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항 HIV제로서 5-Ethoxymethyl uridine 유도체의 합성

  • 김득준;안순길
    • Proceedings of the Korean Society of Applied Pharmacology
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    • 1994.04a
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    • pp.223-223
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    • 1994
  • FDA가 공인한 항 HIV제로서 사용중인 AZT나 DDI와 같은 화합물은 장기 투여로 심각한 부작용들이 나타나고 있다. 그래서 기존의 activity를 가진 nucleoside류의 sugar 부분에 새로운 base 즉, 5-ethoxymethyl uracil을 축합, 3'-azido-2',3'-dideoxy-5-ethoxy-methyl uridine, 2',3'-aideoxy-3'-fluoro-5-ethoxymethyl uridine과 2',3'-dideoxy-5-ethoxymethyl uridine들을 합성, 구조활성 상관관계를 검토하였다. 이들의 합성은 먼저 적절한 group으로 sugar의 -OH group을 보호한후 uracil류와 반응, uridine 유도체를 먼저 합성하였다. 각각의 uridine 유도체들의 5-위치에 ethoxymethyl group을 도입하기 위해 formalin과 반응시킨후 5-hydroxy-methyl group을 도입하고 산촉매 하에 ethanol과 반응, ethyl ether류를 합성하였다.

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Pharmacokinetics of Uridine Following Ocular, Oral and Intravenous Administration in Rabbits

  • Kim, Eunyoung;Kang, Wonku
    • Biomolecules & Therapeutics
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    • v.21 no.2
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    • pp.170-172
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    • 2013
  • The pyrimidine nucleoside uridine has recently been reported to have a protective effect on cultured human corneal epithelial cells, in an animal model of dry eye and in patients. In this study, we investigate the pharmacokinetic profile of uridine in rabbits, following topical ocular (8 mg/eye), oral (450 mg/kg) and intravenous (100 mg/kg) administration. Blood and urine samples were serially taken, and uridine was measured by high-performance liquid chromatography-tandem mass spectrometry. No symptoms were noted in the animals after uridine treatment. Uridine was not detected in either plasma or urine after topical ocular administration, indicating no systemic exposure to uridine with this treatment route. Following a single intravenous dose, the plasma concentration of uridine showed a bi-exponential decay, with a rapid decline over 10 min, followed by a slow decay with a terminal half-life of $0.36{\pm}0.05$ h. Clearance and volume of distribution were $1.8{\pm}0.6$ L/h/kg and $0.58{\pm}0.32$ L/kg, respectively. The area under the plasma concentration-time curves (AUC) was $59.7{\pm}18.2{\mu}g{\cdot}hr/ml$, and urinary excretion up to 12 hr was ~7.7% of the dose. Plasma uridine reached a peak of $25.8{\pm}4.1{\mu}g/ml$ at $2.3{\pm}0.8$ hr after oral administration. The AUC was $79.0{\pm}13.9{\mu}g{\cdot}hr/ml$, representing ~29.4% of absolute bioavailability. About 1% of the oral dose was excreted in the urine. These results should prove useful in the design of future clinical and nonclinical studies conducted with uridine.

Syntheses and Biological Activities of Uridine Nucleoside Derivatives (Uridine Nucleoside 유도체의 합성과 생물 활성)

  • Bong-Hun Lee;Jang-Su Park;Shin-Won Kang
    • Journal of Life Science
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    • v.9 no.1
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    • pp.63-68
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    • 1999
  • Many nucleoside compounds such as 5-halogen substituted uridine, 5'-amino-5'-deoxyuridine conjugates of amino acid, peptide, and penicillin G, 5'-monophosphate uridine derivatives and 5'-monophosphate uridine-fatty acid derivatives were chemically synthesized and their antifungal, antibacterial, and antitumor activities were tested. 5-Bromo-2',3'-O-isopropylideneuridine(6) inhibited the growth of Trichophyton rubrum at $0.2{\mu}$g/ml of MIC. 5'-Amino-5'-deoxyuridine-penicillin G(19), 5'-amino-5'-deoxyuridine-cyclo(Phe-Asp)(20), and 5-iodo-5'-amino-5'-deoxyuridine- penicillin G(22) had antibarterial activity(MIC was $6.25{\mu}$g/ml against S. aureus) and the latter two nucleoside compounds were the most antitumor derivatives(their $IC_{50}$ against L5178Y murine lymphoma cell was $6.5{\mu}$g/ml).

