• 제목/요약/키워드: Prodrug

검색결과 116건 처리시간 0.026초

팜비어 정 250밀리그람(팜시클로버 250 mg)에 대한 팜시버 정의 생물학적동등성 (Bioequivalence of Famcivir Tablet to FamvirTM Tablet 250 mg (Famciclovir 250 mg))

  • 강현아;조혜영;오인준;이명희;이용복
    • Journal of Pharmaceutical Investigation
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    • 제35권4호
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    • pp.295-301
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    • 2005
  • Famciclovir is an oral prodrug of the antiherpesvirus nucleoside analogue, penciclovir. In human, famciclovir is orally well absorbed and then undergoes extensive first pass metabolism to penciclovir and essentially no parent compound is recovered from plasma or urine. The purpose of the present study was to evaluate the bioequivalence of two famciclovir tablets, $Famvir^{TM}$ tablet 250 mg (Novartis Korea Ltd.) and Famcivir (Hanmi Pharmaceutical Co., Ltd.), according to the guidelines of the Korea Food and Drug Administration (KFDA). The release of famciclovir from the two famciclovir formulations in vitro was tested using KP VIII Apparatus II method with water. Twenty six healthy male subjects, $24.19{\pm}2.08$ years in age and $71.55{\pm}6.89$ kg in body weight, were divided into two groups and a randomized $2{\times}2$ cross-over study was employed. After a single tablet containing 250 mg as famciclovir was orally administered, blood samples were taken at predetermined time intervals and the concentrations of penciclovir in serum were determined using HPLC with UV detector. The dissolution profiles of two formulations were similar at water. In addition, the pharmacokinetic parameters such as $AUC_t$, $C_{max}$ and $T_{max}$ were calculated and ANOVA test was utilized for the statistical analysis of the parameters using logarithmically transformed $AUC_t$, $C_{max}$ and untransformed $T_{max}$. The results showed that the differences between two formulations based on the reference drug, $Famvir^{TM}$ tablet 250 mg, were -2.93, -8.02 and 10.47% for $AUC_t$, $C_{max}$ and $T_{max}$, respectively. There were no sequence effects between two formulations in these parameters. The 90% confidence intervals using logarithmically transformed data were within the acceptance range of log0.8 to log1.25 (e.g., $log0.92{\sim}log1.01$ and $log0.85{\sim}log1.00$ for $AUC_t$ and $C_{max}$, respectively). Thus, the criteria of the KFDA bioequivalence guideline were satisfied, indicating Famcivir was bioequivalent to $Famvir^{TM}$ tablet 250 mg.

팜비어 정 750밀리그람(팜시클로버 750밀리그람)에 대한 팜시버 정 750밀리그람의 생물학적동등성 (Bioequivalence of Famvir Tablet 750 mg to Famcivir Tablet 750 mg (Famciclovir 750 mg))

