• Title/Summary/Keyword: cadmium accumulation

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Heavy Metal Interactions during Accumulation and Elimination of Cadmium and Copper in the Liver of Juvenile Flounder, Paralichthys olivaceus

  • Kim Seong-Gil;Kim Sang-Gyu;Kang Ju-Chan
    • Fisheries and Aquatic Sciences
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    • v.5 no.4
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    • pp.295-301
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    • 2002
  • Experiments were carried out to investigate the effects of metal interaction on the accumulation and elimination of Cd and Cu in the liver of flounder, Paralichthys olivaceus, exposed to sub-chronic Cd (0, 5, 10, 50, 100 ${\mu}g/L$)/Cu $(10 {\mu}g/L)$ mixture. Cd exposure resulted in an increased Cd accumulation in the liver of flounder for exposure periods and concentration, and Cd accumulation increased linearly with exposure time. Cu accumulation profiles were similar to those of Cd. Cd concentration in the liver significantly decreased at the 10th depuration period and elimination rate was $66.20\%,\;86.22\%$ in 50 and $100 {\mu}g/L$at the end of depuration periods, respectively. Although, Cu elimination was similar to Cd elimination phase, Cd elimination rate was higher than that of Cu. Co-relationship of Cd and Cu have a positive correlation coefficient r=0.8620 (P<0.001) and support the strong relationship between Cd and Cu accumulation. As increase with the Cd exposure concentration, there were significant (P<0.001) differences between Cd and Cu accumulation.

Accumulation and Elimination of Cadmium and Zinc in Littorina brevicula (총알고둥에서 카드뮴과 아연의 축적과 제거)

  • Han, Su-Jeong;Lee, In-Suk
    • The Korean Journal of Ecology
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    • v.24 no.1
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    • pp.35-43
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    • 2001
  • Accumulation, elimination and subcellular distribution of heavy metals in Littorina brevicula exposed to cadmium and zinc separately and concurrently were investigated. When the winkles had been exposed to 400 ㎍/L CdCl₂ and 3000 ㎍/l ZnSO₄ separately for 90 days, each of the metal body burden in the whole sofl parts increased in proportion to time of exposure until 70 days. But it didn't increase after 70 days. But when the winkles had been exposed to cadmium and zinc simultaneously, cadmium body burden decreased but zinc body burden increased as compared to the winkles exposed to each of the metal. We also found that cadmium accumulated in the winkles was not depurated for 42 days, but zinc accumulated in them was depurated. Especially, zinc was depurated faster when they had been exposed to mixture of cadmium and zinc. After the winkles had been exposed to cadmium and zinc separately for 70 days, about 60% cadmium of the total body burden was associated with the soluble fraction, while about 75% zinc of the total body burden was associated with insoluble fraction. And these trends of metal partitioning did not alter when the winkles had been exposed to metal mixture. After the soluble fraction applied to gel-filtration chromatography column, the distribution patterns of cadmium and zinc associated with proteins or ligands were different each other. Most of cadmium (>90%) in the soluble fraction was bound to MBP-1 (Metal-binding protein-1), about 6.5 kDa), while zinc was distributed evenly to HMW (High molecular weight fraction, >60 kDa), MBP-1, MBP-2 (about 5 kDa), LMW (Low molecular weight fraction, <1 kDa).

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Development of Antitoxic Agents from Korean Medicinal Plants. Part 2. Effects of Lonicerae flos Extract on the Accumulation of Cadmium in Liver (한국산 생약으로부터 해독물질의 개발(제2보) 흰쥐 간장내의 카드뮴 축적에 미치는 금은화 추출물의 영향)

  • 백승화;유일수;이종섭;한두석
    • Toxicological Research
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    • v.11 no.2
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    • pp.223-227
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    • 1995
  • This study was conducted to investigate the metallothionein (MT) induction by Lonicerae rios in cadmium chloride intoxication. The results were as follows: Generally, detoxication effects by Lonicerae fios extract increased to the increase of extract concentrations. When 90 mg/kg dosage of Lonicerae fios extract was administered, it showed the highest antitoxic effects in metallothionein induction. From the above results, Lonicerae rios extract increased metallothionein concentration and decreased the toxicity of cadmium in liver.

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Development of Antitoxic Agents from Korean Medicinal Plants. Part 4. Effects of Panax ginseng C. A. Meyer Extract on the Accumulation of Cadmium in Liver (한국산 생약으로 부터 해독물질의 개발(제4보) 흰쥐 간장내의 카드뮴 축적에 미치는 인삼 추출물의 영향)

  • 백승화;유일수;이종섭;한두석
    • Toxicological Research
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    • v.11 no.2
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    • pp.235-239
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    • 1995
  • This study was conducted to investigate the metallothionein (MT) induction by Panax ginseng C. A. Meyer in cadmium chloride intoxication. The results were as follows: Generally, detoxicatlon effects by Panax ginseng C. A. Meyer extract increased proportionally to the increase of cadmium concentrations. When a 8 mg/g dosage of cadmium was administered, formation of the cadmium and EDTA complex showed the highest antitoxic effect. Also, when a 4 mg/g dosage of cadmium was administered, Panax ginseng C. A. Meyer extract showed the highest antitoxic effect in metallothionein induction. According to the above results, Panax ginseng C. A. Meyer extract administered with cadmium increased metallothionein concentration and decreased the toxicity of cadmium in liver.

