Efficient Preparation of Novel Exocyclic Methylene Derivatives of Qinghaosu (Artemisinin) as Potential Antimalarial Agents

1994 ◽  
Vol 4 (4) ◽  
pp. 279-285 ◽  
Author(s):  
Ranjan P. Srivastava ◽  
Robert D. Sindelar ◽  
James D. McChesney
1996 ◽  
Vol 51 (11) ◽  
pp. 1655-1662 ◽  
Author(s):  
Gabriele Wagner ◽  
Christian Heiß ◽  
Uwe Verfiirth ◽  
Rudolf Herrmann

Derivatives of 3-oxo-camphorsulfonimide (1) with two phenylethynyl groups in the endo positions at the carbons C-2 and C-3 were prepared, and their reactivity towards halogenes and titanium chloride was studied. In every case, the two ethynyl groups led to the annulation of a five-membered ring to the bicyclo[2 .2 .1] system in an orientation which depends on the bulkiness of the additional substituent in position 3. NMR studies show that cationic species like 6 and 8 are the first detectable intermediates. They not only contain the fused five-membered ring but also a bond between its exocyclic methylene carbon and an oxygen atom of the sulfonyl group, thus transferring the positive charge mainly to sulfur. Semiempirical calculations (PM3) suggest two intermediates in the formation of such cations.


1984 ◽  
Vol 15 (24) ◽  
Author(s):  
J. P. SCOVILL ◽  
D. L. KLAYMAN ◽  
C. LAMBROS ◽  
G. E. CHILDS ◽  
J. D. NOTSCH

1964 ◽  
Vol 42 (1) ◽  
pp. 137-149 ◽  
Author(s):  
D. Dvornik ◽  
O. E. Edwards

A stereospecific hydration of the exocyclic methylene group of a derivative of the alkaloid atisine has been observed. The product was used to degrade the alkaloid to a tetracyclic phenol. This enabled rigorous proof of the structure and relative and absolute stereochemistry of atisine and related alkaloids. A detailed explanation of the abnormal basic strength and the isomerization of atisine is given. Long-range influence of polar groups on the basic strength of derivatives of the alkaloid is reported.


ChemInform ◽  
2010 ◽  
Vol 29 (36) ◽  
pp. no-no
Author(s):  
M. J. PITT ◽  
C. J. EASTON ◽  
T. A. ROBERTSON ◽  
L. M. KUMARATILAKE ◽  
A. FERRANTE ◽  
...  

2019 ◽  
Vol 85 (1) ◽  
pp. 58-66
Author(s):  
Yevhenii Hrynyshyn ◽  
Hanna Musiichuk ◽  
Olena Komarovska-Porokhnyavets ◽  
Oksana Is’kiv ◽  
Nataliia Moskalenko ◽  
...  

The reaction of pyrazolo[1,5-a]pyrazine-4(5H)ones with phosphorus tribromoxide in boiling benzene yielded 4-bromopyrazolo[1,5-a]pyrazines, and the thionation with phosphorus pentasulfide in pyridine at 90 °C led to pyrazolo[1,5-a]pyrazine-4(5H)thiones. The synthesized bromine derivatives are electrophilic, and thiones are nucleophilic substrates. Their subsequent structural modification in the first case was carried out by interaction with thiophenols, and in the second case was conducted with functional halogenoalkanes. It was shown that bromides react with substituted thiophenols in dimethylformamide in the presence of potassium carbonate at 90 °C to form 4-arylthiopyrazolo[1,5-a]pyrazines with yields of 65–83 %. 4-S-methyl-functionalized derivatives of pyrazole[1,5-a]pyrazines with yields of 60–78 % were easily obtained by the alkylation of pyrazole[1,5-a]pyrazin-4(5H)thiones with a-bromoketones, bromoacetic acid, ethyl bromoacetate and bromoacetonitrile in the K2CO3—DMF system at room temperature. The composition of all synthesized compounds is in agreement with the results of elemental analysis and mass spectra. Their structure is confirmed by NMR 1H and 13C spectra. In particular, in the NMR 1H spectra of 4-arylthiopyrazolo[1,5-a]pyrazines, in addition to the characteristic signals of the pyrazole and pyrazine nuclei, signals of protons of thioaryl substituents are present in the range of 7.04 –8.05 ppm, and in NMR spectra of the 1H 4-S-methylfunctionalized derivatives of pyrazole[1,5-a]pyrazines signals of exocyclic methylene protons are present at 4.11– 5.02 ppm. Promising derivatives with antibacterial activity against the test cultures S. aureus (MIC = 7.8 g/mL), M. luteum (MIC = 3.9 g/mL), and antifungal activity against the test culture of fungus A. niger (MIC = 7.8 g/mL) were determined among 4-S-substituted pyrazole[1,5-a]pyrazines as a result of studies of the antimicrobial activity.


Heterocycles ◽  
2002 ◽  
Vol 56 (1-2) ◽  
pp. 487
Author(s):  
Hiroki Takahata ◽  
Supat Jiranusornkul ◽  
Busaban Sirithunyalug ◽  
Hideo Nemoto

2020 ◽  
Vol 26 (35) ◽  
pp. 4467-4485
Author(s):  
Gricelis P. Martinez ◽  
Mercedes E. Zabaleta ◽  
Camilo Di Giulio ◽  
Jaime E. Charris ◽  
Michael R. Mijares

Chloroquine (CQ) and hydroxychloroquine (HCQ) are derivatives of the heterocyclic aromatic compound quinoline. These economical compounds have been used as antimalarial agents for many years. Currently, they are used as monotherapy or in conjunction with other therapies for the treatment of autoimmune diseases such as systemic lupus erythematosus (SLE), rheumatoid arthritis (RA), Sjögren's syndrome (SS) and antiphospholipid antibody syndrome (APS). Based on its effects on the modulation of the autophagy process, various clinical studies suggest that CQ and HCQ could be used in combination with other chemotherapeutics for the treatment of various types of cancer. Furthermore, the antiviral effects showed against Zika, Chikungunya, and HIV are due to the annulation of endosomal/lysosomal acidification. Recently, CQ and HCQ were approved for the U.S. Food and Drug Administration (FDA) for the treatment of infected patients with the coronavirus SARSCoV- 2, causing the disease originated in December 2019, namely COVID-2019. Several mechanisms have been proposed to explain the pharmacological effects of these drugs: 1) disruption of lysosomal and endosomal pH, 2) inhibition of protein secretion/expression, 3) inhibition of antigen presentation, 4) decrease of proinflammatory cytokines, 5) inhibition of autophagy, 6) induction of apoptosis and 7) inhibition of ion channels activation. Thus, evidence has shown that these structures are leading molecules that can be modified or combined with other therapeutic agents. In this review, we will discuss the most recent findings in the mechanisms of action of CQ and HCQ in the immune system, and the use of these antimalarial drugs on diseases.


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