNA in the medial-dorsal and anterior parvicellular divisions (CRH neurons with median eminence projections) was not affected by CBs cut. In these subdivisions, immobilization stress markedly increased CRH receptor mRNA levels but it did not influence CBs cut-induced CRH receptor expression. ST and RMFB hemisections were without effect on PVN CRH receptor mRNA levels under basal or stress conditions. Oxytocin (OT) and vasopressin (VP) mRNA levels in the magnocellular subdivision of the PVN were unchanged after immobilization, or following ST, RMFB or CBs cuts, whereas OT mRNA in the medial-ventral and caudal parvicellular subdivisions was decreased by 52% after CBs cut. The data demonstrate that: 1) basal CRH mRNA levels in the PVN are under tonic stimulatory influence of the lower brainstem (and/or spinal cord) afferents; 2) CRH receptor mRNA expression in PVN subdivisions (pituitary vs lower brainstem/spinal cord projecting neurons) is under different control mechanisms, and 3) immobilization-induced changes in CRH mRNA and CRH receptor mRNA levels are mediated either by neural inputs from brain areas other than those investigated here, or by humoral factors.

Animals↗

Porphyria cutanea tarda and chronic lymphoid leukemia.

A case of a familial porphyria cutanea tarda (PCT-II) is reported in which the clinically overt form of PCT was provoked by factors relating to chronic lymphoid leukemia (CLL). Typical lesions of PCT developed on a 55-year-old woman after several blood transfusions and chlorambucil treatment. Besides these provoking factors, cytomegalovirus (CMV) infection was diagnosed. Erythrocyte uroporphyrinogen decarboxylase activity was about 50% of normal in the patient and in her two children. This case supports the suggestion that development of PCT in patients with hematological disorders is more than coincidental but may in fact be provoked by exogenous factors relating to the treatment of leukemia.

Anemia, Hemolytic, Autoimmune↗

Hypothalamic-pituitary corticotroph function after shunting of magnocellular vasopressin and oxytocin to the hypophyseal portal circulation.

Surgical pituitary stalk compression (PSC) causes neural lobe denervation and development of ectopic magnocellular terminals in the external zone of the median eminence, resulting in shunting of magnocellular vasopressin (VP) and oxytocin (OT) to the pituitary portal circulation. To determine the effects of PSC on hypothalamic and pituitary function, VP and CRH receptors and POMC messenger RNA (mRNA) in the pituitary, and CRH, VP, and OT mRNA levels in the PVN were examined in 7-day PSC and sham-operated rats. Immunohistochemical staining revealed marked accumulation of immunoreactive VP in the swollen pituitary stalk and the external zone of the distal median eminence of PSC rats. Plasma ACTH and corticosterone levels were significantly increased by PSC, an effect that was attenuated by minipump infusion of desamino-[D-Arg8]-vasopressin (DDAVP) given to correct the diabetes insipidus. [3H]VP binding to anterior pituitary membranes from PSC rats was reduced by 50% compared to that in sham-operated controls, but VP V1b receptor mRNA levels measured by in situ hybridization were unchanged. Pituitary CRH receptors measured by binding autoradiography and CRH receptor mRNA levels did not change after PSC. POMC mRNA was unchanged in the anterior pituitary lobe, but markedly increased in the intermediate lobe of PSC rats, with or without DDAVP infusion. In the hypothalamic supraoptic and paraventricular nuclei, PSC resulted in reduction of VP mRNA (-83%) and OT mRNA (-38%) levels, probably reflecting retrograde degeneration of magnocellular neurons. This decrease was more pronounced for VP mRNA than for OT mRNA CRH mRNA levels in parvicellular cells of the paraventricular nuclei of PSC rats were reduced by 55%. Correction of the diabetes insipidus by DDAVP treatment further decreased hypothalamic VP mRNA levels, but restored CRH mRNA to control levels. The data show that continuous exposure of the pituitary to high VP levels from ectopic magnocellular fibers in the median eminence results in VP, but not CRH, receptor loss. Pituitary VP receptor down-regulation and decreased hypothalamic CRH expression are likely to contribute to the reduced corticotroph responsiveness to VP reported in this experimental model.

Adrenocorticotropic Hormone↗

Regulation of messenger ribonucleic acid for corticotropin releasing hormone receptor in the pituitary during stress.