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Studies on the Effect of Cadmium on the Physiology of Silkworm, Bombyx mori L. I. With Reference to the Development of the Various Organs and Tissues (카드미윰이 누에의 생리에 미치는 영향 I. 누에의 각 조직기관의 발육과 카드미윰의 분포량)

  • 최진섭
    • Journal of Sericultural and Entomological Science
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    • v.29 no.2
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    • pp.31-37
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    • 1987
  • Mulberry leaf sprayed on at the various concentrations of cadmium (Cd) was fed on the just molted fifth instar through the 6th day of the fifth instar and content of cadmium and zinc in the feces, organs and tissues involved were analyzed by spectrophotometer. Along with the effect of those heavy metals on development of the relevant organs and tissues sexwise. 1. The residual content of cadmium on mulberry leaf was about 50% of the total cadmium and the weight of feces disposed from the cadmium fed larvae was less than the control. There was distinctive differences in female-wise disposal of feces between cadmium treatment and control ; cadmium treatment female larvae disposed less feces than female of control. 2. Fourteen percent of the total dry weight of the anterior plus the middle silkgland and of the posterior silkgland in cadmium 100ppm treatment was decreased in female but only 9% of the anterior plus middle silkgland in male was made, showing no decrease the weight of the posterior silkgland in male. 3. Decrease of the dry weight of the silkgland, fat body and hindgut was made in cadmium 100ppm treatment and contrarily the weight of midgut and malphihian tube were increased. The total larval weight of the female and male were decreasd in cadmium 100ppm treatment and the decreasing ratio was higher in famale. 4. There wasa no detection of cadmium in all of the organs and tissues of the control and in those of the cadmium treatment the high residual content was in order of the midgut, hindgut, malphighian tube and head. A slight accumulation of cadmium was shown in fat body and silkgland. 5. Cadmium accumulation in the midgut was higher than in female but in the fat body, malphighian tube, trachea and integument was contrarily high in the female than male. 6. The total zinc content of the larvae was below 60ppm in the control and 80ppm in cadmium 100ppm treantment. The increase of zinc content in cadmium treatment was made on silkgland, malphigian tube and midgut but contrarily the decrease of zinc content in fat body was resulted. 7. In cadmium treatment, much more cadmium accumulation took place in the female and zinc accumulation was made much more in the male.

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Clinico-pathological studies on the experimental cadmium pisoning in dogs (실험적 카드뮴 중독견의 임상병리학적 관찰)

  • Lee, Sang-gwan;Lee, Hyun-beom
    • Korean Journal of Veterinary Research
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    • v.36 no.2
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    • pp.471-482
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    • 1996
  • These experiments were undertaken in order to find out the useful clinicopathological diagnostic methods of cadmium poisoning in dogs. Twenty-one dogs were divided into a control group and 6 experimental groups. The experimental groups were adminstered orally 5, 10, 15, 30, 60 and 120mg of cadmium per kg of body weight for 56 days. All dogs were examined for clinical signs, and weekly changes in hematological and blood chemical values. All dogs were necropsied on 57th days of experiment. Tissue samples including hair, skin, muscle, lung, liver, kidney, spleen, pancreas, testis, ovary, uterus, and bone were collected and analyzed for cadmium, zinc, iron and copper contents using atomic absorption spectrophotometer. From these experiments following results were obtained : 1. All experimental dogs showed vomitting, salivation, anorexia, decreased water-intake, dehydration, and marked weight loss. The dogs received 30mg/kg or more of cadmium died during the period from 2nd to 7th week after administration. 2. Hematologically, all experimental dogs showed decrease in erythrocyte count, hemoglobin concentration, and packed cell volume. The anemia was identified as normocytic and regenerative morphologically. 3. No significant differences in serum glutamic oxaloacetic transminase, glutamic pyruvic transaminase, blood urea nitrogen, and cholosterol value were obseved between the control and experimental dogs. 4. The cadmium contents in various tissues of experimental dogs were estimated as $37.8{\sim}201.8{\mu}g/g$ in bone, $14.1{\sim}49.5{\mu}g/g$ in liver, $13.2{\sim}53.1{\mu}g/g$ in kidney, $0.4{\sim}35.2{\mu}g/g$ in pancreas, $0.8{\sim}35.4{\mu}g/g$ in spleen, $0.9{\sim}30.1{\mu}g/g$ in hair, $0{\sim}7.1{\mu}g/g$ in lung, $0{\sim}5.1{\mu}g/g$ in skin, and $0{\sim}3.6{\mu}g/g$ in muscle, respectively. However, the serum, testis, ovary and uterus showed no cadmium accumulation. Two contol dogs showed cadmium accumulation only in bone. 5. Significant differances in zinc, iron, and copper contents in tissue samples were observed between the control and experimental groups.

