• 제목/요약/키워드: clinical chemical parameter

검색결과 5건 처리시간 0.017초

수용액에서 색소-계면활성제 계의 회합 생성에 관한 연구 (The Studies on Formation of Aggregates of Dyes-Surfactant System in Aqueous Solution)

  • 최호섭;김흥두
    • 대한화학회지
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    • 제39권3호
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    • pp.143-149
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    • 1995
  • 낮은 농도에서 유기색소와 계면활성제 계의 흡수거동을 계산하기 위해 간단한 모델을 사용해보았다. 실험에서 얻어진 값에 3개의 파라미터가 포함되어 있는 결과식을 적용함으로써 이온쌍형성$(K_O)$, 회합체에 계면활성제 분자첨가의 경우$(K_S)$, 그리고 색소회합반응$(K_D)$에 대한 평형상수들을 계산하였으며 이값들을 이용하여 자유에너지를 계산하였다. $K_O$K_S$의 값들은 소수성에 원인이 있는 정전기적 상호작용에서 기대했던 것들보다 컸었고, $K_D$값들은 정전기적 반발력의 차폐효과로 간주할 수 있는 순수한 수용액에서의 알려진 회합값보다 약 10~20배 정도 높았다.

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난소절제 흰쥐의 임상화학지수매 미치는 홍삼조사포닌의 영향 (Effect of Crude Saponin from Korean Red Ginseng on Clinical Chemical Parameters of Ovariectomized Rat)

  • 곽이성;위재준;황석연;경종수;남기열;김시관
    • Journal of Ginseng Research
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    • 제24권1호
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    • pp.46-50
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    • 2000
  • 본 연구는 갱년기 장애에 대한 홍삼의 효과를 조사할 목적으로 수행하였다. 홍삼의 효과는 자성 흰쥐의 난소를 인위적으로 절제하여 갱년기 장애를 유도한 후 홍삼조사포닌을 3 개월동안 복강으로 투여하여 그 효과를 살펴보았다. 혈소판수는 난소절제 유무에 관계없이 사포닌 투여군에서 약간 증가하는 경향을 나타내었다(p<0.05). 난소절제군의 혈중중성지질함량은 99.9 mg/㎗로서 정상대조군의 152.1 mg/㎗에 비해 현저히 감소하나 (34%) 홍삼조사포닌을 투여하면 그 함량이 138.0 mg/㎗으로 그 함량감소를 다소 억제하는 것으로 나타났다. 또한 장기무게는 난소절제군/비절제군, 사포닌투여군/비투여군 간에 큰 차이가 관찰되지 않았으나 비장(spleen)의경우 사포닌 투여군에서 유의적인 무게증가가 관찰되었다. 흰쥐에 있어 대퇴골의 무게는 건조 전·후 각각 1.57 및 1.l0g이었고 난소절제군의 경우 1.40및 1.02g으로 난소절제에 의해 약 8∼1l%의 무게감소가 관찰되었다. 난소를 절제하고 사포닌을 투여한 실험군(OS)의 대퇴골 무게는 건조 전·후 각각 1.63및 1.11g으로 모두 정상대조군과 동등한 수준으로 회복되어 홍삼조사포닌 투여는 난소절제로 야기되는 대퇴골의 무게감소를 유의하게 억제하는 것으로 사료된다(p<0.05, p<0.01).

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바이오 응용을 위한 공압 디스펜싱 시스템의 반복 정밀도 연구 (Repeatability Study of a Pneumatic Dispensing System for Bio-Applications)

  • 이상민;최인호;김준원
    • 센서학회지
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    • 제21권1호
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    • pp.53-58
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    • 2012
  • Biological and chemical assays(e.g., clinical tests for medical diagnosis) are needed to handle small liquid volume with high accuracy and high reliability. Many micro-dispensing systems using various actuation methods have been developed and applied. In this research, we confirm repeatability of the cartridge-type dispensing system with various measuring methods for guarantee of an acceptable reliability. We systematically examine the dispensed volume variation and dispense rate during 500,000 shots of sequential actuation. Using the same method, we confirm the repeatability of dispensed volume while varying operating conditions and design parameter(i.e., outlet size) of the dispensing system. Also, we examine the consistency of the dispensed volume of droplet while varying the operating pressures. Furthermore, we repeatedly measure differences between an actual dispensed volume and a target volume. According to our results, it is expected that the stable and reliable performance of our dispensing system can effectively be used in various applications containing bio-solutions.

적소두(赤小豆) 외피(外皮)(Phaseolus angularis shell)의 고지방식이로 유도된 비만 동물모델에서 항비만, 항고지혈증 효과 (The Effect of Phaseolus Angularis Shell on Soyang-in Metabolic Syndrome with Obesity)

