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J Nath

Publications and source records attributed to J Nath.

At least 73 records · Page 4Linked to original sources

Sister-chromatid exchange studies on direct- and indirect-acting clastogens in mouse primary cell cultures.

An in vitro sister-chromatid exchange (SCE) assay using mouse primary bone marrow and spleen cells was conducted with both direct- and indirect-acting genotoxic agents. 2,4,7-Trinitrofluorenone, a direct-acting genotoxic agent, induced a significant dose-related increase in SCEs. In both bone marrow and spleen cells, 2.0 micrograms/ml caused an approx. 3-fold increase in SCE level over control values. Cyclophosphamide, an indirect-acting genotoxicant which requires metabolic activation for its clastogenicity, induced a significant increase in SCEs in the presence of S9 from liver of rats pretreated with Aroclor-1254. A dose of 2 micrograms/ml resulted in a 2-fold increase in bone marrow and a greater than 5-fold increase in spleen cells. Benzo[a]pyrene, another indirect-acting genotoxicant, also induced significant dose-related SCE responses in both cell types. It seems that primary bone marrow and spleen cell culture systems can detect both direct- and indirect-acting genotoxicants and may be useful for routine and/or comparative cytogenetic studies.

Animals↗

Interactions of cytoplasmic granules with microtubules in human neutrophils.

Ultrastructural and functional studies of degranulation responses by human neutrophils have suggested that microtubules (MTs) have a role in the intracellular transport of neutrophil granules. We have found that granule-MT complexes can be isolated from disrupted taxol-treated (1.0 microM) neutrophils, visualized by electron microscopy, and quantified in terms of granules per MT length. After incubation of neutrophils with the chemotactic peptide N-formyl-methionyl-leucyl-phenylalanine (fMLP), granule-MT complex formation was found to be increased two- to threefold. Enhanced binding of granules to MTs was detectable within 30 s of fMLP stimulation and was dependent on the concentration of fMLP. Incubation of cells with dibutyryl cAMP inhibited this fMLP-stimulated granule-MT complex formation in a dose-responsive fashion. These granule-MT interactions could be reproduced in a cell-free system with neutrophil granules isolated by density gradient centrifugation and MTs polymerized from phosphocellulose-purified tubulin. Furthermore, reconstituted granule-MT interactions were found to be modulated by ATPase inhibitors. Sodium orthovanadate increased granule-MT interactions in a concentration-dependent manner, while AMP-PNP, a nonhydrolyzable ATP analogue, and N-ethylmaleimide decreased or eliminated these interactions. In addition, we found that a MT-activated ATPase could be recovered from intact neutrophil granules by salt extraction, and that extracts enriched in this ATPase contained a polypeptide of between 115 and 120 kD which binds ATP and is immunologically related to kinesin. These studies demonstrate that cytoplasmic granules interact with MTs in human neutrophils in a regulated stimulus-responsive manner, and they suggest that such interactions may involve an MT-based, ATPase-dependent, vesicle translocation system as has been demonstrated in other types of cells.

Adenosine Triphosphatases↗

Temperature-dependent inhibition of fmet-leu-phe-stimulated superoxide generation by C-I and H-7 in human neutrophils.

Contrary to previous reports by other investigators, protein kinase inhibitors C-I and H-7 (at 10(-6)M) caused a significant inhibition of fmet-leu-phe-stimulated superoxide (O2-) generation in human neutrophils. The observed inhibition of O2- production was a highly temperature-sensitive event and occurred only when C-I or H-7 was added to neutrophils at 37 degrees C. When the temperature at which C-I or H-7 added to neutrophils was varied between 16 degrees C to 37 degrees C, no significant inhibition of fmet-leu-phe-stimulated O2- production by C-I or H-7 was observed even at 35 degrees C. However, when added at 37 degrees C, both the maximal rate and the final extent of fmet-leu-phe induced O2- production were significantly inhibited (greater than 50%) by 10(-6)M C-I or H-7. A relatively weaker protein kinase C antagonist, HA1004, was not inhibitory under identical experimental conditions. In contrast, inhibition of the PMA-induced O2- generation by C-I or H-7 was not found to be similarly temperature-dependent. These results indicate that some temperature-dependent cellular event(s) is critically involved in the observed inhibition of fmet-leu-phe-induced O2- generation by C-I or H-7, and suggest a role for protein kinase C in the signal transduction process.

