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

  • 조혜영;강현아;김윤균;최후균;이용복
    • Journal of Pharmaceutical Investigation
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    • 제35권6호
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    • pp.437-443
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    • 2005
  • A rapid, selective and sensitive reversed-phase HPLC method for the determination of a major metabolite of terfenadine, fexofenadine, in human serum was developed, validated, and applied to the pharmacokinetic study of terfenadine. Fexofenadine and internal standard, haloperidol were extracted from human serum by liquid-liquid extraction with acetonitrile and analyzed on a $Symmetry^{TM}$ C8 column with the mobile phase of 1% triethylamine phosphate (pH 3.7)-acetonitrile (67:33, v/v, adjusted to pH 5.6 with triethylamine). Detection wavelength of 230 nm for excitation, 280 nm for emission and flow rate of 1.0 mL/min were fixed for the study. The assay robustness for the changes of mobile phase pH, organic solvent content, and flow rate was confirmed by $3^{3}$ factorial design using a fixed fexofenadine concentration (50 ng/mL) with respect to its peak area and retention time. In addition, the ruggedness of this method was investigated at three different laboratories using same quality control (QC) samples. 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 serum was 10 ng/mL, which was sensitive enough for the pharmacokinetic studies of terfenadine. The overall accuracy of the quality control samples ranged from 95.70 to 114.58% for fexofenadine with overall precision (% C.V.) being 3.53-14.39%. The relative mean recovery of fexofenadine for human serum was 90.17%. Stability studies (freeze-thaw, short-term, extracted serum sample and stock solution) showed that fexofenadine was stable during storage, or during the assay procedure in human serum. However, the storage at $-70^{\circ}C$ for 4 weeks showed that fexofenadine was not stable. The peak area and retention time of fexofenadine were not significantly affected by the changes of mobile phase pH, organic solvent content, and flow rate under the conditions studied. This method showed good ruggedness (within 15% C.V.) and was successfully used for the analysis of fexofenadine in human serum samples for the pharmacokinetic studies of orally administered Tafedine tablet (60 mg as terfenadine) at three different laboratories, demonstrating the suitability of the method.

Determination of Co(II) Ion as a 4-(2-Thiazolylazo)resorcinol or 5-Methyl-4-(2-thiazolylazo)resorcinol Chelate by Reversed-Phase Capillary High-Performance Liquid Chromatography

  • Chung, Yong-Soon;Chung, Won-Seog
    • Bulletin of the Korean Chemical Society
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    • 제24권12호
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    • pp.1781-1784
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    • 2003
  • Determination of Co(II) ion as a 4-(2-thiazolylazo)resorcinol(TAR) or 5-methyl-4-(2-thiazolylazo)resorcinol(5MTAR) chelate was accomplished by reversed-phase capillary high-performance liquid chromatography (RP-Capillary-HPLC) using a Vydac $C_4$ column and MeCN-water mixture as mobile phase. The effect of change in pH and MeCN percentage of the mobile phase on the retention factor, k and peak intensity were evaluated. It was found that 30% MeCN (v/v) of pH 5.60 or 7.20 was adequate as mobile phase when TAR or 5MTAR is used. Detection limit (D.L., S/N=3) in each case was $2.0\;{\times}\;10^{-7}$M (11.8 ppb) and $3.0\;{\times}\;10^{-7}$ M (17.7 ppb). The Co(II) ion in mineral and waste water was determined with the optimum column and mobile phase.

Optical Resolution of Dabsyl Amino Acids in Reversed-Phase Liquid Chromatography

  • Lee, Sun-Haing;Oh, Tae-Sub;Lee, Young-Cheal
    • Bulletin of the Korean Chemical Society
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    • 제11권5호
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    • pp.411-415
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    • 1990
  • The dabsylation of amino acids has been applied to resolve their optical isomers with the use of chiral mobile phase in high performance liquid chromatography. The dabsyl amino acids were successfully separated on reversed phase column($C_{18}$) by adding a chiral L-benzylproline-Cu(II) chelate to the mobile phase. The separation selectivity of the dabsyl amino acid enantiomers was not less than that of dansyl amino acids. The retention order of the dabsyl amino acid enantiomers was as those of the dansyl amino acid enantiomers except dabsyl threonine. The optical selectivity of the dabsyl amino acids increase with pH of the mobile phase and concentration of the chelate, but slightly decreases with concentration of buffer and organic solvent composition. However serine, methionine, valine, and leucine showed a slight decrease in the optical selectivity with increase in pH. The retention times of the dabsyl amino acids decreases with increasing pH and acetonitrile concentration but increases with the concentration of the chiral chelate added. The mechanism of the optical resolution is based on a stereospecific interaction including a intramolecular hydrophobic effect and SN-2 reactivity of the ligand exchange chromatography.It is advantageous to detect absorption at 436 nm, which is less interferent them the other detection systems. The derivatized dabsyl amino acids are stable for a month.

