• 제목/요약/키워드: L-lactate dehydrogenase

검색결과 204건 처리시간 0.024초

효소 전극을 이용한 유산균 측정 바이오센서 개발 (Development of an Enzyme Electrode Biosensor for Lactic Acid Bacteria)

  • 박두산;조성인
    • Journal of Biosystems Engineering
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    • 제30권4호
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    • pp.249-253
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    • 2005
  • This study was carried out to develop enzyme biosensor for lactic acid bacteria. Lactic acids produced by lactic acid bacteria (LAB) was measured and good correlation $R^2=0.98$ between LAB count and lactic acids concentration was found. Hydrogen ion produced by L-lactate dehydrogenase (L-LDH) was measured by a potentiometer. Glutamic-pyruvic transminase (GPT) was used for eliminating inhibitor in the reaction. Polyacrylamide gel was used for immobilizing matrix of the sensor. The biosensor was tested and showed good feasibility with $R^2=0.99$ on validation.

Streptococcus sp. JEJ-6에 의한 가용성 전분으로부터 L-Lactic Acid 생성에 관한 연구 (Study on the Production of L-Latic Acid from Soluble Starch by Streptococcus sp. JEJ-6)

  • 전홍기;조영배;전은주;백형석
    • 한국식품영양과학회지
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    • 제27권3호
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    • pp.425-432
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    • 1998
  • The strain producing L-lactic acid from starch was isolated from kimchi. The isolated strain was identified as a homofermentative Streptococcus sp. through its morphological, cultural, biochemical characteristics, and named Streptococcus sp. JEJ-6. Lactic acids are of two types, one L-specific and the other D-specific form in a stereospecific form. Streptococcus sp. JEJ-6 produced selectively L-lactic acid from all of the tested carbon sources. The optimum conditions for the L-lactic acid production from the isolated microorganism were determined. For the maximum yield of L-lactic acid from Streptococcus sp. JEJ-6, the cell should be harvested at the early stationary phase, and the growth temperature, pH, and NaCl concentration should be 37$^{\circ}C$, pH 7.0 and 0.1%, respectively. 4% Soluble starch as substrate and organic nitrogen sources such as peptone and yeast extract should be used for the best yield. The optimum pH of the nicotinamide adenine dinucleotide(NAD)-dependent and NAD-independent lactate dehydrogenase(LDH) activities was pH 8.5 and pH 7.0, respectively.

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애엽 에탄올 추출물이 사염화탄소로 유발된 흰쥐의 간 손상 보호효과 (Protective Effect of Ethanol Extract of Artemisiae vulgaris L. on hepatic injury Induced by Carbon tetrachloride In Rat.)

  • 김옥경
    • 한국응용과학기술학회지
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    • 제36권4호
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    • pp.1420-1426
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    • 2019
  • Dawley 계 숫컷 흰쥐(200~210g)를 정상군, CCl4-대조군, CCl4-실험군으로 나누어 실험군은 애엽 에탄올 추출물을 1,000mg/kg,b.w의 용량으로 1일1회7일간 경구 투여 후 사염화탄소를 0.6mg/kg,b.w의 용량으로 복강내 주사 후 다음날 개복하여 혈청내의 Alanine aminotransferase(ALT), Aspartate aminotransferase(AST),Alkaline phosphatase(ALP), Glutamyltranspeptidase(γ-GT), Lactate dehydrogenase(LDH)의 활성도와 중성지방, 콜레스테롤 함량을 측정한 결과 애엽 추출물 투여군에서 CCl4-대조군과 비교하여 유의적인 감소를 나타내었으며, HDL-콜레스테롤은 유의적인 증가를 나타내었다. 간조직중의 지질과산화 함량은 감소를 glutathione함량은 유의적인 증가를 나타내었다 이 실험 결과 애엽 에탄올 추출물은 사염화탄소 투여에 의한 간 손상을 억제하는 보호물질을 함유하고 있음을 알 수 있었다.

