• Title/Summary/Keyword: LDH activities

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Studies on the Diagnosis for Traumatic Pericarditis of Ruminant ll. Fluctuations of Serum Total tDH Activities and LDH Isoenzymes fractions in Artificially Induced Traumatic Pericarditis. (반추수의 창상성심낭염의 진단에 관한 연구 II. 인공유발 창상성심낭염에 있어서 LDH 총활성 및 LDH isoenzyme의 변화)

  • Kim Duck-Hwan;Kim Kyo-Joon;Jun Moo-Hyung;Kwon Oh-Deog;Yoon Sang-Bo;Lee Chang-Woo
    • Journal of Veterinary Clinics
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    • v.5 no.2
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    • pp.87-94
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    • 1988
  • To develop more reliable diagnostic measures for traumatic pericarditis in ruminant, fluctuations of serum total LDH activities and LDH isoenzymes fractions were investigated in artificially induced pericarditis of Korean native goats. Experimental group showed the tendency of increase serum LDH total activities. Effect of LDH isoenzymes on serum total LDH activities were high with decreasing order of LDH$_1$> LDH$_3$ > LDH$\sub$5/ > LDH$_2$ > LDH$_4$ and LDH$_1$ was the hightest among them. From these findings, increase of serum total LDH activities and LDH$_1$ fraction was thought to be important in traumatic pericarditis.

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Serum Enzyme (GOT, LDH, ALP) Activities in Relation to Stage of Gestation in Korean Native Cattle (한우(韓牛)의 임신기간(姙娠期間)에 따른 혈청효소(血淸酵素) 활성도(活性度) (GOT, LDH 및 ALP) 의 변화(變化))

  • Jo, Chung-Ho
    • Korean Journal of Veterinary Research
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    • v.22 no.1
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    • pp.75-79
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    • 1982
  • Serum glutamic oxaloacetic transaminase (GOT), latic dehydrgenase (LDH), and alkaline phosphatase (ALP) activities were determined in 5 Korean native cattle to obtain the base line of blood enzyme activities in relation to the stage of gestation. Serum GOT activities showed an increasing tendency with the course of gestation period, serum LDH levels were within normal range through all the stage of pregnancy, and the slight increase in serum ALP activities was acknowledged at the 2nd and 3rd stage of gestation.

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LDH/ AChE and LDH/BChE Ratios (Paralichthys olivaceus) as Biomarkers of Coastal Pollution on Coast of Korea.

  • Choi Jin-Ho;Kim Dong-Woo;Kim Chang-Mok;Yang Dong Beom
    • Fisheries and Aquatic Sciences
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    • v.2 no.2
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    • pp.167-171
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    • 1999
  • This study was designed to develop biomarkers of coastal pollution using biochemical indices of flounder (Paralichthys olivaceus) by changes in lactate dehydrogenase (LDH) activity in the serum and cholinesterase activities in brain membranes. For this purpose acetylcholiesterase (AChE) activity, butyrylcholinesterase (BChE) activity, LDH/AChE ratio and LDH/BChE ratio of cultured flounders at 5 different sites on the southern coast of Korea were compared to those of wild flounders caught in the Pohang, eastern coast of Korea as a control group. Relatively high LDH activities were measured in the serum of flounders cultured on the southern coast of Korea (0.101-0.145 unit) than those in the Pohang control group (0.093 unit). AChE activities were significantly low $(about\;10-20\%)$ in brain membranes of cultured flounders compared to those in the Pohang control group. The ratios of LDH/AChE and LDH/BChE were consistently higher $(136-178\%,\; 155-214\%)$ in cultured flounders than those of Pohang control group. Thus, we propose that the ratios of LDH/AChE and LDH/BChE in flounders could be applicable for the diagnosis of marine pollution.

