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What is the chemical structure of Sodium 2- [4- (2-Sulfoethyl) Piperazin-1-Yl] Ethanesulfonate
Sodium 2 - [4 - (2 - Sulfoethyl) Piperazin - 1 - Yl] Ethanesulfonate, the Chinese name is often 2- (N-morpholine) ethanesulfonate sodium salt, referred to as MES sodium salt. Its chemical structure is as follows:
First, the core structure of the compound contains a piperazine ring. The piperazine ring is a six-membered heterocycle composed of two nitrogen atoms and four carbon atoms. In the 4-position of the piperazine ring, a 2-sulfoethyl group is connected. In this group, a hydrogen atom of the ethyl group (-CH ² CH < unk >) is replaced by a sulfonic acid group (-SO < unk > H) to form the -CH < unk > CH < unk > SO < unk > H structure, which is then connected to the piperazine ring. In the 1-position of the piperazine ring, a sodium 2-ethanesulfonate group is connected, that is, ethyl (-CH < unk > CH < unk >). There is also a hydrogen atom replaced by the sodium sulfonate salt (-SO < unk > Na) to form the -CH < unk > CH < unk > SO < unk > Na structure attached to the pi
Overall, the compound is an organic sodium salt containing nitrogen heterocycles with two sulfonate groups. The sulfonate groups in its structure endow it with good water solubility and other properties, and are often used as buffers in biochemistry and other fields. Because it has a certain pH buffer range, it can maintain a relatively stable pH of the solution, which is conducive to the progress of related biochemical reactions.
What are the main uses of Sodium 2- [4- (2-Sulfoethyl) Piperazin-1-Yl] Ethanesulfonate
Sodium 2- [4- (2-Sulfoethyl) Piperazin-1-Yl] Ethanesulfonate, often referred to as SPES, has a wide range of uses.
In the field of biochemical research, it is an excellent buffer. Because it can effectively maintain the pH of the system within a specific range, it acts as a strong barrier to protect various biochemical reactions. Many enzymatic reactions are extremely sensitive to environmental pH. SPES can precisely regulate pH and maintain the stability of enzyme activity, just like a good assistant to ensure the orderly progress of the reaction.
In the context of cell culture, SPES is also indispensable. Cells are cultured in vitro to simulate a stable environment in the body. It is effective in maintaining the pH of the culture medium. It is like a careful caregiver, creating a stable growth home for cells, helping cells grow normally, proliferate, and reduce external disturbances.
Furthermore, in the protein purification process, SPES plays a key role. Protein properties are easily affected by the environment, and it is crucial to maintain an appropriate pH during purification. SPES can provide a stable buffer environment, so that the protein can maintain its natural structure and function during the separation and purification process, and will not be inactivated or denatured due to pH fluctuations. It is like a loyal guard, protecting the protein.
In the field of drug research and development, drug synthesis and preparation processes often involve complex chemical reactions and systems. SPES can create a stable reaction environment, ensure drug quality and stability, and make great contributions to the birth and quality improvement of new drugs.
Sodium 2- [4- (2-Sulfoethyl) Piperazin-1-Yl] Ethanesulfonate is widely used in which fields
Sodium-2- [4- (2-sulfoethyl) piperazine-1-yl] ethane sulfonate, which is widely used in many fields.
In the field of biochemistry and molecular biology, it is often used as a buffer. Because of its good buffering properties, it can effectively maintain a specific pH environment and ensure stable and orderly biochemical reactions. For example, in the research experiments of proteins and nucleic acids, stable pH conditions are essential to maintain the structure and function of biological macromolecules. This substance plays a key role in preventing protein denaturation, nucleic acid degradation, etc., and helps researchers accurately explore the characteristics and functions of biomolecules.
In the field of drug development, it also plays an important role. Drug development often needs to simulate the human physiological environment. As a buffer, this substance can create an environment close to the physiological pH of the human body, which is convenient for evaluating the properties of drug dissolution, absorption and stability in the body. It provides a key reference for the design and optimization of drug dosage forms and accelerates the research and development process.