THE PERFOMANCE OF GROUNDBASE MOBILE PLATFORM FOR C-BAND MICROWAVE SCATTEROMETER SYSTEM

  • Aziz H.;Mahmood N.N.;Ali A.;Jamil H.;Mahmood K.A.;Ahmad Z.;Ibrahim N.;Brevern P.V.;Chuah H.T.;Koo V.C.;Sing L.X.
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 2004년도 Proceedings of ISRS 2004
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    • pp.61-63
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    • 2004
  • The procurement of a mobile microwave scatterometer platform involved the consideration to ensure a mobile platform and equipment selected full-filled technical requirement and safety standard in Malaysia. Designing, and modification works involved engineering methodology in determining and selecting a suitable hydraulic telescopic boom that suit a selected mobile platform available locally. The mobile platform is a delivery system for microwave remote sensing microwave scatterometer and other accessories to any locations in Malaysia. Total loading to be carried by the mobile platform is 4500 kg and its overall weight must be 16,000 kg as recommended by hydraulic telescopic boom manufacturers. The telescopic boom will elevate microwave scatterometer system including the antenna to a maximum height of 27 m, and can also be rotated through $3600^{\circ}$. A mechanism is incorporated in the system to enable tracking or monitoring angular movement of the hydraulic telescopic boom when positioned towards predetermined target.

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

  • 조혜영;강현아;김윤균;사홍기;이용복
    • Journal of Pharmaceutical Investigation
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    • 제35권6호
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    • pp.423-429
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    • 2005
  • A selective and sensitive reversed-phase HPLC method for the determination of fenoprofen in human serum was developed, validated, and applied to the pharmacokinetic study of fenoprofen calcium. Fenoprofen and internal standard, ketoprofen, were extracted from human serum by liquid-liquid extraction with diethyl ether and analyzed on a Luna C18(2) column with the mobile phase of acetonitrile-3 mM potassium dihydrogen phosphate (32:68, v/v, adjusted to pH 6.6 with phosphoric acid). Detection wavelength of 272 nm and flow rate of 0.25 mL/min were fixed for the study. The assay robustness for the changes of mobile phase pH, organic solvent content, and flow rate was confirmed by $3^{3}$ factorial design using a fixed fenoprofen concentration $(2\;{\mu}g/mL)$ with respect to its peak area and retention time. And also, the ruggedness of this method was investigated at three different laboratories using same quality control (QC) samples. This method showed linear response over the concentration range of $0.05-100\;{\mu}g/mL$ with correlation coefficients greater than 0.999. The lower limit of quantification using 1 mL of serum was $0.05\;{\mu}g/mL$, which was sensitive enough for pharmacokinetic studies. The overall accuracy of the quality control samples ranged from 92.27 to 109.20% for fenoprofen with overall precision (% C.V.) being 5.51-11.71 %. The relative mean recovery of fenoprofen for human serum was 81.7%. Stability (freeze-thaw, short and long-term) studies showed that fenoprofen was not stable during storage. But, extracted serum sample and stock solution were allowed to stand at ambient temperature for 12 hr prior to injection without affecting the quantification. The peak area and retention time of fenoprofen were not significantly affected by the changes of mobile phase pH, organic solvent content, and flow rate under the conditions studied. This method showed good ruggedness (within 15% C.V.) and was successfully used for the analysis of fenoprofen in human serum samples for the pharmacokinetic studies of orally administered Fenopron tablet (600 mg as fenoprofen) at three different laboratories, demonstrating the suitability of the method.

