Skip to main content

γ-H2AX foci as indication for the DNA damage in erythrocytes of medaka (Oryzias latipes) intoxicated with 4-nonylphenol

Research Abstract

NULL

Research Authors
28- Alaa El-Din H. Sayed, Tomomi Watanabe-Asaka, Shoji Oda; Shosaku Kashiwada, Hiroshi Mitani
Research Department
Research Journal
Environmental Science and Pollution Research
Research Member
Research Pages
18966–18971
Research Publisher
Springer
Research Rank
1
Research Vol
27
Research Website
NULL
Research Year
2020

Histological alterations in some organs of monosex tilapia (Oreochromis niloticus, Linnaeus, 1758) produced using methyltestosterone

Research Abstract

NULL

Research Authors
29- Alaa El-Din H. Sayed; Mahmoud M. S. Farrag; Basem S. Abdelaty; Mohammed M. M. Toutou; Ola I. Muhammad
Research Department
Research Journal
Egyptian Journal of Aquatic Biology & Fisheries
Research Member
Research Pages
141-151.
Research Publisher
NULL
Research Rank
1
Research Vol
22, 4,
Research Website
NULL
Research Year
2018

Poikilocytosis and tissue damage as negative impacts of tramadol on juvenile of Tilapia (Oreochromis niloticus)

Research Abstract

NULL

Research Authors
Hamdy A.M.Soliman, Alaa El-Din H.Sayed
Research Department
Research Journal
Environmental Toxicology and Pharmacology
Research Member
Research Pages
NULL
Research Publisher
NULL
Research Rank
1
Research Vol
NULL
Research Website
NULL
Research Year
2020

A concise review on synthesis, reactions and biological importance of thienopyrazoles

Research Abstract

Pyrazoles are five membered heterocycles constitute a higly significant class of compounds in organic synthesis. Nowadays, pyrazoles and condensed pyrazoles have attracted substantial attention of the scientists owing to their excellent pharmacological and agrochemical properties. Pyrazole derivatives exhibit a wide range of pharmacological effects such as: anticancer, antioxidant, anti-inflammatory, antipyretic, analgesic, antimicrobial, antidepressant, antiviral, antihypertensive, anti-glaucoma, anti-tubercular, sodium channel blocker, anxiolytic, neuroprotective and anti-diabetic activities. This review casts light on recent methodologies for the synthesis and reactions of thienopyrazole moiety. This follow-up may encourage scientists to create new routes towards the thienopyrazole nucleus with important biological activity.

Research Authors
Remon M. Zaki,* Ahmed F. Saber, Adel M. Kamal El-Dean, and Shaban M. Radwan
Research Department
Research Journal
Arkivoc
Research Pages
20-60
Research Publisher
ARKAT USA, Inc.
Research Rank
1
Research Vol
i
Research Website
https://doi.org/10.24820/ark.5550190.p011.108
Research Year
2020

A concise review on synthesis, reactions and biological importance of thienopyrazoles

Research Abstract

Pyrazoles are five membered heterocycles constitute a higly significant class of compounds in organic synthesis. Nowadays, pyrazoles and condensed pyrazoles have attracted substantial attention of the scientists owing to their excellent pharmacological and agrochemical properties. Pyrazole derivatives exhibit a wide range of pharmacological effects such as: anticancer, antioxidant, anti-inflammatory, antipyretic, analgesic, antimicrobial, antidepressant, antiviral, antihypertensive, anti-glaucoma, anti-tubercular, sodium channel blocker, anxiolytic, neuroprotective and anti-diabetic activities. This review casts light on recent methodologies for the synthesis and reactions of thienopyrazole moiety. This follow-up may encourage scientists to create new routes towards the thienopyrazole nucleus with important biological activity.

Research Authors
Remon M. Zaki,* Ahmed F. Saber, Adel M. Kamal El-Dean, and Shaban M. Radwan
Research Department
Research Journal
Arkivoc
Research Pages
20-60
Research Publisher
ARKAT USA, Inc.
Research Rank
1
Research Vol
i
Research Website
https://doi.org/10.24820/ark.5550190.p011.108
Research Year
2020

A concise review on synthesis, reactions and biological importance of thienopyrazoles

Research Abstract

Pyrazoles are five membered heterocycles constitute a higly significant class of compounds in organic synthesis. Nowadays, pyrazoles and condensed pyrazoles have attracted substantial attention of the scientists owing to their excellent pharmacological and agrochemical properties. Pyrazole derivatives exhibit a wide range of pharmacological effects such as: anticancer, antioxidant, anti-inflammatory, antipyretic, analgesic, antimicrobial, antidepressant, antiviral, antihypertensive, anti-glaucoma, anti-tubercular, sodium channel blocker, anxiolytic, neuroprotective and anti-diabetic activities. This review casts light on recent methodologies for the synthesis and reactions of thienopyrazole moiety. This follow-up may encourage scientists to create new routes towards the thienopyrazole nucleus with important biological activity.

Research Authors
Remon M. Zaki,* Ahmed F. Saber, Adel M. Kamal El-Dean, and Shaban M. Radwan
Research Department
Research Journal
Arkivoc
Research Member
Research Pages
20-60
Research Publisher
ARKAT USA, Inc.
Research Rank
1
Research Vol
i
Research Website
https://doi.org/10.24820/ark.5550190.p011.108
Research Year
2020

A concise review on synthesis, reactions and biological importance of thienopyrazoles

Research Abstract

Pyrazoles are five membered heterocycles constitute a higly significant class of compounds in organic synthesis. Nowadays, pyrazoles and condensed pyrazoles have attracted substantial attention of the scientists owing to their excellent pharmacological and agrochemical properties. Pyrazole derivatives exhibit a wide range of pharmacological effects such as: anticancer, antioxidant, anti-inflammatory, antipyretic, analgesic, antimicrobial, antidepressant, antiviral, antihypertensive, anti-glaucoma, anti-tubercular, sodium channel blocker, anxiolytic, neuroprotective and anti-diabetic activities. This review casts light on recent methodologies for the synthesis and reactions of thienopyrazole moiety. This follow-up may encourage scientists to create new routes towards the thienopyrazole nucleus with important biological activity.