Humans↗

Regulation of class II MHC gene expression by macrophages from Bcgr and Bcgs mice.

The presence of class II mRNA was determined following stimulation of macrophages from Bcgr and Bcgs mice with rIFN-gamma. Despite the continuous expression of surface I-A glycoprotein by macrophages from Bcgr mice, class II mRNA was no longer present. The transient expression of I-A by macrophages from Bcgs mice, however, was accompanied by the disappearance of class II mRNA from the cells. Restimulation of macrophages from Bcgs mice, with rIFN-gamma resulted in the reappearance of class II mRNA and surface I-A expression. The reappearance of class II mRNA and the surface expression of I-A glycoprotein was inhibited by PGE2. These results indicate that differences in I-A expression by macrophages from Bcgr and Bcgs are not at the level of class II gene expression.

Animals↗

In vivo and in vivo/in vitro kinetics of cyclophosphamide-induced sister-chromatid exchanges in mouse bone marrow and spleen cells.

In several acute and chronic exposures to various chemicals in vivo and in vitro, the average sister-chromatid exchange (SCE) frequencies in human, mouse, rat, and rabbit lymphocytes generally decrease with time following treatment. The rate of this decline varies, but little data have been published pertaining to the comparative kinetics of SCEs both in vivo and in vivo/in vitro (exposure of animals to the test compound and culturing of cells) simultaneously in the same tissues. In this study, a single dose of cyclophosphamide (40 mg/kg) was injected for varying periods (6-48 h) and its effects, as assessed by the induction of SCEs, were analyzed under both in vivo and in vivo/in vitro conditions in mouse bone marrow and spleen cells. In vivo, the cyclophosphamide-induced SCEs increased with increasing time up to 12 h, stayed at approximately the same level until 24 h, and then decreased with increase in post-exposure time. However, the SCE levels remained significantly higher than controls at 48 h post-exposure time in both bone marrow and spleen cells. Under in vivo/in vitro conditions, the SCEs in bone marrow decreased with increase in post-exposure time until reaching control values by 48 h post exposure. However, in spleen cells, the decrease in SCE level was gradual, and by 48 h post-exposure time, the cells still had approximately 6 times higher SCEs than the control values. These results suggest that there are pharmacokinetic differences for cyclophosphamide in mouse bone marrow and spleen. Also, there is a differential SCE response to cyclophosphamide under in vivo and in vivo/in vitro conditions.

Animals↗

Sister-chromatid exchanges induced by triethylenemelamine: in vivo and in vivo/in vitro studies in mouse and Chinese hamster bone marrow and spleen cells.

This study was designed to obtain sister-chromatid exchange (SCE) frequencies in bone marrow and spleen cells of mice and Chinese hamsters under in vivo and in vivo/in vitro systems following treatment of animals with varying doses (15-405 micrograms/kg) of triethylenemelamine (TEM). A dose-related SCE response was found in both species, tissues, and systems analyzed following TEM treatment. In vivo, similar responses were noted for both tissues in both species. However, in vivo/in vitro, the response was lower than in vivo and it varied with the tissue. The spleen cells were more sensitive and gave higher numbers of SCEs than bone marrow of both species at the two highest doses tested (135 and 405 micrograms/kg). These differences may be attributed to cell-culturing effects, type of cells analyzed, species and tissue specificities, and pharmacokinetic properties of the chemical. This study lends support to recently established in vivo/in vitro cell culture methodologies employing mice and Chinese hamsters for comparative cytogenetic analysis.

Animals↗

ATP induces transient elevations of [Ca2+]i in human neutrophils and primes these cells for enhanced O2- generation.

