What is the main use of 1-Cyano-2-Methyl-3- (2- {[ (5-Methyl-1H-Imidazol-4-Yl) Methyl] Sulfanyl} Ethyl) Guanidine
1-Cyano-2-methyl-3- (2 - {[ (5-methyl-1H-imidazole-4-yl) methyl] thioalkyl} ethyl) guanidine, this is a rather complex organic compound. Looking at its structure and characteristics, its main uses may involve the field of medicinal chemistry.
In the process of pharmaceutical development, such compounds may have unique biological activities. Because of its structure containing specific groups such as imidazole, or can interact with specific targets in living organisms. If it can be combined with the activity check points of certain proteins, it can affect the function of proteins, or regulate the activity of enzymes, or interfere with cell signaling pathways. These effects may lay the foundation for the development of new drugs, such as therapeutic drugs for specific diseases, such as anti-tumor drugs, antiviral drugs, etc.
It may also be applied in the field of agricultural chemistry. With its special chemical structure, it may show the efficacy of bactericidal, insecticidal or herbicidal. Or it can interfere with the physiological processes of pests, such as destroying their cell structure, inhibiting key metabolic pathways, etc., so as to achieve the purpose of protecting crops and improving yields.
Furthermore, in the field of organic synthetic chemistry, this compound may serve as a key intermediate. With its diverse reaction check points, organic compounds with more complex structures and unique functions can be further derived through various chemical reactions, expanding the boundaries of organic synthesis, and providing key material bases for the research and development of new materials and the preparation of fine chemicals.
What are the side effects of 1-Cyano-2-Methyl-3- (2- {[ (5-Methyl-1H-Imidazol-4-Yl) Methyl] Sulfanyl} Ethyl) Guanidine
1-Cyano-2-methyl-3- (2 - {[ (5-methyl-1H-imidazole-4-yl) methyl] thioalkyl} ethyl) guanidine, although it has specific effects, it also has many potential side effects.
It may cause gastrointestinal discomfort, common symptoms such as nausea, vomiting, abdominal pain and diarrhea. The stomach and intestines are stimulated by drugs, and the transportation and transformation of digestion are lost, and the water and grain do not melt, so there are many diseases. Because the drug enters the body, it affects the lifting of the spleen and stomach and disrupts the normal digestion and absorption function of the stomach.
The damage to the liver and kidney should not be underestimated. Liver and kidney are the vital organs of human metabolism and detoxification. This medicine is metabolized by the liver and kidney, or increases its burden, and damages the essence of the liver and kidney. Taking it for a long time may weaken the function of the liver and kidney, cause the accumulation of toxins in the body, and cause various diseases.
In the nervous system, it also has an effect. Can cause dizziness, headache, insomnia, etc. The brain is the marrow sea, which relies on qi and blood to nourish. The effect of medicine may cause qi and blood to run smoothly, and the brain is not nourished, so dizziness and headache. And if the mind is not nourished, it cannot sleep at night.
In addition, it may also cause allergic reactions. The human body has different endowments. Those who are sensitive to this drug are prone to rash, itching, or even obstruction of the respiratory tract after contact, which endangers life. This is all due to the human body's immune mechanism mistakenly regarding the drug as a foreign body and rising up to resist. Medication users must pay close attention to changes in the body. In case of discomfort, stop the drug and seek medical attention to avoid endless harm.
What are the chemical properties of 1-Cyano-2-Methyl-3- (2- {[ (5-Methyl-1H-Imidazol-4-Yl) Methyl] Sulfanyl} Ethyl) Guanidine
1-Cyano-2-methyl-3- (2 - {[ (5-methyl-1H-imidazole-4-yl) methyl] thioalkyl} ethyl) guanidine, this is a complex organic compound. Its chemical properties are unique, containing various functional groups such as cyano, guanidine, imidazolyl, etc., and each functional group has unique chemical activities.
Cyanyl groups are active and can participate in hydrolysis reactions, which can be converted into carboxyl or amide groups under specific conditions. In nucleophilic substitution reactions, the carbon atoms in the cyanyl group act as nucleophilic check points, which can react with electrophilic reagents such as halogenated hydrocarbons to expand the molecular structure.
