• Title/Summary/Keyword: Aldosterone

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Renal Tubular Acidosis (신세뇨관 산증)

  • Park, Hye-Won
    • Childhood Kidney Diseases
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    • v.14 no.2
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    • pp.120-131
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    • 2010
  • Renal tubular acidosis (RTA) is a metabolic acidosis due to impaired excretion of hydrogen ion, or reabsorption of bicarbonate, or both by the kidney. These renal tubular abnormalities can occur as an inherited disease or can result from other disorders or toxins that affect the renal tubules. Disorders of bicarbonate reclamation by the proximal tubule are classified as proximal RTA, whereas disorders resulting from a primary defect in distal tubular net hydrogen secretion or from a reduced buffer trapping in the tubular lumen are called distal RTA. Hyperkalemic RTA may occur as a result of aldosterone deficiency or tubular insensitivity to its effects. The clinical classification of renal tubular acidosis has been correlated with our current physiological model of how the nephron excretes acid, and this has facilitated genetic studies that have identified mutations in several genes encoding acid and base ion transporters. Growth retardation is a consistent feature of RTA in infants. Identification and correction of acidosis are important in preventing symptoms and guide approved genetic counseling and testing.

Primary Aldosteronism and Cerebrovascular Diseases

  • Chen, Zheng-Wei;Hung, Chi-Sheng;Wu, Vin-Cent;Lin, Yen-Hung;TAIPAI study group
    • Endocrinology and Metabolism
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    • v.33 no.4
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    • pp.429-434
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    • 2018
  • As diagnostic techniques have advanced, primary aldosteronism (PA) has emerged as the most common cause of secondary hypertension. The excess of aldosterone caused by PA resulted in not only cardiovascular complications, including coronary artery disease, myocardial infarction, arrhythmia, and heart failure, but also cerebrovascular complications, such as stroke and transient ischemic attack. Moreover, PA is associated more closely with these conditions than is essential hypertension. In this review, we present up-to-date findings on the association between PA and cerebrovascular diseases.

Renal artery stenosis presenting as congenital nephrotic syndrome with hyponatremic hypertensive syndrome in a 2-month-old infant: a case report

  • Dabin Kim;Yo Han Ahn;Hee Gyung Kang;Ji Hyun Kim;Seon Hee Lim
    • Childhood Kidney Diseases
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    • v.27 no.2
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    • pp.117-120
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    • 2023
  • Here, we present the case of a 2-month-old male infant with hyponatremic hypertensive syndrome resulting from stenosis of the right proximal and mid-renal arteries. The patient exhibited nephrotic-range proteinuria, low serum albumin, increased serum creatinine, and elevated renin and aldosterone levels. Doppler ultrasonography and computed tomography angiography revealed decreased vascular flow in the small right renal artery. Following a successful percutaneous balloon angioplasty, the patient experienced a decrease in blood pressure and normalization of serum electrolyte levels within a few days. However, it took 3 months for the proteinuria to resolve completely. This case is significant as it represents the first reported instance of a neonate presenting with clinical features resembling congenital nephrotic syndrome caused by renal artery stenosis that was successfully treated with percutaneous renal angioplasty.

The effects of the standardized extracts of Ginkgo biloba on steroidogenesis pathways and aromatase activity in H295R human adrenocortical carcinoma cells

  • Kim, Mijie;Park, Yong Joo;Ahn, Huiyeon;Moon, Byeonghak;Chung, Kyu Hyuck;Oh, Seung Min
    • Environmental Analysis Health and Toxicology
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    • v.31
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    • pp.10.1-10.8
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    • 2016
  • Objectives Aromatase inhibitors that block estrogen synthesis are a proven first-line hormonal therapy for postmenopausal breast cancer. Although it is known that standardized extract of Ginkgo biloba (EGb761) induces anti-carcinogenic effects like the aromatase inhibitors, the effects of EGb761 on steroidogenesis have not been studied yet. Therefore, the effects of EGb761 on steroidogenesis and aromatase activity was studied using a H295R cell model, which was a good in vitro model to predict effects on human adrenal steroidogenesis. Methods Cortisol, aldosterone, testosterone, and $17{\beta}$-estradiol were evaluated in the H295R cells by competitive enzyme-linked immunospecific assay after exposure to EGb761. Real-time polymerase chain reaction were performed to evaluate effects on critical genes in steroid hormone production, specifically cytochrome P450 (CYP11/ 17/19/21) and the hydroxysteroid dehydrogenases ($3{\beta}$-HSD2 and $17{\beta}$-HSD1/4). Finally, aromatase activities were measured with a tritiated water-release assay and by western blotting analysis. Results H295R cells exposed to EGb761 (10 and $100{\mu}g/mL$) showed a significant decrease in $17{\beta}$-estradiol and testosterone, but no change in aldosterone or cortisol. Genes (CYP19 and $17{\beta}$-HSD1) related to the estrogen steroidogenesis were significantly decreased by EGb761. EGb761 treatment of H295R cells resulted in a significant decrease of aromatase activity as measured by the direct and indirect assays. The coding sequence/Exon PII of CYP19 gene transcript and protein level of CYP19 were significantly decreased by EGb761. Conclusions These results suggest that EGb761 could regulate steroidogenesis-related genes such as CYP19 and $17{\beta}$-HSD1, and lead to a decrease in $17{\beta}$-estradiol and testosterone. The present study provides good information on potential therapeutic effects of EGb761 on estrogen dependent breast cancer.

