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What is the chemical structure of N~ 2~ - {4- [ (3 - Fluorobenzyl) Oxy] Benzyl} -D-Alaninamide Methanesulfonate?
"N~ 2~ - {4- [ (3 -fluorobenzyl) oxy] benzyl} -D -propanamide methanesulfonate", according to this name, it can be known that it is a complex organic compound. "N", often refers to the nitrogen atom, in the organic structure, the nitrogen atom is often the core connecting other groups. "2" or refers to a specific position, this position is associated with the nitrogen atom.
"{4- [ (3-fluorobenzyl) oxy] benzyl}", this part of the structure is slightly more complicated. The "benzyl" is benzyl, and the benzene ring is connected to methylene. " (3-fluorobenzyl) " is the introduction of a fluorine atom at the 3rd position of the benzyl group, and the fluorobenzyl group is connected to the 4th position of another benzyl group through an oxygen atom. This part of the structure constitutes a larger aromatic hydrocarbon fragment.
"D-alanamide", alanamide is an amide structure formed by the condensation of the carboxyl group of alanine and ammonia. "D -" means that it is a D-type isomer, which is different from the L-type isomer. This part is connected to the complex benzyl structure described above through nitrogen atoms.
"Methanesulfonate" indicates that this compound is a salt of methanesulfonic acid, and the methanesulfonate ion forms a salt bond with the nitrogen-containing cation.
To sum up, the chemical structure of this compound is centered on a nitrogen atom, connecting a complex aromatic hydrocarbon fragment with D-alanamide structure, and then forming a salt with methanesulfonate as a whole. Although it cannot be shown in visual graphics, I hope this text description can help you gain insight into its structure.
What are the main uses of N~ 2~ - {4- [ (3 - Fluorobenzyl) Oxy] Benzyl} -D-Alaninamide Methanesulfonate?
N~ 2~ - {4- [ (3-fluorobenzyl) oxy] benzyl} -D-propanamide methanesulfonate, which is more common in the field of pharmaceutical research and development. Its primary use is as an intermediate in pharmaceutical synthesis. When creating new drugs, chemists may use this material to build a specific molecular structure, and with its unique chemical properties, it will ingeniously react with other compounds to generate substances with specific biological activities.
Looking at the process of many drug development, intermediates play a key role, just like building the cornerstone of a magnificent building. N~ 2~ - {4- [ (3-fluorobenzyl) oxy] benzyl} -D-propanamide methanesulfonate can participate in various organic reactions, such as nucleophilic substitution, condensation, etc. by virtue of the fluorobenzyl and benzyloxy parts in its structure, to precisely construct the carbon skeleton and functional group layout required by the drug molecule.
In addition, because of its connection with D-propanamide, it endows the product with a specific stereochemical structure, which has a profound impact on drug activity, selectivity and metabolic properties. When a drug interacts with a target in vivo, the fit of the stereostructure is like the relationship between a key and a lock. With a slight deviation, the activity may be greatly reduced. The methanesulfonate part may affect the solubility, stability and other physical and chemical properties of the compound, which is also of great significance to the development of pharmaceutical preparations. In short, this compound has indispensable value in the field of pharmaceutical innovation, paving the way for the exploration of efficient and safe new drugs.
What is the mechanism of action of N~ 2~ - {4- [ (3 - Fluorobenzyl) Oxy] Benzyl} -D-Alaninamide Methanesulfonate?
N~ 2~ - {4- [ (3-fluorobenzyl) oxy] benzyl} -D-propanamide methanesulfonate, this is a specific chemical substance. Its mechanism of action is complex and can be analyzed from many aspects.
From a molecular perspective, the substance has a unique structure and contains specific groups such as fluorobenzyl, benzyl and propanamide. The introduction of fluorine atoms in fluorobenzyl groups can affect the distribution of molecular electron clouds due to its strong electronegativity, and change its physical and chemical properties, such as lipophilicity, which is conducive to the substance passing through the biofilm and entering the interior of the cell.
In living organisms, or interact with specific targets. Or bind to protein targets, through the formation of hydrogen bonds with amino acid residues, hydrophobic interactions or van der Waals forces, etc., to change the spatial conformation of proteins and affect their activity. Such as acting on signal pathway-related proteins, regulating signal transduction, affecting cell proliferation, differentiation and other processes.
The part of methanesulfonate can increase the water solubility of the substance, improve its transportation and distribution efficiency in vivo, enable more effective ingredients to reach the site of action, and enhance pharmacological effects.
Overall, its mechanism of action covers multiple links such as the interaction of molecular structure and target, the influence on biofilm permeability and solubility changes, and work together to achieve specific biological effects.
What are the safety and side effects of N~ 2~ - {4- [ (3 - Fluorobenzyl) Oxy] Benzyl} -D-Alaninamide Methanesulfonate?
N~ 2~ - {4- [ (3-fluorobenzyl) oxy] benzyl} -D-propanamide methanesulfonate, which is a rather complex chemical substance. Regarding its safety and side effects, although there is no direct record in ancient literature, it can be inferred as follows from a scientific perspective.
In terms of safety, chemical substances enter the human body, or through oral administration, inhalation, skin contact, etc. If the substance is not stable, it is easy to decompose in the body to produce active groups, or cause damage to cells and tissues. And its structure is special, the human body may be difficult to metabolize it effectively, which may accumulate in the body and affect normal physiological functions. If the impurities are not removed during the synthesis process, the impurities may also bring additional risks.
On side effects, it may irritate the skin and mucous membranes, causing redness, swelling, itching, pain and other symptoms. If inhaled or irritated the respiratory tract, it can cause cough, asthma, and even cause respiratory inflammation. Oral administration may affect the digestive system, causing nausea, vomiting, abdominal pain, and diarrhea. Long-term exposure or affect the nervous system and endocrine system, interfering with nerve conduction and hormone balance. It also contains special atoms such as fluoride, or has targeted toxicity to specific organs, such as affecting bone and tooth development. Although this is all speculation, when studying such complex chemicals, safety and side effects are indispensable and need to be confirmed by rigorous experiments and research.
N~ 2~ - {4- [ (3 - Fluorobenzyl) Oxy] Benzyl} -D-Alaninamide Methanesulfonate What is the price range in the market?
I don't know what the price range of "N%7E2%7E-%7B4-%5B%283+-+Fluorobenzyl%29Oxy%5DBenzyl%7D-D-Alaninamide+Methanesulfonate" is in the market. This substance may be a special chemical, and its price may vary depending on quality, source, supply and demand. If you want to know its exact price, you can get a more accurate price range by consulting chemical material suppliers, chemical reagent sales offices, or relevant professional trading platforms. And such chemicals, or special business licenses and regulations, when trading, should comply with relevant regulations.