• 제목/요약/키워드: Reaction Mechanism Reduction

검색결과 207건 처리시간 0.026초

잠김 금속판(LCP-DF)을 이용한 대퇴골 원위부의 관절외 복합골절 치료시 나사못 배열에 따른 생체역학적 안정성 분석 (Effects of Screw Configuration on Biomechanical Stability during Extra-articular Complex Fracture Fixation of the Distal Femur Treated with Locking Compression Plate)

  • 권경제;조명래;오종건;이성재
    • 대한의용생체공학회:의공학회지
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    • 제31권3호
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    • pp.199-209
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    • 2010
  • The locking compression plates-distal femur(LCP-DF) are being widely used for surgical management of the extra-articular complex fractures of the distal femur. They feature locking mechanism between the screws and the screw holes of the plate to provide stronger fixation force with less number of screws than conventional compression bone plate. However, their biomechanical efficacies are not fully understood, especially regarding the number of the screws inserted and their optimal configurations. In this study, we investigated effects of various screw configurations in the shaft and the condylar regions of the femur in relation to structural stability of LCP-DF system. For this purpose, a baseline 3-D finite element (FE) model of the femur was constructed from CT-scan images of a normal healthy male and was validated. The extra-articular complex fracture of the distal femur was made with a 4-cm defect. Surgical reduction with LCP-DF and bone screws were added laterally. To simulate various cases of post-op screw configurations, screws were inserted in the shaft (3~5 screws) and the condylar (4~6 screws) regions. Particular attention was paid at the shaft region where screws were inserted either in clustered or evenly-spaced fashion. Tied-contact conditions were assigned at the bone screws-plate whereas general contact condition was assumed at the interfaces between LCP-DF and bone screws. Axial compressive load of 1,610N(2.3 BW) was applied on the femoral head to reflect joint reaction force. An average of 5% increase in stiffness was found with increase in screw numbers (from 4 to 6) in the condylar region, as compared to negligible increase (less than 1%) at the shaft regardless of the number of screws inserted or its distribution, whether clustered or evenly-spaced. At the condylar region, screw insertion at the holes near the fracture interface and posterior locations contributed greater increase in stiffness (9~13%) than any other locations. Our results suggested that the screw insertion at the condylar region can be more effective than at the shaft during surgical treatment of fracture of the distal femur with LCP-DF. In addition, screw insertion at the holes close to the fracture interface should be accompanied to ensure better fracture healing.

영가철을 이용한 아조계 염료의 탈색 (Discoloration of Azo-Dyes Using Zerovalent Iron)

  • 정용식;임우택;김종현;오형석;김영훈
    • 대한환경공학회지
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    • 제30권12호
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    • pp.1262-1267
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    • 2008
  • 영가금속을 이용한 아조계 염료의 탈색연구를 수행하였다. 아조계 염료는 대부분 생물학적 독성을 갖고 있으며 생물학적 분해가 어려운 경우가 많다. 색을 제거하기 위한 가장 간단한 방법은 아조결합을 파괴하는 것이며 영가금속을 이용한 환원적 제거가 가능하다. 3종의 염료를(Cibacron Briliant Yellow 3G-P (CBY3G-P), Benzopurpurin 4b (B-4B), Chicago sky blue 6b (CSB6B)) 대상으로 연구하였으며 각 염료의 반응속도는 pH에 매우 의존적이며 낮은 pH에서 반응속도가 증가되었다. 영가철에서 용해된 철이온에 의한 응집 및 침전반응도 색도제거에 기여할 수 있으며 본 연구에서는 그 기여율을 알기 위해 철이온에 의한 제거실험을 수행하였으며 그 기여율은 대상 염료에 따라 편차가 크다는 것을 알 수 있었다. 본 연구에서는 영가철에 의한 환원반응에 의해아조계 염료가 성공적으로 탈색될 수 있음을 증명하였다.