  • 김세미;윤화;류희두;김경란;강현아;조혜영;이용복
    • Journal of Pharmaceutical Investigation
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    • 제38권3호
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    • pp.199-205
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    • 2008
  • Famciclovir, 9-(4-hydroxy-3-hydroxymethylbut-1-yl) guanine, is an oral prodrug of the antiherpesvirus nucleoside analogue, penciclovir. In human, famciclovir is orally well absorbed and then undergoes extensive first pass metabolism to penciclovir and essentially no parent compound is recovered from plasma or urine. The purpose of the present study was to evaluate the bioequivalence of two famciclovir tablets, Famvir tablet 750 mg (Novartis Korea Ltd.) and Famcivir tablet 750 mg (Hanmi Pharmaceutical. Co., Ltd.), according to the guidelines of the Korea Food and Drug Administration (KFDA). The release of famciclovir from the two famciclovir formulations in vitro was tested using KP VIII Apparatus II method with water. Twenty six healthy male subjects, $23.38{\pm}1.72$ years in age and $68.59{\pm}7.84\;kg$ in body weight, were divided into two groups and a randomized $2{\times}2$ cross-over study was employed. After a single tablet containing 750 mg as famciclovir was orally administered, blood samples were taken at predetermined time intervals and the concentrations of penciclovir in serum were determined using HPLC with UV detector. The dissolution profiles of two formulations ere similar at water. The pharmacokinetic parameters such as $AUC_t$, $C_{max}$ and $T_{max}$ were calculated and ANOVA test was utilized for the statistical analysis of the parameters using logarithmically transformed $AUC_t$, $C_{max}$ and untransformed $T_{max}$. The results showed that the differences between two formulations based on the reference drug, $Famvir^{(R)}$ tablet 750 mg, were -0.53%, 1.12% and -24.82% for $AUC_t$, $C_{max}$ and $T_{max}$, respectively. There were no sequence effects between two formulations in these parameters. The 90% confidence intervals using logarithmically transformed data were within the acceptance range of log 0.8 to log 1.25 (e.g., $log\;0.9569{\sim}log\;1.0423$ and $log\;0.8763{\sim}log\;1.2136$ for $AUC_t$ and $C_{max}$, respectively). Thus, the criteria of the KFDA bioequivalence guideline were satisfied, indicating Famcivir tablet 750 mg was bioequivalent to Famvir tablet 750 mg.

밤벡$^{(R)}$ 정 10밀리그람(염산밤부테롤 10밀리그람)에 대한 밤부콜 정 10밀리그람의 생물학적동등성 (Bioequivalence of Bambucol Tablet 10 mg to $Bambec^{(R)}$ Tablet 10 mg (Bambuterol Hydrochloride 10 mg))

  • 조혜영;최지훈;류희두;이용복
    • 한국임상약학회지
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    • 제20권3호
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    • pp.235-241
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    • 2010
  • Bambuterol hydrochloride, dimethylcarbamic acid 5-[2-(1,1-dimethylethyl)amino-1-hydroxyethyl]-1,3-phenylene ester hydrochloride, is the prodrug of active ${\beta}_2$-adrenergic metabolite terbutaline. The purpose of the present study was to evaluate the bioequivalence of two bambuterol hydrochloride tablets, $Bambec^{(R)}$ tablet 10 mg (Yuhan Co., Ltd.) and Bambucol tablet 10 mg (Sam Chun Dang Pharm. Co., Ltd.), according to the guidelines of Korea Food and Drug Administration (KFDA). In vitro release of bambuterol from two bambuterol hydrochloride formulations was tested using KP VIII Apparatus II method with various dissolution media. Twenty eight healthy male Korean volunteers, $23.86{\pm}1.65$ years in age and $68.98{\pm}9.58$ kg in body weight, were divided into two groups and a randomized $2{\times}2$ cross-over study was employed. After two tablets containing 10 mg as bambuterol hydrochloride were orally administered, blood samples were taken at predetermined time intervals, and the concentrations of bambuterol in serum were determined using column switching HPLC with UV detector. The dissolution profiles of two formulations were similar in all tested dissolution media. The pharmacokinetic parameters such as $AUC_t$, $C_{max}$ and $T_{max}$ were calculated, and ANOVA test with K-BE Test 2002 was utilized for the statistical analysis of the parameters using logarithmically transformed $AUC_t$, $C_{max}$ and untransformed $T_{max}$. The results showed that the differences between two formulations based on the reference drug, $Bambec^{(R)}$, were -8.10%, -3.82% and 12.65% for $AUC_t$, $C_{max}$ and $T_{max}$, respectively. There were no sequence effects between two formulations in these parameters. The 90% confidence intervals using logarithmically transformed data were within the acceptance range of log 0.8 to log 1.25 (i.e., log 0.8093~log 1.0302 and log 0.8564~log 1.1280 for $AUC_t$ and $C_{max}$, respectively). Thus, the criteria of the KFDA bioequivalence guideline were satisfied, indicating Bambucol tablet 10 mg was bioequivalent to $Bambec^{(R)}$ tablet 10 mg.

