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Dihexa Peptide CAS 1401708-83-5
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Dihexa Peptide CAS 1401708-83-5

Dihexa Peptide CAS 1401708-83-5

1.General Specification(in stock)
(1)Paste/Cream
5/25/100mg
(2)Capsules
5/10/20mg(Customizable)
(3)API(Pure powder)
(4)Pill press machine
https://www.achievechem.com/pill-press
2.Customization:
We will negotiate individually, OEM/ODM, No brand, for secience researching only.
Internal Code: BM-2-4-099
Dihexa CAS 1401708-83-5
Analysis: HPLC, LC-MS, HNMR
Technology support: R&D Dept.-4

Shaanxi BLOOM Tech Co., Ltd. is one of the most experienced manufacturers and suppliers of dihexa peptide cas 1401708-83-5 in China. Welcome to wholesale bulk high quality dihexa peptide cas 1401708-83-5 for sale here from our factory. Good service and reasonable price are available.

 

Dihexa peptide is an artificially synthesized dipeptide compound that promotes cognitive function and enhances brain vitality. The molecular formula C27H44N4O5, CAS 1401708-83-5, is a dipeptide composed of two amino acids connected by peptide bonds. Its unique structure allows it to exhibit special pharmacological activities and physiological functions in living organisms.

Dihexa Peptide | Shaanxi BLOOM Tech Co., Ltd

The molecular structure is linear, consisting of two amino acids connected by peptide bonds. Peptide bonds are covalent bonds formed by condensation between the carboxyl group of one amino acid and the amino group of another amino acid. This structure gives the puzzle dipeptide certain stability and biological activity in solution. The molecular weight depends on the type and quantity of amino acids it constitutes. Usually, the molecular weight of dipeptides is small, typically around a few hundred Daltons (Da). The specific molecular weight can be determined by chemical analysis or mass spectrometry. Yizhi dipeptide can bind to specific receptors on the cell membrane and exert its biological activity. This interaction is highly specific and depends on the molecular structure of the puzzle dipeptide and the binding site of the receptor. Through in-depth research on the interaction mechanism between puzzle dipeptides and receptors, it is helpful to understand their mechanisms in promoting cognitive function and enhancing brain vitality.

At the same time, our company not only provides pure powder, but also offers injections and tablets. If needed, please feel free to contact us.

Dihexa Peptide | Shaanxi BLOOM Tech Co., Ltd

Dihexa Peptide | Shaanxi BLOOM Tech Co., Ltd

product-339-75

Dihexa Peptide  | Shaanxi BLOOM Tech Co., Ltd

Customized Bottle Caps And Corks:

Dihexa Peptide | Shaanxi BLOOM Tech Co., Ltd

Dihexa Peptide | Shaanxi BLOOM Tech Co., Ltd

Dihexa has multiple functions, including promoting the development and function of the nervous system, improving learning and memory abilities, enhancing attention and concentration, regulating emotions and improving mental health, promoting cerebrovascular health, antioxidant and anti-inflammatory effects, improving sleep quality, and promoting cognitive flexibility and creativity. These functions make puzzle dipeptides have broad application prospects in fields such as neuroscience and drug development.

 

Dihexa peptide COA

Dihexa Peptide COA | Shaanxi BLOOM Tech Co., Ltd

Applications

As an artificially synthesized Dihexa peptide compound, puzzle dipeptides have the function of promoting cognitive function and enhancing brain vitality. It has received widespread attention in the biomedical field, especially in neuroscience and drug development.

1. Promote the development and function of the nervous system

Yizhi dipeptides have a positive promoting effect on the development and function of the nervous system. It can increase the number of neurons and synapse formation, improving the connectivity of neural networks. In addition, puzzle dipeptides can promote the synthesis and release of neurotransmitters, improving the efficiency of nerve conduction. These effects contribute to improving the overall function of the nervous system, enhancing individual cognitive and intellectual abilities.

2. Improve learning and memory abilities

Puzzle dipeptides are widely recognized as compounds that can enhance learning and memory abilities. It can improve information processing and storage during the learning process by regulating the levels of neurotransmitters and receptor activity. Research has shown that puzzle dipeptides can promote neural activity in brain regions closely related to learning and memory, such as the hippocampus, and enhance memory formation and consolidation. Therefore, puzzle dipeptides are considered a potential drug candidate for treating cognitive impairment and memory impairment.

Dihexa Peptide use | Shaanxi BLOOM Tech Co., Ltd
Dihexa Peptide use | Shaanxi BLOOM Tech Co., Ltd

3. Improve attention and concentration

Puzzle dipeptides can also improve an individual's attention and concentration. It can increase the brain's ability to process and process information, making it easier for individuals to concentrate and maintain stability. This is of great significance for improving work and learning efficiency. In addition, puzzle dipeptides can alleviate the negative effects of fatigue and stress on attention and concentration, helping individuals maintain a better mental state.

4. Adjusting emotions and improving mental health

Puzzle dipeptides also have certain positive effects on emotional regulation and mental health. It can affect the levels of neurotransmitters in the brain, such as serotonin and dopamine, thereby improving emotional states and alleviating negative emotions such as anxiety and depression. In addition, puzzle dipeptides can promote nerve regeneration and repair in the brain, helping to alleviate emotional disorders caused by neurodegenerative diseases such as Alzheimer's disease.

5. Promote cerebrovascular health

In addition to its direct effects on the nervous system, puzzle dipeptides can also promote the health of cerebral blood vessels. It can dilate blood vessels, improve blood circulation, reduce cardiovascular risk factors such as blood pressure and blood lipids. These functions help maintain normal blood and oxygen supply to the brain, ensuring the normal function of the nervous system.

