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Biomedical subjects

Y Sidi

Publications and source records attributed to Y Sidi.

At least 55 records · Page 3Linked to original sources

Inhibition of B16 melanoma cell proliferation and alterations in p21 ras expression induced by interceptors of signal transduction pathways.

Anti-tumor effects of agents known to intervene with signal transduction pathways (ras and protein kinase c cascades) were examined in the B16 melanoma cell model. The compounds examined included: lovastatin, an inhibitor of HMG-CoA reductase, which interferes with membrane localization of p21 ras protein; H-7, a classic inhibitor of protein kinase C; and tiazofurin, a GTP depleting agent, that might affect the GTP/GDP ratio on p21ras. The three agents were found to inhibit the proliferation of B16 melanoma cells. Only tiazofurin, as expected, induced a significant decrease in GTP levels. Lovastatin and H-7 altered p21 subcellular localization. They reduced membrane expression of p21 ras, while increasing its expression in the cytosol. Following tiazofurin treatment a trend towards increased membranal p21 was observed. These results suggest that p21 is a target for the action of signal transduction inhibitors. However, the relationship between growth inhibition and altered p21 expression is not yet clear.

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

Metabolism of guanine and guanine nucleotides in primary rat cardiomyocyte cultures.

The metabolic fate of labeled guanine and of prelabeled guanine nucleotides (GuRN) was studied in cultured rat cardiomyocytes. Special attention was given to guanine salvage in comparison to degradation; to the contribution of GuRN to adenine nucleotides (AdRN); to the fluxes from GMP to IMP and from IMP to GMP; and to the degradation pathways of GuRN. In accordance with the 3- to 4-fold higher activity of guanine deaminase (guanase), in comparison to that of hypoxanthine-guanine phosphoribosyltransferase (HGPRT), the rate of guanine deamination to xanthine exceeded that of guanine incorporation into nucleotides (at 4 microM) by 13.2-fold. The label from guanine incorporated into nucleotides was found mainly (81%) in GuRN, but also in IMP and AdRN. The prelabeled GuRN lost 43% of the label in 4 h, reflecting mainly degradation to xanthine (and uric acid) and synthesis of nucleic acids. Blocking nucleoside degradation was associated with a marked accumulation of label in guanosine and inosine (guanosine/inosine labeling ratio is 1.25). The results indicate that in the myocardium guanine is a poor substrate for salvage synthesis of GuRN and that its contribution to the homeostasis of adenine nucleotides is negligible; that GMP degradation to xanthine proceeds through both guanosine and IMP; and that the cardiomyocytes contain the activity of GMP reductase and of the enzymes converting IMP to GMP.

Animals↗

Increased turnover of intrahepatic bile ducts induced by bromobenzene.

Intrahepatic bile duct epithelium consists of two kinetic compartments: a progenitor (P) and a functional (Q) compartment. Hitherto bromobenzene was known to poison only hepatocytes in the third acinus zone. The present experiment aims to demonstrate that bromobenzene affects also bile duct turnover. Thirty male adult rats received one intraperitoneal injection of bromobenzene and were sacrificed in groups of five at the following times: 1, 2, 3, 4, 7, and 14 days. They received [3H]thymidine 1 hr before sacrificing. Autoradiography was done. Bile ducts were evaluated in all portal tracts of the section. The number of epithelial cells in each duct cross section was counted and defined as bile duct class, which is roughly proportional to bile duct size. In each cross section the number of labeled cells was counted. Initially the labeling index was 0.76 +/- 0.3%. By day 3, it reached a peak of 4.1 +/- 1.1%, and then declined to its initial level. Following bromobenzene poisoning, hepatocyte and bile duct epithelia turn over in the same fashion. In both, labeling index and progenitor compartment size initially rise and return by the end of the first week to their initial level. We propose that bile duct epithelia and hepatocytes originate in one determined uncommitted stem cell that resides in the Herring duct. Bromobenzene-induced necrosis triggers proliferation of progenitors in both cell lineages, as well as in the stem cell itself.

Animals↗

Developmental changes in purine nucleotide metabolism in cultured rat astroglia.

