The product “Factory Supply N-Boc-N’-nitro-L-arginine CAS 2188-18-3 With Low Price” is a specific chemical compound. The CAS number 2188 - 18 - 3 uniquely identifies this product in the chemical industry. N - Boc - N’ - nitro - L - arginine is an important intermediate in organic synthesis. It has a specific molecular structure that gives it certain chemical properties.
Regarding its physical and chemical properties, it may have a certain melting point, solubility, and stability under different conditions. Typically, it is a solid at room temperature. Its solubility may vary in different solvents such as water, organic solvents like ethanol or acetone. These properties are crucial for its handling, storage, and subsequent applications.
This product has a wide range of applications in the field of pharmaceuticals and biotechnology. In pharmaceutical research, N - Boc - N’ - nitro - L - arginine can be used as a key building block for the synthesis of more complex and bioactive molecules. For example, it can be involved in the synthesis of drugs targeting specific biological pathways. In the field of proteomics research, it can be used to modify proteins or peptides, helping scientists understand the structure - function relationships of proteins.
It also finds applications in the production of biochemical reagents. These reagents are essential for various laboratory assays, such as enzyme - based assays, where it can serve as a substrate or an inhibitor. By using this product, researchers can precisely control experimental conditions and obtain accurate results.
When using N - Boc - N’ - nitro - L - arginine, it is important to follow strict safety and handling procedures. First of all, always wear appropriate personal protective equipment (PPE), including gloves, goggles, and a lab coat. This is to prevent direct contact with the product, which may cause skin irritation or other health problems.
For storage, it should be kept in a cool, dry place away from direct sunlight and sources of heat. The storage container should be tightly sealed to prevent moisture and air from entering, which could affect the product's stability. When it comes to handling, use clean and dry equipment. Avoid any contamination from other chemicals or substances.
During the synthesis process, accurately measure the required amount of the product according to the experimental protocol. Dissolve it in the appropriate solvent under appropriate conditions, such as stirring at a certain temperature and for a specific period of time. Monitor the reaction progress closely, using analytical techniques such as thin - layer chromatography (TLC) or high - performance liquid chromatography (HPLC) if necessary.
Let's take a pharmaceutical research project as an example. A research group is working on developing a new drug to treat a certain type of cancer. They plan to use N - Boc - N’ - nitro - L - arginine as an intermediate in the synthesis of the target molecule.
First, the researchers accurately weighed 5 grams of N - Boc - N’ - nitro - L - arginine in a clean and dry flask. They then added it to 50 milliliters of anhydrous ethanol under an inert gas atmosphere. The mixture was stirred at 50 degrees Celsius for 2 hours. After that, they added the appropriate reagents according to the reaction scheme and continued the reaction for another 6 hours. Throughout the process, they monitored the reaction progress using TLC.
Once the reaction was completed, they purified the product using column chromatography. The final yield of the target molecule was 70%, which was considered satisfactory. This example shows how N - Boc - N’ - nitro - L - arginine can be effectively used in a complex organic synthesis process for drug development.
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