• Title/Summary/Keyword: Salt effects

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간척지(干拓地)에서 수도(水稻) 및 기타작물(其他作物)의 내염성(耐鹽性)에 관(關)한 연구(硏究) -6. 염분간척지(鹽分干拓地)에서 수도(水稻)에 대한 N, P, K,의 증비효과에 관(關)하여 (Study on the Salt Tolerance of Rice and Other Crops in Reclaimed Soil Areas. -6. On the Effects of Increased N. P. K. Applications for Rice Plant in Reclaimed Salty Areas)

  • 임경빈
    • 한국토양비료학회지
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    • 제3권1호
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    • pp.35-41
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    • 1970
  • 10a 당(當) N 10, 15, 20kg, 인산(燐酸) 8, 12, 16kg 및 가리(加里) 8, 12, 16kg의 각각(各各) 3수준(水準)의 조합(組合)인 삼요소증비(三要素增肥) 요인실험(要因實驗)을 농광(農光)을 공시(供試)하여 숙답구(熟畓區), 저(低) 및 고염분구(高鹽分區)(4월말(月末) 각염분농도(各鹽分濃度) 0.5%와 1%)에서 적기재배(適期栽培)로 실시(實施)하여 아래와 같은 결과(結果)를 얻었다. 1. 인산(燐酸)과 가리시비(加里施肥)를 10a 당(當) 8kg으로 고정(固定)하고 N시비(施肥)를 1.5배(倍)와 2배(倍)로 증가(增加)시켰을 때 숙답구(熟畓區)와 염분구(鹽分區)들에서는 다 같이 시비량(施肥量)에 비례(比例)하여 N 흡수(吸收)가 증가(增加)되었다. 그리고 이때의 N 흡수(吸收)는 대체(大體)로 염분구(鹽分區)에서 더 많았다. N 증비처리(增肥處理)를 하거나 삼요소(三要素) 증비처리(增肥處理)를 하면 염분구(鹽分區)에서는 Ca와 Si의 흡수조해(吸收阻害)가 보였다. 2. 숙답구(熟畓區)에서는 N, P, K의 증비(增肥)는 증수(增收)를 가져오지 못하였고 가리(加里) 2배비(倍肥)는 유의(有意)하게 감수(減收)를 가져왔다. 3. 저염분구(低鹽分區)에서 N 증비(增肥)는 고도(高度)의 유의차(有意差)로 증수(增收)에 효과가 있었으며 N 1.5 배비(倍肥)는 12%, N 2배비(倍肥)는 21% 증수(增收)되었다. 인산(燐酸)과 가리(加里)의 증비(增肥)로는 증수(增收)되지 않았다. 4. 고염분구(高鹽分區)에서도 N 증비(增肥)는 유의(有意)하게 증수효과가 있었으며 인산(燐酸)과 가리(加里)의 증비(增肥)로 증수(增收)되는 것 같으나 유의성(有意性)은 없었다. 5. N 증비(增肥)는 숙답구(熟畓區)에서 1.5배(倍)까지는 수수(穗數)가 증가(增加)되었으나 2배비(倍肥)에서는 더 증가(增加)를 보이지 않았으며 저(低) 및 고염분구(高鹽分區)에서는 시비량(施肥量)에 비례(比例)하여 늘었다. 인산증비(燐酸增肥)는 각(各) 실험구(實驗區)에서 수수증가(穗數增加)의 경향(傾向)이 보였으나 가리증비(加里增肥)는 증가(增加)에 효과가 없었다. 6. 수중(穗重)에 대(對)한 N 증비(增肥)의 효과는 숙답구(熟畓區)에서는 감소(減少)로 나타났으며 양염분구(兩鹽分區)에서는 1.5배비(倍肥)까지는 증가(增加)되나 2배비(倍肥)는 1.5배비(倍肥)와 거의 같았다. 인산(燐酸), 가리(加里)의 증비(增肥)는 어느 실험구(實驗區)에서도 수중(穗重)에 영향(影響)을 미치지 못하였다. 천립중(千粒重)에 대(對)한 N, P, K의 증비효과는 숙답구(熟畓區)와 염분구(鹽分區)에서 모두 뚜렷하지 않았다. 수당립수(穗當粒數)에 대(對)한 N 증비효과는 숙답구(熟畓區)에서 감소(減少)의 경향(傾向)이었으나 양염분구(兩鹽分區)에 있어서는 증가(增加)되었다. 수당립수(穗當粒數)에 대(對)한 인산(燐酸), 가리(加里)의 증비효과는 없는것 같았다. 7. 임실율(稔實率)에 대(對)한 N 증비(增肥)의 효과는 숙답구(熟畓區)에서 감소(減少)되었으며 저(低) 및 고염분구(高鹽分區)에서는 N 증비효과가 없었고 인산(燐酸) 및 가리(加里)의 증비(增肥)는 어느 실험구(實驗區)에서도 효과가 없었다. 8. 정현비율(精玄比率)에 대(對)한 N, P, K의 증시효과는 각각(各各) 어느 실험구(實驗區)에서도 없었으나 설미(屑米)는 N 증비(增肥)에 의하여 숙답구(熟畓區) 및 염분구(鹽分區)들에서 다 같이 증가(增加)되었으며 숙답구(熟畓區)에서는 더 현저(顯著)하였다. 9. 고중(藁重)에 대한 N 증비(增肥)의 효과는 숙답구(熟畓區)와 고(高) 및 저염분구(低鹽分區)에서 다같이 증가(增加)되었으며 인산(燐酸), 가리(加里)의 증비(增肥)는 효과가 없었다. 정조중(精租重)/고중(藁重)에 대(對)한 N 증비(增肥)의 효과는 숙답구(熟畓區)에서는 감소(減少)되었으나 저(低) 및 고염분구(高鹽分區)에서는 증가(增加)되었고 인산(燐酸) 및 가리(加里)의 증비효과는 없었다.