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Synthesis and Antitumor Evaluation of cis-(1,2-Diaminoethane) dichloroplatinum (II) Complexes Linked to 5- and 6-Methyleneuracil and -uridine Analogues

  • Kim, Jack-C.;Lee, Min-Hwa;Choi, Soon-Kyu
    • Archives of Pharmacal Research
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    • v.21 no.4
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    • pp.465-469
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    • 1998
  • The search for platinum (II)-based compounds with improved therapeutic properties was prompted to design and synthesize a new family of water-soluble, third generation cis-diaminedichloroplatinum (II) complexes linked to uracil and uridine. Six heretofore unreported uracil and uridine-platinum (II) complexes are; [N-(uracil-5-yl-methyl)ethane-1,2-di-amine]dichloroplatinum (II) (3a), [N-(uracil-6-yl-methyl)ethane-1,2-diaminel dichloroplatinum (II) (3b), t[N-($2^1$, $3^1$,$5^1$-tri-O-acetyl)uridine-5-yl-methyl] ethane-1,2-diamineldichloroplatinum (II) (6a), {[N-($2^1$,$3^1$, $5^1$-tri-O-acetyl) uridine-6-yl-methyl]ethane-1,2-diamine)dichloroplatinum (II) (6b),[N-(uridine- 5-yl-methyl)ethane-1,2-diamine]dichloroplatinum (II) (7a), [N-(uridine-6-yl- methyl)ethane-1,2-diamine]dichloroplatinum (II) (7b). These analogues were prepared from the key starting materials, 5-chloromethyluracil (1a) and 6-chloromethyluracil (1b) which were reacted with ethylenediamine to afford the respective 5-[(2-aminoethyl)aminol methyluracil (2a) and 6-[(2-aminoethyl)amino]methyluracil (2b). The cis-platin complexes 3a and 3b were obtained through the reaction of the respective 2a and 2b with potassium tetrachloroplatinate (II). The heterocyclic nucleic acid bases 1a and 1b were efficiently introduced on the .betha.-D-ribose ring via a Vorbruggen-type nucleoside coupling procedure with hexamethyldisilazane, trimethylchlorosilane and stannic chloride under anhydrous acetonitrile to yield the stereospecific .betha.-anomeric 5-chloromethyl- $2^1$,$3^1$,$5^1$-tri-O-acetyluridine (4a) and 6-chloromethyl-$2^1$,$3^1$,$5^1$-tri-O-acetyluridine (4b), respectively. The nucleosides 4a and 4b were coupled with ethylenediamine to provide the respective 5-[(amino-ethyl)aminolmethyl-$2^1$,$3^1$,$5^1$-tri-O-acetyluridine (5a) and 6-[(aminoethyl)amino] methyl-$2^1$,$3^1$,$5^1$-tri-O-acetyluridine (5b). The diamino-uridines 5a and 5b were reacted with potassium tetrachloroplatinate (II) to give the novel nucleoside complexes, 6a and 6b, respectively which were deacetylated into the free nucleosides, 7a and 7b by the treatment with CH$_{3}$ONa. The cytotoxic activities were evaluated against three cell lines (FM-3A, P-388 and J-82) and none of the synthesized compounds showed any significant activity.

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Synthesis of Adenosine and Uridine Analogues Containing Conjugated Diene (공액 이중 결합을 갖는 Adenosine과 Uridine 유사체의 합성)

  • Ro, Bong Oh
    • Journal of the Korean Chemical Society
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    • v.45 no.4
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    • pp.312-317
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    • 2001
  • 7'-Aldehyde-nucleosides analogue (2a, 2c) were synthesized from 6-N-benzoyl-2',3'-O-isopropylideneadenosine and uridine. The condensation of 2 with ethoxycarbonylmethylene Wittig reagent produced the adenosine and uridine analogues containing extended conjugated diene and ethoxycarbonyl group, ethyl-1',5',6',7',8'-pentadeoxy-1'-(adenin-9-yl)-$\beta$-D-ribo-nona-5'(E),7'(E)-dienofuranuronate (4b) and ethyl-1'. 5',6',7',8'-pentadeoxy-1'-(uracil-1-yl)-$\beta$-D-ribo-nona-5'(E),7'-(E)-dienofuranuronate (4c). 9-[8',8'-dibromo-5',6',7',8' -tetradeoxy-$\beta$-D-ribo-octa-5'(E),7'(E)-diene]nucleosides (6b, 6c) were also prepared from 2 with similar method.

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A study on the Synthesis and Biological Activity of Nucleoside Chemotherapeutic Agents (핵산계 화학요법제의 합성 및 생물활성에 관한 연구)

  • 강신원;김경희;신정희;이봉헌;장태식
    • Korean Journal of Microbiology
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    • v.29 no.6
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    • pp.353-360
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    • 1991
  • 5-substituted uridine(I,Br,Cl), 5'-amino-5'-deoxyuridine conjugates of amino acid, peptide and penicillin G, 5'-monophosphate uridine derivatives and 5'-monophosphate-fatty acid detrivatives were chemically synthesized. Their biological activities were determined as MIC and IC/sub 50/ unit against various pathogenic microorganisms in vitro. 5'-amino-5'-deoxyuridine-cyclo(Phe-Asp)(23), 5-iodo-5'-amino-deoxyuridine-penicillin G(26) were the most efficient; their IC/sub 50/ against L5178Y murine lymphoma cell was 6.5 h/ml, MIC against S. aureus (+) and E. coli (-) was 6.25 g/ml. MIC of 5-bromo-2', 3'-O-isopropylideneuridine(6) against Trichophyton rubrum was 0.2 g/ml. And 5'-monophosphate derivatives are more active than simple uridine derivatives, suggesting other modified nucleoside 5'-phosphate may be worthwhile examing further as a new prodrugs.