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Studies on Effects of Chloroform to the Tissue Lactic Dehydrogenase and Glutamic Dehydrogenase Activities of Rats (클로로포름이 백서장기(白鼠臟器)의 효소활성(酵素活性)에 관(關)한 연구(硏究))

  • Chun, Byung-Sam;Haw, Kum
    • Journal of Nutrition and Health
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    • v.4 no.1
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    • pp.21-28
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    • 1971
  • 1. The effects of chloroform to the tissue lactic dehydrogenase (LDH) activities and its isozymes and to the tissue glutamic dehydrogenase (GDH) activities and its isoaymes are studied using the experimental albino male adult rats in this paper. The tissues studies are liver, kidney, heart, and brain. Besides the control group, two experimental groups are studied providing succeedingly 4 days interpariental administrations of chloroform, 0.0025ml and 0.025ml per day respectively. The changes of body weights, weights of organs, activities of GDH and LDH and their isozymes of each tissues, are analysed. 2. The body weights of rats are decreased due to the chloroform administration. 3. There are no significant differences of weights of organs due to the chloroform administration. 4. The significant decreases of tissue GDH activities and the significant changes in percent distribution of the GDH isozymes are found due to the chloroform administration. This weight be interpretated that chloroform effects to the protein and amino acid metabolism of rats. 5. Due to the chloroform administration, the significant changes in tissue LDH activities and in percent distribution of tissue LDH isozymes indicating the decreases of $LDH_1$ which is the aerobic heart type and the increase of $LDH_5$ which is the anaerobic muscle type, are observed. This could be estimated that chloroform effects to the carbohydrate metabolism, particularly to the anaerobic glycolysis of rats.

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Effect of 'Sexiang Shuhuo Jing' for CPK, LDH Activities and Skeletal Muscle ${\alpha}-actin$ mRNA Expression after Skeletal Muscle in Rats (골격근 손상에 대한 '사향서활정'(麝香舒活精)치료의 혈청 CK, LDH활성도 및 골격근 ${\alpha}-actin$ mRNA 발현 변화의 관찰)

  • Kim, Jin-Hang;Song, Je-Ho
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.20 no.4
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    • pp.992-996
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    • 2006
  • The study examined clinical effect of the 'Sexiang Shuhuo Jing' on serum CK and LDH activities and skeletal muscle ${\alpha}-actin$ mRNA expression concentration 140days after skeletal muscle injury in rats. The clinical research consisted of observing and measuring the serum CK, LDH activities and skeletal muscle ${\alpha}-actin$ mRNA expression, at the time of injury and during recovery. All experimental data were analyzed by repeated measurement with ANOVA on of SPSS(11.5v), accepting level for all significances was above ${\alpha}\;=.05.$ The results were as follows: That skeletal muscle injury in rats there existed a substantial increase serum CK, LDH activities and expression of skeletal muscle ${\alpha}-actin$ mRNA And Sexiang Shuhuo Jing treatment group's serum CK, LDH activities lower and faster recovery than control group. The 1 st day after skeletal muscle injury, Sexiang Shuhuo Jing treatment group's skeletal muscle ${\alpha}-actin$ mRNA expression was much more higher than control group, after 2 day's faster recovery normal level than control group. There existed a substantial increase again serum CK, LDH activities and skeletal muscle ${\alpha}-actin$ mRNA expression 3rd days after injury in control group. But in Sexiang Shuhuo Jing treatment group's can't be found that.

Kinetic Properties of Lactate Dehydrogenase in Tissues from Rana catesbeiana (황소개구리(Rana catesbeiana) 조직의 젖산탈수소효소의 역학적 특성)

  • Yum, Jung Joo;Ha, Eun Sung
    • Journal of Life Science
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    • v.24 no.2
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    • pp.118-127
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    • 2014
  • The kinetic properties and isozyme expression of lactate dehydrogenase (EC 1.1.1.27; LDH) in tissues from Rana catesbeiana I and II collected from February (I) and August (II) were studied. LDH activities, A4 isozyme, and LDH/citrate synthase (EC 4.1.3.7; CS) were high in skeletal muscle from R. catesbeiana I, and LDH $B_4$ isozyme increased in several tissues of R. catesbeiana II. In particular, LDH activities were high in heart and brain tissues from R. catesbeiana II. LDH eye-specific C isozyme, detected by native polyacrylamide gel electrophoresis after immunoprecipitation, was expressed in eye tissue and was more similar to the $B_4$ than $A_4$ isozyme. LDH $A_4$ isozyme was purified by oxamate-linked affinity chromatography, and the molecular weight of subunit A was 32.0 kDa. In R. catesbeiana II, levels of $Km^{PYU}$, $Vmax^{LAC}$, and tolerance to lactate of LDH were high in all tissues, and $Vmax^{PYU}$ of LDH in heart and brain tissue was highly detected. Purified $A_4$ isozyme and LDH in eye tissue were highly tolerate compared to others. The $Km^{LAC}$ value was highly measured compared to $Km^{PYU}$. The degree of inhibition by 10 mM of pyruvate on LDH activities in tissues from R. catesbeiana I and II was more pronounced as the ratio of subunit B increased. As a result, characteristic expression of LDH eye-specific C was found in R. catesbeiana. Anaerobic metabolism seemed to predominate as the LDH of skeletal muscle from I showed higher activity. It also appeared that R. catesbeiana II adapted well to incremental increases in LDH B, becoming tolerant to the lactate of LDH in tissues.

