39794-30-4Relevant academic research and scientific papers
IBX/KI promoted synthesis of 2, 5-disubstituted 1, 3, 4-oxadiazoles
Khan, P. Rasvan,Durgaprasad,Reddy, S. Gopal,Reddy, G. Raveendra,Hussein, Ibnelwaleed A.,Reddy, B.V. Subba
, p. 64 - 69 (2018/03/05)
Background: Oxadiazoles are privileged scaffolds in different areas of medicinal, pesticidal, polymer and material science. They act as anticancer, benzodiazepine receptor agonists, antimicrobial, analgesic, diuretic and tyrosinase inhibitors etc. A number of compounds containing an oxadiazole moiety are in late stage clinical trials including zibotentan and furamizole. Despite numerous methods are reported, the majority of them suffer from major drawbacks such as the use of strong alkaline or acidic conditions, highly toxic and corrosive reagents and also involve the use of costly reagents, elevated temperatures and longer reaction times. Inspired by the potential application of hypervalent iodonium reagents in organic synthesis, we would like to explore the readily available IBX and KI reagents for the facile synthesis of 1, 3, 4-oxadiazoles. Method: Oxidative cyclization has successfully been developed for the synthesis of 2, 5-disubstituted 1, 3, 4-oxadiazoles. Results: An efficient process for the one-pot synthesis of 2, 5-disubstituted 1, 3, 4-oxadiazoles has been developed using IBX/KI system at 25°C. The reaction was successful with a wide range of substrates such as aromatic and heterocyclic aldehyde and arylhydrazides to afford the corresponding unsymmetrical 2, 5-disubstituted 1, 3, 4-oxadiazoles. The mild reaction conditions, cost-effective reagents and short reaction time are noteworthy advantages of this methodology. Conclusion: We have developed a one-pot strategy for the synthesis of 1, 3, 4-oxadiazioles using a combination of IBX/KI at ambient temperature. This one-pot procedure proved to be quite general and worked well with a wide variety of aryl and heterocyclic aldehydes and variety of acylhydrazides. The advantage of this method lies in the simplicity of experimental procedure and the ready accessibility of the reagents, which render this, an experimentally attractive method for the preparation of unsymmetrical 1, 3, 4-oxadiazoles.
Hydrazide derivatives and anticancer agent comprising the same
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Paragraph 0157-0158; 0160, (2019/02/20)
The present invention relates to novel hydrazide derivatives, pharmaceutically-acceptable salt of the same, a pharmaceutical composition including the hydrazide derivatives for prevention and treatment of cancer, and a dietary supplement composition inclu
Biological and quantitative-SAR evaluations, and docking studies of (E)-N′-benzylidenebenzohydrazide analogues as potential antibacterial agents
Alam, Mohammad Sayed,Jebin, Sefat,Rahman, M. Mostafizur,Bari, Md. Latiful,Lee, Dong-Ung
, p. 350 - 361 (2016/07/06)
A series of 15 (E)-N′-benzylidenebenzohydrazide analogues were evaluated for their antimicrobial activities against eleven pathogenic and food-borne microbes, namely, S. aureus (G+), L. monocytogenes (G+), B. subtilis (G+), K. pneumonia (G-), C. sakazakii (G-), C. freundii (G-), S. enterica (G-), S. enteritidis (G-), E. coli (G-), Y. pestis (G-), and P. aeruginosa (G-). Most of the compounds exhibited selective activity against some Gramnegative bacterial strains. Of the compounds tested (3a-o), 3b and 3g were most active against C. freundii (MIC = ~19 μg mL-1). Whereas, compounds 3d, 3i, 3k and 3n exhibited MIC values ranging from 37.5 to 75 μg mL-1 against C. freundii, and compounds 3e, 3l and 3n had MIC values of ~75 μg mL-1 against K. pneumonia. Quantitative structure-antibacterial activity relationships were studied using physicochemical parameters and a good correlation was found between calculated octanol-water partition coefficients (clogP; a lipophilic parameter) and antibacterial activities. In silico screening was also performed by docking high (3b and 3g) and low (3n) activity compounds on the active site of E. coli FabH receptor, which is an important therapeutic target. The findings of these in silico screening studies provide a theoretical basis for the design and synthesis of novel benzylidenebenzohydrazide analogues that inhibit bacterial FabH.
Synthesis, biological evaluation, drug-likeness, and in silico screening of novel benzylidene-hydrazone analogues as small molecule anticancer agents
Alam, Mohammad Sayed,Lee, Dong-Ung
, p. 191 - 201 (2016/03/12)
A series of fifteen benzylidene-hydrazone analogues (3a-o), including eight new compounds, were synthesized and evaluated for their cytotoxic activities in four human cancer cell lines and for their antioxidant activities using DPPH. Of the tested compounds 3e, which possesses two methoxy substituents in its benzylidene phenyl ring, was found to be potently cytotoxic to all cancer cell lines tested with IC50 values of 0.12 (lung), 0.024 (ovarian), 0.097 (melanoma), and 0.05 μM (colon), and these IC50 values were comparable to those of the doxorubicin standard (IC50 = 0.021, 0.074, 0.001, and 0.872 μM, respectively). DPPH assay showed compounds 3f, 3i, and 3g had IC50 values of 0.60, 0.99, and 1.30 μM, respectively, which were comparable to that of ascorbic acid (IC50 = 0.87 μM). Computational parameters such as, drug-likeness, ADME properties, toxicity effects, and drug scores were evaluated, and none of the fifteen compounds violated Lipinski's rule of five or Veber's rule, and thus they demonstrated good drug-likeness properties. In addition, all fifteen compounds had a higher drug score than the doxorubicin and BIBR1532. In silico screening was also conducted by docking of the active compounds on the active site of telomerase reverse transcriptase catalytic subunit, an important therapeutic target of anticancer agents, to determine the probable binding properties. The total binding energies of docked compounds are correlated well with cytotoxic potencies (pIC50) against lung, ovarian, melanoma, and colon cancer cell lines indicating that the benzylidene-hydrazones could use for the development of new anticancer agents as a telomerase inhibitor.