메바코 정 (로바스타틴 20 mg)에 대한 로바로드 정의 생물학적 동등성 (Bioequivalence of Lovaload Tablet to Mevacor Tablet (Lovastatin 20 mg))

  • 송우헌;김정민;조성완;김재현;임종래;신희종;최영욱
    • Journal of Pharmaceutical Investigation
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    • 제28권4호
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    • pp.283-288
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    • 1998
  • Lovastatin, one of the potent cholesterol-lowering agents, is an inactive lactone prodrug which is metabolized to its active open acid, lovastatin acid (LVA). Bioequivalence study of two lovastatin preparations, the test drug ($Mevacor^{\circledR}$: Chungwae Pharmaceutical Co., Ltd.) and the reference drug ($Lovaload^{\circledR}$: Chong Kun Dang Pharmaceutical Co., Ltd.), was conducted according to the guidelines of Korea Food and Drug Administration (KFDA). Fourteen healthy male volunteers, $23.9{\pm}3.9$ years old and $67.6{\pm}8.0$ kg of body weight in average, were divided randomly into two groups and administered the drug orally at the dose of 160 mg as lovastatin in a $2{\times}2$ crossover study. Plasma concentrations of lovastatin acid were analysed by HPLC method for 12 hr after administration. The extent of bioavailability was obtained from the plasma concentration-time profiles of total lovastatin acid after alkaline hydrolysis of the plasma samples. By alkaline hydrolysis, trace amounts of unmetabolized lovastatin were converted to lovastatin acid. The $AUC_{0-12hr}$ was calculated by the linear trapezoidal rule method. The $C_{max}$ and $T_{max}$ were compiled directly from the plasma drug concentration-time data. Student's t-test indicated no significant differences between the formulations in these parameters. Analysis of variance (ANOVA) revealed that there were no differences in AUC, $C_{max}$, and $T_{max}$ between the formulations. The apparent differences between the formulations were far less than 20% (e.g., 7.07, 5.77 and 1.18% for AUC, $C_{max}$, and $T_{max}$, respectively). Minimum detectable differences(%) between the formulations at ${\alpha}=0.05$ and $1-{\beta}=0.8$ were less than 20% (e.g., 17.2, 15.1, and 15.9% for AUC, Cmax, and Tmax, respectively). The 90% confidence intervals for these parameters were also within ${\pm}20%$ (e.g.. $-5.20{\sim}19.3$, $-5.00{\sim}16.5$, and $-10.2{\sim}12.5%$ for AUC, $C_{max}$, and $T_{max}$, respectively). These results satisfied the bioequivalence criteria of KFDA guidelines, indicating that the two formulations of lovastatin were bioequivalent.

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헬리코박터 파일로리에서 fdxA 유전자에 의한 메트로니다졸 내성 조절 기전 연구 (Mechanism of Metronidazole Resistance Regulated by the fdxA Gene in Helicobacter pylori.)

  • 남원희;이선미;김은실;김진호;정진용
    • 생명과학회지
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    • 제17권5호
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    • pp.723-727
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    • 2007
  • 본 연구는 H. pylori에서 metronidazole내성에 관여하는 유전자를 발견하고 이들 유전자들의 상호 조절 기전을 밝힘으로서 위장질환의 원인균인 H. pylori를 퇴치하기 위한 기본바탕을 마련하고자 수행되었다. 우선적으로 metronidazole 내성을 조절하는 유전자인 fdxA(ferredoxin)에 의한 metronidazole 내성 조절 기전을 밝히기 위하여 다음의 연구를 수행하였다. Type I 균주인 26695균주의 fdxA 유전자에 chloramphenicol 내성 유전자를 삽입하여 결손돌연변이주를 구축하였다. fdxA의 비활성화에 의한 rdxA 및 frxA 유전자의 발현을 알아보기 위하여 2-D electrophoresis와 MALDI-TOP-MS을 이용하여 fdxA 유전자의 비활성화에 의해 over-expressed protein과 under-expressed protein을 검색하였다. 본 실험의 결과로 type I 균주인 26695에서 fdxA 유전자를 비활성화시킨 결과 frxA 유전자의 발현양이 증가함을 northern으로 확인하였으며, 또한 fdxA유전자의 downstream에 위치한 유전자들이 H. pylori의 생존에 중요한 역할은 한다는 것을 알 수 있었다. 또한 2-D electrophoresis와 MALDI-TOP-MS을 이용하여 fdxA 유전자의 inactivation에 의해 over-expressed protein으로 nifU-like protein(HP0221), frxA(HP0642), nonheme ferritin(HP0653)와 아직 기능이 밝혀지지 않은 hypothetical protein(HP0902) 등이 발견되었다. 그리고 5'-methylthioadenosine/S-adenosylhomocysteine nucleosidase(HP0089), (3R)-hydroxymyristoyl ACP dehydratase(HP1376)과 thioredoxin(HP1458)등이 under-expressed protein으로 발견되었다.

