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April 24, 2024
Ephedroxane, also known as ephedrine oxazolone, is a type of oxazolone alkaloid. Its CAS number is 16251-46-0, its molecular formula is C11H13NO2, and its molecular weight is 191.23. In terms of structure, its English nicknames include (4S, 5R) -3,4-dimethyl-5-phenyloxazolidin-2-one, 2-Oxazozolidinone, 3,4-dimethyl-5-phenyl -, (4S, 5R) -, etc. Plant growth is a complex process that requires the regulation of multiple hormones and signaling molecules. It may promote plant growth and development by regulating plant growth hormones or signaling pathways. For example, it can increase the plant height, leaf area, or root development of crops, thereby improving crop yield and stress resistance. In the field of medicine, inflammation is a defensive response of the human body to external stimuli, but excessive inflammation may lead to tissue damage and the occurrence of diseases. Some studies suggest that it may have an inhibitory effect on inflammatory responses. By regulating inflammation related signaling pathways or inhibiting the release of inflammatory mediators, it is expected to become a candidate for new anti-inflammatory drugs.


|
Chemical Formula |
C11H13NO2 |
|
Exact Mass |
191 |
|
Molecular Weight |
191 |
|
m/z |
191 (100.0%), 192 (11.9%) |
|
Elemental Analysis |
C, 69.09; H, 6.85; N, 7.32; O, 16.73 |

Ephedroxane, as an oxazolone alkaloid, has certain potential applications in fields such as chemistry, medicine, and agriculture. Due to its unique chemical structure and properties, it has shown potential application value in multiple aspects.
1. In the field of medicine, it has attracted much attention due to its potential biological activity. Some studies have shown that it may have various biological activities such as anti-inflammatory, antioxidant, and antibacterial properties, which make it have potential applications in drug development. However, it should be noted that the specific application in the pharmaceutical field is still in the research stage and there are no clear clinical application reports yet.
2. In the field of agriculture, it may have certain insecticidal, weeding, or plant growth regulating effects. Due to its unique chemical structure, it may have specific killing or inhibitory effects on certain pests or weeds, thereby protecting the growth of crops. In addition, it is possible to promote plant growth and development by regulating plant growth hormones or signaling pathways. However, there is currently relatively little research on its application in the field of agriculture, and further experimental verification and in-depth exploration are needed.

3. In addition to the fields of medicine and agriculture, it may also have potential application value in other fields. For example, in the chemical industry, it can serve as a raw material or intermediate for synthesizing other compounds, providing new pathways for the production of chemicals. In addition, it may also play an important role in the preparation of some special or functional materials.

Ephedroxane, also known as ephedrine oxazolone, is a highly anticipated oxazolone alkaloid in the field of organic chemistry. Its unique chemical structure endows it with potential application value in multiple fields.
Firstly, from the molecular formula C11H13NO2, it is composed of 11 carbon atoms, 13 hydrogen atoms, 1 nitrogen atom, and 2 oxygen atoms. This composition determines its basic chemical properties and the chemical reactions it may participate in. Carbon and hydrogen atoms mainly form the backbone of molecules, while nitrogen and oxygen atoms are connected to carbon atoms through specific chemical bonds, forming specific functional groups.

Secondly, the core structure of product is the oxazole ring. The oxazole ring is a five membered heterocyclic ring containing one nitrogen atom and four carbon atoms. This circular structure gives itunique stability and reactivity. The nitrogen and carbon atoms on the oxazole ring are covalently linked to form a planar structure, which gives it a specific spatial configuration and orientation when interacting with other molecules.
On the basis of the oxazole ring, it also contains a ketone group. Ketone is a carbon oxygen double bond that connects two carbon atoms. The presence of this ketone group gives product some special chemical properties, such as participating in typical reactions of ketones such as addition, reduction, and oxidation. The combination of ketone groups and oxazole rings further enriches the chemical properties and application potential of product.
In addition, there may be other functional groups or substituents present in the molecules of product, and the types and positions of these functional groups or substituents can further affect the properties and applications of it. For example, the type and position of substituents may affect the solubility, stability, and interaction with other molecules of Ephedroxane.
In addition to the basic structure mentioned above, the three-dimensional structure of substance is also an important aspect of its structural analysis. Stereoscopic structure involves the arrangement and orientation of atoms in three-dimensional space, which is crucial for understanding their biological activity and interactions with other molecules. Through modern chemical analysis techniques such as X-ray crystallography and nuclear magnetic resonance, we can gain a deeper understanding of the stereostructure of substance and more accurately predict its properties and functions.
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