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91.
The cardiotoxic effects of hydralazine and prenalterol, given alone and in combination, were assessed in rats and rabbits. Acute myocardial necrosis was induced by a single administration of each drug alone in rats. However, the incidence and severity of lesions were markedly enhanced when both drugs were given in combination. Rats that received the same treatment for 10 consecutive days showed minimal or no acute necrosis, demonstrating the development of a resistance to further cardiotoxic effects of the drugs. Rabbits showed only minimal lesions when either drug was used alone and no enhancement of lesions when they were given in combination. From these data, it is concluded that the possibility of a cardiotoxic interaction exists when these drugs are used in combination and that the heavy rat (500-600 g) is a more sensitive model than the rabbit for studies of this nature. 相似文献
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94.
J Wu 《中华整形烧伤外科杂志》1989,5(2):119-21, 158-9
The growth hormone(GH), produced by the growth hormone cell in pars distalis of the adenohypophysis, acts on the sugar, protein and fat metabolism in various degrees. After trauma, the GH has relations with the energy supply, the maintenance of nitrogen balance, the tissue repair and the body resistance. However, pathological study on the GH cell after burn injury is rare in the literature so far. The purpose of the present investigation is to take a dynamic observation on the ultrastructural changes of the rabbit GH cell after napalm burn within one week. 46 male rabbits were used and divided into two groups, napalm burn group (N = 36) and control group (N = 10). The former is inflicted with 3rd degree burn covering 30% TBSA. The animals of former group were sacrificed at 3, 6, 12, 24, 48, 72, 96, 120, 168 hours postburn respectively. Using the light and electron microscopy and stereological method, the results revealed that: (1) the synthesis activity in GH cell was enhanced, the process of secretion was rapid, and the rate of granule maturation was increased; (2) the nude GH granules were found both in the sinusoids and the endothelial cells; (3) the newly formed mitochondria may be originated from the Golgi complex, and the newly formed Golgi complex from the reutilization of the plasma membrane components; (4) some endothelial cells manifested degeneration, and the others showed in active condition; (5) under the light microscopy, the distribution of the lower tint-phil GH cells had its regional-characteristics. 相似文献
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96.
Follow up MRI study in first episode schizophrenia. 总被引:2,自引:0,他引:2
G Degreef M Ashtari H W Wu M Borenstein S Geisler J Lieberman 《Schizophrenia Research》1991,5(3):204-206
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X J Zhang K R Kunkel F Jahoor R R Wolfe 《JPEN. Journal of parenteral and enteral nutrition》1991,15(4):394-399
We have investigated the role of basal insulin concentration on leucine kinetics (determined by means of 1-[13C]leucine) and energy metabolism (determined by indirect calorimetry) in eight septic patients by reducing insulin (and glucagon) secretion by somatostatin infusion. Basal glucagon concentration was elevated (744 +/- 381 pg/mL), and insulin concentration was normal (10 +/- 4 microU/mL). Basal resting energy expenditure (REE) was 151 +/- 8% that of predicted basal energy expenditure, and leucine appearance (Ra), oxidation, and nonoxidative disposal rates were all elevated above the normal ranges. Somatostatin infusion reduced insulin concentration by 52% and glucagon concentration by 64%. This resulted in a significant increase in the rate of leucine oxidation from 0.96 +/- 0.08 to 1.18 +/- 0.14 mumol/kg/min (p less than 0.01), and nonoxidative leucine disposal decreased from 2.95 +/- 0.18 to 2.67 +/- 0.17 mumol/kg/min (p less than 0.01). Somatostatin infusion also caused significant increases in REE and fat oxidation from 1310 +/- 100 to 1505 +/- 128 kcal/m2/day (p less than 0.05) and from 1.72 +/- 0.24 to 2.41 +/- 0.41 mg/kg/min, respectively, and a slight decrease of carbohydrate oxidation from 1.51 +/- 0.49 to 1.31 +/- 0.49 mg/kg/min. These metabolic responses can be attributed to the reduction in insulin concentration, because they are in the opposite direction of changes that would occur as a consequence of a reduction in glucagon concentration. We conclude that the basal insulin plays an important role in attenuating net protein loss and energy expenditure. 相似文献
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