Research Authors
Remon M. Zaki,* Ahmed F. Saber, Adel M. Kamal El-Dean, and Shaban M. Radwan
Research Department
Research Journal
Arkivoc
Research Member
Research Pages
20-60
Research Publisher
ARKAT USA, Inc.
Research Rank
1
Research Vol
i
Research Website
https://doi.org/10.24820/ark.5550190.p011.108
Research Year
2020

Synthesis, reactions, and spectral characterization of some new biologically active compounds derived from thieno[2,3-c]pyrazole-5-carboxamide

Research Abstract

The starting compound 4-amino-3-methyl-1-phenyl-1H-thieno[2,3-c]pyrazole-
5-carboxamide (1), that has been previously synthesized according to the literature
procedure, underwent a reaction with the anhydride of phthalic acid
either in AcOH or DMF to give isoindolinylpyrazole-5-carboxamide 3 and
pyrazolothienopyrimidoisoindoledione 4, respectively. Also, it was subjected to
react with diethylmalonate followed by hydrazinolysis by hydrazine hydrate to
yield the pyrazolothienopyrimidinyl acetohydrazide 5. The carbohydrazide
derivative 5 was used as a key intermediate for the preparation of other new
heterocyclic systems containing pyrazolylacetyl pyrazolothienopyrimidines
and pyrazolothieno-pyrimidotriazepine compounds 6–11. The structures of
these new heterocycles have been characterized by using analytical and spectroscopic
analyses (IR, 1H-NMR, 13C-NMR and MS). Some derivatives of the
synthesized compounds exhibited remarkable antibacterial and antifungal
activities against many bacterial and fungal strains.

Research Authors
Ahmed F. Saber, Remon M. Zaki, Adel M. Kamal El-Dean, Shaban M. Radwan
Research Department
Research Journal
Journal of Heterocyclic Chemistry
Research Pages
pp. 238–247
Research Publisher
Wiley
Research Rank
1
Research Vol
Vol. 57
Research Website
https://doi.org/10.1002/jhet.3769
Research Year
2020

Synthesis, reactions, and spectral characterization of some new biologically active compounds derived from thieno[2,3-c]pyrazole-5-carboxamide

Research Abstract

The starting compound 4-amino-3-methyl-1-phenyl-1H-thieno[2,3-c]pyrazole-
5-carboxamide (1), that has been previously synthesized according to the literature
procedure, underwent a reaction with the anhydride of phthalic acid
either in AcOH or DMF to give isoindolinylpyrazole-5-carboxamide 3 and
pyrazolothienopyrimidoisoindoledione 4, respectively. Also, it was subjected to
react with diethylmalonate followed by hydrazinolysis by hydrazine hydrate to
yield the pyrazolothienopyrimidinyl acetohydrazide 5. The carbohydrazide
derivative 5 was used as a key intermediate for the preparation of other new
heterocyclic systems containing pyrazolylacetyl pyrazolothienopyrimidines
and pyrazolothieno-pyrimidotriazepine compounds 6–11. The structures of
these new heterocycles have been characterized by using analytical and spectroscopic
analyses (IR, 1H-NMR, 13C-NMR and MS). Some derivatives of the
synthesized compounds exhibited remarkable antibacterial and antifungal
activities against many bacterial and fungal strains.

Research Authors
Ahmed F. Saber, Remon M. Zaki, Adel M. Kamal El-Dean, Shaban M. Radwan
Research Department
Research Journal
Journal of Heterocyclic Chemistry
Research Pages
pp. 238–247
Research Publisher
Wiley
Research Rank
1
Research Vol
Vol. 57
Research Website
https://doi.org/10.1002/jhet.3769
Research Year
2020

Synthesis, reactions, and spectral characterization of some new biologically active compounds derived from thieno[2,3-c]pyrazole-5-carboxamide

Research Abstract

The starting compound 4-amino-3-methyl-1-phenyl-1H-thieno[2,3-c]pyrazole-
5-carboxamide (1), that has been previously synthesized according to the literature
procedure, underwent a reaction with the anhydride of phthalic acid
either in AcOH or DMF to give isoindolinylpyrazole-5-carboxamide 3 and
pyrazolothienopyrimidoisoindoledione 4, respectively. Also, it was subjected to
react with diethylmalonate followed by hydrazinolysis by hydrazine hydrate to
yield the pyrazolothienopyrimidinyl acetohydrazide 5. The carbohydrazide
derivative 5 was used as a key intermediate for the preparation of other new
heterocyclic systems containing pyrazolylacetyl pyrazolothienopyrimidines
and pyrazolothieno-pyrimidotriazepine compounds 6–11. The structures of
these new heterocycles have been characterized by using analytical and spectroscopic
analyses (IR, 1H-NMR, 13C-NMR and MS). Some derivatives of the
synthesized compounds exhibited remarkable antibacterial and antifungal
activities against many bacterial and fungal strains.

Research Authors
Ahmed F. Saber, Remon M. Zaki, Adel M. Kamal El-Dean, Shaban M. Radwan
Research Department
Research Journal
Journal of Heterocyclic Chemistry
Research Member
Research Pages
pp. 238–247
Research Publisher
Wiley
Research Rank
1
Research Vol
Vol. 57
Research Website
https://doi.org/10.1002/jhet.3769
Research Year
2020
Subscribe to