The Effect of Dodamtang(DDT) on Brain damage and Hypertension (도담탕(導痰湯)이 뇌손상(腦損傷) 및 고혈압(高血壓)에 미치는 영향(影響))

  • Lim, Seong-Min;An, Joung-Jo;Choi, Young;Kim, Yong-Jin;Yoo, Ho-Ryoung;Park, Yang-Chun;Seol, In-Chan;Hwang, Chi-Won;Cho, Hyun-Kyung
    • The Journal of Internal Korean Medicine
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    • v.22 no.4
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    • pp.503-512
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    • 2001
  • Objective : This study was carried out to investigate the effects of DDT on the brain damage and hypertension. Methods : We observed the effect of Dodamtang(DDT) extract on KCN-induced coma, focal brain ischemia by MCA occlusion, cytotoxicity and protection of PC12 cells and B103 cells induced by amyloid ${\beta}$ protein(25-35). To prove the effect of DDT as a blood pressure depressant, we measured aldosterone, renin activity, catecholamine, sodium and NO density using the seperated blood plasma. Results : DDT showed a protective effect on cytotoxicity of PC12 cells and B103 cells induced by amyloid ${\beta}$ protein(25-35) in a dose dependent manner and proved the significant abridgement of brain ischemic area and edema induced by MCA occlusion, a critical decrease of neurologic deficitic grade in the fore-limbs. DDT didn't reduce the duration of KCN(1.87mg/kg iv.)-induced coma and prolonged the survival rate in the case of KCN(3.0mg/kg iv.)-induced coma by the ratio of 20%. While DDT increased the value of NO in SHR, it significantly decreased the blood pressure of SHR and the value of aldosterone& epinephrine in SHR. Conclusions : These results suggested that DDT might be usefully applied for treatment of hypertension, cerebral infarction, and brain damage.

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The Effect of Cheonmagudeng-um gagam(CGG) on Spontaneous Hypertensive Rat(SHR) (천마구등음가감(天麻鉤藤飮加減)이 고혈압 유관인자 및 SHR 병태모델에 미치는 영향)

  • Song, Byoung-Yong;Choi, Eun-Hee;Jung, Tae-San;Kang, Seong-Sun;An, Ga-Yong;Kim, Oh-Young;Jeon, Sang-Yun;Hong, Seok
    • The Journal of Internal Korean Medicine
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    • v.32 no.3
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    • pp.345-360
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    • 2011
  • Objectives : This study was examined to investigate the effects of Cheonmagudeng-um gagam (CGG) extract on spontaneous hypertension. Methods : For the study of CGG, we divided rats into three groups. The normal group was Wister Kyoto rats (WKY). The control group was spontaneously hypertensive rats (SHR). The treatment group was SHR which were administered CGG extract (SHR-CGG). SHR-CGG were orally administered CGG extract that was diluted in distilled water at the various concentrations for 4 weeks (234.5 mg/kg) and SHR were orally administered the same dosage of plain distilled water as SHR-CGG. Then we measured anti-oxygen effects, ACE inhibitory activity, weight of heart and kidney, blood pressure, heart rate, plasma aldosterone, electrolyte, creatinine, uric acid, BUN, and observed the cortex of the cardiac muscle, kidney, and adrenal gland. Results : CGG increased DPPH scavenging activity and SOD similar activity depending on the concentration. CGG significantly decreased ROS, TNF-${\alpha}$, IL-6, IL-$1{\beta}$, heart weight, blood pressure, heart rate, aldosterone, and BUN in SHR. CGG increased ACE inhibition activity depending on the concentration. CGG inhibited the heart, kidney and adrenal gland tissue injury that is caused by hypertension. Conclusions : These results suggest that CGG is effective in treatment and prevention of hypertension.

