• 제목/요약/키워드: NaCI solution

검색결과 55건 처리시간 0.019초

체내동태 연구를 위한 혈청 중 펜톡시필린의 HPLC 정량법 개발 및 검증 (Development and Validation of an HPLC Method for the Pharmacokinetic Study of Pentoxifylline in Human Serum)

  • 조혜영;강현아;류희두;이화정;문재동;이용복
    • Journal of Pharmaceutical Investigation
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    • 제36권2호
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    • pp.89-95
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    • 2006
  • A selective and sensitive reversed-phase HPLC method for the determination of pentoxifylline in human serum was developed, validated, and applied to the pharmacokinetic study of pentoxifylline. Pentoxifylline and internal standard, chloramphenicol, were extracted from the serum by liquid-liquid extraction with dichloromethane and analyzed on a Luna CI8(2) column with the mobile phase of acetonitrile-0.034 M phosphoric acid (25:75, v/v, adjusted to pH 4.0 with 10 M NaOH). Detection wavelength of 273 nm and flow rate of 0.8 mL/min were used. This method showed linear response over the concentration range of 10-500 ng/mL with correlation coefficients greater than 0.999. The lower limit of quantification using 0.5 mL of the serum was 10 ng/mL, which was sensitive enough for pharmacokinetic studies of pentoxifylline. The overall accuracy of the quality control samples ranged from 89.3 to 92.7% for pentoxifylline with overall precision (% C.V.) being 4.1-9.2%. The relative mean recovery of pentoxifylline for human serum was 105.8%. Stability (stock solution, short and long-term) studies showed that pentoxifylline was not stable during storage. But three freeze-thaw cycles and extracted serum samples were stable. This method showed good ruggedness (within 15% C.V.) and was successfully applied for the analysis of pentoxifylline in human serum samples for the pharmacokinetic studies of orally administered $Trental^{\circledR}$ tablet (400 mg pentoxifylline), demonstrating the suitability of the method.

[$Ca^{2+}-activated\;K^+$ Currents of Pancreatic Duct Cells in Guinea-pig

  • Lee, Han-Wook;Li, Jing Chao;Koo, Na-Youn;Piao, Zheng Gen;Hwang, Sung-Min;Han, Jae-Woong;Choi, Han-Saem;Lee, Jong-Heun;Kim, Joong-Soo;Park, Kyung-Pyo
    • The Korean Journal of Physiology and Pharmacology
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    • 제8권6호
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    • pp.335-338
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    • 2004
  • There are numerous studies on transepithelial transports in duct cells including $Cl^-$ and/or $HCO_3^-$. However, studies on transepithelial $K^+$ transport of normal duct cells in exocrine glands are scarce. In the present study, we examined the characteristics of $K^+$ currents in single duct cells isolated from guinea pig pancreas, using a whole-cell patch clamp technique. Both $Cl^-$ and $K^+$ conductance were found with KCI rich pipette solutions. When the bath solution was changed to low $Cl^-$, reversal potentials shifted to the negative side, $-75{\pm}4\;mV$, suggesting that this current is dominantly selective to $K^+$. We then characterized this outward rectifying $K^+$ current and examined its $Ca^{2+}$ dependency. The $K^+$ currents were activated by intracellular $Ca^{2+}$. 100 nM or 500 nM $Ca^{2+}$ in pipette significantly (P<0.05) increased outward currents (currents were normalized, $76.8{\pm}7.9\;pA$, n=4 or $107.9{\pm}35.5\;pA$, n=6) at +100 mV membrane potential, compared to those with 0 nM $Ca^{2+}$ in pipette $(27.8{\pm}3.7\;pA,\;n=6)$. We next examined whether this $K^+$ current, recorded with 100 nM $Ca^{2+}$ in pipette, was inhibited by various inhibitors, including $Ba^{2+}$, TEA and iberiotoxin. The currents were inhibited by $40.4{\pm}%$ (n=3), $87.0{\pm}%$ (n=5) and $82.5{\pm}%$ (n=9) by 1 mM $Ba^{2+}$, 5 mM TEA and 100 nM iberiotoxin, respectively. Particularly, an almost complete inhibition of the current by 100 nM iberiotoxin further confirmed that this current was activated by intracellular $Ca^{2+}$. The $K^+$ current may play a role in secretory process, slnce recycling of $K^+$ is critical for the initiation and sustaining of $CI^-$ or $HCO_3^-$ secretion in these cells.