ATP, when added to human polymorphonuclear neutrophils (PMNs) at concentrations similar to those attained extracellularly at sites of platelet thrombus formation (0.1 to 20 microM), causes an enhancement of N-formyl(methionyl)leucylphenylalanine (FMLP)-stimulated superoxide anion (O2-) generation. However, ATP by itself is an ineffective agonist for O2- generation by PMNs. The ATP-induced enhancement of O2- generation is associated with a shortened lag time in the response of PMNs to FMLP without a change in the median effective dose for FMLP, suggesting that signal transduction, rather than altered receptor affinity, is responsible for the enhanced oxidative response. Maximum enhancement of O2- generation is detected as early as 15 seconds and is maintained for at least 10 minutes. Of various nucleotides and nonhydrolyzable-ATP analogs test d, only ATP, UTP, and ITP were found to cause enhanced O2- generation by PMNs. Addition of ATP to quin2-loaded PMNs, in the absence of other stimuli, elicits a dramatic rise in [Ca2+]i which reaches a maximum of 500 to 800 nM at 30 seconds and slowly returns to baseline over 5 minutes. This ATP-induced rise in intracellular free Ca2+ concentration is correlated with the enhancement of FMLP-stimulated O2- generation both with respect to dose and nucleotide specificity. Stimulated Ca2+ uptake, rather than mobilization of intracellular Ca2+ stores, appears to be primarily responsible for the rise in intracellular free Ca2+ concentration. These studies indicate that an ATP-induced rise in intracellular free Ca2+ concentration, although insufficient by itself to elicit O2- generation by PMNs, is associated with a priming of PMNs for enhanced O2- generation when stimulated by other agonists.

Adenosine Triphosphate↗

Mitomycin C-induced sister chromatid exchanges in vivo and in vivo/in vitro in mice and Chinese hamsters.

Mouse and Chinese hamster models have been extensively used for assessing the cytogenetic effects of environmental carcinogens and mutagens. However, there is little information on comparative analysis of chromosomal damage in these species under in vivo and in vivo/in vitro (culturing of cells from animals exposed to the test compound) systems. To obtain such information, mice and Chinese hamsters were injected with varying concentrations (0.5-6.0 mg/kg) of mitomycin C, an antineoplastic drug. The bone marrow and spleen cells were analyzed for the number of sister chromatid exchanges (SCEs) under in vivo and in vivo/in vitro conditions. The results indicated a dose-related SCE response that varied with species, tissues, and assay conditions. The mouse cells appeared more sensitive to the effects of mitomycin C than did Chinese hamster cells. In general, the SCE frequencies were relatively higher under in vivo conditions than under in vivo/in vitro conditions in both species. The spleen cells had higher SCE values than bone marrow cells under in vivo/in vitro conditions in both species. These differences may be related to the pharmacokinetic properties of the drug in different species and tissues, to treatment conditions, or to the repair capabilities of the cells. This study also indicates the usefulness of recently established bone marrow and spleen in vivo/in vitro cell cultures for comparative cytogenetic analysis.

Animals↗

Cyclophosphamide-induced cytogenetic effects in mouse bone marrow and spleen cells in in vivo and in vivo/in vitro assays.

Sister chromatid exchange (SCE) and chromosomal aberration studies have been used to monitor human populations for genotoxic exposure to chemical substances. These monitoring techniques involve collection of blood and/or bone marrow from the exposed subjects and culturing cells for one or two cell cycles with various treatments in culture. The results obtained from such in vivo/in vitro studies may lead to an over- or underestimation of the damage that could occur in vivo. In the present study, which uses a mouse model, the in vivo/in vitro cytogenetic assays (SCEs and chromosomal aberrations) have been compared with similar in vivo systems in bone marrow and spleen cells treated with various doses of cyclophosphamide (CPA). The results indicate a significant difference in CPA-induced cytogenetic endpoints between in vivo and in vivo/in vitro conditions in both organs. However, linear relationships were found between CPA dose and cytogenetic end point analyzed under both conditions. Based on these results it appears that the in vivo/in vitro assay is a useful technique for indicating potential in vivo damage of chemicals.

Animals↗

Separation and function of neutrophil karyogranuloplasts and comparison with cytoplasts and intact cells.