지하수 중 탄소원으로 fumarate 주입과 유전자분석을 통한 질산성질소 자연저감도 평가 (Evaluation of Natural Attenuation by Addition of Fumarate as Carbon Source and Gene Analysis in Groundwater Sample)

  • 박선화;김현구;김소현;이민경;이경미;김영;김문수;김태승
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제19권4호
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    • pp.62-69
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    • 2014
  • In the results of monitoring nitrate concentration in more than 8,000 groundwater wells around agro-livestock, the average and maximum nitrate concentration was 9.4 mg/L and 101.2 mg/L, respectively. Since about 31% of the monitoring wells was exceed the quality standard for drinking water, nitrate control such as remediation or source regulation is required to conserve safe-groundwater in South Korea. Typical nitrate-treatment technologies include ion exchange, reverse osmosis, and biological denitrification. Among the treatment methods, biological denitrification by indigenous microorganism has environmental and economic advantages for the complete elimination of nitrate because of lower operating costs compared to other methods. Major mechanism of the process is microbial reduction of nitrate to nitrite and nitrogen gas. Three functional genes (nosZ, nirK, nirS) that encode for the enzyme involved in the pathway. In this work, we tried to develop simple process to determine possibility of natural denitrification reaction by monitoring the functional gene. For the work, the functional genes in nitrate-contaminated groundwater were monitored by using PCR with specific target primers. In the result, functional genes (nosZ and nirK) encoding denitrification enzymes were detected in the groundwater samples. This method can help to determine the possibility of natural-nitrate degradation in target groundwater wells without multiplex experimental process. In addition, for field-remediation application we selected nitrate-contaminated site where 200~600 mg/L of nitrate is continuously detected. To determine the possibility of nitrate-degradation by stimulated-natural attenuation, groundwater was sampled in two different wells of the site and nitrate concentration of the samples was 300 mg/L and 616 mg/L, respectively. Fumarate for different C/N ratio was added into microcosm bottles containing the groundwater to examine denitrification rate depending on carbon concentration. In the result, once 1.5 times more than amount of fumarate stoichiometry required was added, the 616 mg/L of nitrate and 300 mg/L of nitrate were completely degraded in 8 days and 30 days. The nitrite, byproduct of denitrification process, was also completely degraded during the experimental period.

노인의 재활 필라테스 운동이 낙상 예방 효과에 대한 고찰 (A Study on Effects of the Fall Prevention in the Rehabilitation Pilates Exercise)

  • 김지선
    • 한국응용과학기술학회지
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    • 제40권2호
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    • pp.290-300
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    • 2023
  • 본 연구는 노인들의 낙상 위험 기전을 이해하고 필라테스 재활 운동 원리가 노인들의 균형 능력과 자세 안정화에 긍정적 효과를 기대할 수 있는지 선행 연구 자료를 고찰하였고, 재활 필라테스 운동의 낙상 예방 효과에 대한 문헌적 기초자료를 제시하는데 연구의 목적이 있다. 이에 다음과 같은 결론을 제시하고자 한다. 첫째, 재활 필라테스 운동은 척추와 골반의 안정화를 위한 신체 중심부의 강화 운동이 가능하고, 신경근을 촉진시켜 균형과 관절 안정화에 효과가 있다. 둘째, 노화에 따른 고유수용기 감각 저하와 근골격계 퇴행 질환은 균형 능력 상실과 자세 유지의 불안정성을 높여 운동 기능 수행의 어려움과 보행 장애로 낙상 손상 위험을 높이게 된다. 셋째, 재활 필라테스 운동은 노인들의 코어 근력 향상으로 균형과 반응시간 운동 기능 향상을 기대할 수 있으며, 낙상 예방에 관여되는 신체 불균형 개선과 움직임 안정성에 긍정적 영향을 미쳐 낙상 위험률 감소에 기여할 가능성을 제시할 수 있다. 결론적으로 재활 필라테스가 노인운동 프로그램으로서 신체의 근력 향상, 균형 감각 향상, 코어의 안정화 효과를 나타내 근골격계 퇴행에 따른 낙상 손상의 위험 요인을 감소시키고, 노인성 만성질환에 따른 심각한 활동 장애를 예방할 수 있음을 고찰하였다.