빛의 반사량 측정을 통한 가면 착용 위변조 얼굴 검출 (Albedo Based Fake Face Detection)

  • 김영신;나재근;윤성백;이준호
    • 전자공학회논문지CI
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    • 제45권6호
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    • pp.139-146
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    • 2008
  • 특수 분장을 이용하여 매우 정교하게 제작된 가면을 쓴 얼굴 위변조의 경우 일반적인 밝기 영상으로는 검출이 용이하지 않다. 최근의 획기적인 특수 분장 기술 발전을 고려할 때 성공적인 얼굴 인식시스템 개발을 위해 가면을 쓴 얼굴 위변조 검출 연구는 매우 중요하다. 본 연구에서는 물질의 재질 및 표면 색상에 따른 반사율의 차이를 기반으로 가면을 착용하는 얼굴 위변조 검출 방법을 제안한다. 우선 실제 얼굴 인식 시스템의 적용 환경을 고려할 때 알비도(albedo)를 단순히 빛의 반사량, 즉, 영상에서의 그레이 값으로 간략화 할 수 있음을 보였다. 이를 기반으로 850nm 적외선 조명이 얼굴 피부와 가면재질의 구분에 가장 적합하고, 인종 간 다른 피부색에 대해서는 685nm 조명에서 뚜렷한 차이를 보임을 알 수 있었다. 이 두 파장대의 조명하에서 측정한 영상의 그레이 값으로 2D 특징 벡터를 만들어 사용하면 특징 공간 상에서의 얼굴 피부와 가면 재료의 분포는 선형적으로 분리가 가능한 분포를 갖게 되는 것을 알 수 있었다. Fisher Linear Discriminant(FLD)를 적용하여 97.8%의 가면 얼굴 검출율을 얻을 수 있었다. 제안하는 방법은 기존의 상용 얼굴 인식 시스템에 매우 적은 비용과 간단한 방법으로 추가 적용하여 모든 인종에 대한 얼굴 위변조 검출이 가능하다.

Analysis of activated colloidal crud in advanced and modular reactor under pump coastdown with kinetic corrosion

  • Khurram Mehboob;Yahya A. Al-Zahrani
    • Nuclear Engineering and Technology
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    • 제54권12호
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    • pp.4571-4584
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    • 2022
  • The analysis of rapid flow transients in Reactor Coolant Pumps (RCP) is essential for a reactor safety study. An accurate and precise analysis of the RCP coastdown is necessary for the reactor design. The coastdown of RCP affects the coolant temperature and the colloidal crud in the primary coolant. A realistic and kinetic model has been used to investigate the behavior of activated colloidal crud in the primary coolant and steam generator that solves the pump speed analytically. The analytic solution of the non-dimensional flow rate has been determined by the energy ratio β. The kinetic energy of the coolant fluid and the kinetic energy stored in the rotating parts of a pump are two essential parameters in the form of β. Under normal operation, the pump's speed and moment of inertia are constant. However, in a coastdown situation, kinetic damping in the interval has been implemented. A dynamic model ACCP-SMART has been developed for System Integrated Modular and Advanced Reactor (SMART) to investigate the corrosion due to activated colloidal crud. The Fickian diffusion model has been implemented as the reference corrosion model for the constituent component of the primary loop of the SMART reactor. The activated colloidal crud activity in the primary coolant and steam generator of the SMART reactor has been studied for different equilibrium corrosion rates, linear increase in corrosion rate, and dynamic RCP coastdown situation energy ratio b. The coolant specific activity of SMART reactor equilibrium corrosion (4.0 mg s-1) has been found 9.63×10-3 µCi cm-3, 3.53×10-3 µC cm-3, 2.39×10-2 µC cm-3, 8.10×10-3 µC cm-3, 6.77× 10-3 µC cm-3, 4.95×10-4 µC cm-3, 1.19×10-3 µC cm-3, and 7.87×10-4 µC cm-3 for 24Na, 54Mn, 56Mn, 59Fe, 58Co, 60Co, 99Mo, and 51Cr which are 14.95%, 5.48%, 37.08%, 12.57%, 10.51%, 0.77%, 18.50%, and 0.12% respectively. For linear and exponential coastdown with a constant corrosion rate, the total coolant and steam generator activity approaches a higher saturation value than the normal values. The coolant and steam generator activity changes considerably with kinetic corrosion rate, equilibrium corrosion, growth of corrosion rate (ΔC/Δt), and RCP coastdown situations. The effect of the RCP coastdown on the specific activity of the steam generators is smeared by linearly rising corrosion rates, equilibrium corrosion, and rapid coasting down of the RCP. However, the time taken to reach the saturation activity is also influenced by the slope of corrosion rate, coastdown situation, equilibrium corrosion rate, and energy ratio β.

