• 제목/요약/키워드: RBCs Hemolysis

검색결과 16건 처리시간 0.019초

The Effect of the Aging of Red Blood Cells on Rheological Properties and Hemolysis

  • Tomioka, Jun;Motokubo, Kazuhiro;Watanabe, Hisayoshi
    • 한국윤활학회:학술대회논문집
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    • 한국윤활학회 2002년도 proceedings of the second asia international conference on tribology
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    • pp.371-372
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    • 2002
  • It is well known that red blood cells (RBCs) are suffered from chronic stresses in systemic circulation. The objective of this study is to clarify the effect of the aging of RBCs on rheological properties and hemolysis. Initially, RBCs age fractionation was performed by using a high-speed centrifugation (15[min] at 1500[G]), then young and aged RBCs were suspended in plasma to adjust the hematocrit level of 40[%]. After this pretreatment, the viscosity was measured by using a capillary type and a cone-plate type viscometers, respectively, and the hemolysis test was carried out by a seesaw type shaker. Results from these experiments showed that the viscosity of the aged RBCs measured by the capillary viscometer was increased by 10[%] as compared with that of the young RBCs. Under the condition of all shear zones, the viscosity of the aged RBCs was increased in case of using the cone-plate type viscometer. And the hemolytic level was increased twice as the aging. The data obtained in this study indicated that the ability of aggregation of RBCs was increased and the deformability of RBCs membrane got lower with the aging. Furthermore, it was exhibited that the fragility of RBCs ’ membrane was increased with the aging.

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Omeprazol과 $\beta$-Cyclodextrin, Hydroxypropyl-$\beta$-Cyclodextrin의 포접화합물에 대한 적혈구 손상 및 변이원성시험 연구 (Hemolysis and Mutagenicity test on the Inclusion Complex of Omeprazol with $\beta$-Cyclodextrinand Hydroxypropyl$\beta$ Cyclodextrin)

  • 김봉희;이계주
    • 한국식품위생안전성학회지
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    • 제10권1호
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    • pp.29-32
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    • 1995
  • Inclusion complex of omeprazol with $\beta$-Cyclodextrin and Hydroxypropyl-$\beta$-Cyclodextrin were prepared by coprecipitation and freeze-drying method respectively. Effects of these inclusion complex on RBCs were monitored with a spectrophotometer by the method of Kahan et al. and the mutagenic activity based on the Ames plate incorporation test in the presence and absence of liver microsomal enzyme(S9 fraction) using Salmonella typhimurium TA98 and TA100. The RBCs hemolysis and mutagenic activity of these complex were not detected.

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Hemolysis of irradiated leukoreduced red blood cells during rapid warming: An in vitro experimental study

  • Lee, Sukyung;Lee, Sooho;Oh, Jong Eun;Shin, Won-Jung;Min, Won-Ki;Gwak, Mijeung
    • Journal of Dental Anesthesia and Pain Medicine
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    • 제15권4호
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    • pp.229-233
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    • 2015
  • Background: Although water chambers are often used as surrogate blood-warming devices to facilitate rapid warming of red blood cells (RBCs), these cells may be damaged if overheated. Moreover, filtered and irradiated RBCs may be damaged during the warming process, resulting in excessive hemolysis and extracellular potassium release. Methods: Using hand-held syringes, each unit of irradiated and leukocyte-filtered RBCs was rapidly passed through a water chamber set to different temperatures (baseline before blood warming, $50^{\circ}C$, $60^{\circ}C$, and $70^{\circ}C$). The resulting plasma potassium and free hemoglobin levels were then measured. Results: Warming RBCs to $60^{\circ}C$ and $70^{\circ}C$ induced significant increases in free hemoglobin (median [interquartile ranges] = 60.5 mg/dl [34.9-101.4] and 570.2 mg/dl [115.6-2289.7], respectively). Potassium levels after warming to $70^{\circ}C$ ($31.4{\pm}7.6mEq/L$) were significantly higher compared with baseline ($29.7{\pm}7.1mEq/L$; P = 0.029). Potassium levels were significantly correlated with storage duration after warming to $50^{\circ}C$ and $60^{\circ}C$ (r = 0.450 and P = 0.001; r = 0.351 and P = 0.015, respectively). Conclusions: Rapid warming of irradiated leukoreduced RBCs to $50^{\circ}C$ may not further increase the extracellular release of hemoglobin or potassium. However, irradiated leukoreduced RBCs that have been in storage for long periods of time and contain higher levels of potassium should be infused with caution.

