Quinoxaline derivatives. VIII. Betaine structures of dihydroquinoxalinium and benzimidazolium barbiturates formed from o-dialkylaminoanilines and alloxan

1964 ◽  
Vol 17 (8) ◽  
pp. 877
Author(s):  
JW Clark-Lewis ◽  
JA Edgar ◽  
JS Shannon ◽  
MJ Thompson

Condensation of alloxan and o-dimethylaminoaniline gives 1,2,3,4.tetrahydro-4-methylquinoxaline-2-spiro-5-(hexahydro-2,4,6-trioxopyrimidine) (I) formed as a result of a unique ring-closure involving a methyl group of the o-dimethylamino substituent. The structure of the closely related compound previously formulated as its 3-hydroxy derivative (a carbinolamine) (II) is now revised to the corresponding betaine, a dihydroquinoxalinium barbiturate (III; R = H). The 6-methyl, 7-methyl, and 6,7-dimethyl analogues of the spiran (I), like the parent compound, were regarded as anils by Rudy and Cramer. Betaine structures (cf. III) may be assigned to the 6,7-dimethyl and 6,7-dichloro analogue of the barbiturate (III; R = H). o-Diethylaminoaniline reacts differently from o-dimethylaminoaniline with alloxan in giving a benzimidazolium barbiturate (VIII; R = H). We propose a similar benzimidazolium barbiturate structure for the analogous product from 4,5-dimethyl-2-dipropylaminoaniline. Mass spectra of the lowly volatile betaines and some of their deuterated derivatives were obtained and rationalized in terms of the assigned structures. Several dihydrobenzimidazoles have been prepared, and their N.M.R. and light absorption spectra recorded.

Author(s):  
H. F. Andrew ◽  
Neil Campbell ◽  
E. M. Swan ◽  
N. H. Wilson

3-Methylfluorene-9-propionic acid (1) with hydrofluoric acid undergoes ring-closure on the substituted ring to give 1,2,3,10b-tetrahydro-5-methylfluoranthen-3-one (II).Wolff-Kishner reduction of the ketone yielded l,2,3,10b-tetrahydro-5-methylfluoranthene which on dehydrogenation gave 2-methylfluoranthene (III, R=H) identical with a sample prepared according to the method of Tucker (1952) and differing from 8-methylfluoranthene. This proved that ring-closure of (I) had occurred as expected on the methyl-bearing benzene ring. In this instance ring-closure occurs in the position meta to the methyl group and is reminiscent of the similar ring-closure of 2-phenyl-2-p-tolylpropionic acid to give 6-methyl-3-phenylindanone (Pfeiffer and Roos 1941). It thus provided a further example of the limitations of von Braun's statement that Friedel-Crafts ring-closure occurs much less readily at the position meta to a methyl group than on a phenyl ring (von Braun, Manz and Reinsch 1928).


2010 ◽  
Vol 484 (4-6) ◽  
pp. 333-337 ◽  
Author(s):  
Hitoshi Tamiaki ◽  
Shingo Tateishi ◽  
Shosuke Nakabayashi ◽  
Yutaka Shibata ◽  
Shigeru Itoh

2021 ◽  
Author(s):  
◽  
Taitusi Taufa

<p>Over the course of this study, various species of Tongan marine sponges were investigated using an NMR-based screening method and has resulted in the discovery of three new sesterterpenes and 11 known compounds. Examination of the sponge Fascaplysinopsis sp. resulted in the isolation of two novel sesterterpenes, isoluffariellolide (46) and 1-O-methylisoluffariellolide (47). Compounds 46 and 47 share the same backbone pattern as the known luffariellolide (45) and 25-Omethylluffariellolide (107) respectively, and differ only in the substitution pattern of the butenolide rings. Isoluffariellolide (46) was found to be approximately six times less cytotoxic than 1-O-methylisoluffariellolide (47). Interestingly, these results suggested that the 1-O-methyl group in compound 47 plays an important role in the cytotoxicity of the compound. Secothorectolide (49), a new ring-opened and geometric isomer of the known compound thorectolide (48), was obtained from a sponge of the order Dictyoceratida. This ring closure and opening relationship was also observed between manoalide (109) and secomanoalide (110), as well as luffariellins A (141) and B (142). Despite the different carbon skeleton, the functional groups in 141 and 142 are similar with those in 109 and 110, respectively, and not surprisingly the biological properties are almost identical. The biological activities of compounds 48 and 49 were almost the same, which would give an insight into the structure-activity relationship (SAR) between these types of compounds.</p>


2021 ◽  
Author(s):  
◽  
Taitusi Taufa

<p>Over the course of this study, various species of Tongan marine sponges were investigated using an NMR-based screening method and has resulted in the discovery of three new sesterterpenes and 11 known compounds. Examination of the sponge Fascaplysinopsis sp. resulted in the isolation of two novel sesterterpenes, isoluffariellolide (46) and 1-O-methylisoluffariellolide (47). Compounds 46 and 47 share the same backbone pattern as the known luffariellolide (45) and 25-Omethylluffariellolide (107) respectively, and differ only in the substitution pattern of the butenolide rings. Isoluffariellolide (46) was found to be approximately six times less cytotoxic than 1-O-methylisoluffariellolide (47). Interestingly, these results suggested that the 1-O-methyl group in compound 47 plays an important role in the cytotoxicity of the compound. Secothorectolide (49), a new ring-opened and geometric isomer of the known compound thorectolide (48), was obtained from a sponge of the order Dictyoceratida. This ring closure and opening relationship was also observed between manoalide (109) and secomanoalide (110), as well as luffariellins A (141) and B (142). Despite the different carbon skeleton, the functional groups in 141 and 142 are similar with those in 109 and 110, respectively, and not surprisingly the biological properties are almost identical. The biological activities of compounds 48 and 49 were almost the same, which would give an insight into the structure-activity relationship (SAR) between these types of compounds.</p>


2021 ◽  
Vol 2 (15) ◽  
pp. 137-148
Author(s):  
V. V. Volkova ◽  
◽  
A. A. Veli ◽  
V. Yu. Sulin ◽  
A. V. Martynova ◽  
...  

2020 ◽  
Vol 8 ◽  
Author(s):  
Xiang Feng ◽  
Yuheng Wang ◽  
Tong Xiao ◽  
Zichao Shen ◽  
Yurong Ren ◽  
...  

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