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Design, synthesis, and biological evaluation of novel C5-modified pyrimidine ribofuranonucleosides as potential antitumor or/and antiviral agents

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Autore
Kollatos N., Mitsos C., Manta S., Tzioumaki N., Giannakas C., Alexouli T., Panagiotopoulou A., Schols D., Andrei G., Komiotis D.
Data
2020
Language
en
DOI
10.2174/1573406415666190225112950
Soggetto
1 (2' o acetyl 5' o benzoyl 3' deoxy 3' c methyl beta dextro ribofuranosyl) 5 iodouracil
1 (2' o acetyl 5' o benzoyl 3' deoxy 3' c methyl beta dextro ribofuranosyl) 5 [(2 fluorophenyl)ethynyl]uracil
1 (2' o acetyl 5' o benzoyl 3' deoxy beta dextro ribofuranosyl) 5 iodouracil
1 (2' o acetyl 5' o benzoyl 3' deoxy beta dextro ribofuranosyl) 5 [(2 chlorophenyl)ethynyl]uracil
1 (2' o acetyl 5' o benzoyl 3' deoxy beta dextro ribofuranosyl) 5 [(2 fluorophenyl)ethynyl]uracil
1 (2' o acetyl 5' o benzoyl 3' deoxy beta dextro ribofuranosyl) 5 [(2,4,5 trimethylphenyl)ethynyl]uracil
1 (2' o acetyl 5' o benzoyl 3' deoxy beta dextro ribofuranosyl) 5 [(2,5 dimethylphenyl)ethynyl]uracil
1 (2' o acetyl 5' o benzoyl 3' deoxy beta dextro ribofuranosyl) 5 [(6 methoxynaphthalene)ethynyl]uracil
1 (2',3',5' tri o acetyl beta dextro ribofuranosyl) 5 iodouracil
1 (2',3',5' tri o acetyl beta dextro ribofuranosyl) 5 [(2 chlorophenyl)ethynyl]uracil
1 (2',3',5' tri o acetyl beta dextro ribofuranosyl) 5 [(2 fluorophenyl)ethynyl]uracil
1 (2',3',5' tri o acetyl beta dextro ribofuranosyl) 5 [(2,4,5 trimethylphenyl)ethynyl]uracil
1 (2',3',5' tri o acetyl beta dextro ribofuranosyl) 5 [(2,5 dimethylphenyl)ethynyl]uracil
1 (2',3',5' tri o acetyl beta dextro ribofuranosyl) 5 [(6 methoxynaphthalene)ethynyl]uracil
1 (3' deoxy beta dextro ribofuranosyl) 5 [(2 chlorophenyl)ethynyl]uracil
1 (3' deoxy beta dextro ribofuranosyl) 5 [(2 fluorophenyl)ethynyl]uracil
1 (3' deoxy beta dextro ribofuranosyl) 5 [(2,4,5 trimethylphenyl)ethynyl]uracil
1 (3' deoxy beta dextro ribofuranosyl) 5 [(6 methoxynaphthalene)ethynyl]uracil
1 (beta dextro ribofuranosyl) 5 [(2 chlorophenyl)ethynyl]uracil
1 (beta dextro ribofuranosyl) 5 [(2 fluorophenyl)ethynyl]uracil
1 (beta dextro ribofuranosyl) 5 [(2,4,5 trimethylphenyl)ethynyl]uracil
1 (beta dextro ribofuranosyl) 5 [(2,5 dimethylphenyl)ethynyl]uracil
1 (beta dextro ribofuranosyl) 5 [(6 methoxynaphthalene)ethynyl]uracil
1,2 di o acetyl 5 o benzoyl 3 deoxy beta dextro ribofuranose
5 o benzoyl 3 deoxy 1,2 o isopropylidene a dextro ribofuranose
antivirus agent
cytotoxic agent
nucleoside derivative
pyrimidine derivative
unclassified drug
unindexed drug
antineoplastic agent
antivirus agent
pyrimidine nucleoside
antineoplastic activity
antiviral activity
Article
controlled study
Coronaviridae
Coxsackievirus B4
cytostasis
drug cytotoxicity
drug design
drug potency
drug synthesis
EC50
embryo
female
HeLa cell line
human
human cell
Human coronavirus 229E
Human respiratory syncytial virus
IC50
L1210 cell line
microwave irradiation
nonhuman
priority journal
Sonogashira reaction
Yellow fever virus
animal
cell proliferation
chemistry
drug effect
mouse
synthesis
Animals
Antineoplastic Agents
Antiviral Agents
Cell Proliferation
Chemistry Techniques, Synthetic
Drug Design
HeLa Cells
Humans
Mice
Pyrimidine Nucleosides
Bentham Science Publishers
Mostra tutti i dati dell'item
Abstract
Background: Nucleoside analogues are well-known antitumor, antiviral, and chemotherapeutic agents. Alterations on both their sugar and the heterocyclic parts may lead to significant changes in the spectrum of their biological activity and the degree of selective toxicity, as well as in their physicochemical properties. Method: C5-arylalkynyl-β-D-ribofuranonucleosides 3-6, 3΄-deoxy 12-15, 3΄-deoxy-3΄-C-methyl-β-D-ribofurananucleosides 18-21 and 2΄-deoxy-β-D-ribofuranonucleosides 23-26 of uracil, were synthesized using a one-step Sonogashira reaction under microwave irradiation and subsequent deprotection. Results: All newly synthesized nucleosides were tested for their antitumor or antiviral activity. Moderate cytostatic activity against cervix carcinoma (HeLa), murine leukemia (L1210) and human lymphocyte (CEM) tumor cell lines was displayed by the protected 3΄-deoxy derivatives 12b, 12c, 12d, and the 3΄-deoxy-3΄-methyl 18a, 18b, 18c. The antiviral evaluation revealed appreciable activity against Coxsackie virus B4, Respiratory syncytial virus, Yellow Fever Virus and Human Coronavirus (229E) for the 3΄-deoxy compounds 12b, 14, and the 3΄-deoxy-3΄-methyl 18a, 18c, 18d, accompanied by low cytotoxicity. Conclusion: This report describes the total and facile synthesis of modified furanononucleosides of uracil, with alterations on both the sugar and the heterocyclic portions. Compounds 12b, 14 and 18a,c,d showed noticeable antiviral activity against a series of RNA viruses and merit further biological and structural optimization investigations. © 2020 Bentham Science Publishers.
URI
http://hdl.handle.net/11615/74978
Collections
  • Δημοσιεύσεις σε περιοδικά, συνέδρια, κεφάλαια βιβλίων κλπ. [19735]

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