Alteration of Lactic Dehydrogenase Activity and Isozyme of Rat Tissues Treated with Trihalomethanes (Trihalomethane을 경구투여한 흰쥐조직에서 LDH의 활성도 및 Isozyme양상의 변화)

  • Shin, Dong-Chun
    • Journal of Preventive Medicine and Public Health
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    • v.16 no.1
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    • pp.79-88
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    • 1983
  • There has been some evidence concerning the fact that trihalomethanes(THMs), toxic chlorinated compounds, may be present in drinking water. One of the important methodologies to evaluate the toxicity of THMs is to determine enzyme alteration in experimental animal tissues after treatment. This study was intended to investigate how lactic dehydrogenase(LDH) of rat tissues is affected by administration of chloroform($CHCl_3$) and dichloromonobromomethane($CHCl_2\;Br$). THMs, high dose(1/10 LD50) or low dose(1/50 LD50) of $CHCl_3$ or $CHCl_{2}Br$ were administered orally to experimental rats for 4 or 8 weeks. The treated groups of rats were sacrificed to determine LDH specific activity and isozyme pattern in various organs which were liver, thigh muscle, kidney and brain. The conclusions were obtained as follows: 1. Alteration of LDH activities and isozyme patterns were revealed before morphologic changes in tissues. 2. The LDH specific activities were increased significantly in liver and brain after administration of high concentrations of $CHCl_3$ and $CHCl_{2}Br$ for 4 weeks respectively. Otherwise, they were decreased significantly in liver, muscle and kidney after administration for 8 weeks. 3. The isozyme activities of LDH-4 and LDH-5 were increased in muscle, brain, and especially the liver. 4. It was more distinct for the decrement of LDH H-type isozyme than the increment of M-type isozyme in muscle.

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Changes of Glutathione S-transferase Activity in MDCK Cells with Influenza Virus Type A (Influenza Virus Type A 감염 MDCK세포에 있어서 Glutathione S-transferase의 활성 변동)

  • 김병렬;박남표;윤종국;전태원;이상일
    • Biomedical Science Letters
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    • v.6 no.1
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    • pp.19-28
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    • 2000
  • This study was performed to evaluate the activities of glutathione S-transferase (GST) and lactate dehydrogenase (LDH) in Maddin-Darby canine kidney (MDCK) cells infected with virus and/or treated with amantadine. On cell morphological findings, monolayer fractions in MDCK cells infected with virus were exfolated more than 80% in 1 TCID$_{50}$ group and that in 10 TCID$_{50}$ were completely exfolated after 3 days during infectious process. In proportion to the dose of amantadine, activities of GST and LDH of MDCK cells were significantly decreased and those of LDH in medium fraction were more significantly increased compared with control. According to in both dose and time of virus innoculation, activities of GST and LDH in MDCK cells were significantly decreased in 1 and 10 TCID$_{50}$ infected cells after 3 days. LDH activities in infectious medium were remarkably rised at 10 fold. In case of the cell line inoculated with type A 100 TCID$_{50}$ and additionally treated with amantadine, the decreasing rate to the control in activities of GST and LDH was lower than that in those in case of that infected with virus only. These results suggested that virus infection and amantadine treatment may effect the activity of the detoxicating enzyme in the target cells.

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Studies on the Serum Total Activities and Isoenzyme PAtterns of LDH in Non-Human Primates Reared in Korea (國內詞育 원숭이의 血淸 LDH의 總活性値와 isoenzyme에 관한 硏究)