Since neutrophil cytoplasts lacking nucleus and granules were first prepared by centrifuging neutrophils over a discontinuous Ficoll gradient containing cytochalasin B, several functional deficits have been reported in these cytoplasts. Although these functional deficits have been considered to originate from the absence of organelles, cell damage during preparation could not be excluded. Therefore, in the following experiments the Ficoll gradient was modified to isolate both cytoplasts and karyogranuloplasts, which have a nucleus and granules and represent the cell after loss of the cytoplast. Electron microscopy and analysis of marker proteins and cell volume showed that karyogranuloplasts were distinct from neutrophils. The phorbol myristate acetate (PMA) or N-formylmethionylleucylphenylalanine (FMLP)-induced O2- release, corrected by surface area, was in the following order: neutrophils greater than cytoplasts greater than karyogranuloplasts. Both aggregation and membrane potential depolarization were maximal in neutrophils, intermediate in karyogranuloplasts, and lowest in cytoplasts when either PMA or FMLP was used as a stimulant. Extracellular release of the granule contents (degranulation) was triggered by FMLP in both neutrophils and karyogranuloplasts. Cytochalasin B pretreatment greatly enhanced FMLP-induced O2- release, degranulation, aggregation, and depolarization of membrane potential in neutrophils and karyogranuloplasts, but not in cytoplasts. The ability of cytochalasin B to potentiate FMLP-triggered cell function probably depends on granules or cell organelles which are depleted in cytoplasts. Chemokinesis and chemotaxis were impaired in both karyogranuloplasts and cytoplasts. Specific FML[3H]P binding was greater in karyogranuloplasts than in cytoplasts. Cellular actin content, measured by the DNase I inhibition assay, was abundant in cytoplasts and was extremely low in karyogranuloplasts. Karyogranuloplasts retain various neutrophil functions, except for chemotaxis, and provide an important control when studying the role of cell organelles in cytoplast function.

Cell Aggregation↗

In vivo induction of sister chromatid exchanges in mice by nitrosated coal dust extract.

The genotoxicity of coal dust extract nitrosated with sodium nitrite (NaNO2) was investigated in mice with the in vivo sister chromatid exchange (SCE) assay system. The SCEs in bone marrow cells of mice were examined following single and double oral dosings of coal dust extract, NaNO2, and nitrosated coal dust extract. Coal dust extract and NaNO2 separately did not cause significant increases of SCEs either in single or in double dosings. Nitrosated coal dust extract in single doses did not increase SCEs but in two doses significant increases in SCEs were observed (P less than 0.02). The mutagenicity of the same extracts was tested in Salmonella typhimurium with the Ames tester strain TA98. Coal dust extract was either non- or weakly mutagenic and NaNO2 was nonmutagenic. The nitrosated coal dust extract caused pronouced increases in his+ revertants both with and without rat liver S9 activation. These findings provide additional evidence that nitrosation of ingested coal dust which may occur in the stomach environment could be one of the factors leading to the higher incidence of gastric cancer in coal miners.

Animals↗

A comparison of baseline and cyclophosphamide-induced sister chromatid exchanges in bone marrow and spleen cells of mouse and Chinese hamster.

Baseline sister chromatid exchange (SCE) frequencies were investigated in bone marrow and spleen cells of mice and Chinese hamsters. No significant difference in SCE frequency was noted for bone marrow in both species and for bone marrow and spleen in mice on per cell and per pg DNA basis. However, a significant difference was noted between species in spleen and between cell types in Chinese hamsters. Also, statistically significant differences were noted between species for both cell types when the same data were expressed on per chromosome basis. SCE levels in cultured bone marrow and spleen cells after intraperitoneal administration of the antineoplastic drug cyclophosphamide (10 and 20 mg/kg) differed significantly in mice and Chinese hamsters on per cell, per pg DNA content, and per chromosome basis. The spleen cells were much more sensitive to the effects of cyclophosphamide than bone marrow cells in both species. The replicative indices did not differ significantly between treated and control animals in either bone marrow or spleen cells of both species. Since SCE frequency is a sensitive measure of DNA damage, and bone marrow and lymphocytes are the most widely used cell types in human and animal in vivo assays, the methodologies and results reported here may be useful for comparative mammalian cytogenetic studies.

Animals↗

Comparative in vivo and in vitro sister chromatid exchange studies in Chinese hamster bone marrow and spleen cells.

