Ethanesulfonic Acid, 2- [[[ (3Alpha, 5Beta, 7Alpha, 12Alpha) -3, 7, 12-Trihydroxy-24-Oxocholan-24-Yl] Amino] Acetyl] Amino] -, What is Monosodium Salt?
This is a chemical substance, the Chinese name may be 2- [[ (3α, 5β, 7α, 12α) -3,7,12-trihydroxy-24-oxocholestone-24-yl] amino] acetyl] amino] ethanesulfonate sodium salt. According to its name, the structure is very complex. In the field of chemistry, this substance may have unique properties and uses.
Its molecular structure contains a cholesteric structure, with various functional groups such as hydroxyl and carbonyl groups. Hydroxyl groups are easy to form hydrogen bonds, which affect the solubility and reactivity of substances. Carbonyl groups are the check points for reactivity, or involve oxidation and reduction reactions. The sodium salt of ethanesulfonate can increase its water solubility and play a key role in aqueous solution systems.
Or it has extraordinary functions in pharmaceutical research and development, and can be used as a pharmaceutical active ingredient, which interacts with the target of the body through its structure to achieve therapeutic effect; or it is a drug carrier, which helps drug delivery according to its characteristics. Or in chemical synthesis, as an intermediate, through a series of reactions, a variety of compounds are derived. Although it has not been recorded in ancient books, with the wisdom of modern chemistry, it can be known that it may have important value in the field of chemical engineering and medicine in this world. It needs to be deeply explored by scientific researchers to understand its more mysteries and uses.
Ethanesulfonic Acid, 2- [[[ (3Alpha, 5Beta, 7Alpha, 12Alpha) -3, 7, 12-Trihydroxy-24-Oxocholan-24-Yl] Amino] Acetyl] Amino] -, What is the use of Monosodium Salt?
This is a compound named 2- [[[ (3α, 5β, 7α, 12α) -3,7,12-trihydroxy-24-oxo-cholane-24-yl] amino] acetyl] amino] ethanesulfonate monosodium salt. Looking at its structure and properties, it is useful in many fields.
In the field of medicine, it may be able to participate in drug development with its unique chemical structure. Or as an active ingredient, it can demonstrate therapeutic efficacy by virtue of specific interactions with biological targets in the body. For example, the cholane structure may be related to the pathway of bile acid metabolism, or can regulate the balance of bile acids, which has potential value in the treatment of hepatobiliary system diseases.
In biochemical research, this compound may serve as a tool reagent. Its special groups may be used to label and identify biomacromolecules, assisting scientists in exploring the structure and function of biomolecules, and may play a key role in the study of proteins, nucleic acids, etc., providing strong support for in-depth insight into the mechanism of life processes.
In the chemical industry, it may be used as a raw material for surfactants or additives. With the reasonable combination of hydrophilic and hydrophobic parts in its molecules, it endows the product with specific interfacial activity and is used in the preparation of detergents, emulsifiers and other products to improve product performance.
Ethanesulfonic Acid, 2- [[[ (3Alpha, 5Beta, 7Alpha, 12Alpha) -3, 7, 12-Trihydroxy-24-Oxocholan-24-Yl] Amino] Acetyl] Amino] -, What are the physicochemical properties of Monosodium Salt?
This is a substance called 2 - [[[[( 3α, 5β, 7α, 12α) - 3,7,12 - trihydroxy - 24 - oxocholane - 24 - yl] amino] acetyl] amino] ethanesulfonic acid monosodium salt. Looking at its chemical structure, this compound is formed from a cholane derivative and ethanesulfonic acid through a specific connection, and forms a sodium salt.
In terms of physical properties, sodium salts usually have good solubility in water. This substance may also be soluble in water and dispersed in an ionic state. Its sodium salt structure makes the molecule ionic, which is conducive to interaction with water molecules.