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

  • 조혜영;강현아;문재동;최후균;이용복
    • Journal of Pharmaceutical Investigation
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    • 제36권1호
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    • pp.45-51
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    • 2006
  • A rapid, selective and sensitive reversed-phase HPLC method for the determination of dipyridamole in human serum was developed, validated, and applied to the pharmacokinetic study of dipyridamole. Dipyridamole and internal standard, loxapine, were extracted from human serum by liquid-liquid extraction with diethyl ether and analyzed on a Nova Pak $C_{I8}$ column with the mobile phase of 40 mM ammonium acetate:methanol:acetonitrile (35:35:30)(v/v/v, pH 7.8). Detection wavelength of 280 nm and flow rate of 1.0 mL/min were fixed for the study. The assay robustness for the changes of mobile phase pH, organic solvent content, and flow rate was confirmed by $3^3$ factorial design using a fixed dipyridamole concentration (50 ng/mL) with respect to its peak area and retention time. And also, the ruggedness of this method was investigated at three different laboratories using same quality control (QC) samples. This method showed linear response over the concentration range of 2-2000 ng/mL with correlation coefficients greater than 0.999. The lower limit of quantification using 0.5 mL of serum was 2 ng/mL, which was sensitive enough for pharmacokinetic studies of dipyridamole. The overall accuracy of the quality control samples ranged from 103.94 to 105.86% for dipyridamole with overall precision (% C.V.) being 4.60-11.49%. The relative mean recovery of dipyridamole for human serum was 97.64%. Stability studies showed that dipyridamole was stable during storage, or during the assay procedure in human serum. The peak area and retention time of dipyridamole were not significantly affected by the changes of mobile phase pH, organic solvent content, and flow rate under the conditions studied. This method showed good ruggedness (within 15% C.V.) and was successfully used for the analysis of dipyridamole in human serum samples for the pharmacokinetic studies of orally administered Dimor tablet (75 mg as dipyridamole) at three different laboratories, demonstrating the suitability of the method.

염산프로메타진 체내동태 연구를 위한 혈청 중 프로메타진의 HPLC 정량법 개발 및 검증 (Development and Validation of HPLC Method for Pharmacokinetic Study of Promethazine in Human)

  • 조혜영;강현아;이화정;최후균;이용복
    • Journal of Pharmaceutical Investigation
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    • 제36권1호
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    • pp.23-29
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    • 2006
  • A rapid, selective and sensitive reversed-phase HPLC method for the determination of promethazine in human serum was developed, validated, and applied to the pharmacokinetic study of promethazine. Promethazine and internal standard, chlorpromazine, were extracted from human serum by liquid-liquid extraction with n-hexane containing 0.8% isopropanol and analyzed on a Capcell Pak CN column with the mobile phase of acetonitrile-0.2 M potassium dihydrogen phosphate (42:58, v/v, adjusted to pH 6.0 with 1 M NaOH). Detection wavelength of 251 nm and flow rate of 0.9 mL/min were fixed for the study. The assay robustness for the changes of mobile phase pH, organic solvent content, and flow rate was confirmed by $3^{3}$ factorial design using a fixed promethazine concentration (10 ng/mL) with respect to its peak area and retention time. In addition, the ruggedness of this method was investigated at three different laboratories using same quality control (QC) samples. This method showed linear response over the concentration range of 1-40 ng/mL with correlation coefficients greater than 0.999. The lower limit of quantification using 1 mL of serum was 1 ng/mL, which was sensitive enough for pharmacokinetic studies. The overall accuracy of the quality control samples ranged from 96.15 to 105.40% for promethazine with overall precision (% C.V.) being 6.70-11.22%. The relative mean recovery of promethazine for human serum was 63.54%. Stability (freeze-thaw and short-term) studies showed that promethazine was stable during storage, or during the assay procedure in human serum. However, the storage at $-80^{\circ}C$ for 4 weeks showed that promethazine was not stable. Extracted serum sample and stock solution were not allowed to stand at ambient temperature for 12 hr prior to injection. The peak area and retention time of promethazine were not significantly affected by the changes of mobile phase pH, organic solvent content, and flow rate under the conditions studied. This method showed good ruggedness (within 15% C.V.) and was successfully used for the analysis of promethazine in human serum samples for the pharmacokinetic studies of orally administered Himazin tablet (25 mg as promethazine hydrochloride) at three different laboratories, demonstrating the suitability of the method.

시설재배지 토양 pH와 전함량 및 이동태 함량이 상추의 구리와 아연 흡수에 미치는 영향 (Influence of Soil pH, Total and Mobile Contents on Copper and Zinc Uptake by Lettuce Grown in Plastic Film Houses)