An Experimental Study on the Change of Stress-related hormone Contents by Prescription of Kyogamdan and Sohaphyangwon (교감단(交感丹)과 소합향원(蘇合香元) 투여후(投與後) 항(抗) STRESS 관련(關聯) HORMONE 함량(含量) 변화(變化)에 대(對)한 실험적(實驗的) 고찰(考察))

  • Kim Gi-Dae;Jeong Dae-Gyu
    • Journal of Oriental Neuropsychiatry
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    • v.4 no.1
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    • pp.121-134
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    • 1993
  • This study was conducted in order to study the anti-stress effect of Kyogamdan and Sohaphyangwon, and the changes of serum catecholamine, aldosterone and cortisol levels were measured. In this study author gave immobilization stress to rats and got the following results. 1. The contents of norepinephrine in control group were 4.26 ${\pm}$ 0.50, 3.72 ${\pm}$ 0.31ng/ml 3hr, 6hr after an oral administration of Nacl, but in sample A the contents were 3.12 ${\pm}$ 0.33, 3.20 ${\pm}$ 0.41ng/ ml and in sample B were 3.50 ${\pm}$ 0.65, 2.49 ${\pm}$ 0.55ng/ ml. The difference was obvious. 2. The contents of epinephrine in control group were 7.01 ${\pm}$ 0.85, 6.50 ${\pm}$ 0.68ng/ ml after 3hr, 6hr since Nacl was taken, but in sample A the contents were 4.95 ${\pm}$ 0.67, 4.45 ${\pm}$ 0.58ng/ ml and in sample B were 5.87 ${\pm}$ 0.87, 4.33 ${\pm}$ 0.59ng/ ml. The real significance lies in 6hr after administration of Sample A and B. 3. The contents of cortisol in control group were 3.39 ${\pm}$ 0.04, 3.73 ${\pm}$ 0.04ng / ml, but in sample A were 2.99 ${\pm}$ 0.02, 4.74 ${\pm}$ 0.04, and in sample B were 2.69 ${\pm}$ 0.03, 3.79 ${\pm}$ 0.03ng / ml. The real significance lies in 3hr since sample A and B were taken. 4. The aldosterone contents in control group were 1121.90 ${\pm}$ 71.90, 1454.30 ${\pm}$ 168.50 pg / ml, but in sample A were 1198.20 ${\pm}$ 69.10, 1257.50 ${\pm}$ 180.70 and in sample B were 776.30 ${\pm}$ 79.10, 1367.00 ${\pm}$ 170.10 pg / ml. The real significance lies in 3hr Sample B was taken. Base on the results above, it may be concluded that Kyogamdan and Sohaphyangwon are effective to prevent the changes by stress and Sohaphyangwon is better effective than Kyogamdan to prevent stress.

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Effect of Sam Hwa San Extract on Renal Function in Rabbit (삼화산(三和散)이 가토(家兎) 신장기능(腎臟機能)에 미치는 영향(影響))

  • Jeong, Ji-Cheon
    • The Journal of Dong Guk Oriental Medicine
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    • v.1
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    • pp.55-80
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    • 1992
  • In order to examine that the effect of Sam Hwa San, circulating the vital energy of Sam Cho and controlling body fluid metabolism, gives any influence on renal function, changes in the urine flow, eletrolytes excretion, plasma aldosterone concentration and renin activity were observed after intravenous infusion of the Sam Hwa San extract in rabbit. Also in vitro effect of the herb extract on oxygen consumption in renal cortical slices and ATPase activity in kidney microsomes was measured. The following results were obtained : 1. The urine flow was markedly increased at 10 min after intravenous infusion of the Sam Hwa San extract($0.134{\pm}0.015$ vs. $0.433{\pm}0.046ml/min.kg$), but return ed to normal value after 40 min of infusion. 2. The glomerular filtration rate was significantly increased at 10 min after in travenous infusion of the Sam Hwa San extract, and the renal plasma flow at 10 and 20 min after infusion of the Sam Hwa San extract, following return to normal value. 3. $Na^+$ excretion was significantly increased during 10-40 min after intravenous infusion of the Sam Hwa San extract, although showed the maximal rate at 10-20 min. The fractional $Na^+$ excretion was also increased during 10-40 min. $K^+$ excretion was rapidly increased at 10 min after the intravenous Infusion of the Sam Hwa San extract and then gradually decreased to normal level at 40 min. The fractional $K^+$ excretion was significantly increased during 10-40 min after the intravenous infusion of the Sam Hwa San extract. 4. The plasma aldosterone concentration and renin activity were not altered by the infusion of the Sam Hwa San extract. 5. The ouabain-sensitive oxygen consumption of renal cortical slices was significantly reduced by the Sam Hwa San extract(0.5 and 1.0 vol.%). 6. The Na-K-ATPase activity of renal microsomes was strongly inhibited by the Sam Hwa San extract(0.5 and 1.0 vol.%). These results suggest that the Sam Hwa San causes a strong diuretic effect which results from reduction of Na reabsorption in renal tubule by a direct inhibition of Na-pump and, in part, from all increase in renal blood flow. In clinic, it is considered to obtain the therapeutic effect in body fluid metabolism disharmony to cause the circular disorder of vital energy.