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Cefoperazone(T-1551)의 약리학적 연구 (Pharmacological Studies of Cefoperazone(T-1551))

  • 임정규;홍사악;박찬웅;김명석;서유헌;신상구;김용식;김혜원;이정수;장기철;이상국;장우현;김익상
    • 대한약리학회지
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    • 제16권2호
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    • pp.55-70
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    • 1980
  • The pharmacological and microbiological studies of Cefoperazone (T-1551, Toyama Chemical Co., Japan) were conducted in vitro and in vivo. The studies included stability and physicochemical characteristics, antimicrobial activity, animal and human pharmacokinetics, animal pharmacodynamics and safety evaluation of Cefoperazone sodium for injection. 1) Stability and physicochemical characteristics. Sodium salt of cefoperazone for injection had a general appearance of white crystalline powder which contained 0.5% water, and of which melting point was $187.2^{\circ}C$. The pH's of 10% and 25% aqueous solutions were 5.03 ana 5.16 at $25^{\circ}C$. The preparations of cefoperazone did not contain any pyrogenic substances and did not liberate histamine in cats. The drug was highly compatible with common infusion solutions including 5% Dextrose solution and no significant potency decrease was observed in 5 hours after mixing. Powdered cefoperazone sodium contained in hermetically sealed and ligt-shielded container was highly stable at $4^circ}C{\sim}37^{\circ}C$ for 12 weeks. When stored at $4^{\circ}C$ the potency was retained almost completely for up to one year. 2) Antimicrobial activity against clinical isolates. Among the 230 clinical isolates included, Salmonella typhi was the most susceptible to cefoperazone, with 100% inhibition at MIC of ${\leq}0.5{\mu}g/ml$. Cefoperazone was also highly active against Streptococcus pyogenes(group A), Kletsiella pneumoniae, Staphylococcus aureus and Shigella flexneri, with 100% inhibition at $16{\mu}g/ml$ or less. More than 80% of Escherichia coli, Enterobacter aerogenes and Salmonella paratyphi was inhibited at ${\leq}16{\mu}/ml$, while Enterobacter cloaceae, Serratia marcescens and Pseudomonas aerogenosa were somewhat less sensitive to cefoperagone, with inhibitions of 60%, 55% and 35% respectively at the same MIC. 3) Animal pharmacokinetics Serum concentration, organ distritution and excretion of cefoperazone in rats were observed after single intramuscular injections at doses of 20 mg/kg and 50 mg/kg. The extent of protein binding to human plasma protein was also measured in vitro br equilibrium dialysis method. The mean Peak serum concentrations of $7.4{\mu}g/ml$ and $16.4{\mu}/ml$ were obtained at 30 min. after administration of cefoperazone at doses of 20 mg/kg and 50 mg/kg respectively. The tissue concentrations of cefoperazone measured at 30 and 60 min. were highest in kidney. And the concentrations of the drug in kidney, liver and small intestine were much higher than in blood. Urinary and fecal excretion over 24 hours after injetcion ranged form 12.5% to 15.0% in urine and from 19.6% to 25.0% in feces, indicating that the gastrointestinal system is more important than renal system for the excretion of cefoperazone. The extent of binding to human plasma protein measured by equilibrium dialysis was $76.3%{\sim}76.9%$, which was somewhat lower than the others utilizing centrifugal ultrafiltration method. 4) Animal pharmacodynamics Central nervous system : Effects of cefoperazone on the spontaneous movement and general behavioral patterns of rats, the pentobarbital sleeping time in mice and the body temperature in rabbits were observed. Single intraperitoneal injections at doses of $500{\sim}2,000mg/kg$ in rats did not affect the spontaneous movement ana the general behavioral patterns of the animal. Doses of $125{\sim}500mg/kg$ of cefoperazone injected intraperitonealy in mice neither increased nor decreased the pentobarbital-induced sleeping time. In rabbits the normal body temperature was maintained following the single intravenous injections of $125{\sim}2,000mg/kg$ dose. Respiratory and circulatory system: Respiration rate, blood pressure, heart rate and ECG of anesthetized rabbits were