소아 마이코플라스마 폐렴: 나이에 따른 임상적 특징과 불응성폐렴의 위험 요인 (Mycoplasma pneumoniae pneumonia in children: Clinical characteristics and risk factors of refractory pneumonia by age)

  • 김형영;박희주
    • Allergy, Asthma & Respiratory Disease
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    • 제6권6호
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    • pp.295-302
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    • 2018
  • Purpose: It is thought that Mycoplasma pneumoniae infection is more prevalent and causes more severe pneumonia in school-age children and young adults than in preschool children; however, recent studies suggest that the infection may be underdiagnosed and more severe in preschool children. This study investigated the clinical characteristics of Mycoplasma pneumoniae pneumonia (MPP) and the risk factors of refractory MPP (RMPP) by age. Methods: We retrospectively reviewed the medical records of 353 children admitted due to MPP from January 2015 to December 2016. Demographics, clinical information, laboratory data and radiological findings were collected from all patients in this study. The patients were divided into 2 groups by the age of 6 years. Also, both preschool (< 6 years old) and school-age (${\geq}6$ years old) children were divided into RMPP and non-RMPP patients. Results: Total febrile days, febrile days before admission and the duration of macrolide antibiotic therapy were significantly longer in school-age children than in preschool children. School-age children had significantly greater risk of lobar consolidation (P=0.036), pleural effusion (P=0.001) and extrapulmonary complications (P=0.019). Necrotizing pneumonia and bronchiolitis obliterans tended to occur more frequently in preschool children than in school-age children. In both preschool and school-age children, lactate dehydrogenase (LDH) levels were significantly higher in RMPP patients than in non-RMPP patients. In preschool children, LDH > 722 IU/L (odds ratio [OR], 3.02; 95% confidence interval [CI], 1.44-6.50) and ferritin > 177 ng/mL (OR, 5.38; 95% CI, 1.61-19.49) were significant risk factors for RMPP, while LDH > 645 IU/L (OR, 4.12; 95% CI, 1.64-10.97) and ferritin > 166 ng/mL (OR, 5.51; 95% CI, 1.59-22.32) were so in school-age children. Conclusion: Clinical features of MPP were significantly different between preschool and school-age children. LDH and ferritin may be significant factors of RMPP in preschool and school-age children.

광물성 분진 노출 이직노동자에서 만성폐쇄성폐질환과 호기응축액 중의 malondialdehyde 및 혈청 염증지표 간의 관련성 (The Relationship between Malondialdehyde in Exhaled Breath Condensate and Inflammatory Markers in Serum and COPD in Retired Workers Exposed to Mineral Dust)

  • 이종성;신재훈;백진이;최병순
    • 한국산업보건학회지
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    • 제29권3호
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    • pp.404-413
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    • 2019
  • Objectives: Chronic obstructive pulmonary disease(COPD) is an important cause of mortality in workers exposed to hazardous dust, such as crystalline silica or coal, and COPD is related to inflammation and oxidative stress in the lung. The aim of this study was to evaluate the association of oxidative stress and inflammation to COPD in retired workers exposed to mineral dust. Methods: The levels of malondialdehyde(MDA) in EBC as biomarkers for oxidative stress and C-reactive protein(CRP) and lactate dehydrogenase(LD) as biomarkers for inflammation were measured in 107 male subjects(63 pneumoconiosis and 42 COPD subjects). Results: Mean levels of EBC MDA(2.03 nmol/L vs. 4.65 nmol/L, p=0.010) and serum LD(170.3 U/L vs. 185.9 U/L, p=0.022) were significantly higher in subjects with COPD, but mean levels of serum CRP(p=0.469) did not show a statistical difference between the study groups. Level of EBC MDA was negatively correlated with ${%}FEV_1$ predicted(r=-0.279, p=0.004) and ${%}FEV_1/FVC$ ratio(r=-0.397, p<0.001). Conclusions: These results suggest that EBC is a useful biological matrix for investigation of respiratory oxidative stress. High levels of EBC MDA and serum LD are related to COPD in retired workers exposed to mineral dust.

효소분석법에 의한 미량암모니아의 정량 (Determination of Microquantities of Ammonia by Enzymatic Analysis)

