Interesting facts
Interesting Facts about (1S,16S)-16-methoxy-5-oxa-10-azatetracyclo[8.7.0.01,13.02,7]heptadeca-2(7),13-dien-4-one
The compound (1S,16S)-16-methoxy-5-oxa-10-azatetracyclo[8.7.0.01,13.02,7]heptadeca-2(7),13-dien-4-one is a fascinating example of complex organically derived compounds, showcasing the subtleties of molecular architecture found in natural products. Here are some engaging points about this unique compound:
- Structural Complexity: Its tetracyclic structure illustrates the intricate nature of organic molecules. The multiple rings and functional groups contribute to intriguing chemical properties and potential biological activity.
- Functional Groups: The methoxy (-OCH3) and oxo (=O) groups along with the nitrogen atom (azatetracyclo) enhance its polarity and reactivity, making it a target for synthesis in organic chemistry.
- Potential Biological Activity: Compounds with similar structures often exhibit significant biological activities, including antimicrobial and anticancer properties. Researching compounds like this can lead to the discovery of valuable pharmaceuticals.
- Applications: While specific studies may still be emerging, the unique framework suggests potential applications in drug development, particularly in fields focusing on complex organic molecules.
- Interdisciplinary Insights: Understanding such a compound requires knowledge from various branches of chemistry, such as organic synthesis, medicinal chemistry, and structural biology, emphasizing the interconnectedness of scientific disciplines.
Overall, (1S,16S)-16-methoxy-5-oxa-10-azatetracyclo[8.7.0.01,13.02,7]heptadeca-2(7),13-dien-4-one is not just a chemical structure; it represents the ongoing quest in science to unlock nature's complexities. As the renowned chemist Linus Pauling once said, "The best way to have a good idea is to have lots of ideas." This complex compound contributes to the vast array of ideas in synthetic chemistry and potential applications in medicine.
Synonyms
Dihydro-beta-erythroidine
DHbetaE
23255-54-1
beta Erythroidine, Dihydro
RBN56W7U63
CHEBI:34705
NSC-9965
16(15H)-Oxaerythrinan-15-one, 1,6-didehydro-14,17-dihydro-3-methoxy-, (3beta)-
Dihydro beta Erythroidine
Erythroidine, Dihydro beta
(1S,16S)-16-methoxy-5-oxa-10-azatetracyclo(8.7.0.0^(1,13).0^(2,7))heptadeca-2(7),13-dien-4-one
(1S,16S)-16-methoxy-5-oxa-10-azatetracyclo[8.7.0.0^{1,13}.0^{2,7}]heptadeca-2(7),13-dien-4-one
RefChem:133708
B-Idroeritroidina [Italian]
Dihydro-|A-erythroidine
beta-ERYTHROIDINE, DIHYDRO-
NSC 9965
ERYTHROIDINE, BETA, DIHYDRO-
BRN 0036193
CHEMBL293950
(1S,16S)-16-methoxy-5-oxa-10-azatetracyclo[8.7.0.01,13.02,7]heptadeca-2(7),13-dien-4-one
(4bs,6s)-6-Methoxy-1,4,6,7,9,10,12,13-Octahydro-3h,5h-Pyrano[4',3':3,4]pyrido[2,1-I]indol-3-One
B-Idroeritroidina
CHEMBL1319741
dhbe
UNII-RBN56W7U63
16(5H)-Oxaerythrinan-15-one, 1,6-didehydro-14,17-dihydro-3-methoxy-, (3-beta)-
Lopac0_000468
4-27-00-03544 (Beilstein Handbook Reference)
SCHEMBL317486
GTPL4006
orb1744941
DIHYDRO-.BETA.-ERYTHROIDINE
BDBM50143313
BDBM50446501
HY-N10497
CCG-204560
SDCCGSBI-0050453.P002
2,7-DIHYDRO-.BETA.-ERYTHROIDINE
NCGC00161401-01
NCGC00161401-02
NCGC00161401-03
NCGC00185993-01
DIHYDRO-.BETA.-ERYTHROIDINE [MI]
CS-0568613
BRD-K49811169-004-06-6
Q27077042
3beta-methoxy-14,17-dihydro-16-oxa-erythrin-1(6)-en-15-one
(12S,13aS)-12-Methoxy-1,4,5,6,9,11,12,13-octahydro-8H-pyrano[4'',3'':3,4]pyrido[2,1-i]indol-2-one
(2S,13bS)-2-Methoxy-2,3,5,6,8,9,10,13-octahydro-1H,12H-benzo[i]pyrano[3,4-g]indolizin-12-one
1H,12H-BENZO(I)PYRANO(3,4-G)INDOLIZIN-12-ONE, 2,3,5,6,8,9,10,13-OCTAHYDRO-2-METHOXY-, (2S,13BS)-
Solubility of (1S,16S)-16-methoxy-5-oxa-10-azatetracyclo[8.7.0.01,13.02,7]heptadeca-2(7),13-dien-4-one
The solubility characteristics of the compound (1S,16S)-16-methoxy-5-oxa-10-azatetracyclo[8.7.0.01,13.02,7]heptadeca-2(7),13-dien-4-one can vary significantly depending on environmental conditions and the medium in which it is tested. Consider the following aspects:
In summary, the solubility of (1S,16S)-16-methoxy-5-oxa-10-azatetracyclo[8.7.0.01,13.02,7]heptadeca-2(7),13-dien-4-one needs empirical assessment for specific conditions, and researching solubility behavior under varying scenarios is crucial for understanding its full potential in applications.