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Biomedical subjects

A M George

Publications and source records attributed to A M George.

At least 19 recordsLinked to original sources

Analysis of Mnk, the murine homologue of the locus for Menkes disease, in normal and mottled (Mo) mice.

Menkes disease (MNK) lies immediately proximal to pphosphoglycerate kinase (PGK1) in Xq13 in human. Phenotypic similarities between MNK patients and murine mottled (Mo) mutants strongly suggest that both defects are caused by mutations at the same locus. Human MNK cDNA clones and a genomic subclone derived from a 40-kb YAC clone that includes Pgk1 have been used to position the murine homologue of Menkes disease (MNK, Mnk) immediately proximal to, and within 150-200 kb of, phosphoglycerate kinase (Pgk1) on the mouse X chromosome using interspecific backcross analysis and pulsed-field gel electrophoresis. A related autosomal locus has been mapped to mouse chromosome 18. RFLVs at Mnk between inbred strains of mice that show a strong association with the presence of the Mo phenotype have been detected. Hybridization of 4.1 kb of the 4.5-kb MNK coding sequence failed to reveal any deletions or alterations to restriction fragments containing exons of the Mnk locus in 9 Mo mutants. Furthermore, no genomic deletions or alterations > 20 kb were detected in 10 independently derived Mo mutants using pulsed-field gel electrophoresis. As no deletions or alterations at the Mnk gene were found, we suggest that any mutations in Mnk that cause the Mo phenotype are likely to be due to small changes at the nucleotide level and/or small deletions (< 20 kb) that lie outside the coding sequence.

Animals

The IL-1 alpha and beta genes are closely linked (less than 70 kb) on mouse chromosome 2.

The murine IL-1 alpha and IL-1 beta genes encode structurally and evolutionarily related cytokines that exert a regulatory role in numerous physiological processes including hemopoiesis. Previous studies have shown these genes to be closely linked in the F region of mouse chromosome 2. Here we show, using pulsed-field gel electrophoresis, that the IL-1 alpha and beta genes of the CBA/H mouse are very closely linked and contained within a SmaI genomic fragment of approximately 70 kb. From conventional and PFGE analyses we suggest that IL-1 beta lies 5' to IL-1 alpha and that the two genes are in the same orientation and separated by approximately 50 kb. The apparent clustering of such hemopoietic genes is discussed in relation to evolutionary tandem gene duplication and possible associations with chromosomal fragile sites and leukemogenesis.

Animals

The epidemiology of AIDS.

By 31 July 1989 172,143 cases of AIDS have been notified to the WHO from 150 countries worldwide. This review on epidemiology of AIDS shows that there are 3 distinct patterns of distribution of the disease. According to the different epidemiology in the different regions different initiatives should be taken by the health authorities. Extrapolating the available data to the future the urgent necessity for this initiative is stressed.

Acquired Immunodeficiency Syndrome

Validated HPLC procedures for the analysis of MBY-28090 in human plasma and urine.

The compound BMY-28090 (elsamicin A) is a new fermentation product with antitumor properties, which has the same aglycone as chartreusin but contains two novel sugars. To define the disposition of BMY-28090 during phase I trials, HPLC procedures were developed and validated for the quantitation of the drug in human plasma and urine. To 1.0 ml plasma were added 0.5 ml 0.2 M phosphate buffer (pH 8.0), 125 ng 1-naphthol (internal standard) in 25 microliters MeOH and 5 ml ethyl acetate. After mixing and centrifugation, 4 ml ethyl acetate layer was removed, evaporated to dryness, and the residue was dissolved in 250 microliters mobile phase and injected (200 microliters). To 1.0 ml urine were added 100 microliters MeOH and 1.0 ml 0.5 M succinate buffer (pH 4.0). After mixing (30 s) and sonication (1 min), the solution was filtered in an Amicon Centrifree micropartition unit and injected (30 microliters). An IBM C-8 column 5-microns and fluorescence detection (excitation at 254 mm, 418 nm emission filter) were used for both analyses. The mobile phases for plasma (2 ml/min) and urine (1.3 ml/min) were H2O/CH3CN (7:3 v/v) and H2O/CH3CN/MeOH (6:3:1 (v/v), respectively, with 1.5 ml 85% H3PO4 and 1.5 ml triethylamine/l. BMY-28090 eluted at 8-10 min and 1-naphthol, at 10-11 min. The standard curves were linear from 1 to 50 ng/ml plasma and from 10 to 1000 ng/ml urine. The within- and between-day precision was less than 3% for plasma and less than 5% for urine. Accuracies were within 6% of the nominal value and recoveries were 75% and 90% for plasma and urine, respectively.(ABSTRACT TRUNCATED AT 250 WORDS)

Aminoglycosides

The disposition of carboplatin in the beagle dog.

