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851.
Laurie Schubert 《Archives of biochemistry and biophysics》2010,500(2):157-161
A deficiency of vitamin D results in muscle weakness as well as rickets in children and osteomalacia in the adult. To study the basis for this weakness, severe vitamin D deficiency was produced in rats as revealed by a low level or absence of 25-hydroxyvitamin D3 in the serum. Vitamin D deficiency was achieved by feeding purified diets to weanlings for 16 weeks. Muscle force, peak contraction (P), time-to-half contraction (T1/2), time-to-peak contraction (TP), and time-to-half recovery (T1/2r) were measured. A significant reduction in muscle force was found when vitamin D deficiency was accompanied by hypophosphatemia. Within 2 days of correcting the hypophosphatemia, muscle strength was normalized. When serum calcium and serum phosphorus were maintained in the normal range in vitamin D-deficient rats, muscle weakness did not develop. Further, hypocalcemia together with vitamin D deficiency did not produce muscle weakness. These results strongly suggest that muscle weakness noted in rachitic patients is the result of the hypophosphatemia of vitamin D deficiency. 相似文献
852.
853.
Summary The effects of continuous copper deficiency and of temporary deficiencies initiated prior to (initial deficiency) or after (terminal deficiency) the end of tillering (a stage preceding the meiotic cycle) on pollen formation were investigated in durum wheat grown on a nutrient solution. The effects of the treatments on pollen viability (FCR test) and on the proline content of the pollen grains suggested that copper deficiency induced a nearly complete sterility of the pollen formed and inhibited all grain production. Temporary copper deficiencies significantly reduced the viability rate and the number of proline-rich pollen grains without affecting pollengrain production. Cytophotometric measurements showed that initial copper deficiency induced a significant increase in the proportion of polyploid microspore mother cells (MMCs), whereas terminal copper deficiency blocked endomitotic DNA syntheses. Protein metabolism was markedly altered by the treatments. The RNA content of the cytoplasm of tapetum cells was decreased by 34%–48%, depending on the treatment. The autoradiographic study showed that the stress caused by copper deficiency enhanced [3H]uridine incorporation into microspore cytoplasm RNA and also into the tapetum cells in the case of temporary deficiencies. The incidence of the treatments on the ploidy of the mother cells and on the disturbance of protein metabolism, particularly in tapetum cells, is discussed. 相似文献
854.
Fu Jie ZHANG Jennifer PAN Lan YU Yi WEN Yan ZHAO 《Cell research》2005,15(11):877-882
China's Free ART Program was initiated in 2002 as an emergency response to save and improve the lives of AIDS patients living mainly in impoverished rural regions of central China. With little experience in HIV/AIDS treatment and care and resource limitations, China's efforts to provide widespread access to free antiretroviral therapy has been a process fraught with difficulty. However, the Free ART Program is progressing from an emergency response to a standardized treatment and care system. The development of national guidelines, training programs, a laboratory support network, a national patient database, programs for special populations such as children and patients living with coinfections, and operational research has improved the scope and quality of the free treatment program. As of June 30, 2005, a total of 19,456 patients in 28 provinces, autonomous regions, and special municipalities had received free ART. Challenges stemming from the nature of China's health system and patient population persist, but with strong government support and a diverse set of resources, China has the capacity to overcome these challenges and to provide nationwide access to high quality treatment and care. 相似文献
855.
Although the treatments for overcoming the high pH and exchangeable sodium percentage (ESP) of bauxite residue are well known,
there is little information on long-term nutrient management of vegetation after rehabilitation. The present study examined
the chemical and physical amendment of fine fraction residue (red mud) at the Aughinish Alumina Ltd. Bayer Plant, Ireland
followed by a two-year field investigation. Gypsum and sewage sludge were incorporated into the residue and amended mud sown
with Lolium perenne and Holcus lanatus. Aerial portions were harvested and nutrient composition determined annually for the first two years growth. Amended substrate
was low in manganese and magnesium. After year one herbage contained adequate calcium levels, but there were deficiencies
for nitrogen, manganese, potassium and magnesium. Sodium levels were not considered excessive and levels declined further
in year two. Levels for nitrogen, calcium, manganese, magnesium, phosphorous and potassium were also reduced in the second
year. As levels were already deficient in year one the further decreases suggest severe nutrient shortage in the residue substrate.