6. Antioxidant and anti-inflammatory effects

Yizhi dipeptides also have antioxidant and anti-inflammatory effects, which can protect nerve cells from damage caused by oxidative stress and inflammatory reactions. Oxidative stress and inflammatory response are important triggers for many neurological diseases, such as Parkinson's disease, Alzheimer's disease, and so on. Yizhi dipeptides can alleviate the damage of these diseases to the nervous system and promote the repair and regeneration of nerve cells through their antioxidant and anti-inflammatory effects.

Dihexa Peptide use | Shaanxi BLOOM Tech Co., Ltd
Dihexa Peptide use | Shaanxi BLOOM Tech Co., Ltd

7. Improve sleep quality

Yizhi dipeptides can also improve sleep quality and help individuals rest and recover better. Research has shown that puzzle dipeptides can regulate sleep cycle and depth, increase the proportion of slow wave sleep (deep sleep), and thus improve sleep quality and efficiency. Good sleep is of great significance for maintaining normal nervous system function and mental health.

8. Promote cognitive flexibility and creativity

In addition to the above functions, puzzle dipeptides can also promote individual cognitive flexibility and creativity. It can improve the brain's network connectivity and information processing capabilities, making it easier for individuals to adapt to new environments and solve new problems. This is of great significance for innovative thinking and problem-solving abilities in daily life and work.

Manufacturing Information

Dihexa peptide is an artificially synthesized dipeptide compound that promotes cognitive function and enhances brain vitality. Its laboratory synthesis method usually involves multiple steps, including amino acid activation, condensation reaction, and subsequent processing and purification.

1. Activation of amino acids

Step description

Firstly, it is necessary to select appropriate amino acids as components of the puzzle dipeptide. Usually, these amino acids need to be activated first to increase their reactivity. The activation process usually uses corresponding amino acid activation reagents, such as amino acid esters or amino acid esters.

Taking carbamate as an example, the activation process includes the following steps:

React the required amino acids with amino acid esters to generate corresponding amino acid ester derivatives.

Under appropriate solvents and conditions, carry out activation reactions to convert amino ester derivatives into activation intermediates.

Assuming that the amino acids we choose are L-phenylalanine (L-Phe) and L-glutamine (L-Gln), the chemical equation for their activation process can be expressed as:

L-Phe+CH2NO2- → L-Phe CH2NO2-

L-Gln+CH2NO2- → L-Gln CH2NO2-

Chemical | Shaanxi BLOOM Tech Co., Ltd

2. Condensation reaction

Step description

After completing the activation of amino acids, the next step is the condensation reaction. The condensation reaction is the process of connecting two activated amino acid derivatives together to form peptide bonds. This process is usually carried out in the presence of appropriate solvents and catalysts.

The general steps of condensation reaction are as follows:

Mix activated amino acid derivatives together to form a reaction mixture.

Add appropriate catalysts, such as bases or enzymes, to facilitate the condensation reaction.

At appropriate temperature and time, allow the reaction mixture to undergo condensation reaction to generate puzzle dipeptides.

Taking L-phenylalanine and L-glutamine as examples, the chemical equation for their condensation reaction can be expressed as:

L-Phe CH2NO2-+L-Gln CH2NO2- → C27H44N4O5+H2O

3. Post treatment and purification

Step description

After completing the condensation reaction, post-treatment and purification of the reaction products are required to obtain pure puzzle dipeptides.

The steps of post-processing and purification typically include:

Cool and precipitate the reaction mixture to remove unreacted amino acids and by-products.

Obtain crude products through filtration or centrifugal separation.

Wash and dry the crude product to remove residual solvents and impurities.

Using appropriate chromatographic techniques such as thin-layer chromatography, high-performance liquid chromatography, etc., separate and purify the crude product to obtain pure Dihexa peptide.

What are the side effects of this compound?

This compound is an oligopeptide drug derived from angiotensin IV. It has a high affinity for hepatocyte growth factor (HGF) and can enhance its activity on the receptor c-Met. Regarding its side effects, an overview can be provided from the following aspects:

Overview of Potential Side Effects

Gastrointestinal discomfort: such as nausea, vomiting, diarrhea, etc., which may be related to the stimulating effect of drugs on the gastrointestinal tract.
Neurological reactions, such as headaches, dizziness, etc., may be related to the effects of medication on the central nervous system.
Allergic reactions: A small number of patients may experience allergic reactions to it, such as rash, itching, difficulty breathing, etc. Once an allergic reaction occurs, the medication should be stopped immediately and medical attention sought.

Precautions for special populations

Pregnant and lactating women: Due to the unclear safety of this compound for pregnant and lactating women, these populations should avoid its use.
Children: The safety and effectiveness of using it for children are not yet clear, so it should be used with caution under the guidance of a doctor.
Elderly people: Elderly people may have reduced metabolism and excretion ability of drugs, so the dosage of Dihexa peptide should be adjusted according to specific circumstances when using it.

Drug interactions

This compound may interact with other drugs, thereby affecting its efficacy or increasing the risk of side effects. Therefore, when using, doctors should be informed of the other medications they are currently taking so that they can assess the risk of drug interactions.

Summarize

As a new type of oligopeptide drug, it has potential therapeutic value in the fields of neurological diseases and diabetes. However, its side effects and safety still need further research and evaluation. When using, patients should follow the doctor's guidance, pay attention to their physical condition, and promptly report any discomfort or abnormal symptoms to the doctor.

 

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