Carboplatin was administered i.v. to four groups of three male beagle dogs at doses of 3, 6, 12, and 24 mg/kg (60-580 mg/m2). Plasma samples were obtained at appropriate times and protein-free plasma ultrafiltrates (PU) were generated with Amicon Centrifree micropartition systems. Urine was collected at 24-h intervals for 96 h. PU and urine samples were analyzed for carboplatin by HPLC and for total platinum by atomic absorption spectrophotometry. Carboplatin accounted for about 90% of the free platinum in plasma. The Cmax and AUCinf values for carboplatin and for free platinum increased linearly with dose. The terminal elimination half-life and mean residence times for carboplatin and free platinum were each about 1 h. Total-body clearances for carboplatin (5.6 l/h per m2) and free platinum (5.1 l/h per m2) were constant over the dose range studied, as were the respective volumes of distribution (5.7 and 5.0 l/m2). A mean of 46% of the dose was excreted as carboplatin in 24-h urine; and by 72 h, 70% of the platinum administered was excreted in the urine. Free platinum was cleared by both renal and non-renal processes. These results show that a dose of carboplatin is rapidly excreted in the urine and that carboplatin and plasma-free platinum exhibit linear pharmacokinetics in the beagle dog.

Animals

The disposition of carboplatin in ovarian cancer patients.

Carboplatin was given as a 30-min infusion to 11 ovarian cancer patients at doses of 170-500 mg/m2. The ages, weights, and creatinine clearances (Clcr) ranged from 44 to 75 years, from 44 to 74 kg, and from 32 to 101 ml/min, respectively. Plasma, plasma ultrafiltrate (PU), and urine samples were obtained at appropriate times for 96 h and were analyzed for platinum. The PU and urine were also analyzed for the parent compound by HPLC. In patients with a Clcr of about 60 ml/min or greater, carboplatin decayed biexponentially with a mean t1/2 alpha of 1.6 h and a t1/2 beta of 3.0 h. The mean (+/- SD) residence time, total body clearance, and apparent volume of distribution were 3.5 +/- 0.4 h, 4.4 +/- 0.85 l/h, and 16 +/- 3 l, respectively. Cmax and AUCinf values increased linearly with dose, and the latter values correlated better with the dose in mg than in mg/m2. No significant quantities of free, ultrafilterable, platinum-containing species other than the parent compound were found in plasma, but platinum from carboplatin became protein-bound and was slowly eliminated with a minimal t1/2 of 5 days. The major route of elimination was excretion via the kidneys. Patients with a Clcr of 60 ml/min or greater excreted 70% of the dose as the parent compound in the urine, with most of this occurring within 12-16 h. All of the platinum in 24-h urine was carboplatin, and only 2%-3% of the dosed platinum was excreted from 48 to 96 h. Patients with a Clcr of less than about 60 ml/min exhibited dose-disproportional increases in AUCinf and MRT values. The latter were inversely related to Clcr (r = -0.98). Over a dose range of 300-500 mg/m2, carboplatin exhibited linear, dose-independent pharmacokinetics in patients with a Clcr of about 60 ml/min or greater, but dose reductions are necessary for patients with mild renal failure.

Adult

In vitro stability, plasma protein binding and blood cell partitioning of 14C-carboplatin.