  • 곽진영;박정환;고영미;박정미;안택원
    • 사상체질의학회지
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    • 제29권2호
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    • pp.136-153
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    • 2017
  • Objectives This experimental study was designed to investigate the effect of Phaseolus angularis shell on metabolic syndrome. Methods Each 5 C57BL/6J mice were randomly assigned to normal diet group, high-fat diet(HFD) control group, high-fat diet plus 15.6 mg/kg/day of Orlistat(HFD-Orlistat) group, high-fat diet plus 100mg/kg/day of Phaseolus angularis shell extract(HFD-PAS_E) group. Weight, the blood chemical and hematologic parameter was med. The mRNA expression was assayed through Reverse transcriptase polymerase chain reaction(RT-PCR). Results In HFD-PAS_E group, the body weight gain, weight of liver, and the level of LDL-Cholesterol were significantly decreased and the level of HDL-Cholesterol were significantly increased. The size of adipocyte in HFD-PAS_E group was smaller than HFD group's. In HFD-PAS_E group, the expression of leptin, PPAR-${\gamma}$, AP2/FABP4 mRNA in liver adipocyte tissue was decreased, the expression of Adiponectin, UCP-2 mRNA in liver adipocyte tissue was increased and the expression of Leptin, C/EBP-a, AP2/FABP4 mRNA in epididymal adipocyte tissue was decreased. Conclusion These results suggest that Phaseolus angularis shell has inhibitory effects on metabolic syndrome by reducing the body weight and the levels of lipid contents in high-fat-diet induced obese mice.

Manganese and Iron Interaction: a Mechanism of Manganese-Induced Parkinsonism

  • Zheng, Wei
    • 한국환경성돌연변이발암원학회:학술대회논문집
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    • 한국환경성돌연변이발암원학회 2003년도 추계학술대회
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    • pp.34-63
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    • 2003
  • Occupational and environmental exposure to manganese continue to represent a realistic public health problem in both developed and developing countries. Increased utility of MMT as a replacement for lead in gasoline creates a new source of environmental exposure to manganese. It is, therefore, imperative that further attention be directed at molecular neurotoxicology of manganese. A Need for a more complete understanding of manganese functions both in health and disease, and for a better defined role of manganese in iron metabolism is well substantiated. The in-depth studies in this area should provide novel information on the potential public health risk associated with manganese exposure. It will also explore novel mechanism(s) of manganese-induced neurotoxicity from the angle of Mn-Fe interaction at both systemic and cellular levels. More importantly, the result of these studies will offer clues to the etiology of IPD and its associated abnormal iron and energy metabolism. To achieve these goals, however, a number of outstanding questions remain to be resolved. First, one must understand what species of manganese in the biological matrices plays critical role in the induction of neurotoxicity, Mn(II) or Mn(III)? In our own studies with aconitase, Cpx-I, and Cpx-II, manganese was added to the buffers as the divalent salt, i.e., $MnCl_2$. While it is quite reasonable to suggest that the effect on aconitase and/or Cpx-I activites was associated with the divalent species of manganese, the experimental design does not preclude the possibility that a manganese species of higher oxidation state, such as Mn(III), is required for the induction of these effects. The ionic radius of Mn(III) is 65 ppm, which is similar to the ionic size to Fe(III) (65 ppm at the high spin state) in aconitase (Nieboer and Fletcher, 1996; Sneed et al., 1953). Thus it is plausible that the higher oxidation state of manganese optimally fits into the geometric space of aconitase, serving as the active species in this enzymatic reaction. In the current literature, most of the studies on manganese toxicity have used Mn(II) as $MnCl_2$ rather than Mn(III). The obvious advantage of Mn(II) is its good water solubility, which allows effortless preparation in either in vivo or in vitro investigation, whereas almost all of the Mn(III) salt products on the comparison between two valent manganese species nearly infeasible. Thus a more intimate collaboration with physiochemists to develop a better way to study Mn(III) species in biological matrices is pressingly needed. Second, In spite of the special affinity of manganese for mitochondria and its similar chemical properties to iron, there is a sound reason to postulate that manganese may act as an iron surrogate in certain iron-requiring enzymes. It is, therefore, imperative to design the physiochemical studies to determine whether manganese can indeed exchange with iron in proteins, and to understand how manganese interacts with tertiary structure of proteins. The studies on binding properties (such as affinity constant, dissociation parameter, etc.) of manganese and iron to key enzymes associated with iron and energy regulation would add additional information to our knowledge of Mn-Fe neurotoxicity. Third, manganese exposure, either in vivo or in vitro, promotes cellular overload of iron. It is still unclear, however, how exactly manganese interacts with cellular iron regulatory processes and what is the mechanism underlying this cellular iron overload. As discussed above, the binding of IRP-I to TfR mRNA leads to the expression of TfR, thereby increasing cellular iron uptake. The sequence encoding TfR mRNA, in particular IRE fragments, has been well-documented in literature. It is therefore possible to use molecular technique to elaborate whether manganese cytotoxicity influences the mRNA expression of iron regulatory proteins and how manganese exposure alters the binding activity of IPRs to TfR mRNA. Finally, the current manganese investigation has largely focused on the issues ranging from disposition/toxicity study to the characterization of clinical symptoms. Much less has been done regarding the risk assessment of environmenta/occupational exposure. One of the unsolved, pressing puzzles is the lack of reliable biomarker(s) for manganese-induced neurologic lesions in long-term, low-level exposure situation. Lack of such a diagnostic means renders it impossible to assess the human health risk and long-term social impact associated with potentially elevated manganese in environment. The biochemical interaction between manganese and iron, particularly the ensuing subtle changes of certain relevant proteins, provides the opportunity to identify and develop such a specific biomarker for manganese-induced neuronal damage. By learning the molecular mechanism of cytotoxicity, one will be able to find a better way for prediction and treatment of manganese-initiated neurodegenerative diseases.

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