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1.
Tianjin Medical Journal ; (12): 857-860, 2016.
Article in Chinese | WPRIM | ID: wpr-496487

ABSTRACT

Objective To investigate the effects of adrenocorticotropic hormone (ACTH)combined with Huaiqihuang on hypothalamic pituitary adrenal (HPA) in rats. Methods Fifty rats were randomly divided into five groups according to the random number table method:normal control group (group A), prednisone group (group B), Huaiqihuang group (group C), ACTH group (group D) and combined treatment group (group E) with 10 rats in each group. Rats in group B, C, D and E were gavaged by acetic acid prednisone water solution 12.5 mg/(kg · d) for 4 weeks to establish HPA axis suppression model. Group A was given distilled water 10 mL/(kg·d) as control. Rats in group C and E were gavaged with Huaiqihuang 5 g/(kg·d) 30 minutes after intragastric administration of prednisone acetate. At the third week of the experiment, group D and E were subcutaneous injected with ACTH 200 μg/(kg·d). The serum cortisol levels were measured respectively at the start of the ex?periment, 2 weeks and 4 weeks of experiment. Animals were sacrificed at the end of the experiment, and then weights of the pituitary, adrenal glands and the viscera index were calculated. The pathological changes of the pituitary and adrenal glands were observed by HE stainning. Results After 2 weeks, the serum cortisol levels were significantly lower in group B, C, D and E than those of group A (Pgroup D>group C (P<0.05). At the same time, the weights of pituitary and adrenal gland and the viscera in?dex were higher in the three groups than those of B group (P<0.05). The HE staining showed that there were no significant changes in the distal part of the pituitary gland in five groups. The adrenal cortex zona was thinning and the structure was dis?ordered in group B. There were different degrees of hyperplasia in group C, group D, and group E, which was the most obvi?ous in group E. Conclusion ACTH combined with Huaiqihuang can promote adrenal cortex zona hyperplasia and cortisol secretion, which reduces the glucocorticoid induced inhibition of HPA axis in rats.

2.
Journal of Medical Research ; (12)2006.
Article in Chinese | WPRIM | ID: wpr-560838

ABSTRACT

Objective To study the mechanism of activity change of gastric alcohol dehydrogenases(ADH).We investigated ADH before and after ingestion of alcohol on rats.Methods Thirty-nine rats were divided into two groups at random:model ones(24 cases) and control ones(15 cases).Model group of rats were infused into stomaches by alcohol,and control ones by distill water.Structures of cell and sub-cell in gastric mucous membrane were observed by enzyme electron microscope and hematoxylin eosin(HE) stain.Results It was shown that there were dropsical degeneration of chief cells and parietal cells of stomaches by HE stain,and the mitochondria of parietal cells and the rough-surfaced endoplasmic reticulum(rER) of chief cells were destroyed by enzyme electron microscope in model groups after two months of ethanol perfusion.There were not change in control group.Conclusions The mechanism of activity alterations of gastric ADH may result from dropsical degeneration of chief cells and parietal cells of stomach,which result in degeneration,solution and breakage of construction of rER in the chief cells and mitochondria in parietal cells.

3.
Journal of Korean Neurosurgical Society ; : 487-498, 1986.
Article in Korean | WPRIM | ID: wpr-101873

ABSTRACT

The monopolar and bipolar coagulation lesions were generated in the cerebral cortex of rabbits. Microscopic study, and the distance from cortical lesion center to its margin, the lesion depth, the extent of lesion in coronal section, and the area of coronal section at electrocoagulation in generation of brain lesion were studied by Evans blue and hematoxylin-eosin stain. The results were as follows : 1) Microscopically, the lesions were characterized by ground substance depigmentation, vacuolization and neuronal damage with pyknotic nuclei and loss of detail. In section stained with Evans blue, the lesion was demarcated with blue-green discoloration of the parenchyma and superfical cortical necrosis was coagulation sites. 2) The distance from cortical lesion center to its margin was proportionally increased as the increase of magnitude of electric current for monopolar and bipolar coagulation, while the distance was independent of the mode coagulation and stain. 3) The depth of lesion was proportionally increased as the increase of magnitude of electric current for monopolar and bipolar coagulation, while the distance was independent of the mode coagulation and stain. 4) The extent of lesion in coronal section was increased the increase of magnitude of electric current for both coagulation modes, while the extent was independent of the mode of coagulation and stain, too. 5) The area of coronal section at cortical lesion center was gradually increased as the increase of magnitude of electric current for both coagulation modes, while the area of Evans blue stain was 2 times as H-E stain in monopolar mode and the area of Evans blue stain was 1.3 times as H-E stain in bipolar mode.


Subject(s)
Rabbits , Brain , Cerebral Cortex , Electrocoagulation , Evans Blue , Necrosis , Neurons
4.
Journal of Korean Neurosurgical Society ; : 499-510, 1986.
Article in Korean | WPRIM | ID: wpr-101872

ABSTRACT

The monopolar and bipolar coagulation lesions were generated in the spinal cord of rabbits. Microscopic study, and the distance from surface lesion center to its margin, the lesion depth, the extent of lesion in cross section, and the area of cross section through the lesion center of monopolar and bipolar electrocoagulation in generation of spinal cord lesion were studied by Evans blue and hematoxylin-eosin stain. The results were as follows : 1) Microscopically, the lesions were characterized by ground substance depigmentation, vacuolization and neuronal damage with pyknotic and angulated nuclei and loss of detail. In section stained with Evans blue, the lesion was demarcated with blue-green discoloration of the parenchyma and superficial necrosis was at coagulation sites. 2) The distance from surface lesion center to its margin was proportionally increased as the increase of magnitude of electric current for monopolar and bipolar coagulation, while the distance was independent of the mode coagulation and stain. 3) The depth of lesion was proportionally increased as the increase of magnitude of electric current for monopolar and bipolar coagulation, while the depth was also independent of the mode coagulation, but the depth of Evans blue stain was 2 times than H-E stain. 4) The extent of lesion in cross section was increased as the increase of magnitude of electric current for both coagulation modes, while the extent was independent of the mode of coagulation and stain, too. 5) The area of cross section through the lesion center was gradually increased as the increase of magnitude of electric current for both coagulation modes, while the area was independent of the mode of coagulation and stain.


Subject(s)
Rabbits , Electrocoagulation , Evans Blue , Necrosis , Neurons , Spinal Cord
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