  • 성하진;양한철
    • 한국미생물·생명공학회지
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    • 제14권6호
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    • pp.495-500
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    • 1986
  • 단백질, 아미노산 등 각종 질소화합물의 공존하에서 $10^{-5}$M (0.01 $\mu$mole/$m{\ell}$)의 미량암모니아 정량이 가능한 효소적 분석법에 관하여 검토하였다. Glutamine synthetase의 L-glutamine합성 반응에서 생성되는 무기린정량법에 의하면 암모니아정량 범위는 0.01-0.10mM이였다. Glutamine synthetase와 pyruvate kinase 및 lactate dehydrogenase의 공역계를 이용하여 340nm에서의 NADH 산화에 의한 흡광도감소에 의하여 암모니아를 정량하였다. 이 방법의 정량범위는 0.01-0.05mM이었으며 반응계의 조성은 phosphoenol pyruvate, 3mM; L-glutamate, 10mM; ATP, 1mM; MgSO$_4$, 20mM;KCl, 75mM; NADH, 0.2mM; Tris-HCl buffer(pH 7.0), 100mM; pyruvate kinase, 10U/$m{\ell}$; lactate dehydrogenase, 12U/$m{\ell}$과 glutamine synthetase, 4U/$m{\ell}$이었다. 효소반응은 3$0^{\circ}C$에서 20분간 예비반응 후 각 농도의 염화암모니움을 가한후 3$0^{\circ}C$에서 30분간 반응시켰다. Glutamine synthetase와 glutamate synthase의 공역계를 사용한 암모니아정량법의 암모니아정량 범위는 0.01-0.05mM이었으며 반응계의 조성은 ATP, 5mM; L-glutamate, 5mM; $\alpha$-ketoglutarate, 5mM; MgCl$_2$, 1.5mM; NADPH, 0.15mM; Tris- HCl buffer(pH7.0) 100mM;glutamine synthetase, 1U/$m{\ell}$과 glutamate synthase, 0.5U/$m{\ell}$ 이었다. 효소반응은 3$0^{\circ}C$에서 20분간 예비반응시킨 후 각 농도의 염화암모니움을 가하여 3$0^{\circ}C$에서 30분간 반응시켰다.

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농약의 협력작용으로 인한 잉어의 해독효소 활성의 변화 (Synergistic effects of pesticides on detoxifying enzyme activity of carp(Cyprinus carpio L.))

  • 김인선;이강봉;심재한;서용택
    • Applied Biological Chemistry
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    • 제36권1호
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    • pp.64-69
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    • 1993
  • 참잉어에 대한 해독효소 활성을 협력작용을 갖는 농약을 공시하여 조사하였고 잉어의 각 조직별 효소활성도 조사하였다. 협력작용을 갖는 약제의 독성증가에 따른 효소활성은 carboxylesterase와 GST 모두 준치사 농도에서는 활성의 증가를 보였으나 독성이 증가함에 따라 활성이 감소하였다. Carboxylesterase의 활성은 IBP와 isoprothiolane과의 협력작용으로 인해 현저한 감소를 보였으며 GST 활성 또한 isoprothiolane의 IBP, cartap과의 협력작용으로 인해 감소를 나타냈다. 한편 각 조직별 효소활성의 경우, carboxylesterase는 단일약제 처리시 공시어의 간(肝)에서, 혼합약제 처리시 장(腸)에서 그 활성이 높았으며 GST의 조직별 활성은 약제의 처리양상과는 관계없이 다양한 효과를 보였다. HPLC 방법에 의한 LDH의 활성은 isoprothiolane 단일처리구에서 활성이 가장 높았고 isoprothiolane+cartap 혼합처리구와 cartap 단일처리구에서는 가장 낮았다.

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Effect of S-Adenosylmethionine on Hepatic Injury from Sequential Cold and Warm Ischemia

  • Lee, Yu-Bum;Lee, Sun-Mee
    • Archives of Pharmacal Research
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    • 제23권5호
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    • pp.495-500
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    • 2000
  • We investigated whether S-adenosylmethionine (SAM) treatment improved ischemic injury using perfused rat liver after sequential periods of 24 h cold and 20 min re-warming ischemia. SAM (100 $\mu\textrm{mol/L}$) was added to University of Wisconsin (UW) solution and Ringers lactate solution. After cold and sequential warm ischemia, releases of lactate dehydrogenase (LDH) and purine nucleoside phosphorylase (PNP) markedly increased during repefusion. The increase in PNP was significantly reduced by SAM treatment. While the concentration of reduced glutathione (GSH) in ischemic livers significantly decreased, the concentration of glutathione disulfide (GSSG) increased. This decrease in GSH and increase in GSSG were suppressed by SAM treatment. Lipid peroxidation was elevated in cold and warm ischemic and reperfused livers, but this elevation was also prevented by SAM treatment. Hepatic ATP levels were decreased in the ischemic and reperfused livers to 42% of the control levels. However, treatment with SAM resulted in significantly higher ATP levels and preserved the concentration of AMP in ischemic livers. Our findings suggest that SAM prevents oxidative stress and lipid peroxidation and helps preserve hepatic energy metabolism.