$K^+$ 통로개방제 Pinacidil이 종양이식 생쥐에서 Tl-201의 체내분포에 미치는 영향 (Effects of Pinacidil, a Potassium-Channel Opener, on Biodistribution of Thallium-201 in Tumor-Bearing Mice)

  • 이재태;천경아;이상우;강도영;안병철;전수한;이규보;하정희
    • 대한핵의학회지
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    • 제34권4호
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    • pp.303-311
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    • 2000
  • 목적: 생체 내에서 potassium과 유사한 역학을 보이는 thallium은 종양의 영상에 널리 사용된다. $K^+$ 통로개방제는 세포 내의 potassium을 외부로 배출되게 하는 기능이 있어 Tl-201을 이용한 종양영상에도 영향을 미칠 수 있을 것이라 생각된다. 본 연구는 강력한 $K^+$ 통로개방제의 하나인 pinacidil이 Tl-201을 이용한 종양의 국소화에 어떠한 영향을 미치는 가를 알아보기 위하여, 종양을 가진 생쥐에서 pinacidil에 의한 Tl-201의 체내분포 변화를 알아보았다. 대상 및 방법: 생쥐 유방암세포주를 이식받은 Balb/c 생쥐를 3주간 사육한 후 실험에 이용하였다. Tl-201 185 KBq를 꼬리정맥을 통해 주입한 후 일정시간에 실험동물을 희생시켜 Tl-201의 체내 분포를 알아 보았으며, pinacidil $100{\mu}g$ 투여에 따른 분포 변화를 알아보았다. 또한 Tl-201 3.7 MBq를 꼬리정맥을 통해 주입하여 Tl-201의 시간에 따른 전신 잔류율을 측정하였고, pinacidil 투여에 의한 전신 잔류율 변화를 구하였다. 결과: pinacidil 투여시 대조군에 비해 혈액 내 Tl-201의 방사능치를 약간 감소시키나 신장에서는 현저한 감소를 일으켰다. 또한 간, 근육, 및 장관의 방사능은 pinacidil 투여에 의해 변하지 않았다. 종양 내 Tl-201 섭취율 및 종양조직/혈액 무게당 섭취비는 대조군에 비해 pinacidil 투여군에서 낮았으며, Tl-201의 24시간 전신 잔류율도 pinacidil 투여군에서 낮았다. 결론: $K^+$ 통로개방제는 Tl-201의 체외 배설을 촉진시키고, 신장 섭취를 감소시켜나, 종양 섭취량도 감소시켰다. 그러므로 Tl-201 종양영상 판독시 $K^+$ 통로개방제를 사용하는 경우에는 오히려 Tl-201 종양영상의 질이 향상되기 보다는 저하될 수 있다는 사실을 고려하여야 할 것으로 생각된다.

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