광예민성화합물에 의한 적혈구 용혈현상과 Yeast 시험 비교연구 (Comparative Study on Red Blood Cell Hemolysis and Yeast Test by Photosensitizing Compounds)

  • 김봉희;백광흠
    • Environmental Analysis Health and Toxicology
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    • 제5권1_2호
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    • pp.45-50
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    • 1990
  • In order to investigate the phototoxicity of five phenothiazine derivatives and one thioxanthen derivative were examined by using in vitro method based on growth inhibition of Candida albicans and red blood cell hemolysis. Effects of the test compounds on RBCs were monitored with a spectrophotometer and a drug PI in the Candida albicans was calculated on the basis of the lowest concentration giving a yeast-free zone. All phenothiazines phototoxic in the red blood cell hemolysis method were positive in the yeast test except promethazine. It was also observed that toxic photo-products were formed by perphenazine and chlorpromazine in the red blood cell hemolysis.

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느타리버섯 갈반병 원인독소 Tolaasin의 용혈특성 (Hemolytic Properties of Tolaasin Causing the Brown Blotch Disease on Oyster Mushroom)

  • 조광현;박경선;김영기
    • Applied Biological Chemistry
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    • 제43권3호
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    • pp.190-195
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    • 2000
  • 재배버섯에 갈색의 침몰성 반점들로 나타나는 갈반병(brown blotch disease)은 Pseudomonas tolaasii의 펩티드성 독소인 tolaasin에 의해서 유발된다. Tolaasin은 18개의 아미노산으로 구성된 분자량 1,985 Da의 lipodepsipeptide이며, 생체막에 pore를 형성하여 버섯세포 뿐만 아녀라 세균, 곰팡이, 식물 및 동물세포를 파괴한다. Tolaasin의 활성은 용혈성 독소의 활성측정에 널리 쓰이는 적혈구를 이용하여 독소의 용혈활성을 측정함으로써 이루어졌다. Tolaasin의 용혈활성은 적혈구의 파괴시 방출되는 헤모글로빈 양을 420 nm에서의 흡광도 증가로 측정하거나, 잔존하는 적혈구에 의한 600 nm에서의 흡광도로 측정하였다. P. Tolaasii 배양액의 용혈활성은 배양중 정체기 초기에 증가하기 시작하여 정체기 후기에서 최대로 나타났다. Tolaasin의 용혈활성은 개와 쥐의 적혈구에서 높게 나타났으며, 상대적으로 토끼와 닭의 적혈구에서는 낮았다. Tolaasin의 용혈활성에 미치는 양이온들의 효과에서 $ZN^{2+}$ 뿐만 아니라, $Cd^{2+}$$L^{3+}$이 tolaasin의 용혈활성을 저해하였으며, 음이온의 경우 $CO_3^2$가 용혈활성을 지연시켰고, 반면 $PO_4^{2-}$의 경우 용혈활성을 증가시켰다.

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진도견의 적혈구내 K, Na 및 reduced glutathione 함량에 관한 조사 (Studies on the Concentrations of K, Na and Reduced Glutathione in Red Blood Cells of Jindo Dogs)

  • 김홍태;장혜석;장우석;진태원;장인호;장광호;김영홍
    • 한국임상수의학회지
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    • 제16권2호
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    • pp.272-275
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    • 1999
  • Generally, it is known that the composition of the cation of the dog's RBCs is high in potassium(K) and low in sodium(Na). However, it is reported that certain kinds of dogs have HK, HG phenotype which contains a large amount of reduced glutathione(GSH) by the effect of Na-K pump on the cell membrane of RBC with high concentration of K and low concentration of Na. Although this HK phenotype is not regarded as a disease, it is supposed to be an important assignment to examine the distribution and the occurrence rate of the dogs that contain HK cell in their RBCs for the proper clinical treatments as these HK dogs are very sensitive to aromatic disul-fide or onions and have a tendency to cause hemolysis. Accordingly, present study was performed to measure the concentration of K, Na and GSH in the RBCs of Jindo dogs and that of Dosa dogs at the same time.

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Effects of α-tocopherol on hemolysis and oxidative stress markers on red blood cells in β-thalassemia major