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체외순환후 fructose-1,6-diphosphatate[FDP]가 적혈구에 미치는 영향 (Effect of Fructose-1,6-diphosphate[FDP] on Red Blood Cells after Extracorporeal Circulation)

  • 이정렬
    • Journal of Chest Surgery
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    • 제25권7호
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    • pp.693-701
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    • 1992
  • Extracorporeal cardiopulmonary bypass[CPB] has been associated with a wide variety of hematologic derangements, including a transient deformation and hemolysis of red blood cells[RBCs], which is supposed to be due to mechanical trauma and/or metabolic alterations. Since membrane integrity is, in part, maintained by energy requiring process, inadequate function of erythrocyte glycolytic pathway, which is inevitalble during CPB, may cause depletion of high energy phosphate pool and result in hemolysis. The authors performed an investigation to assess whether administration of Fructose-l, 6-diphsphate [FDP], which has been known to enhance intracellular glycolytic activities, could counteract erythrocyte hemolytic events caused by CPB. Sixty pateints with cyanotic congenital heart diseases, who underwent open heart surgery under CPB longer than 60 minutes, were randomly divided into two groups depending on whether use of FDP[Group FDP] or not[Group Control]. The age, sex, CPB time, preoperative hemoglobin level, disease entities were all similar[Table 1], and membrane type oxygenators were used in all patients. In Group, FDP, a dose of 250mg/kg body weight of FDP was administered by intravenous dripping every 12 hours from the morning of the operation to postoperative 48 hours, To demonstrate the degree and pattern of hemolysis of erythrocyte, reticulocyte count, indirect /direct bilirubin, haptoglobin, plasma hemoglobin, lactate dehydrogenase were measured every 12 hours from the time of cessation of CPB to 48 hours and RBC morphologic study, osmotic fragility test were done every 24 hours. All parameters revealed less hemolytic in group FDP [Fig. 1~5], though the differences between two groups were not significant, except plasma hemoglobin, lactate dehydrogenase changes. A pattern of sequential changes of plasma hemoglobin, lactate deh-ydrogenase showed the highest level at the time of CPB stop and abrupt decrease in following 24 hours in both groups, and statistically significant differences were demonstrated in group FDP at least for the first 12 hours postoperatively[p<0.05]. The authors conclude that they can expect the benificial effect of FDP on the maintenance of membrane stability of RBC probably by energy enhancement during the shock status of CPB, but FDP could not completely prevent the damaging effect on RBC by cardiopulmonary bypass

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Effect of hydrogen-rich water on the lactic acid level in metformin-treated diabetic rats under hypoxia

  • Zhao, Chuan;Guo, Yushu;Wang, Ruoxi;Cheng, Cheng;Chen, Xiangmei
    • The Korean Journal of Physiology and Pharmacology
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    • 제25권6호
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    • pp.517-523
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    • 2021
  • The present study aims to investigate the impact of hydrogen-rich water on the lactic acid level in metformin-treated diabetic rats under hypoxia. Thirty Sprague-Dawley rats were randomly divided into five groups, including normal diet group, and diabetes model (DM) group, DM + metformin treatment (DMM) group, DMM + hypoxia treatment (DMMH) group and DMMH + hydrogen-rich water (DMMHR) group. We found that the levels of lactic acid, pyruvate and lactate dehydrogenase were significantly lower in the blood of DMMHR group than DMMH group. Superoxide dismutase and glutathione levels in liver and heart were significantly higher in DMMH group after hydrogen-rich water treatment, while malondialdehyde and oxidized glutathione levels were decreased in DMMHR group when compared with DMMH group, which indicates that hydrogen-rich water could reduce oxidative stress. qPCR analysis demonstrated that that pro-apoptotic genes Bax/Caspase-3 were upregulated in DM group and metformin treatment suppressed their upregulation (DMM group). However, hypoxic condition reversed the effect of metformin on apoptotic gene expression, and hydrogen-rich water showed little effect on these genes under hypoxia. HE staining showed that hydrogen-rich water prevented myocardial fiber damages under hypoxia. In summary, we conclude that hydrogen-rich water could prevent lactate accumulation and reduce oxidant stress in diabetic rat model to prevent hypoxia-induced damages. It could be served as a potential agent for diabetes patients with metformin treatment to prevent lactic acidosis and reduce myocardial damages under hypoxic conditions.