The sister chromatid exchange (SCE) assay in bone marrow and spleen cells of Chinese hamsters was used to evaluate the differences between in vivo and in vivo/in vitro (exposure of animals to chemical followed by culturing of cells) conditions. Cyclophosphamide, a mutagenic carcinogen, caused dose-related SCEs both in vivo and in vivo/in vitro. In the in vivo group, both bone marrow and spleen cells showed approximately a five-fold increase in SCEs over controls following 40 mg cyclophosphamide/kg treatment. The same dose, under in vivo/in vitro conditions, caused about three- and six-fold increases in SCEs over controls in bone marrow and spleen cells, respectively. While the extent of cyclophosphamide-induced SCEs (after subtraction of baseline level) in bone marrow is approximately the same under both conditions, the response was significantly higher in spleen cells in vivo/in vitro than in vivo. Under in vitro conditions, treatment of bone marrow and spleen primary cell cultures with a direct acting mutagen, trinitrofluorenone, caused significant dose-related increases in SCEs in both cell types in an equivalent manner. The replicative indices under these experimental conditions remained almost the same. Thus, this study indicates the potential usefulness of Chinese hamster bone marrow and spleen cells for in vivo and in vitro comparative studies with the same tissue to better assess the genotoxic hazard of chemicals.

Animals↗

Elucidation of the B-genome donor to Triticum turgidum by unique- and repeated-sequence DNA hybridizations.

In vitro DNA:DNA hybridizations and hydroxyapatite thermal-elution chromatography were employed to identify the diploid Triticum species ancestral to the B genome of T. turgidum. Unique and repeated sequences from the various Triticum species were separated by hybridization and thermal elution on hydroxyapatite. Unique- and repeated-sequence fractions of labeled T. turgidum var. durum DNA were hybridized to the corresponding fractions of unlabeled DNAs of T. searsii, T. speltoides, T. longissimum, T. sharonensis, and T. bicorne. Thermal stability profiles were constructed to evaluate base-sequence complementarity between T. turgidum var. durum and the diploid Triticum species. The heteroduplex thermal stabilities indicated that, of the five species examined, T. searsii was the most closely related to the B genome of T. turgidum var. durum. The thermal stability profiles further indicated that the repeated DNA fractions from the Triticum species are more similar than the unique-sequence fractions. This indicates that all of the Triticum species are very closely related and, in all probability, have diverged from a single progenitor species.

DNA↗

Murine bone marrow culture system for cytogenetic analysis.

A mouse bone marrow culture system for examining genotoxicity of agents by first exposing animals in vivo then growing cells in vitro is presented. This assay can also be used for in vitro and/or for the in vivo and in vitro comparative cytogenetic studies. The protocol involves culturing of approximately 1,000,000 nucleated cells obtained from mice tibia and femora in 5 ml of Ham's F-12 medium containing 20% fetal bovine serum, 10% whole uterus extract from pregnant mice and 1% penicillin-streptomycin. The use of flasks and mouse uterus extract for culturing are important steps for higher mitotic yield. The addition of 20 microM BrdU for 24 h helps in the differentiation of sister chromatids for sister-chromatid exchange (SCE) analysis. Cyclophosphamide, given to mice through intraperitoneal injection, induced significant dose-related SCEs in culture. Trinitrofluorenone, a direct-acting mutagen, caused dose-related SCEs in in vitro bone marrow cell culture.

Animals↗

Comparative mutagenicity studies of azo dyes and their reduction products in Salmonella typhimurium.

The arabinose-resistant and Ames assay systems of Salmonella typhimurium were used to evaluate the mutagenic potential of azo dyes and their aromatic amine reduction products. Azo dyes, namely direct black 38, direct blue 15, and direct red 2, were mutagenic in the arabinose-resistant and Ames assays with both hamster and rat liver S9 activation. Both assays gave relatively higher mutagenic responses with hamster S9. Reduction products of these dyes, namely benzidine, o-dianisidine, and o-tolidine, were mutagenic in the Ames assay. Benzidine was weakly mutagenic and o-dianisidine and o-tolidine were nonmutagenic in the arabinose-resistant assay. These results indicate that both arabinose-resistant tester SV50 and Ames tester TA98 were sensitive in detecting mutagenicity of azo dyes. The use of the standard plate protocol with Ames tester TA98 is more efficient than the modified azo dye protocol in detecting mutagenicity of aromatic amine reduction products. Additional modifications in either the standard plate or modified azo dye protocols may improve detection of mutagenicity of these compounds in the arabinose-resistant assay system.

Animals↗