  • Sovira, Nora;Lubis, Munar;Wahidiyat, Pustika Amalia;Suyatna, Franciscus D.;Gatot, Djajadiman;Bardosono, Saptawati;Sadikin, Mohammad
    • Clinical and Experimental Pediatrics
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    • 제63권8호
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    • pp.314-320
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    • 2020
  • Background: The accumulation of unpaired α-globin chains in patients with β-thalassemia major may clinically create ineffective erythropoiesis, hemolysis, and chronic anemia. Multiple blood transfusions and iron overload cause cellular oxidative damage. However, α-tocopherol, an antioxidant, is a potent scavenger of lipid radicals in the membranes of red blood cells (RBCs) of patients with β-thalassemia major. Purpose: To evaluate the effects of α-tocopherol on hemolysis and oxidative stress markers on the RBC membranes of patients with β-thalassemia major. Methods: Forty subjects included in this randomized controlled trial were allocated to the placebo and α-tocopherol groups. Doses of α-tocopherol were based on Institute of Medicine recommendations: 4-8 years old, 200 mg/day; 9-13 years old, 400 mg/day; 14-18 years old, 600 mg/day. Hemolysis, oxidative stress, and antioxidant variables were evaluated before and after 4-week α-tocopherol or placebo treatment, performed before blood transfusions. Results: Significant enhancements in plasma haptoglobin were noted in the α-tocopherol group (3.01 mg/dL; range, 0.60-42.42 mg/dL; P=0.021). However, there was no significant intergroup difference in osmotic fragility test results; hemopexin, malondialdehyde, reduced glutathione (GSH), or oxidized glutathione (GSSG) levels; or GSH/GSSG ratio. Conclusion: Use of α-tocopherol could indirectly improve hemolysis and haptoglobin levels. However, it played no significant role in oxidative stress or as an endogen antioxidant marker in β-thalassemia major.

Role of oxygen in plasma induced chemical reactions in solution

  • Ki, Se Hoon;Uhm, Han Sup;Kim, Minsu;Baik, Ku Youn;Choi, Eun Ha
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2016년도 제50회 동계 정기학술대회 초록집
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    • pp.208.2-208.2
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    • 2016
  • Many researchers have paid attention to the studies on the interaction between non-thermal plasma and aqueous solutions for biomedical applications. The gas composition in the plasma is very important. Oxygen and nitrogen are the main gases of interest in biological applications. Especially, we focus on the oxygen concentration. In this experiment, we studied the role of oxygen concentration in plasma induced chemical reactions in solution. At first, the amount of ions are measured according to changing the oxygen concentration. And we checked the relationship between these ions and pH value. Secondly, when the oxygen concentration is changed, it identified the type and amount of radical generated by the plasma. In order to confirm the effect of these chemical property change to biological material, hemoglobin and RBCs are chosen. RBCs are one of the common basic biological cells. Thirdly, when plasma treated according to oxygen concentration in nitrogen feeding gas, oxidation of hemoglobin and RBC is checked. Finally, membrane oxidation of RBC is measured to examine the relation between hemoglobin oxidation and membrane damage through relative hemolysis and Young's modulus. Our results suggest that reactive species generated by the plasma differsdepending on the oxygen concentration changes. The pH values are decreased when oxygen concentration increased. OH decrease and NO increase are also observed. These reactive species makes change of chemical properties of solution. We also able to confirm that the difference in these reactive species to affect the oxidation of the Hb and RBCs. The Hb and RBCs are more oxidized with the high oxygen concentration conditions. But membrane is damaged more by plasma treatment with only nitrogen gas. It is shown that red blood cells membrane damage and oxidation of hemoglobin are not directly related.

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펩티드 독소 Tolaasin에 의한 세포독성의 pH 의존성 (pH-dependent Cytotoxicity of a Peptide Toxin, Tolaasin)

  • 김성태;최태근;김영기
    • Applied Biological Chemistry
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    • 제50권4호
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    • pp.257-261
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    • 2007
  • Pseudomonas tolaasii에 의해서 분비되는 펩티드 독소인 tolaasin은 재배버섯에 세균성 갈반병을 유발한다. Tolaasin의 독성은 적혈구를 파괴하는 용혈활성으로 평가된다. Tolaasin 펩티드는 C-말단부위에 두 개의 amine기를 갖고있어, 이 펩티드의 세포막 결합은 amine기의 전하상태에 따라 다를 수 있다. 이것을 확인하기 위하여 tolaasin을 적정하였을 때, 적정곡선은 pH 7.0에서 9.6 사이에서 적정이 되는 amine기가 있음을 보였다. Tolaasin에 의한 용혈활성의 pH 의존성을 조사하였을 때, 용혈활성은 알칼리 조건에서 증가함을 확인하였다. 따라서, pH 변화에 따른 tolaasin의 막결합 특성을 조사하기 위하여 적혈구를 tolaasin과 사전배양한 후, tolaasin을 포함하지 않은 완충액으로 씻어내고, 사전배양중 적혈구에 결합한 tolaasin의 용혈활성을 측정하였을 때, 활성은 pH 8 이상에서 크게 증가하였다. 이러한 결과는 tolaasin이 전하가 없거나 양전하량이 적은 상태에서 세포막에 잘 결합하여 세포독성이 커진다는 것을 의미한다.

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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