For long-term success of revegetation of bauxite residue, even after gypsum and organic amendment, the deficiencies of nutrients
in the substrate must be overcome. 相似文献
856.
《Somatosensory & motor research》2013,30(4):433-443
Quantitative and morphometric observations were carried out on neurons of L3-L6 dorsal root ganglia (DRGs) in control and vitamin-E-deficient rats at different ages. Controls were fed a standard diet and sacrificed at 1 or at 5 months of age; deficient rats were fed a diet without vitamin E from 1 to 5 months of age and then sacrificed. No significant difference in total number of neurons was found, but an increase in neuron sizes, a decrease in nucleus-cytoplasm ratio, and a more circular neuron shape were found in controls with increasing age (from 1 to 5 months). In L3-L6 DRGs of vitamin-E-deficient rats (5 months of age), a higher number of neurons was found than in those of either young or adult controls. Moreover, some morphometric characteristics of neurons in the deficient rats were similar to those of neurons in 1-month-old controls. The findings suggest that vitamin E deficiency can trigger events resulting in appearance of new neurons, possibly anticipating phenomena that normally occur in aging. 相似文献
857.
Methionine deficiency in rats caused significant decrease in the concentration of many sulphated glycosaminoglycans in the
aorta and other tissues, while administration of excess methionine caused an increase in these constituents. The activity
of some important biosynthetic enzymes decreased in methionine deficiency and increased on administration of excess methionine.
No uniform pattern was observed in the changes in the activity of enzymes concerned with degradation of glycosaminoglycans.
The concentration of 3′-phosphoade-nosine 5′-phosphosulphate and the activities of the sulphate activating system and sulpho-transferase
were decreased in methionine deficiency, while feeding excess methionine did not affect these parameters as compared to controls. 相似文献
858.
In Saccharomyces cerevisiae, methyl methanesulphonate and diepoxybutane produced efficiently lethal, as well as mutagenic, damage in nuclear DNA. However, in the same conditions, these agents did not induce cytoplasmic petite mutations and poorly induced point mutations (resistance to erythromycin and chloramphenicol) in mitochondrial DNA. Possible reasons for these differences are discussed. 相似文献
859.
James E. Stewart 《Harmful algae》2011,10(6):706-712
Reduction or binding of Fe(III) by agent(s) produced by a highly toxigenic strain of Alexandrium excavatum was detected at approximately the same levels in culture filtrates of this dinoflagellate grown either axenically or non-axenically. Nanomolar concentrations of pure Paralytic Shellfish Poisons (PSP) produced by this phytoplankton, the carbamate toxins saxitoxin, 2/3 gonyautoxin or the N-sulfamoyl carbamate toxins C1/C2, added to a Schwyn and Neilands (1987) assay mixture did not stimulate Fe(III) reduction or binding. In contrast, additions of the N-sulfamoyl carbamate toxin, gonyautoxin V (GTXV also known as B1) alone resulted in a several-fold increase in this activity. The level of activity per cell was considerably higher for those cultures grown in media deficient in iron than in those whose growth was restricted by decreases of either N or P. 相似文献
860.
Sacha Ferdinandusse Simone Denis Phyllis L. Faust Ronald J. A. Wanders 《Journal of lipid research》2009,50(11):2139-2147
It is well established that peroxisomes play a crucial role in de novo bile acid synthesis. Studies in patients with a peroxisomal disorder have been indispensable for the elucidation of the precise role of peroxisomes. Several peroxisomal disorders are associated with distinct bile acid abnormalities and each disorder has a characteristic pattern of abnormal bile acids that accumulate, which is often used for diagnostic purposes. The patients have also been important for determining the pathophysiological consequences of defects in bile acid biosynthesis. In this review, we will discuss all the peroxisomal steps involved in bile acid synthesis and the bile acid abnormalities in patients with peroxisomal disorders. We will show the results of bile acid measurements in several tissues from patients, including brain, and we will discuss the toxicity and the pathological effects of the abnormal bile acids. 相似文献