  • 윤상보;김덕환;서지민;신남식;현병화;김명철;윤효인;박배근;송희종
    • Journal of Veterinary Clinics
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    • v.18 no.4
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    • pp.380-389
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    • 2001
  • Non-human primates have been increasing in demand as important experimental animals and companion animals, domestically and internationally. The number of non-human primates for these purposes will be much enhanced in the near future. Despite this trend, basic physiological data are scarcely available in these animal species, leading to the difficulty to diagnose diseases when necessary, due to the absence of reference values. Particularly, there is not any report on the total activity of LDH of non-human primates, let alone LDH isoenzyme patterns, in Korea. LDH isoenzymes have a high level of efficaciousness as diagnostic and prognostic aids in various diseases. In this study, total activities and isoenzyme patterns of LDH were measured to obtain their reference values in domestically reared common marmosets, crab-eating macaques and Japanese macaques. There were widespread different values of serum total LDH among the non-human primate species experimented in this study. Serum LDH values of common marmosets and crab-eating macaques were 597.5$\pm$243.1 IU/l and 605.3$\pm$312.6 IU/l, respectively, whereas those of Japanese macaque showed 1,209$\pm$473.8 IU/l. Five isoenzyme fractions of LDH were observed in all experimented non-human primates but their ranks and proportions represented different patterns one another. In common marmosets, the percent of fraction for serum LDH1, LDH$_2$, LDH$_3$, LDH$_4$, and LDH$_{5}$ was 13.7$\pm$6.4%, 23.3$\pm$3.6%, 29.2$\pm$5.0%, 9.4$\pm$1.4% and 24.4$\pm$7.5%, respectively. The rank of LDH isoenzymes was LDH$_3$>LDH$_{5}$>LDH$_2$>LDH$_1$>LDH$_4$, in the descending order. For crab-eating macaques, the fraction of serum LDH$_1$, LDH$_2$, LDH$_3$, LDH$_4$, and LDH$_{5}$ occupied 19.5$\pm$12.7%, 25.3$\pm$9.3%, 23.8$\pm$8.1%, 10.2$\pm$2.8% and 21.3$\pm$14.2%, respectively. The order of LDH isoenzymes was LDH$_2$>LDH$_3$>LDH$_{5}$>LDH$_1$>LDH$_4$, from top to down. On the while, in Japanese macaques, the fraction of serum LDH$_1$ to LDH$_{5}$ showed 23.4$\pm$11.8%, 30.5$\pm$4.1%, 17.4$\pm$3.9%, 11.3$\pm$3.7% and 13.8$\pm$5.6%, respectively. The decreasing order indicated LDH$_2$>LDH$_1$>LDH$_3$>LDH$_{5}$>LDH$_4$. In conclusion, values such as LDH and LDH isoenzyme patterns of investigated for the first time from non-human primates reaared in Korea, could be reference values for the optimal diagnosis and therapy of diseases of the corresponding animal species. Other parameters of hematology and blood biochemistry are urgently needed to study for the benefit of our intimate non-human primates.an primates.

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Metabolism of Lactate Dehydrogenase in Tissues from Ldh-C Expressed Fish at Starved State (기아상태에서 Ldh-C가 발현된 어류 조직의 젖산탈수소효소의 대사)

  • Yum, Jung Joo;Kim, Gyu Dong
    • Journal of Life Science
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    • v.26 no.2
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    • pp.155-163
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    • 2016
  • Metabolism of lactate dehydrogenase (EC 1.1.1.27, LDH) was studied to identify the function of LDH-C. Tissues of LDH liver-specific Ldh-C expressed Carassius auratus and eye-specific Ldh-C expressed Lepomis macrochirus after starvation were studied. LDH activity in liver tissue from C. auratus was increased after starvation. And LDH specific activity (units/mg) and LDH/CS were increased in tissues. It means the anaerobic metabolism was taking place in C. auratus after starvation. LDH B4 isozyme was decreased in skeletal muscle and increased in heart tissue. LDH C4 isozymes those showed in eye and brain tissues were identified as liver-specific C4 isozymes and disappeared after starvation. And C hybrid in eye, A4 isozyme in brain, and both C hybrid and C4 isozyme in liver tissue were increased, respectively. In L. macrochirus, the level of variation of LDH activities was low but greatly increased especially in eye tissue and LDH A4 and AC hybrid were increased in brain tissue. The LDH activities in tissues from C. auratus and L. macrochirus remained 30.30-18.64% and 25-18.75%, respectively, as a result of the inhibition by 10 mM of pyruvate. The KmPYR values of LDH in C. auratus were increased. As a result, LDH liver-specific C4 isozyme was expressed in liver, brain and eye tissues during starvation. It seems metabolism of lactate was predominant in brain tissue. After starvation, the liver-specific LDH-C was affected more than eye-specific LDH-C.