Quantum-Chemical Studies to Approach the Antioxidant Mechanism of Nonphenolic Hydrazone Schiff Base Analogs: Synthesis, Molecular Structure, Hirshfeld and Density Functional Theory Analyses
Alam, Mohammad Sayed,Lee, Dong-Ung
, p. 682 - 691 (2015/07/20)
In the present study, five nonphenolic (E)-N′-benzylidenebenzohydrazides including three new compounds were synthesized and evaluated for their free radical scavenging activities using 2,2-diphenyl-1-picrylhydrazyl (DPPH). X-Ray analysis of a single cryst
Design, synthesis, and pharmacological evaluation of N-acylhydrazones and novel conformationally constrained compounds as selective and potent orally active phosphodiesterase-4 inhibitors
Kümmerle, Arthur E.,Schmitt, Martine,Cardozo, Suzana V. S.,Lugnier, Claire,Villa, Pascal,Lopes, Alexandra B.,Romeiro, Nelilma C.,Justiniano, Hélène,Martins, Marco A.,Fraga, Carlos A. M.,Bourguignon, Jean-Jacques,Barreiro, Eliezer J.
, p. 7525 - 7545 (2012/11/06)
Among a small series of tested N-acylhydrazones (NAHs), the compound 8a was selected as a selective submicromolar phosphodiesterase-4 (PDE4) inhibitor associated with anti-TNF-α properties measured both in vitro and in vivo. The recognition pattern of compound 8a was elucidated through molecular modeling studies based on the knowledge of the 3D-structure of zardaverine, a PDE4 inhibitor resembling the structure of 8a, cocrystallized with the PDE4. Based on further conformational analysis dealing with N-methyl-NAHs, a quinazoline derivative (19) was designed as a conformationally constrained NAH analogue and showed similar in vitro pharmacological profile, compared with 8a. In addition 19 was found active when tested orally in LPS-evoked airway hyperreactivity and fully confirmed the working hypothesis supporting this work.
Cu(II) catalyzed imine C-H functionalization leading to synthesis of 2,5-substituted 1,3,4-oxadiazoles
Guin, Srimanta,Ghosh, Tuhin,Rout, Saroj Kumar,Banerjee, Arghya,Patel, Bhisma K.
supporting information; body text, p. 5976 - 5979 (2012/01/02)
A direct access to symmetrical and unsymmetrical 2,5-disubstituted [1,3,4]-oxadiazoles has been accomplished through an imine C-H functionalization of N-arylidenearoylhydrazide using a catalytic quantity of Cu(OTf)2. This is the first example of amidic oxygen functioning as a nucleophile in a Cu-catalyzed oxidative coupling of an imine C-H bond. These reactions can be performed in air atmosphere and moisture making it exceptionally practical for application in organic synthesis.
Hydrophosphonylation of benzoylhydrazones using iodine as a catalyst: A facile synthesis of α-(N′-acylhydrazino)-substituted phosphonates
Das, Biswanath,Kumar, Jayprakash Narayan,Kumar, Avula Satya,Kanth, Boddu Shashi
experimental part, p. 3113 - 3116 (2010/11/02)
A simple and efficient method for the synthesis of α-(N′- acylhydrazino)-substituted phosphonates has been developed using the hydrophosphonylation of benzoylhydrazones with triethyl phosphite in the presence of iodine as a catalyst at room temperature. The products are formed in excellent yields (89-95%) within two to three hours. Georg Thieme Verlag Stuttgart - New York.
A new method for the synthesis of 1-aryl phthalazines
Shashikanth,Ahmad, Shadid K.,Hegde, Ganesh L.,Rai, K.M. Lokanatha
, p. 3503 - 3507 (2007/10/03)
A simple versatile method for the conversion of 1-aroyl-2-(substituted benzylidene)-hydrazines to 1-aryl-phthalazines using polyphosphate ester (PPE) is described.
PHYSICO-CHEMICALS INVESTIGATION ON SOME ACID HYDRAZIDE SCHIFF BASE CHELATES OF Ni(II) AND Cu(II)
Agarwal, Suresh K.,Gupta, Rajiva,Kumar, Dinesh
, p. 329 - 335 (2007/10/02)
The chelation tendency of vanillidene salicylic acid hydrazide, anisylidene anthranilic acid hydrazide and veratrylidene benzoic acid hydrazide towards Ni(II) and Co(II) has been investigated.The isolated metal chelates have been characterized on the basi