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Microbiological Characteristics of Heavy Metal Ion-Tolerant Microorganisms. (중금속 내성균주의 미생물학적 성질)

  • 유대식
    • Microbiology and Biotechnology Letters
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    • v.7 no.4
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    • pp.183-190
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    • 1979
  • Cadmium ion-tolerant microorganisms were isolated from the sludge and soil of a cadmium ion-polluted area, a zinc mineralized area, in Kyung Sang Pook Do, Korea. A strain, C-7, which showed tile highest tolerance to cadmium ion was selected by screening from 18 cadmium tolerant microorganisms. By the taxonomical characteristics of this strain, it was identified as a variant of Erwinia sp.. The strain grew in a medium cadmium ion up to a concentration of 2, 800 $\mu\textrm{g}$/ml and the maximum intercellular accumulation of Cd$^{2+}$ was measured to be 28.60 mg/g dried cells (57.2%) during incubation in medium containing 50 $\mu\textrm{g}$/ml under aerobic condition at 28$^{\circ}C$ for 24 hour.r.

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Real-time Voltammetric Assay of Cadmium Ions in Plant Tissue and Fish Brain Core

  • Ly, Suw-Young
    • Bulletin of the Korean Chemical Society
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    • v.27 no.10
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    • pp.1613-1617
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    • 2006
  • Optimum analytical conditions for cyclic voltammetry (CV) and square wave (SW) stripping voltammetry were determined using mercury-mixed carbon nanotube paste electrode (PE). The results approached the microgram working ranges of SW: 10.0-80.0 $ugL^{-1}$ and CV: 100-700 $ugL^{-1}$ Cd (II); working conditions of 300-Hz frequency, 100 mV amplitude, 1.6 V accumulation potential, 400 sec accumulation time, and 40 mV increment potential. First, analysis was performed through direct assay of cadmium ions deep into the fishs brain core and plant tissue in real time with a preconcentration time of 400 sec. The relative standard deviation of 10.0 $mgL^{-1}$ Cd (II) observed was 0.064 (n = 12) at optimum conditions. The low detection limit (S/N) was set at 0.6 $ugL^{-1}$ ($5.33{\times}10^{-9}$ M). The methods can be used in direct analysis in vivo or in real-time monitoring of plant tissue.

The Cadmium Biosorption Mechanism in Gram Negative Bacteria, Serratia marcescens (Gram 음성 세균인 Serratia marcescens에 의한 카드뮴 흡착 기작)

  • 이호용;민봉희;최영길
    • The Korean Journal of Ecology
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    • v.22 no.1
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    • pp.39-43
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    • 1999
  • Serratia marcescens, an enterobacterium of gram-negative bacteria, is characterized by resistance of the admium. Cadmium sensitive PM strain did not grow in the medium at cadmium concentration of 50 ppm. PA strain was induced to accommodate to cadmium by cultivating the mother strain (PC strain) in the medium with 50 ppm cadmium. As compared with PC and PM strains, PA strain revealed the excellent growth in cadmium media and accumulated four to five times higher cadmium concentration in cell than other strains. PA strain accumulated 23% of cadmium in cells when cultured in medium treated with 100 ppm cadmium and this cadmium was more accumulated in cytosol fractions than membrane fractions. Analysis by TEM indicated that cadmium was concentrated as a form of granule in cytosol. In protein patterns of cell after the treatment of cadmium, two inducible proteins (28 KDa and 64 KDa) and one reducible protein (45 KDa) were detected by SDS-PAGE. By Atomic Absorption Spectrophotometer, the amounts of cadmium attached to inducible proteins of 28 KDa and 64 KDa were 318.28 ㎍ and 325.37 ㎍ per gram of protein, respectively. It is assumed that these inducible proteins play an important role in the mechanism of cadmium accumulation in cells. A plasmid of 23Kbp was found in S. marcescens. The ability of resistance to cadmium in plasmid was confirmed by curing experiments.

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Isolation of Cadmium-tolerant Bacteria and Accumulation of Cadmium into the Bacterial Cell (카드뮴의 내성균분리 및 균체내 축적)

  • 김영배;이수래
    • Microbiology and Biotechnology Letters
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    • v.4 no.3
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    • pp.111-115
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    • 1976
  • A strain of Enterobacter cloacae isolated from soil showed the evidence of growth in medium containing 1,500 ppm of Cd$\^$++/ though its growth was inhibited at high cadmium concentrations. This strain accumulated 59% of cadmium into the cells during incubation in medium containing 0.5 ppm of cadmium and its uptake was nearly proportional to the dry weight of cells, the average being 7.8 mg cadmium per g dry cells. It was also found that 60-70% of cadmium accumulated in cells were distributed in the cell wall fraction.

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