The present study was conducted in order to clarify the role of the glia in brain purine metabolism. This, in connection with the clarification of the etiology of the neurological manifestations associated with some of the inborn errors of purine metabolism in man. Purine nucleotide content, the capacity for de novo and salvage purine synthesis and the activity of several enzymes of purine nucleotide degradation, were assayed in primary cultures of rat astroglia in relation to culture age. The capacity of the intact cells to produce purine nucleotides de novo exhibited a marked decrease with the culture age, but the activity of hypoxanthine-guanine phosphoribosyltransferase (HGPRT), catalyzing salvage nucleotide synthesis, increased. Aging was also associated with a marked increase in the activity of the degradation enzymes AMP deaminase, purine nucleoside phosphorylase (PNP) and guanine deaminase (guanase). The activity of adenosine deaminase and of AMP-5'-nucleotidase, increased markedly during the first 17 days in culture, but decreased thereafter. The results indicate that purine nucleotide metabolism in the cultured astroglia is changing with aging to allow the cells to maintain their nucleotide pool by reutilization of preformed hypoxanthine, rather than by de-novo production of new purines. Aging is also associated with increased capacity for operation of the adenine nucleotide cycle, contributing to the homeostasis of adenine nucleotides and to the energy charge of the cells. In principle, the age-related alterations in purine metabolism in the astroglia resemble those occurring in the maturating neurons, except for the capacity to produce purines de novo, which exhibited inverse trends in the two tissues. However, in comparison to the neurons, the cultured astroglia possess the capacity for a more intensive metabolism of purine nucleotides.

Animals↗

High incidence of occult thyroid disease among general medical ward patients.

The objective of this study was to prospectively determine the efficacy of the results of routine testing of thyroid functions in patients admitted to a general medical ward. Blood for thyroid function tests was drawn on admission as part of the laboratory screening panel from 270 consecutive patients. Fifty-one were excluded due to recognition of thyroid-related problems by the clinical staff. 138 patients (63%) had normal free thyroxin (FT4) levels, one patient had hyperthyroidism, 15 patients (6.8%) had laboratory primary hypothyroidism and 65 patients (29.6%) had equivocal results (FT4 < 0.9 ng/dL and TSH < 5.0 mmu/L). In eight out of 31 patients in the latter group, the thyroid releasing hormone (TRH) test revealed primary or secondary hypothyroidism. A total of 55 patients (25.1%) expired within one year. The mortality rate was significantly higher among the low FT4 patients (p < 0.01), and was independent of age and sex. We conclude that inclusion of FT4 in a laboratory screening panel will reveal a large patient population with abnormal results. However, establishing the diagnosis requires additional tests. Therefore, screening for occult hypothyroidism among a select population, not the acutely sick, populations may be more efficient.

Adult↗

Effects of differentiation-inducing agents on purine nucleotide metabolism in an ovarian cancer cell line.

The effects of the differentiation-inducing agents sodium butyrate (NaOBt), dimethylsulfoxide (DMSO) and mycophenolic acid (MA), on purine nucleotide metabolism, was studied in an ovarian carcinoma cell line (GZL-8). Exposure to these agents inhibited cell proliferation, but did not affect cell viability. Three hours following exposure, NaOBt and DMSO moderately decelerated purine synthesis de novo, but MA accelerated it three-fold, this being associated with a two-fold increase in the excretion of hypoxanthine and xanthine into the incubation medium. NaOBt and DMSO did not affect the cellular nucleotide content, but MA caused a 73% decrease in GTP content and about a 50% increase in the cellular content of UTP. The following alterations in cellular enzyme activity were observed 72 h following exposure: NaOBt decreased the activity of hypoxanthine-guanine phosphoribosyltransferase and increased the activity of IMP and of AMP 5'-nucleotidases, DMSO increased the activity of IMP 5'-nucleotidase, and MA increased the activity of the two nucleotidases. The results suggest that, in the carcinoma cell line studied, the differentiation process induced by NaOBt and DMSO may be associated with a general shift in the direction of purine metabolism from anabolism to catabolism, whereas that induced by MA is associated with a specific decrease in the production of GTP.