In the field of clinical diagnosis, it is also used in the preparation of some diagnostic reagents. For example, some biochemical detection reagents need to ensure the accuracy and repeatability of test results within a specific pH range. This substance helps doctors accurately diagnose diseases by maintaining a stable pH environment and improving the sensitivity and reliability of detection.
In industrial production, such as the production process of some fine chemical products, in order to ensure the smooth reaction and stable product quality, its buffering characteristics are also used to control the pH of the reaction system to ensure the stability of the production process and improve product quality.
What is the preparation method of Sodium 2- [4- (2-Sulfoethyl) Piperazin-1-Yl] Ethanesulfonate
To make Sodium+2-%5B4-%282-Sulfoethyl%29Piperazin-1-Yl%5DEthanesulfonate, follow the following method. First take an appropriate amount of 2 - [4- (2-hydroxyethyl) piperazine-1-yl] sodium ethanesulfonate and place it in a clean reaction vessel. The vessel should be dry and have good sealing properties to prevent impurities from mixing.
Slowly add an appropriate amount of sulfonating reagents, such as concentrated sulfuric acid or chlorosulfonic acid, etc. When adding dropwise, pay close attention to the reaction temperature. It is advisable to control the temperature in an ice bath or a cold water bath to maintain the reaction temperature within an appropriate range to prevent side reactions from occurring. After adding dropwise, remove the ice bath and allow the reaction to continue at a moderate temperature. During this period, stirring must be continued to promote the full contact of the reactants and accelerate the reaction process.
When the reaction is carried out to a certain extent, after testing and confirming that the reaction is complete, pour the reaction mixture into an appropriate amount of ice water to terminate the reaction and dilute the product. Subsequently, the product can be purified by ion exchange resin or recrystallization. If an ion exchange resin is used, select the appropriate resin model according to the characteristics of the product, and let the reaction mixture flow through the resin column to separate the product from impurities. If it is recrystallization, choose a suitable solvent, heat to dissolve the product, filter while hot, remove impurities, and cool the filtrate to crystallize. After filtration and drying, a pure Sodium+2-%5B4-%282-Sulfoethyl%29Piperazin-1-Yl%5DEthanesulfonate can be obtained. The entire preparation process must strictly abide by the operating procedures, pay attention to safety, and accurately control the temperature and quantity to ensure the purity and yield of the product.
What is the market outlook for Sodium 2- [4- (2-Sulfoethyl) Piperazin-1-Yl] Ethanesulfonate?
Nowadays, there is sodium-2- [4- (2-sulfoethyl) piperazine-1-yl] ethylene sulfonate, and its market prospect is related to many aspects.
Since its industrial use, this compound has great potential in biomedical, chemical and other industries. In the field of biomedicine, because of its unique chemical structure, it can be used as a buffer to maintain the stability of the environment in the biological system and help various biochemical reactions proceed smoothly. In the chemical industry, it can be used as a raw material for surfactants to improve the interface properties of substances and enhance product performance and quality. This is the cornerstone of its market demand and paves the way for the future.
In terms of market demand, with the rapid development of the biomedical industry, the demand for high-quality buffers is increasing. Sodium-2- [4- (2-sulfoethyl) piperazine-1-yl] ethylene sulfonate will gain a broad market space if it can meet the strict requirements of biological experiments and production. The chemical industry also continues to seek new raw materials to enhance product competitiveness. If this compound has excellent performance, the demand will also rise.
However, its market prospects also present challenges. The preparation process may be complex and costly. If it is difficult to optimize, it will affect large-scale production and marketing activities. And the market competition is fierce, congeneric products may have occupied part of the share, to stand out, need to highlight the unique advantages.
Overall, if sodium-2- [4- (2-sulfoethyl) piperazine-1-yl] ethylene sulfonate can overcome the preparation problems, find a balance between performance and cost, and meet market demand with its own characteristics, it will be able to occupy a place in the biomedical and chemical markets, and the prospects may be bright; on the contrary, if it cannot meet the challenges, the prospects are worrying.