  • 김록영;성좌경;이주영;장병춘;하상건;이종식
    • 한국토양비료학회지
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    • 제44권6호
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    • pp.1042-1047
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    • 2011
  • 조사한 시설재배지 토양의 Cu와 Zn 전함량은 평균이 각각 39.3과 $137mg\;kg^{-1}$로 Cu와 Zn의 집적 현상을 볼 수 있었다. 이동태 함량 평균은 0.18과 $0.47mg\;kg^{-1}$로 작물 생육 저해를 일으킬 수 있는 일반적인 함량 $1mg\;kg^{-1}$ (Cu)과 $2mg\;kg^{-1}$ (Zn)을 Zn이 한 농가에서 초과하였다. 상추 잎과 뿌리의 Cu 평균함량은 9.20과 $17.2mg\;kg^{-1}$로 주로 뿌리에 집적되어 있었고, Zn 평균함량은 각각 54.5와 $56.7mg\;kg^{-1}$로 잎과 뿌리에 균일하게 분포했다. Cu와 Zn의 토양 전함량-식물 이동계수는 0.1~1이었고, 토양 이동태-식물 이동계수는 10~1000이었다. Zn의 이동계수는 Cu의 이동계수 보다 높아, Zn이 Cu보다 이동성이 높음을 알 수 있었다. 상추 잎과 뿌리의 Cu와 Zn 흡수는 토양 전함량, 유기물 함량 보다는 토양 이동태 함량과 pH에 의해 강하게 영향을 받았고, 다중회귀방정식에 의해 고도의 유의관계를 설명할 수 있었다.

HPLC 를 이용한 화장품 중 살균보존제 다성분 동시분석법 연구 (Analytical Method of Multi-Preservatives in Cosmetics using High Performance Liquid Chromatography)

  • 이민정;김성수;이윤정;이병철
    • 대한화장품학회지
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    • 제48권4호
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    • pp.321-330
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    • 2022
  • 본 연구는 HPLC-PDA를 이용하여 화장품의 보존제 15 종, 자외선 차단제 2종 및 항산화제 1 종에 대해 신뢰성 있는 결과를 확보할 수 있는 최적의 다성분 동시분석법을 구축하고자 하였다. 이동상의 수소이온 농도(pH)가 분석성분의 산해리상수(pKa)에 영향을 주기 때문에 피크의 머무름 시간과 면적값 변화가 생기는 문제를 확인하였고, 이동상 조제시 0.1% H3PO4 첨가량(mL)으로 pH를 조절하는 방법으로써 피크 분리조건을 확립하였다. 시험법의 유효성 검증 결과, 검량선의 직선성(R2)은 0.999 이상을 얻었으며 화장품 2 종(크림, 샴푸)에 대해 정확성은 87.9 ~ 101.1%, 정밀성은 0.1 ~ 7.6% 의 결과를 얻었다. 성분별로 검출한계(LOD)는 0.1 ~ 0.2 mg/kg, 정량한계(LOQ)는 2.0 ~ 4.0 mg/kg인 것으로 나타났다. 또한 합성보존제인 methylparaben과 차이점이 적어 HPLC에서 성분분리가 어려웠던 천연성분인 p-anisic acid를 동시에 분리할 수 있었다. 본 연구를 통해 화장품 중 사용상 제한이 필요한 성분들에 대한 품질관리 및 안전성 확보에 효과적으로 활용될 것이다.

구리(II) 킬레이트의 첨가에 의한 자유아미노산 광학이성질체의 역상 액체크로마토그래피적 분리 (Optical Resolution of Free Amino Acids with Addition of Copper(II) Chelates in a Reversed-Phase Liquid Chromatography)

  • 이선행;오대섭;안홍엽;박경숙;오상오
    • 대한화학회지
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    • 제36권6호
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    • pp.879-888
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    • 1992
  • 역상 고성능 액체 크로마토그래피에서 L-proline과 그 유도체들(hydroxy-L-proline, N-benzyl-L-proline, p-xylenyl-L-proline, p-xylenyl-hydroxy-L-proline)의 구리(II) 킬레이트를 이동상에 첨가하여 유도체화 안된(자유) 아미노산 광학이성질체를 분리하였다. OPA-postcolumn 검출장치를 이용하여 검출하였고, 자유아미노산에 관한 머무름 거동을 이동상의 pH와 킬레이트 종류 및 농도, 유기용매의 종류 및 조성에 관해 연구하였다. 자유아미노산에서의 머무름 거동은 DNS-아미노산이나 DABS-아미노산과 같은 아미노산 유도체와는 다르게 나타났고, 분리 선택성도 자유아미노산이 아미노산 유도체들 보다 더 좋았다. 사용한 여러가지 리간드 가운데 p-xylenyl-L-proline을 사용했을 때 최대의 광학 분리의 선택성을 나타내었다. 아미노산과 구리 착물간의 리간드 교환반응의 입체효과에 따른 정지상과의 소수성 상호작용으로 분리 메카니즘을 설명할 수 있었다.

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