Radiochemically pure 14C-labeled carboplatin, cis-diammine [1,1-cyclobutane (1-14C) dicarboxylato (2-)-0,0'] platinum (II), was added to fresh human, dog and rat plasma, at concentrations ranging from 1 to 100 micrograms 14C-carboplatin/ml. After 10 min incubation at ambient temperature, the plasma was ultrafiltered in Amicon Centrifree micropartition units to generate protein-free plasma ultrafiltrate (PU). Total radioactivity was determined by liquid scintillation counting. A mean (+/- SD) of 102% +/- 2.0%, 99.5% +/- 1.9%, and 99.0% +/- 1.0% of the 14C-carboplatin added to fresh human, dog, and rat plasma respectively was recovered in the PU. 14C-carboplatin was incubated at 37 degrees C with fresh plasma (60 micrograms/ml) and urine (200 micrograms/ml) from humans and dogs for 120 h, and samples were removed at appropriate times for analysis of carboplatin, 1,1-cyclobutane dicarboxylic acid and cyclobutane carboxylic acid. The latter were separated by HPLC on a C-18 column with a mobile phase of H2O/CH3CN/0.3 M tetrabutylammonium phosphate (880:50:20 v/v/v), and the column eluants at the retention time of each compound were collected and counted for total radioactivity. Carboplatin degraded in each of the matrices with a corresponding release of 1,1-cyclobutane dicarboxylic acid. 14C-carboplatin (50 micrograms/ml) was incubated at 37 degrees C with fresh human, dog and rat blood and the distribution of radioactivity into the cellular fraction was determined. Radioactivity did not distribute into the blood cells of humans or dogs, but after 5 h, 44% of the radioactivity in rat blood was associated with the cellular fraction. These results show that carboplatin, at physiological concentrations, does not bind instantaneously and reversibly to the plasma proteins of rat, dog or human, and that the molecule slowly degrades in plasma and urine in vitro with the release of 1,1-cyclobutane dicarboxylic acid. The remaining diammine platinum (II) portion of the molecule therefore accounts for the essentially irreversible protein binding of the platinum from carboplatin.

Animals

DNA quaternary structure in the radiation sensitivity of human lymphocytes--a proposed role of copper.

On challenging with 2M NaCl, the nuclei of human lymphocytes yield an aggregate of DNA-protein material. The density of the material is less when isolated from irradiated cells than when isolated from unirradiated cells. The density of this material, designated histone-free-DNA (HF-DNA), from irradiated cells returns to that from unirradiated cells if the irradiated cells are allowed time at 37 degrees C in nutrient conditions. Lymphocyte HF-DNA from patients who have exhibited hypersensitivity to radiotherapy exhibit slower repair characteristics than lymphocyte HF-DNA from the average normal subjects. Neutrons are more effective than X-rays in producing density changes. Misonidazole and the ADPRT inhibitor 3-AAB substantially inhibit return to unirradiated densities. The oer for the initial effect is between 2 and 3. These properties of this DNA material from human lymphocytes suggest that alterations in the configuration of such material by the loss and re-establishment of relatively weak cellular bonds are closely related to the well-known changes observed in classical cell survival experiments. Where the proliferation of human lymphocytes has been observed by concanavalin A stimulation, oer, RBE and chemical modification has been of the same order as the measured density changes. Additionally, we have found that the density of HF-DNA is heavily dependent upon Cu content. This has led us to propose that cell killing or malfunction at the nuclear level caused by ionizing radiation is caused by the conversion CuII----CuI and also by specific .OH attack on DNA or proteins at a Cu site.(ABSTRACT TRUNCATED AT 250 WORDS)

Cell Survival

The effects of benzamide ADP-ribosyl transferase inhibitors on cell survival and DNA strand-break repair in irradiated mammalian cells.

We have recently shown that 3-acetamidobenzamide (3-AAB), a highly effective inhibitor of ADP-ribosyl transferase (ADPRT), can act as a post-irradiation (electrons) sensitizer on the mouse lymphoma cell lines L5178Y R and S. We have now shown that this compound sensitizes human derived skin fibroblasts but to a lesser extent. Fibroblasts derived from normal, Friedreich's ataxia, and ataxia-telangiectasia individuals were equally sensitized by 3-AAB to electron radiation. 3-AAB was also effective in sensitizing the mouse lymphoma lines to fast neutron irradiation. In addition DNA strand break repair was retarded as had been found after electron irradiation. 3-Nitrobenzamide is structurally a potentially dual action radiation sensitizer with electron affinic and ADPRT inhibitory properties. It is a weaker inhibitor of ADPRT compared to 3-AAB, and results in a smaller sensitization of mouse lymphoma cells in air. However, a much greater sensitization is achieved in anoxia. This greater sensitization appears to be a synergistic rather than an additive combination of its electron affinic and ADPRT inhibitory properties.