Butyrates↗

Novobiocin modulates colchicine sensitivity in parental and multidrug-resistant B16 melanoma cells.

The effect of the antibiotic agent novobiocin on the sensitivity of melanoma cells to colchicine and vinblastine was examined in drug-sensitive and drug-resistant B16 melanoma cells. A cell line COL/R was selected for colchicine resistance. The COL/R cell line (resistant to 80 ng/ml colchicine) was found to possess the multidrug-resistant (MDR) phenotype. The cells were shown to be cross-resistant to vinblastine and Adriamycin and to overexpress P glycoprotein. P glycoprotein activity was assessed by using the rhodamine 123 accumulation test. Rhodamine accumulation was markedly decreased in COL/R cells as compared to the parental B16 cells. Verapamil reversed drug resistance and increased rhodamine accumulation in COL/R cells. Novobiocin in combination with colchicine or vinblastine synergistically inhibited the proliferation of parental B16 cells. In COL/R cells, novobiocin markedly decreased colchicine resistance and increased rhodamine accumulation. These data show that novobiocin increases the sensitivity of both parental and MDR melanoma cells to microtubule-disrupting cytotoxic drugs.

Animals↗

Sarcoidosis as the initial manifestation of Takayasu's arteritis.

Takayasu's arteritis is a chronic inflammatory arteriopathy of unknown cause. The pulseless phase of Takayasu's arteritis is preceded by a period of "prepulseless disease" when the patients suffer from systematic symptoms without obvious evidence of obstruction of larger arteries. Herein we report a unique case of Takayasu's arteritis presenting as sarcoidosis manifested by restrictive lung disease, hilar adenopathy and non-caseating granulomas of the skin. We are aware of only one report in which non-caseating skin granulomas were evident at the prepulseless phase of Takayasu's arteritis. However, in our patient the clinical picture was typical of sarcoidosis. Increased awareness of this possibility will lead to more frequent skin biopsies in patients with Takayasu's arteritis and nodular skin lesions, which may increase the number of reported cases with this combination.

Angiography, Digital Subtraction↗

Fatal Shigella sepsis in a neutropenic patient.

Bacteremia during infection with Shigella is relatively rare and usually self-limited. Bacteremia during shigellosis bearing a high fatality rate has been reported in young infants and in persons with malnutrition or with the acquired immunodeficiency syndrome. We report a case of Shigella sonnei septicemia in a severely neutropenic patient who had fever, abdominal pain, diarrhea, malnutrition, and dehydration. She died after five days despite intensive care. We emphasize that Shigella should be considered among the possible pathogens causing sepsis in neutropenic patients.

Adult↗

The use of intravenous gammaglobulin, heparin and aspirin in the maintenance of pregnancy of freeze thawed embryo in a patient with lupus-type anticoagulant.

A case of lupus anticoagulant and repeated fetal loss with a successful delivery of a healthy baby after transfer of thawed frozen embryos and intravenous immunoglobulin administration is described. The repeated fetal loss was due to vascular disturbances caused by lupus anticoagulants. Early implantation was not affected. Anticoagulants and/or steroids did not help in further establishing pregnancy. Intravenous immunoglobulin combined with heparin and aspirin led to term pregnancy and the birth of a healthy child.

Adult↗

Characterization of the alterations in purine nucleotide metabolism in hypoxanthine-guanine phosphoribosyltransferase-deficient rat neuroma cell line.