In terms of chemical properties, its molecules contain hydroxyl groups, amino groups, carbonyl groups and other functional groups. Hydroxyl groups can participate in hydrogen bond formation, esterification and other reactions; amino groups are basic and can react with acids to form salts, or participate in nucleophilic substitution and other reactions; carbonyl groups can undergo nucleophilic addition and other reactions. The sulfonic acid group endows the molecule with certain acidity and hydrophilicity. Overall, due to the coexistence of various functional groups, the chemical properties of this substance are relatively active. Under suitable conditions, various chemical reactions can occur, which may have potential applications in organic synthesis, pharmaceutical chemistry and other fields.
Ethanesulfonic Acid, 2- [[[ (3Alpha, 5Beta, 7Alpha, 12Alpha) -3, 7, 12-Trihydroxy-24-Oxocholan-24-Yl] Amino] Acetyl] Amino] -, How safe is Monosodium Salt?
Today there is a thing called Ethanesulfonic Acid, 2- [[[ (3Alpha, 5Beta, 7Alpha, 12Alpha) -3, 7, 12-Trihydroxy-24-Oxocholan-24-Yl] Amino] Acetyl] Amino] -, Monosodium Salt. The safety of this thing is related to everyone and needs to be investigated in detail.
In ancient books, many new things, when they first appeared, their nature was unknown, they were used carelessly, or they caused harm. Today, this product should also be treated with caution.
If this thing is involved in medical medicine, it must go through multiple trials before being used in medicine. It is necessary to observe its impact on the human organs and meridians, and observe whether there is any toxicity or allergy. If there is any discomfort, stop it immediately.
For industrial use, it is necessary to prevent its leakage. Because of its unknown nature, if it escapes from the outside, or sewage or soil, or is harmful to life. Operators, in front of protective equipment, avoid contact with skin and eyes.
And the storage of this object is also exquisite. When placed in a cool and dry place, avoid fire and heat to prevent deterioration and accidents.
In summary, this Ethanesulfonic Acid, 2- [[[ (3Alpha, 5Beta, 7Alpha, 12Alpha) -3, 7, 12-Trihydroxy-24-Oxocholan-24-Yl] Amino] Acetyl] Amino] -, Monosodium Salt, do not know its details, should not be used lightly, to be cautious, explore its safety, can be safe.
Ethanesulfonic Acid, 2- [[[ (3Alpha, 5Beta, 7Alpha, 12Alpha) -3, 7, 12-Trihydroxy-24-Oxocholan-24-Yl] Amino] Acetyl] Amino] -, What is the market for Monosodium Salt?
This is 2 - [[[[( 3α, 5β, 7α, 12α) -3,7,12-trihydroxy-24-oxocholane-24-yl] amino] acetyl] amino] ethanesulfonic acid monosodium salt. In today's pharmaceutical market, its appearance is quite eye-catching. This drug is mostly used in medical research and the treatment of specific diseases, and is valued by doctors and scientific researchers.
Looking at its market, the demand is growing. Due to the advance of medical research and the deeper understanding of specific diseases, the demand for this drug as a key research tool or therapeutic agent has increased. For example, in liver diseases, metabolic disorders and other related research, this drug is often relied on to explore pathology and develop new drugs.
On the supply side, major pharmaceutical companies and chemical manufacturers compete to make efforts. However, if you want to make this fine chemical, the technical threshold is quite high. It is necessary to precisely control the synthesis process to ensure the purity and activity of the product in order to meet the market requirements. Therefore, most of the suppliers that can stabilize the supply are large factories with deep technical background and sophisticated equipment.
The price above fluctuates due to changes in preparation difficulty, raw material cost and market supply and demand. When raw materials are rare or the preparation process is complicated, the price will rise; if the market supply is sufficient and the competition is fierce, the price will stabilize or drop slightly.
And this drug also faces competition in the market. Similar alternative products have emerged from time to time, each with its own advantages and disadvantages. However, its unique chemical structure and properties still make it a place in specific fields. Only by continuously improving technology, controlling the cost and improving quality, and adapting to market changes can we stand firm in the market wave, continue its use, and add further help to medical progress and patient well-being.