Animals

Radiosensitivity of peripheral blood lymphocytes in autoimmune disease.

The proliferation of peripheral blood lymphocytes, cultured with Con A, can be inhibited by ionizing radiation. Lymphocytes from patients with conditions associated with autoimmunity, such as rheumatoid arthritis, systemic lupus erythematosus and polymyositis, are more radiosensitive than those from healthy volunteers or patients with conditions not associated with autoimmunity. The nuclear material isolated from the lymphocytes of patients with autoimmune diseases is, on average, lighter in density than the nuclear material from most healthy controls. This difference in density is not related to increased sensitivity to ionizing radiation but the degree of post-irradiation change in density (lightening) is proportional to the initial density, i.e. more dense nuclear material always shows a greater upward shift after radiation. The recovery of preirradiation density of nuclear material, 1 h after radiation exposure, taken as an indication of DNA repair, correlates with the radiosensitivity of lymphocyte proliferation (Con A response); failure to return to pre-irradiation density being associated with increased sensitivity of proliferative response. These results require extension but, taken with previously reported studies of the effects of DNA methylating agents, support the idea that DNA damage and its defective repair could be important in the aetio-pathogenesis of autoimmune disease.

Adult

Kinin effects on electrogenic ion transport in primary cultures of pig renal papillary collecting tubule cells.

Confluent monolayers of pig renal papillary collecting tubule (RPCT) cells were formed on Millipore filters coated with collagen. They were clamped in Ussing-type chambers and used to measure short-circuit current (SCC). The monolayers had low potentials (0.1 mV) with the basolateral side positive. Small inward currents flowed under short-circuit conditions. Increases in SCC were obtained following addition of a number of agents. Receptors associated with SCC changes were disposed as follows: for kinins (e.g., lysyl-bradykinin) they were present on both sides of the tissue, while those for arginine vasopressin and norepinephrine were present on the basolateral side only. Epithelia responded to PGE2 added to the apical or basolateral face of the tissue; application to one side prevented the response from the contralateral side. The tissues also responded to forskolin, an activator of adenylate cyclase, with a sustained inward current that was sensitive to furosemide. Similar sustained inward currents were recorded following exposure to 8-bromoadenosine-3',5'-cyclic monophosphate (BrcAMP). Responses to kinins were attenuated by inhibition of fatty acid cyclooxygenase with either indomethacin or piroxicam or by replacing chloride with impermeant ions. If the SCC was first increased with forskolin, BrcAMP, or norepinephrine, the kinin effects on SCC were either abolished or reversed. It is concluded that kinin can cause chloride secretion in RPCT monolayers, possibly via a prostaglandin or a prostaglandin-adenylate cyclase mechanism. Secondary effects of kinin, exposed by first raising tissue cAMP levels, are not precluded.

8-Bromo Cyclic Adenosine Monophosphate

Chromosome mosaicism in a zebra (Equus burchelli) abortus provides evidence for a different in-vivo/in-vitro survival of balanced and unbalanced karyotypes.

A fibroblast culture from the skin of a zebra abortus recovered from a pedigree known, in part, to be segregating for a chromosome centric fission was karyotypically mosaic. Some cells were balanced for the fission and the others unbalanced, being deficient for the shorter fission product. Initially, the latter were in the majority but after continued culture (101 days) they were outgrown by the former. This finding either suggests a differential in-vivo/in-vitro fitness of the two cell types or a change in proportions resulting from some other mechanism.

Abortion, Veterinary

Post-irradiation sensitization with the ADP-ribosyltransferase inhibitor 3-acetamidobenzamide.