A rat neuroma cell line (B103 4C), deficient of hypoxanthine-guanine phosphoribosyltransferase (HGPRT), was utilized as a model tissue in search for the biochemical basis of the Lesch-Nyhan syndrome (LNS). The HGPRT-deficient neurons exhibited the following properties: an almost complete absence of uptake of guanine and of hypoxanthine into intact cell nucleotides (0.92% and 0.69% of normal, respectively); a significant increase in the availability of 5'-phosphoribosyl-1-pyrophosphate; a three- to fourfold acceleration of the rate of de novo nucleotide synthesis; a normal excretion of xanthine, but 15-fold increase in the excretion of hypoxanthine into the culture media; a normal cellular purine nucleotide content, including the absence of 5-amino-4-imidazole carboxamide nucleotides (Z-nucleotides), but enhanced turnover of adenine nucleotides (loss of 86% of the radioactivity of the prelabeled pool in 24 h, in comparison to 73% in the normal line), and an elevated UTP content. The results suggest that, under physiological conditions, guanine salvage does not occur in the normal neurons, but that hypoxanthine salvage is of great importance in the homeostasis of the adenine nucleotide pool. The finding of the normal profile of purine nucleotides in the HGPRT-deficient neurons indicates that the lack of hypoxanthine salvage is adequately compensated by the enhanced de novo nucleotide synthesis. These results did not furnish evidence in support of the possibility that GTP or ATP depletion, or Z-nucleotide accumulation, occurs in HGPRT-deficient neurons and that these are etiological factors causing the neurological abnormalities in LNS.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenine↗

Guanosine potentiates the antiproliferative effect of cytosine-beta-D-arabinofuranoside in melanoma cell lines.

Guanosine is shown to potentiate markedly the antiproliferative effect of cytosine-beta-D-arabinoside (ara-C) on B16 F10 mouse and SKMEL-28 human melanoma cell lines. Several metabolic consequences of the synergistic interaction between ara-C and guanosine on cell growth were determined in B16 F10 mouse melanoma cells. Treatment of the cells with guanosine for 24 hr resulted in an increase in the percentage of cells in the S phase of the cell cycle, a threefold increase in intracellular GTP concentration, and an increase in the incorporation of ara-C into acid-insoluble material and phosphorylated metabolites. These findings suggest that guanosine potentiates the growth-inhibitory effect of ara-C in B16 F10 melanoma cells by increasing the intracellular concentration of its active metabolites.

Animals↗

Treatment of systemic lupus erythematosus by prolonged administration of high dose intravenous immunoglobulin: report of 2 cases.

Two patients with life threatening manifestations of systemic lupus erythematosus (SLE), unresponsive to corticosteroid and immunosuppressive therapy, were treated with high dose intravenous immunoglobulin (IVIG). Following IVIG therapy, lupus pneumonitis and encephalitis in the first patient, and lupus nephritis in the second patient, resolved. Continuous treatment with IVIG, every 4 weeks for up to 20 months induced a prolonged clinical and laboratory remission. Treatment with cytotoxic agents was stopped, and the dosage of corticosteroids lowered. Exacerbation of lupus nephritis occurred in the second patient after 10 months of IVIG therapy. We suggest that prolonged use of high dose IVIG may be a useful therapy for acute exacerbations of SLE and for inducing prolonged remissions.

Adult↗

Bromobenzene accelerates hepatocyte streaming in rats.

Sixty male adult rats weighing between 250 and 300 g were divided in two equal experimental groups. The first experiment was designed to evaluate hepatocyte streaming. Animals were injected with 0.5 microCi [3H]thymidine and 1 hour later received one intraperitoneal injection of bromobenzene (3.8 mmol/kg, dissolved in corn oil). The animals were then killed in groups of five at 1 hour and 2, 4, 7, 14, and 30 days. The aim of the second experiment was to evaluate labeling index changes with time. Animals received one intraperitoneal injection of bromobenzene and were killed in groups of five at 1, 2, 3, 4, 7, and 14 days. They received [3H]thymidine 1 hour before killing. Bromobenzene induced a necrosis in the third acinus zone that disappeared within a week. On day 0 the labeling index of hepatocytes and littoral cells was 0.3% +/- 0.04% and 0.4% +/- 0.05%, respectively. On the second day, it reached 14.6% +/- 2.6% and 10.1% +/- 3.1% and returned to its initial value after 1 week. Dead cells in the third zone were replaced by inflowing cells from the intact zones. Hepatocytes and littoral cells streamed at the same velocity of 6 +/- 0.5 micron/day, faster than in untreated animals with velocity of 3.2 microns/day. Parenchyma and stroma responded to injury in a coordinated fashion. From the functional point of view, hepatocytes and littoral cells operate as a unit that is called proliferon. The maximal proliferon life span was 57 days after bromobenzene treatment and 108 days in controls.