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Renal Effects of Chronic Treatment Of Adenosine Analogues (Adenosine 수용체 작동제 장기 투여의 신장효과)

  • Kim Tack-Hee;Kim Suhn-Hee;Huh Jong;Cho Kyung-Woo
    • The Korean Journal of Physiology and Pharmacology
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    • v.1 no.3
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    • pp.325-335
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    • 1997
  • Evidence for the existance of at least two subclasses of renal adenosine receptors has been presented. N-6-cyclohexyladenosine (CHA) is a relatively selective $A_1$ adenosine agonists, whereas 5'-N-ethylcarboxamidoadenosine (NECA) acts as a preferential agonist of $A_2$ adenoisne receptor. N6-(L-2-phenylisoproryl)-adenosine (PIA) almost unselectively activates both $A_1\;and\;A_2$ adenosine receptors at micromolar concentrations. During the characterization of adenosine receptor in the kidney, we have discovered a novel phenomenon, that is, an intramuscular administration of CHA for 3 days caused a diuresis and a suppression of urinary concentrating ability. To further characterize this novel phenomenon, an intramuscular administration of adenosine and other adenosine angonists, PIA and NECA, and prior treatment of adenosine antagonists, caffeine, theophylline and 1,3-diethyl-8-phenyl-xanthine (DPX) were performed. Systemic administration of CHA, PIA, and NECA for 3 days caused a suppression in heart rate, blood pressure and general motor activity without change in rectal temperature. Systemic administration of CHA, 0.5, 1 and 2 mg/kg/day, for 3 days caused a dose-dependent increase in urine volume and decrease in urinary osmolarity and free water reabsorption. This phenomenon was reversible and repeatable. Administration of adenosine (40 mg/kg/day) produced no apparent effect on the renal function, whereas PIA (2 mg/kg/day) produced an similar effect to CHA on the renal function. Systemic adminstration of NECA, 0.025, 0.05 and 0.25 mg/kg/day, for 3 days caused a dose-dependent increase in urine volume and dose-dependent increases in excreted amount of creatinine, urinary osmolarity and free water reabsorption. These renal effects of adenosine agonist were maximum at second day during the drug administration. In terms of increase in urine volume and the suppression of urinary concentrating ability, NECA was potent than CHA. Prior treatment of caffeine (50 mg/kg/day) or theophylline (50 mg/kg/day) abolished the diuretic effect of CHA, whereas DPX (50 mg/kg/day) did not affect the CHA effect. CHA, 0.5 mg/kg/day, produced no change in plasma renin activity and plasma levels of aldosterone, epinephrine, and norepinephrine. These results suggest that this novel phenomenon produced by an activation of renal adenosine receptors plays an important role in urinary concentrating mechanism.

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Effects of the Water Extracts of Mantidis Ootheca, Rosa Laevigata, and Imperata Cylindrica on Blood Pressure in Renovascular Hypertension Induced by 2K1C (상표초, 백모근, 금앵자 추출물이 2K1C 고혈압 백서의 혈압에 미치는 영향)

  • Kim, Hye Yoom;Ahn, You Mee;Kho, Min Chul;Park, Ji Hun;Lee, Jae Yun;Lee, Soo Ho;Park, Sueng Hyuk;Kim, Byung Sook;Kang, Dae Gill;Lee, Yun Jung
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.30 no.2
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    • pp.95-100
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    • 2016
  • The aim of the present study is to investigate the hypotensive effect of Mantidis ootheca (WMO), Rosa laevigata (WIC), and Imperata cylindrica (WRL) in renovascular hypertension rats. Experimental hypertension model is 2-kidney and 1-clip (2K1C) induced rats. 2K1C rats were treated with WMO, WIC, and WRL at dose of 100 mg/kg/day orally for 3 weeks, respectively. Treatment groups with WMO, WIC, and WRL significantly lowered blood pressure. Interestingly, WMO, WIC, and WRL ameliorated endothelium-dependent and independent vascular relaxation in the phenylephrine-precontracted thoracic aorta in hypertension models. In addition, 2K1C-induced hypertension model increased plasma renin activity, however, WMO, WIC, and WRL attenuated those activities. These results suggest that WMO, WIC, and WRL ameliorates vascular dysfunction in 2K1C-induced hypertension models via the regulation of nitric oxide and renin-angiotensin-aldosterone system.