In recent years several lines of evidence have indicated that nuclear ADP-ribosyltransferase (ADPRT) activity is involved in DNA repair, although the requirement of ADPRT activity for cell survival has only been demonstrated in certain cases. We have investigated further the possible role of ADP-ribosylation in the response of cells to ionizing radiation, using 3-acetamidobenzamide (3-AAB), a highly effective inhibitor of ADPRT. With this compound we have demonstrated that marked enhancement of cell killing is observed if ADP-ribosylation is inhibited to a sufficient extent during the post-irradiation repair period, using concentrations of 3-AAB which are not toxic towards unirradiated cells. The critical period within which the inhibitor was effective was the first 90 min post-irradiation, and the half life of the recoverable radiation damage involved was estimated as approximately 20 min. Treatment with 3-AAB slowed the rate at which DNA strand breaks were repaired but did not prevent the ultimate repair of breaks, within the limits of resolution of the alkaline unwinding method used to determine DNA strand breakage. Although the majority of breaks were ultimately repaired, the frequency of radiation-induced sister chromatid exchanges and chromosome aberrations was increased, indicating that more genomic rearrangement had taken place, possibly as a consequence of the persistence of breaks when ADPRT activity was inhibited by 3-AAB during the post-irradiation repair period. It is suggested that the increased frequency of transposition and recombination which these observations reflect is likely to be associated with an increased risk of lethal mutations, some possibly involving chromosomal aberrations.

Adenosine Diphosphate Ribose

Subcellular lesions: the current position.

There continues to be an oversimplification of the approach to correlate cellular lesions with radiation induced cell death. Both in the prokaryotic and eukaryotic cell the relationship between vital macromolecules such as DNA, RNA, membrane and proteins is not yet fully understood either in a structural or functional sense. These macromolecules are often closely associated and interdependent. In spite of these recognised relationships much work is still devoted to measuring relatively early changes induced only in the DNA molecule. However, at the present time the quaternary structure of DNA and its closely neighbouring macromolecules is becoming better defined, and disturbances in these vital interrelationships may prove to be the most important radiation lesions. In the attempts to relate identifiable radiation damage to cell malfunction several criteria must be applied. For instance, the measured lesions must exhibit sensitization, protection and shoulder changes in response to the variety of agents and conditions which produce these phenomena at cellular level. In addition the radiation doses employed to produce measurable change must be within the same dose range as those used to study cellular and tissue effects. In much of the published work these criteria have not been applied.

Animals

Effect of membrane fatty acid changes on the radiation sensitivity of human lymphoid cells.

To test the influence of changes in membrane fatty acid composition on the radiation response of mammalian cells, human LDV cells were cultured in medium containing delipidated serum supplemented with either oleic or linoleic acid. Analysis of lipid extracts of the cells by gas liquid chromatography showed that, after 3 or more days growth in oleic or linoleic acid supplemented media, there were substantial overall increases in the proportion of oleate and linoleate, respectively, in the cellular lipid. Smaller absolute changes were measured in nuclear phospholipid, which was found to be low in unsaturated phospholipid compared to the rest of the cell. Fluorescence polarization measurements using diphenylhexatriene indicated an increased membrane fluidity in cells grown in the presence of excess linoleic acid and to a lesser extent for oleic acid. The clonogenic capacity of the cells after irradiation in air or nitrogen was not altered by any of these membrane compositional changes. The lack of effect on radiation sensitivity, in contrast to that reported for bacteria (E. coli K1060), is consistent with the fact that little or no change was brought about in the nuclear membrane composition, since evidence from partial cell irradiation experiments indicates that the cell nucleus is the sensitive target for cell killing by ionizing radiation. The ability of the cell to maintain a low level of unsaturated phospholipids in its nuclear membrane may be an important general defence mechanism against free radical damage to chromatin mediated by lipid peroxidation.

Cell Division

Post-irradiation inhibition of scheduled DNA synthesis and stimulation of ADP-ribosylation in sensitive and resistant L5178Y murine lymphoma cells.

Post-irradiation changes in DNA synthesis and ADP-ribosyltransferase (ADPRT) activity in L5178YS and L5178YR, radiation sensitive and resistant murine lymphoma cells are described. DNA synthesis was inhibited to a greater extent in L5178YS than in L5178YR cells. The stimulation of ADPRT activity by irradiation was not significantly different between these two cell lines. These observations contribute to other evidence which has failed to confirm a general association of ADP-ribosylation with the DNA synthesis inhibition response. The contrast between the response of L5178Y cells and the corresponding behaviour of ataxia telangiectasia cells and normal human cells indicate that entirely different mechanisms are involved in determining the differences in radiosensitivity in these two systems.

Animals