Animals↗

Metabolic fate of hypoxanthine and inosine in cultured cardiomyocytes.

The metabolic fate of labeled hypoxanthine and inosine, degradation products of adenine nucleotides, was studied in cultured beating cardiomyocytes, in order to assess the physiological significance of their contribution to salvage nucleotide synthesis in the heart. Inosine and hypoxanthine were found to be incorporated into nucleotides by a similar rate, but in the presence of 8-aminoguanosine, a potent inhibitor of purine nucleoside phosphorylase (EC 2.4.2.1), the rate of inosine incorporation into nucleotides was markedly reduced (by 75%), indicating that inosine incorporation to IMP (inosinic acid) occurs following its degradation to hypoxanthine. The proportion of hypoxanthine converted to IMP by hypoxanthine-guanine phosphoribosyltransferase (EC 2.4.2.8) is markedly greater than that degraded to xanthine and uric acid by xanthine oxidase (EC 1.3.2.3). However, close to 50% of the IMP formed was degraded to inosine by IMP 5'-nucleotidase (EC 3.1.3.5). The results demonstrate the activity of the following futile cycle in the cardiomyocytes: hypoxanthine----IMP----inosine----hypoxanthine. The rational for the activity of this energy consuming cycle is yet unclear.

Cells, Cultured↗

Novobiocin-induced anti-proliferative and differentiating effects in melanoma B16.

The antibiotic drug novobiocin was evaluated for its anti-tumour properties in B16 melanoma cells. Novobiocin is shown to inhibit melanoma B16 cell proliferation. The anti-proliferative effect was gradually reversible upon removal of novobiocin from the culture medium. Growth inhibition by novobiocin was accompanied by phenotypic alterations, that included morphological changes, lipid accumulation and marked increases in the activities of NADPH cytochrome c reductase and gamma glutamyl transpeptidase. In vivo administration of repeated i.p. doses of novobiocin, to mice implanted with B16 melanoma cells resulted in growth retardation. The combined treatment of the B16 melanoma cells with novobiocin and other chemical inducers of differentiation was examined in a cell growth assay. Novobiocin and sodium butyrate inhibited cell growth in a near additive manner, while combination of novobiocin with the GTP-depleting agents, tiazofurin or mycophenolic acid resulted in a synergistic decrease in cell growth. Our results support the contention further that novobiocin and other differentiating agents might be of potential value in melanoma therapy.

Animals↗

Metabolism of guanine and guanine nucleotides in primary rat neuronal cultures.

The metabolic fate of guanine and of guanine ribonucleotides (GuRNs) in cultured rat neurons was studied using labeled guanine. 8-Aminoguanosine (8-AGuo), an inhibitor of purine nucleoside phosphorylase, was used to clarify the pathways of GMP degradation, and mycophenolic acid, an inhibitor of IMP dehydrogenase, was used to assess the flux from IMP to GMP and, indirectly, the activity of the guanine nucleotide cycle (GMP----IMP----XMP----GMP). The main metabolic fate of guanine in the neurons was deamination to xanthine, but significant incorporation of guanine into GuRNs, at a rate of approximately 8.5-13.1% of that of the deamination, was also demonstrated. The turnover rate of GuRNs was fast (loss of 80% of the radioactivity of the prelabeled pool in 22 h), reflecting synthesis of nucleic acids (32.8% of the loss in radioactivity) and degradation to xanthine, guanine, hypoxanthine, guanosine, and inosine (49.3, 4.3, 4.1, 1.1, and 0.5% of the loss, respectively). Of the radioactivity in GuRNs, 7.9% was shifted to adenine nucleotides. The accumulation of label in xanthine indicates (in the absence of xanthine oxidase) that the main degradative pathway from GMP is that to xanthine through guanosine and guanine. The use of 8-AGuo confirmed this pathway but indicated the operation of an additional, relatively slower degradative pathway, that from GMP through IMP to inosine and hypoxanthine. Hypoxanthine was incorporated mainly into adenine nucleotide (91.5%), but a significant proportion (6%) was found in GuRNs.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