A Co-inhibitory Molecule, B7-H4, Synergistically Potentiates Oral Tolerance by Inducing CD4+CD25+FoxP3+ T Cells

  • Wen, Lanying;Yang, Sung-Yeun;Choi, Jae-Kyoung;Kim, Young-Hee;Kwon, Eun-Hee;Lee, Hyun-Ji;Jeoung, Hae-Young;Hwang, Du-Hyeon;Hwang, Dong-Jin;Choi, In-Hak
    • IMMUNE NETWORK
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    • 제8권1호
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    • pp.21-28
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    • 2008
  • Background: A co-inhibitory molecule, B7-H4, is believed to negatively regulate T cell immunity by suppressing T cell proliferation and inhibiting cytokine production. However, the mechanism behind B7-H4-mediated tolerance remains unclear. Methods: Balb/c $(H-2^d)$ mice were fed with dendritic cell line, DC2.4 $(H-2^d)$ every day for 10 days. Meantime, mice were hydrodynamically injected with recombinant plasmid expressing B7-H4 fusion protein (B7-H4.hFc) or hFc via tail vein. One day after last feeding, mice were immunized with allogeneic B6 spleen cells. 14 days following immunization, mice were challenged with B6 spleen cells to ear back and the ear swelling was determined the next day. Subsequently, a mixed lymphocyte reaction (MLR) was also performed and cytokines profiles from the reaction were examined by sandwich ELISA. Frequency of immunosuppressive cell population was assayed with flow cytometry and mRNA for FoxP3 was determined by RT-PCR. Results: Tolerant mice given plasmid expressing B7-H4.hFc showed a significant reduction in ear swelling compared to control mice. In addition, T cells from mice given B7-H4.hFc plasmid revealed a significant hyporesponsiveness of T cells against allogeneic spleen cells and showed a significant decrease in Th1 and Th2 cytokines such as IFN-${\gamma}$, IL-5, and TNF-${\alpha}$. Interestingly, flow cytometric analysis showed that the frequency of CD4+CD25+FoxP3+ Tregs in spleen was increased in tolerant mice given recombinant B7-H4.hFc plasmid compared to control group. Conclusion: Our results demonstrate that B7-H4 synergistically potentiates oral tolerance induced by allogeneic cells by increasing the frequency of FoxP3+ CD4+CD25+ Treg and reducing Th1 and Th2 cytokine production.

상아질에 대한 10% Carbamide peroxide가 미치는 영향 (EFFECT OF 10% CARBAMIDE PEROXIDE ON DENTIN)

  • 서상우;권용훈;김현정;남순현;김교한;김영진
    • 대한소아치과학회지
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    • 제30권3호
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    • pp.423-430
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    • 2003
  • 최근 들어 심미적 목적으로 치아 미백제를 이용한 치아 미백술이 널리 사용되고 있다. 현재까지 치아 미백제의 정확한 기전은 밝혀져 있지 않지만 미백제로부터 여러 가지 방법으로 분해된 free radical의 복잡한 산화작용에 의한 것으로, 치아변색의 원인물질의 화학적 구조가 바뀌어짐으로써 희게 되는 것으로 이해하고 있다. 본 연구의 목적은 치아 미백제에 의한 상아질의 특성변화를 관찰하고 미백제의 안전성을 평가하고자 하였다. 이를 위해 10% carbamide peroxide를 1일에 6시간 2주동안 사람의 소구치 법랑질에 적용한 후 상아질에서 나타나는 형상변화, 경도변화, 조성변화 및 무기질 함량변화를 주사전자현미경(SEM), 미세경도기, FT-Raman 분광기 그리고 전자탐침미세분석기(EPMA)를 이용하여 분석하고 다음과 같은 결과를 얻었다. 법랑질 표면에 도포한 10% carbamide peroxide가 상아질로 침투하여 미친 영향은 증류수에만 담가둔 시료와 비교하였을 때 형상변화의 측면에서는 차이를 발견할 수 없었다. Peritubular dentin과 intertubular dentin의 표면에서는 nanometer range에서 아무런 변화를 발견할 수 없었다. 미백처리한 치아와 증류수에만 담가둔 치아의 상아질에서 통계적으로 유의한 경도의 차이를 발견할 수 없었다. FT-Raman 분석결과 상아질 구성성분 중 어떤 변화도 분광학적으로 관찰되지 않았다. 유기질에 의한 peak와 무기질에 의한 peak 모두 무시 할 수 있을 정도의 Raman intensity 변화만 관찰되었다. 무기질 함량변화를 측정한 결과 아무런 처리도 하지 않은 치아의 상아질, 증류수에만 담가둔 치아의 상아질 그리고 미백후 증류수에 담가둔 치아의 상아질에서 무기질 총량이 각각 $98.73{\pm}1.89,\;98.56{\pm}2.11,\;97.47{\pm}2.51$로 나타났다. 이들 값은 통계학적으로 유의한 차이를 보이지 않았다. 이상의 결과들로 볼 때 10% carbamide peroxide 미백이 상아질에 미치는 영향은 극히 미약하다고 판단되어 상아질에는 안전한 것으로 생각된다.

