[Mathematical models of health impairment system at the place of work and its application to controlled work environment in industry].
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5-Aminolevulinate synthase, a pyridoxal 5'-phosphate-dependent enzyme of the alpha-oxoamine synthase family, catalyzes the first step of the heme biosynthetic pathway in mammalian cells. This reaction entails the condensation of glycine with succinyl-coenzyme A to yield 5-aminolevulinate, carbon dioxide and CoA. Mutations in the erythroid aminolevulinate synthase gene lead to a defective enzyme and are associated with the erythropoietic disorder X-linked sideroblastic anemia. In the past few years, rapid scanning-stopped-flow spectroscopy and chemical quenched-flow studies of the ALAS reaction, under single- and multi-turnover conditions, have provided important results for the interpretation of the catalytic mechanism. In particular, the role of the protein scaffold in modulating the chemical reactivity of the pyridoxal 5'-phosphate cofactor and, thus, the catalytic pathway of ALAS has been investigated in our laboratory using transient kinetics and global analysis of the kinetic data.
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An apparatus designed to study the growth rates of surface colonies in constant conditions, i.e. not affected by nutrient diffusion as in a closed Petri dish, is described. In contrast to classical experiments in closed systems, an exponential growth of colony radius is obtained for a period of more than 72 h. Nutrient concentration gradients are shown to be eliminated by analytical techniques.
The effect of feed alcohol in an apparatus designed to study growth rates of surface colonies in constant nutrient conditions was studied. The results obtained indicate that departure from exponential growth in normal conditions is due to accumulation of alcohol in the system.
The growth rates of yeast surface colonies under constant nutrient conditions were studied as a function of nutrient concentration. This was complementary to the initial experiment to measure the rates under such conditions, and to the investigation of the effects of alcohol. The possibility of fitting an equation of the Michaelis-Menten type to the variation of growth rate with carbon source concentration is considered.
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Microbic flora has been studied in the Centro di Rianimazione of the Ospedali Riuniti in Chieti to control validity of the antibacterial systems and to verify efficacy of the filter systems that allow the admission into the isolation boxes, stopping great bacterial exogenous increases. These inspection have been executed by suction system Batteriological Air Pollution Detector.
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Controlled environments (CE) in which light, carbon dioxide, and nutrients are regulated are known to affect the chemical composition of plants. Controlled Ecological Life Support System (CELSS) environments are required for a Mars or lunar base where food resupply is both impractical and risky. Astronauts in a CELSS would need to grow and process edible biomass into foods. The complete nature of the changes in chemical composition of CE-grown plants is unknown but must be determined to ensure a safe and nutritionally adequate diet. In this article, we report the changes that occur in free and peptide-bound amino acids (AA) of select CELSS crops (rice, wheat, and soybean) grown in the field or in CE. The nonnitrate nonprotein nitrogen fraction was extracted and then analyzed for free and peptide AA. For grain or seeds, AA levels tended to increase from field to CE conditions; however, for vegetative material, AA levels remained the same or decreased from field to CE conditions. As such compositional changes are identified, researchers will be better able to design safe and nutritious diets for astronauts while minimizing needed energy and other resources.
The gram-negative soil bacteria Rhizobium spp. infect and establish a nitrogen-fixing symbiosis with legume crops which involves the mutual exchange of diffusable signal molecules. In this study, Rhizobium leguminosarum containing a nod-lacZ gene fusion was used to screen the most effective plant-to-bacteria signal molecules for pea and lentil and the induction conditions. Out of a number of signal compounds including apigenin, daidzein, genistein, hesperetin, kaempferol, luteolin, naringenin, and rutin, hesperetin and naringenin were found to be the most effective plant-to-bacteria signal molecules. The induction of nod genes was temperature-dependent, where nod gene induction was decreased with dropping incubation temperature. The combination of hesperetin at 7 microM and naringenin at 3 microM resulted in better induction of nod gene activities compared to either hesperetin or naringenin alone. Nodulation and plant dry matter accumulation of pea and lentil plants receiving preinduced R. leguminosarum were higher than those of plants receiving uninduced R. leguminosarum cells in controlled environment growth chamber conditions. Preinduced Rhizobium with hesperetin at a concentration of 10 microM increased nodule number on average by 60.5% and dry matter accumulation by 14% in field pea at 17 degrees C, while it was 32% and 9% at 24 degrees C, respectively. Similarly, averaged over two rhizobial strains, a 59% and 6% increase in nodule number and biomass production at 17 degrees C, and a 39% and 27% at 24 degrees C, were obtained from lentil inoculated with hesperetin-induced R. leguminosarum, respectively.