Herpes Simplex Virus thymidine kinase gene을 이용한 유전자 치료에서 retinoic acid가 bystander effect에 미치는 영향 (Effect of retinoic acid on the bystander effect in gene therapy using the Herpes Simplex Virus thymidine kinase)

  • 박재용;김창호;정태훈
    • Tuberculosis and Respiratory Diseases
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    • 제44권1호
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    • pp.162-174
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    • 1997
  • 연구배경 : HSVtk 유전자를 암세포에 이입하여 GCV에 대해 선택적으로 감수성을 증가시키는 HSVtk/GCV 유전자치료에서 bystander effect는 모든 암세포에 유전자를 이입하지 않고도 치료효과를 얻을 수 있도록 한다. 그러나 현존하는 viral vector는 유전자이입 효율이 낮아 임상적으로 치료효과를 기대하는데는 한계가 있다. 따라서 유전자의 이입효율이 높은 새로운 vector의 개발과 함께 bystander effect의 극대화를 통해 치료효과를 증가시킬 수 있는 방법 등이 요구된다. 최근 gap junction을 통한 세포간의 metablic cooperation이 bystander effect의 주요기전임이 밝혀졌고 retinoids는 gap junction을 통한 세포간의 communication을 증가시킨다고 보고되었다. 저자들은 HSVtk/GCV 유전자치료에서 bystander effect에 미치는 retinoids의 효과를 조사하였다. 방 법 : Adenovus와 retrovirus vector를 이용하여 connexin 43를 발현하는 악성중피종세포와 connexin 43를 발현하지 않는 SKHep-J 세포주에 HSVtk 유전자를 이입한 후 HSVtk 유전자가 이입된 세포와 HSVtk 유전자가 이입되지 않은 세포들을 여러가지 비율로 혼합한 mixing study를 시행하였으며 $10^{-10}M-10^{-6}M$ RA 처리 유무에 따른 bystander effect에 의한 살상효과를 비교하였다. 그리고 gap junction을 통한 세포간의 communication에 대한 retinoids의 영향을 조사하기 위해 retinoids 처리에 따른 세포간 communication을 FACS를 이용하여 double-dye transfer study로 측정하였다. 결 과 : Connexin 43를 발현하지 않는 SKHep-J 세포주에서는 RA 처리유무에 따른 bystander effect에 의한 살상효과의 차이가 없었다. 그러나 connexin 43를 발현하는 악성중피종 세포주에서는 $10^{-8}M-10^{-6}M$ RA처리시 세포간의 communication과 bystander effect가 RA를 처리하지 않은 대조군에 비해 유의하게 증가되었다. 결 론 : RA는 gap junction을 통한 세포간의 communication을 증가시켜 HSVtk/GCV 유전자치료에서 bystander effect에 의한 살상효과를 증가시켰다. 이러한 결과는 HSVtk/GCV 유전자치료의 효과를 증가시킬 수 있는 새로운 방법이 될 수 있을 것으로 생각된다.

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