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Benzylacyclouridines ad Nucleoside Transport Inhibitors in Human Erythrocytes (Benzylacyclouridines의 적혈구에 있어서 Nucleoside 수송 억제)

  • Lee, Kang-Hyun;Cha, Sung-Man
    • The Korean Journal of Pharmacology
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    • v.24 no.1
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    • pp.11-16
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    • 1988
  • Various Benzylacyclouridine (BAU, HM-BAU, suc-BAU, BBAU, HMBBAU, suc-BBAU, and BBBAU) developed as specifc inhibitors of uridine phosphorylase (UrdPase), inhibit transport (zero-trans influx) of ridine (Urd) in human erythrocytes. The inhibition pattern of these compounds is competitive, though suc-BBAU and BBBAU show a slight noncompetivieness. The order of potency as an inhibitor of the nucleoside transport system is BBAU ${\sim}$ HM-BBAU ${\sim}$ suc-BBAU > BBBAU > BAU ${\sim}$ suc-BAU ${\sim}$ HM-BAU ($K_1$ values of 19, 23, 38, 112, 124, 174 and 176 ${\mu}M$, respectively). These data indicate that there is a differnece in potency of Urd transport inhibition between the analogs of BAU and BBAU. Further, the potency correlates with the hydrophobicity of the compound, but it has a limit in the size of $C_5$ substitution. Abbreviation: BAU (5-benzylacyclouridine), 5-benzyl-1-(2'-hydroxyethoxymethyl) uracil; HM-BAU (3'-hydroxymethyl-BAU), 5-benzyl-1- [(1',3'-dihydroxy-2-propoxy) methyl]uracil; suc-BAU, 3'-succinyl-BAU; BBAU (benzyloxybenzylacyclouridine), 5-( m-benzyloxybenByl)-1-(2'-hydroxyethoxymethyl)uracil; HM-BBAU (3'-hydroxymethyl-BBAU), 5-(m-benzyloxybenzyl)-1- [(1'3'-dihyd.oxy-2-p.epoxy)methyll u.acil; suc-BAU, 3'-succinyl-BBAU; BBBAU, 5- f 3-(4-benzyloxyben-Eyl)benzyll -1-(2'-hydroxyethoxymethyl)uracil; Urdpase, uridine phosphorylase; Urd, Uridine; Fd-Urd, 5-fluoro-2'-deoxyuridine; AcThd, aoyclothyrnidine; AcUrd, acyclouridine; dThd, thymidine; NBMPR, nitrobenzylthioisone; FUra, 5-fluorouracil.

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Synthetic Studies Related to Antibiotics Containing Higher-carbon Sugars

  • Kim, Kwan-Soo
    • Korean Journal of Pharmacognosy
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    • v.16 no.4
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    • pp.239-242
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    • 1985
  • The anion of $6-benzenesulfonyl-3-O-benzyl-6-deoxy-1,2-O-isopropylidene-{\alpha}-d-glucofuranose$ was stable and reacted with carbon electrophiles to give higher-carbon sugars. Reactions of uridine 5'-aldehyde with phosphoranes afforded heptofuranose nucleosides.

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Antitumor Activities of Lipophilic Nucleoside 5′-monophosphate Analogues as Prodrugs (Prodrug로서 지질친화성 Nucleoside 5′-(3-pyridinyl carbonyl) monophosphate 유도체의 항암 활성)

  • Lee, Bong-Hun;Park, Jang-Su;Kang, Shin-Won
    • Journal of Life Science
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    • v.9 no.1
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    • pp.58-62
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    • 1999
  • Several nucleoside 5'-monophosphate analogues and lipophilic nucleoside 5'-(3-pyridinylcarbonyl)monophosphate analogues were synthesized. Antitumor activities of the synthesized nucleoside malogues against P338 mouse leukemia, FM3A murine mammary carcinoma, and U937 human histiocytic lymphoma cells were determined by MTT assay. Antitumor activities of the lipophilic uridine 5'-(3-pyridinylcarbonyl) monophosphate(7) and 2',3'-didehydro-3'-deoxy-thymidine-5'-(3-pyridinylcarbonyl) monophosphate(8) were stronger than those of uridine 5'-monophosphate(1) and 2',3'-didehydro-3'-deoxythymidine-5'-monophosphate(4). This preliminary experimental result suggests that nucleoside 5'-(3-pyridinylcar-bonyl)monophosphate analogues may be new prodrugs to overcome the clinical limit.

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