The mechanism regulating pituitary CRH receptors during stress was studied by analysis of the changes in CRH receptor messenger RNA (mRNA) and CRH binding after acute and repeated stress and CRH and vasopressin (VP) administration in intact and adrenalectomized rats. Acute stress caused time- and stress type-dependent changes in pituitary CRH receptor expression. In situ hybridization studies showed biphasic changes in CRH receptor mRNA after immobilization stress for 1 h and decreases by 2 h (P < 0.01). Increases (P < 0.01) were seen 4 and 8 h after the initiation of the stress, and a return to near basal levels by 12 and 18 h. A different pattern, with a decrease by 4 h (P < 0.01) and levels similar to controls after 12 and 18 h, was observed after a single ip injection of hypertonic saline (1.5 M NaCl). Binding autoradiography showed significant increases in pituitary CRH binding 4, 10, and 12 h after immobilization stress, but significant decreases 4, 12, and 18 h after ip hypertonic saline. In contrast, repeated immobilization or ip hypertonic saline for 8 or 14 days increased pituitary CRH receptor mRNA, and CRH binding was decreased. To determine the role of hypothalamic CRH and VP on these stress-induced changes, rats were injected for 14 days with CRH, VP, or their combination at doses mimicking stress levels in pituitary portal circulation (1 microgram/day sc). Repeated injection of CRH or VP increased CRH receptor mRNA and CRH binding (P < 0.05). CRH receptor mRNA levels further increased after combined administration of CRH and VP (P < 0.01), but CRH binding showed a tendency to decrease. The role of glucocorticoids on CRH receptor regulation was studied by analysis of the effects of stress on CRH receptor mRNA and CRH binding in adrenalectomized (ADX) rats with and without corticosterone replacement in the drinking water. Although in 6-day ADX rats pituitary CRH receptor mRNA levels were markedly reduced after acute immobilization, glucocorticoid replacement restored the stimulatory effect of stress to levels observed in intact rats. Similarly, a single sc injection of CRH (1 microgram) decreased CRH receptor mRNA in ADX rats but not in glucocorticoid-replaced ADX rats. CRH binding showed the expected decrease after ADX and was unchanged after stress or CRH injection. The increased pituitary CRH receptor mRNA after stress suggests that stress-induced CRH receptor down-regulation is due to increased receptor occupancy and internalization rather than to a decrease in receptor synthesis. The data suggest that increased hypothalamic secretion of CRH and VP mediates the delayed up-regulatory effect of stress on CRH receptor mRNA, and that resting levels of glucocorticoids are required for this effect. In addition, increased VP levels are permissive for the down-regulation of CRH binding induced by chronic pituitary exposure to stress levels of CRH.

Adrenalectomy↗

Participation of periolivary neurons in the auditory brainstem circuitry. A Golgi, tracer and degeneration study.

Neurons in the periolivary areas of cat were described using Golgi methods and HRP labeling, and spineless neurons with distant projecting axons and spinous with local ramifying axons were distinguished. Spineless neurons fell into two classes, fusiform and multipolar cells characterised by the large number of terminals of various size, shape, vesicle content and membrane attachment articulating with them and both were identified as projection cells by retrograde tracer. They were, however, distinguished by the shape and orientation of their perikarya, the number, direction, branching pattern and composition of the presynaptic complement of their dendrites and their numerical occurrence and distribution among the periolivary areas. Spinous neurons had multipolar somata, wavy spinous dendrites spherically displayed and local, profusely ramifying axon arbor. Their somata and dendrites had few synaptic contacts with afferents, their axonal terminals escaped degeneration and since they failed to get labelled retrogradely from external sources they were considered as local interneurons. Based on morphological criteria and experimental results four types of axons were described. The large terminals with asymmetric membrane contacts and round vesicles took origin from the cochlear nuclei, and terminals of symmetrical membrane specialisation with pleomorphic vesicle content were traced from the inferior colliculus. Small profiles containing ovoid vesicles were considered as terminals of interneurons and the few, with round vesicles as local axoncollaterals.

Animals↗

[Recombinant human erythropoietin in the treatment of anemic patients undergoing chemotherapy for cancer].

Twenty-seven anemic patients with malignant tumour who received chemotherapy were treated with recombinant human erythropoietin (r-HuEPO). The objective of this study was to evaluate the effect of r-huEPO on hematologic and quality of life parameters as well as on transfusion requirement in patients with anemia secondary to cancer and cyclic chemotherapy. Patient population was allocated into two groups based on the chemotherapeutic regimens: 1. cisplatin containing and 2, non cisplatin containing regimen. Using 2 g/dl increase in haemoglobin levels as the criteria for response, twenty women responded to r-huEPO treatment. The response was more marked in the cisplatin group. R-huEPO treatment saved transfusion in both groups. Again, less patients required transfusion among those treated with cisplatin. There was a marked improvement in the quality of life which was more pronounced in patients who responded to r-huEPO treatment and in those receiving non cisplatin chemotherapy. No serious adverse experiences occurred. In conclusion, two third of patients with anemia secondary to cancer and cyclic chemotherapy can be effectively treated with r-huEPO. R-huEPO treatment invariably saves transfusion and is highly effective in improving quality of life. Adverse reaction is exceptional.

Anemia↗

Purification of the KpnI DNA methyltransferase and photolabeling of the enzyme with S-adenosyl-L-methionine.

An Escherichia coli strain overproducing the KpnI DNA methyltransferase (M.KpnI) was constructed by cloning the kpnIM gene downstream from the inducible T7 phage luminal diameter 10 promoter. A method involving three chromatographic steps has been developed to purify M.KpnI to homogeneity. The purified enzyme has a pH optimum around 7.3 and is inhibited by salts. M.KpnI can be photolabeled by UV-irradiation of the enzyme in the presence of S-adenosyl-L-[methyl-3H]methionine ([methyl-3H]AdoMet). Photolabeling results from a specific interaction between M.KpnI and AdoMet, as indicated by the dependence of photolabeling on native enzyme conformation and by the inhibitory effect of the AdoMet analogs, sinefungin and S-adenosyl-L-homocysteine (AdoHcy).

Adenosine↗