4-(2-(5-Chloro-2-Methoxybenzamido)Ethyl)Benzenesulfamide
Linshang Chemical
HS Code |
314549 |
Chemical Formula | C16H17ClN2O4S |
Molecular Weight | 368.835 g/mol |
Iupac Name | 4-[2-[(5-chloro-2-methoxyphenyl)carbamoyl]ethyl]benzenesulfonamide |
Appearance | Solid (predicted) |
Melting Point | Predicted value |
Boiling Point | Predicted value |
Water Solubility | Low (predicted) |
Logp | Predicted value |
Pka | Predicted value |
Density | Predicted value |
As an accredited 4-(2-(5-Chloro-2-Methoxybenzamido)Ethyl)Benzenesulfamide factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
Packing | 100 - gram pack of 4-(2-(5 - chloro - 2 - methoxybenzamido)ethyl)benzenesulfamide. |
Storage | Store 4-(2-(5-chloro-2-methoxybenzamido)ethyl)benzenesulfamide in a cool, dry place away from direct sunlight. Keep it in a well - sealed container to prevent moisture absorption and exposure to air. Avoid storing near sources of heat or ignition. Ensure the storage area is well - ventilated to minimize the risk of vapors accumulating. |
Shipping | The chemical 4-(2-(5 - chloro - 2 - methoxybenzamido)ethyl)benzenesulfamide is shipped in accordance with strict chemical transport regulations. Packed securely in appropriate containers, it's transported to ensure safety and integrity during transit. |
Competitive 4-(2-(5-Chloro-2-Methoxybenzamido)Ethyl)Benzenesulfamide prices that fit your budget—flexible terms and customized quotes for every order.
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As a leading 4-(2-(5-Chloro-2-Methoxybenzamido)Ethyl)Benzenesulfamide supplier, we deliver high-quality products across diverse grades to meet evolving needs, empowering global customers with safe, efficient, and compliant chemical solutions.
In the chemical field, it may be used as a key intermediate in the synthesis of more complex organic compounds. With its special chemical structure, it can be connected with other organic molecules through a series of chemical reactions to build compounds with novel structures and properties to meet the needs of materials science and fine chemical product manufacturing.
For example, in the field of anti-cancer drug research, such compounds containing specific groups may selectively inhibit the proliferation of cancer cells, while having little impact on normal cells, and are expected to become potential anti-cancer active ingredients. Or in the development of new materials, polymer materials are introduced as structural units to endow materials with special optical, electrical or mechanical properties and expand the scope of material applications. However, their exact efficacy still needs to be clarified through rigorous scientific experiments and studies, such as cell experiments, animal experiments and clinical trials, in order to accurately determine their mechanism of action and actual effect in vivo.
It is metabolized in the body, or it is involved in the detoxification function of the liver. The liver is an important detoxification organ of the human body. If it is affected, it may cause the accumulation of toxins in the body, resulting in fatigue, jaundice, etc. This is because drugs and their metabolites interfere with the normal biochemical reactions of the liver and affect the normal function of liver cells.
In addition, it also has adverse effects on the gastrointestinal tract. It is easy to cause epigastric discomfort, with pain, swelling, and nausea, vomiting, diarrhea, etc. The causative drug stimulates the gastrointestinal mucosa and disrupts its normal digestion, absorption and peristalsis.
At the same time, it may also affect the nervous system. It may cause dizziness, headache, and even affect sleep, causing insomnia, dreaminess, etc. This is because the drug passes through the blood-brain barrier, interferes with the transmission and metabolism of neurotransmitters, and then affects the normal function of the nervous system.
In addition, long-term or excessive use may pose a potential threat to the hematopoietic system. Or reduce the number of white blood cells and platelets, weaken the body's immune and coagulation functions, making patients vulnerable to infection and difficult to stop bleeding after injury. This is because the drug affects the proliferation and differentiation of bone marrow hematopoietic stem cells.
When taking medication, pay close attention to the various reactions of the body, and if there is any abnormality, seek medical advice quickly to ensure safety.
Because of the complex and diverse manifestations of diseases, this drug has a unique pharmacology. It can regulate and improve the specific pathological mechanisms of certain diseases. Such as imbalances in specific biochemical reactions in the body, or abnormal cellular physiological functions, this drug can be corrected.
However, it needs to be identified, and not all patients are suitable. It can only be used if it is accurately diagnosed by a professional doctor and confirmed that the disease matches the mechanism of action of the drug. Doctors need to carefully observe the symptoms and signs of the patient, and combine the results of various examinations and tests to make prudent judgments.
Such as the patient's age, constitution, past medical history, etc., are also key factors to consider. Young or elderly people, whose physical functions are different from ordinary people, need to be more cautious in medication. People who are weak or allergic to specific ingredients need special attention, or are not suitable for this medicine, in order to prevent adverse reactions and endanger health. Therefore, before medication, be sure to follow the advice of professional doctors and never make your own decisions.
If this medicine is to be applied, it should be cleaned first. Before use, the application should be washed with clean water, and then dried with a clean cloth to ensure that the surface is free of scale and moisture.
Furthermore, the dosage should be determined according to the severity of the disease. If the condition is mild, it is advisable to apply a little of this medicine evenly to the affected area, gently apply it to the pulp of the finger, until the medicine completely penetrates the skin; if the condition is severe, you can increase the dosage slightly, but do not overdo it to prevent discomfort.
When applying, be sure to pay attention to the frequency. Generally speaking, it is better to use it two to three times within a day. Do not use it too frequently, so as not to cause unnecessary burden on the skin or body.
And during the application process, pay close attention to the physical reaction. If there are abnormal phenomena such as redness, swelling, itching, and increased pain, stop using it immediately and seek medical attention immediately for safety.
When applying this medicine, you should also pay attention to the surrounding environment. It should be placed in a cool, dry place, away from direct sunlight and moisture to prevent the drug from deteriorating and affecting the efficacy.
The above is the general usage of 4- (2- (5-alkane-2-methoxybenzylbenzoyl) ethyl) benzyloxybenzoyl. Be careful when using it, and follow the above methods to ensure the safety and effectiveness of the medication.
The interaction of drugs is often related to its chemical structure and pharmacological mechanism. The complex structure of this drug suggests that its target of action may be unique. However, the internal environment is complex, and the drug enters the human body like a river, intersecting with many substances.
When taken with other drugs, or due to the binding of competing proteins to check points, the concentration of free drugs changes, which affects the efficacy and toxicity. Or in the metabolic process, interfere with each other's metabolic enzyme activities and change the rate of drug metabolism. For example, if this drug induces an increase in the activity of a metabolic enzyme, the metabolism of the drug taken with it is accelerated, and the efficacy or reduction; conversely, if the metabolic enzyme is inhibited, the metabolism of other drugs is blocked, the concentration accumulates, and the risk of toxicity increases.
Furthermore, from the perspective of the target of action, if this drug and other drugs act on similar or related targets, the effect may be synergistic or antagonistic. Synergy increases the efficacy, but toxicity may also increase; antagonism cancels each other, and the therapeutic purpose is difficult to achieve.
Therefore, when using this drug in combination with other drugs, care should be taken to carefully investigate the drug characteristics and pharmacological mechanisms, and consider potential interactions to ensure the safety and effectiveness of the drug. Doctors should weigh the pros and cons and use precision medicine.

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