monitored for 3 hours following single intravenous injections of cefoperazone at doses of $125{\sim}2,000mg/kg$. The respiration rate decreased by $3{\sim}l7%$ at all the doses of cefoperazone administered. Blood pressure did not show any changes but slight decrease from 130/113 to 125/107 by the highest dose(2,000 mg/kg) injected in this experiment. The dosages of 1,000 and 2,000 mg/kg seemed to slightly decrease the heart rate, but it was not significantly different from the normal control. All the doses of cefoperazone injected were not associated with any abnormal changes in ECG findings throughout the monitering period. Autonomic nervous system and smooth muscle: Effects of cefoperazone on the automatic movement of rabbit isolated small intestine, large intestine, stomach and uterus were observed in vitro. The autonomic movement and tonus of intestinal smooth muscle increased at dose of $40{\mu}g/ml$ in small intestine and at 0.4 mg/ml in large intestine. However, in stomach and uterine smooth muscle the autonomic movement was slightly increased by the much higher doses of 5-10 mg/ml. Blood: In vitro osmotic fragility of rabbit RBC suspension was not affected by cefoperazone of $1{\sim}10mg/ml$. Doses of 7.5 and 10 mg/ml were associated with 11.8% and 15.3% prolongation of whole blood coagulation time. Liver and kidney function: When measured at 3 hours after single intravenous injections of cefoperaonze in rabbits, the values of serum GOT, GPT, Bilirubin, TTT, BUN and creatine were not significantly different from the normal control. 5) Safety evaluation Acute toxicity: The acute toxicity of cefoperazone was studied following intraperitoneal and intravenous injections to mice(A strain, 4 week old) and rats(Sprague-Dawler, 6 week old). The LD_(50)'s of intraperitonealy injected cefoperazone were 9.7g/kg in male mice, 9.6g/kg in female mice and over 15g/kg in both male and female rats. And when administered intravenously in rats, LD_(50)'s were 5.1g/kg in male and 5.0g/kg in female. Administrations of the high doses of the drug were associated with slight inhibition of spontaneous movement and convulsion. Atdominal transudate and intestinal hyperemia were observed in animals administered intraperitonealy. In rats receiving high doses of the drug intravenously rhinorrhea and pulmonary congestion and edema were also observed. Renal proximal tubular epithelial degeneration was found in animals dosing in high concentrations of cefoperazone. Subacute toxicity: Rats(Sprague-Dawley, 6 week old) dosing 0.5, 1.0 and 2.0 g/kg/day of cefoperazone intraperitonealy were observed for one month and sacrificed at 24 hours after the last dose. In animals with a high dose, slight inhibition of spontaneous movement was observed during the experimental period. Soft stool or diarrhea appeared at first or second week of the administration in rats receiving 2.0g/kg. Daily food consumption and weekly weight gain were similar to control during the administration. Urinalysis, blood chemistry and hematology after one month administration were not different from control either. Cecal enlargement, which is an expected effect of broad spectrum antibiotic altering the normal intestinal microbial flora, was observed. Intestinal or peritoneal congestion and peritonitis were found. These findings seemed to be attributed to the local irritation following prolonged intraperitoneal injections of hypertonic and acidic cefoperazone solution. Among the histopathologic findings renal proximal tubular epithelial degeneration was characteristic in rats receiving 1 and 2g/kg/day, which were 10 and 20 times higher than the maximal clinical dose (100 mg/kg) of the drug. 6) Human pharmacokinetics Serum concentrations and urinary excretion were determined following a single intravenous injection of 1g cefoperazone in eight healthy, male volunteers. Mean serum concentrations of 89.3, 61.3, 26.6, 12.3, 2.3, and $1.8{\mu}g/ml$ occured at 1,2,4,6,8 and 12 hours after injection respectively, and the biological half-life was 108 minutes. Urinary excretion over 24 hours after injection was up to 43.5% of administered dose.

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