The guanidine group is very basic, and it is easy to bind protons in solution and is in a cationic state, which makes the compound have certain acid-base characteristics and can react with acidic substances to form salts. Its special structure endows the compound with potential biological activity, and many guanidine-containing compounds have shown important roles in the field of medicine, such as participating in the inhibition of enzymes or the binding process of receptors.
Imidazolyl, as an electron-rich aromatic heterocycle, has aromaticity and good stability. Methyl groups on 5-methyl-1H-imidazole-4-group can enhance the lipophilicity of molecules and affect the absorption and distribution of compounds in vivo. At the same time, the nitrogen atom on the imidazole ring has a lone pair of electrons, which can be used as a ligand to complex with metal ions, or participate in the hydrogen bonding between molecules, which affects the physical and chemical properties of the compound.
The thioalkyl group in this compound is also an important activity check point. The lone pair of electrons of sulfur atoms make it nucleophilic, which can participate in oxidation and reduction reactions, or form stable complexes with heavy metal ions, which may play a potential role in detoxification and metal ion transport. Overall, 1-cyano-2-methyl-3- (2 - { (5-methyl-1H-imidazole-4-yl) methyl] thioalkyl} ethyl) guanidine exhibits rich chemical properties due to the interaction of various functional groups, and may have broad application prospects in the fields of organic synthesis, drug development, and materials science.
What is the price of 1-Cyano-2-Methyl-3- (2- {[ (5-Methyl-1H-Imidazol-4-Yl) Methyl] Sulfanyl} Ethyl) Guanidine in the market?
I have not heard the price of 1 - Cyano - 2 - Methyl - 3 - (2 - {[ (5 - Methyl - 1H - Imidazol - 4 - Yl) Methyl] Sulfanyl} Ethyl) Guanidine in the city. This is a very specialized chemical substance, and its price may vary greatly due to quality, purity, supply and demand. If you want to know its exact price, you should consult the trade name specializing in chemical reagents, the supplier of chemical raw materials, or check it carefully on the platform for trading related chemical products. There may be based on the current market conditions to clarify its price. Or you can ask people in the chemical industry in forums and communities, and they may know the approximate price because of their practical experience. However, based on my understanding, it is difficult to directly state the price in the market.
What is the production process of 1-Cyano-2-Methyl-3- (2- {[ (5-Methyl-1H-Imidazol-4-Yl) Methyl] Sulfanyl} Ethyl) Guanidine
1-Cyano-2-methyl-3- (2 - {[ (5-methyl-1H-imidazole-4-yl) methyl] thioalkyl} ethyl) guanidine, the production process of this product is quite delicate.
The first to bear the brunt, the choice of raw materials is crucial. Choose the right thing to be the basis for success. 5-methyl-1H-imidazole-4-formaldehyde and other raw materials must be of accurate quality and purity, without the slightest impurity interference.
Then, the reaction process is rigorous and orderly. In an appropriate reaction kettle, the temperature is precisely controlled, or like the ancient alchemy, the heat is moderate. With a suitable catalyst, catalyze the reaction and accelerate the process. If a specific organic base is used as a catalyst, it is just like a wise teacher to guide the reaction to follow the rules. In the reaction system, the properties of solvents cannot be ignored. Choose the one with good affinity to help the raw materials blend and promote the smooth reaction.
Furthermore, the step of separation and purification is fine and microscopic. After the reaction, the product is mixed in various substances, such as jade hidden in stone. By extraction and crystallization, remove the barren and store the cyanine. When extracting, choose a suitable extractant, such as a fisherman casting a net, to accurately capture the required ingredients. When crystallizing, adjust the temperature and control the speed, so that the product precipitates in a pure crystalline state, such as the treasures of ice and jade.
In turn, inspection and verification are indispensable. Use advanced instruments to test the purity and structure of the product to ensure that it meets the standard. If there is a defect, such as a disease in a good horse, it must be traced back to the root and adjust the process until it is perfect. In this way, high-quality 1-cyano-2-methyl-3 - (2 - { (5-methyl-1H-imidazole-4-yl) methyl] thioalkyl} ethyl) guanidine can be obtained.