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Role of Citrate Synthase in Acetate Utilization and Protection from Stress-Induced Apoptosis

  • Lee, Yong-Joo;Kang, Hong-Yong;Maeng, Pil Jae
    • 한국미생물학회:학술대회논문집
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    • 한국미생물학회 2008년도 International Meeting of the Microbiological Society of Korea
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    • pp.39-41
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    • 2008
  • The yeast Saccharomyces cerevisiae has been shown to contain three isoforms of citrate synthase (CS). The mitochondrial CS, Cit1, catalyzes the first reaction of the TCA cycle, i.e., condensation of acetyl-CoA and oxaloacetate to form citrate [1]. The peroxisomal CS, Cit2, participates in the glyoxylate cycle [2]. The third CS is a minor mitochondrial isofunctional enzyme, Cit3, and related to glycerol metabolism. However, the level of its intracellular activity is low and insufficient for metabolic needs of cells [3]. It has been reported that ${\Delta}cit1$ strain is not able to grow with acetate as a sole carbon source on either rich or minimal medium and that it shows a lag in attaining parental growth rates on nonfermentable carbon sources [2, 4, 5]. Cells of ${\Delta}cit2$, on the other hand, have similar growth phenotype as wild-type on various carbon sources. Thus, the biochemical basis of carbon metabolism in the yeast cells with deletion of CIT1 or CIT2 gene has not been clearly addressed yet. In the present study, we focused our efforts on understanding the function of Cit2 in utilizing $C_2$ carbon sources and then found that ${\Delta}cit1$ cells can grow on minimal medium containing $C_2$ carbon sources, such as acetate. We also analyzed that the characteristics of mutant strains defective in each of the genes encoding the enzymes involved in TCA and glyoxylate cycles and membrane carriers for metabolite transport. Our results suggest that citrate produced by peroxisomal CS can be utilized via glyoxylate cycle, and moreover that the glyoxylate cycle by itself functions as a fully competent metabolic pathway for acetate utilization in S. cerevisiae. We also studied the relationship between Cit1 and apoptosis in S. cerevisiae [6]. In multicellular organisms, apoptosis is a highly regulated process of cell death that allows a cell to self-degrade in order for the body to eliminate potentially threatening or undesired cells, and thus is a crucial event for common defense mechanisms and in development [7]. The process of cellular suicide is also present in unicellular organisms such as yeast Saccharomyces cerevisiae [8]. When unicellular organisms are exposed to harsh conditions, apoptosis may serve as a defense mechanism for the preservation of cell populations through the sacrifice of some members of a population to promote the survival of others [9]. Apoptosis in S. cerevisiae shows some typical features of mammalian apoptosis such as flipping of phosphatidylserine, membrane blebbing, chromatin condensation and margination, and DNA cleavage [10]. Yeast cells with ${\Delta}cit1$ deletion showed a temperature-sensitive growth phenotype, and displayed a rapid loss in viability associated with typical apoptotic hallmarks, i.e., ROS accumulation, nuclear fragmentation, DNA breakage, and phosphatidylserine translocation, when exposed to heat stress. Upon long-term cultivation, ${\Delta}cit1$ cells showed increased potentials for both aging-induced apoptosis and adaptive regrowth. Activation of the metacaspase Yca1 was detected during heat- or aging-induced apoptosis in ${\Delta}cit1$ cells, and accordingly, deletion of YCA1 suppressed the apoptotic phenotype caused by ${\Delta}cit1$ mutation. Cells with ${\Delta}cit1$ deletion showed higher tendency toward glutathione (GSH) depletion and subsequent ROS accumulation than the wild-type, which was rescued by exogenous GSH, glutamate, or glutathione disulfide (GSSG). Beside Cit1, other enzymes of TCA cycle and glutamate dehydrogenases (GDHs) were found to be involved in stress-induced apoptosis. Deletion of the genes encoding the TCA cycle enzymes and one of the three GDHs, Gdh3, caused increased sensitivity to heat stress. These results lead us to conclude that GSH deficiency in ${\Delta}cit1$ cells is caused by an insufficient supply of glutamate necessary for biosynthesis of GSH rather than the depletion of reducing power required for reduction of GSSG to GSH.

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