BACKGROUND: Prenatal ethanol exposure results in a spectrum of cognitive and behavioral deficits and affects an estimated thirteen percent of children born in the United States. The basis of prenatal ethanol-induced impairment of brain function has been widely studied in animal models, where significant changes in the physiological and structural plasticity of hippocampal function have been documented. Here, we explored the possibility that exposure to moderate levels of alcohol in utero might also result in long-lasting impairment of adult hippocampal neurogenesis, a novel form of plasticity that occurs throughout adulthood. METHODS: Female mice were trained to voluntarily consume 10% EtOH throughout pregnancy using the two-bottle choice paradigm, which results in moderate blood alcohol levels of approximately 121 mg/dl, as previously described (Allan et al., 2003). Offspring were exposed to standard or enriched living conditions for 8-12 weeks post-weaning. BrdU was administered at 50 mg/kg for 12 consecutive days. Mice in each housing condition were sacrificed at either 24 hrs or four weeks following the final BrdU injection, and BrdU cells within the dentate gyrus were evaluated using immuno-histochemical methods. RESULTS: Neither fetal alcohol exposure (FAE) nor enriched environment affected the number of proliferating progenitors within the subgranular zone (SGZ) of the dentate gyrus. However, FAE severely impaired the neurogenic response to enriched environment. Control mice housed in enriched environment displayed a two-fold increase in hippocampal neurogenesis, whereas FAE mice responded to enriched environment with neither enhanced progenitor survival nor enhanced neuronal differentiation. CONCLUSIONS: These observations indicate that moderate FAE results in a long-term, persistent defect in neurogenic responses to behavioral challenge.
Laser use in reconstructive dental procedures (fixed, removable, or implant) provides a more controlled environment at the operative site. Control is a prerequisite for successful prosthetics and is accomplished by the unique ability of the laser to interact photo/thermally with biologic tissues using the lightest touch or none at all. Hemostasis is the result of this interaction by coagulating and sealing small blood and lymph vessels and vaporizing soft tissue. This hemostasis allows for more exact soft tissue contours to replicate or improve the periodontium before reconstruction, whether fixed or removable. The biologic seal is a unique phenomenon that occurs in the jaws of periimplant tissues of patients as a result of implant treatment. The biologic seal is paramount to the longevity and service of the implant. Use of dental laser technology provides the advanced laser and reconstructive dentist with the tool to improve the seal and improve the prognosis of the implant. The seal must be maintained by good oral hygiene and prophylactic procedures, however.
A preliminary study to examine the hypothesis that the ability of well-controlled (defined as no hypoglycemic episodes within the last 12 mo., HbAlc < 9.0%, and none of the long-term complications of diabetes type I) diabetic scuba divers to control their serum glucose and dive without becoming hypoglycemic during a simulated dive to 27 meters of seawater in controlled environment is impaired. An open, controlled, crossover study compared blood glucose levels, hematocrits, and hematologic cell counts in a group of eight type I diabetic scuba divers to those from eight age- and sex-matched, normoglycemic control scuba divers. Each diver did one simulated dive and one control exercise on the surface on 2 consecutive days. The simulated dive was done to depth of 375 kPa in a hyperbaric chamber, the control exercise was done at ambient pressure. The order of the dive and the control exercise was randomized. No statistically significant differences were observed between serum glucose levels in the diabetic divers measured during the simulated dive to 375 kPa vs. the serum glucose levels in the diabetic divers measured during the control exercise at the same time points. All divers with type I diabetes remained free of symptoms and signs of hypoglycemia throughout the course of the trial, and no diabetic subject had a serum glucose less than 4 mmol/liter before the end of the trial. As the sample size was small, larger studies including subject with type II diabetes will be necessary to extend these results to the diabetic diving population at large. The authors conclude that, contrary to advice issued by most diving agencies to scuba divers, it may be safe to allow well-controlled subjects with type I diabetes with no long-term complications to undertake scuba diving, and that high partial pressures of oxygen do not seem to lower serum glucose levels significantly in the diabetic diver during the dive.
To assess the potential risks to personnel preparing feed for carcinogen bioassay research, a tracer was mixed with a meal diet to yield 10 kg batches of 100, 3,000 and 5,890 ppm. Wipe samples were obtained from horizontal and vertical surfaces, equipment and personnel before operations began, after they were completed, and following clean-up. Total and respirable suspended particulate matter samples were obtained. All operations led to contamination of clothing and equipment; cleaning did not remove all contamination. These results, obtained in a well controlled environment in which trained and well protected personnel were working, suggest that a higher level of process control may be required for adequate protection of personnel performing material handling operations with known or suspected carcinogens.