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China Factory Supplier CAS 13803-74-2 4-M-2-Hexanamine Hydrochloride

China Factory Supplier CAS 13803-74-2 4-M-2-Hexanamine Hydrochloride

Product Code: BM-2-5-027
English Name: 4-Methyl-2-hexanamine hydrochloride
CAS No.: 13803-74-2
Molecular formula: c7h18cln
Molecular weight: 151.68
EINECS No.: 687-991-9
Analysis items: HPLC>98.5%, GC-MS
HS code: Need confirm
Manufacturer: BLOOM TECH Yinchuan Factory
Technology service: R&D Dept.-4
Shipping: Shipping as another no sensitive chemical compound name.
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1,3-Dimethylpentylamine hydrochloride, molecular formula C7H18ClN, CAS 13803-74-2, is a white to off white solid at room temperature and pressure, belonging to organic amine derivatives. Also known as 4-methyl-2-hexylamine hydrochloride, it is a chemical organic intermediate. In health products, they can increase energy, refresh the mind, and improve body vitality, which is particularly effective for athletes to limit calories or gather energy. At the same time, for weight loss, the effect is similar to ephedrine, which can increase the level of cAMP in the body and promote fat breakdown. This substance has the effects of treating malaria and anti-cancer, and can significantly reduce gingival hypertrophy and hyperplasia. It can be used in clinical basic research and pharmaceutical production industry. If inhaled, orally taken, or absorbed through the skin, it is harmful to the body and is therefore only for laboratory use.

Produnct Introduction

1,3-Dimethylpentylamine Hydrochloride | Shaanxi BLOOM Tech Co., Ltd

CAS 13803-74-2 | Shaanxi BLOOM Tech Co., Ltd

CAS 105-41-9 1,3-Dimethylpentylamine Hydrochloride NMR | Shaanxi BLOOM Tech Co., Ltd

CF

C7H18ClN

EM

151

MW

152

m/z

151 (100.0%), 153 (32.0%), 152 (7.6%), 154 (2.4%)

EA

C, 55.43; H, 11.96; Cl, 23.37; N, 9.23

 

Manufacturing Information

1,3-dimethylpentanamine hydrochloride is a white to off white solid at room temperature and pressure, belonging to organic amine derivatives. The substance formed by the reaction of 1,3-dimethylpentanamine with hydrochloric acid has excellent chemical stability and is easy to store and transport. This substance has the effects of treating malaria and anti-cancer, and can significantly reduce gingival hypertrophy and hyperplasia. It can be used in clinical basic research and pharmaceutical production industry.

Preparation and mixing of reactants:

 

1,3-dimethylpentanamine hydrochloride:

Serves as the amine source for the reaction, providing an amino group (- NH ₂) for the reaction.

01

Triethylamine:

As a base, it is used to neutralize hydrochloric acid (HCl) generated during the reaction process, pushing the reaction towards the direction of product formation.

02

Dichloromethane:

As a reaction solvent, it provides a good environment for the reactants to fully contact and react.

03

P-toluenesulfonyl chloride (TsCl):

As a sulfonyl reagent, it provides a sulfonyl group (- SO ₂ Ts, where Ts represents p-toluenesulfonyl) that reacts with an amine to form a sulfonamide.

04

Reaction process:
1. Stir the above reactants vigorously in dichloromethane solvent at room temperature for several hours. During this process, the amino group of 1,3-dimethylpentanamine reacts with the sulfonyl group of p-toluenesulfonyl chloride to form N - (p-toluenesulfonyl) -1,3-dimethylpentanamine, while triethylamine reacts with the generated hydrochloric acid to form triethylamine hydrochloride.
2. Reaction monitoring:
Monitor the reaction progress through spot plate (thin-layer chromatography) to ensure complete reaction.
3. Product separation and purification:
After the reaction is complete, extract the reaction mixture using dichloromethane and water. Due to the high solubility of the product in dichloromethane, while most inorganic salts (such as triethylamine hydrochloride) are soluble in water, the product can be separated from the aqueous phase by extraction.
The separated organic layer is dried using anhydrous sodium sulfate to remove any potential moisture present.
After filtering and removing the desiccant, the obtained filtrate is concentrated under vacuum to reduce the volume of solvent and facilitate subsequent separation and purification.
Finally, the residue was separated and purified by silica gel column chromatography. Silica gel column chromatography is a commonly used separation technique that can separate various components in a mixture based on the differences in adsorption and desorption abilities of different compounds on silica gel.
Through the above steps, the target product molecule, N - (p-toluenesulfonyl) -1,3-dimethylpentanamine, can be obtained. This product may have specific application value in organic synthesis, such as serving as a protective group, reaction intermediate, etc.

 

Usage

1,3-Dimethylpentylamine hydrochloride has shown broad application prospects and huge market potential in the fields of pharmaceutical intermediates, health product additives, catalysts, and fine chemical synthesis. With the continuous advancement of science and technology and the increasing demand for quality of life, it is believed that this compound will play an important role in more fields and make greater contributions to the sustainable development of human society.

pharmaceutical intermediates
 

The application in the pharmaceutical field is extremely extensive, and its core value lies in serving as a synthetic intermediate for various drugs. These compounds play a bridging role in the drug development process, generating drug molecules with clear pharmacological effects through specific chemical reactions with other chemical raw materials. For example, it can participate in the synthesis of anti malaria drugs, providing strong support for the fight against malaria, a global infectious disease. At the same time, it is also an important link in the synthesis pathway of anticancer drugs, contributing an indispensable force to the development of cancer treatment. Through precise chemical regulation and synthesis strategies, scientists can create more drugs targeting specific diseases, making important contributions to human health.

1,3-Dimethylpentylamine Hydrochloride uses | Shaanxi BLOOM Tech Co., Ltd

Health product additives

 

1,3-Dimethylpentylamine Hydrochloride uses | Shaanxi BLOOM Tech Co., Ltd

In the field of health products, it also performs well. As a functional additive, it can significantly enhance the efficacy of health products and provide consumers with more comprehensive health protection. Its unique physiological activity enables it to increase energy supply, refresh the mind, and significantly enhance the overall vitality of the body. For athletes and fitness enthusiasts, this compound is an indispensable aid, as it can help them maintain optimal physical condition and performance even when limiting calorie intake or needing to quickly gather energy. In addition, it also has significant weight loss effects by increasing the level of cAMP (cyclic adenosine monophosphate) in the body, promoting fat breakdown metabolism, while reducing appetite and inhibiting thermogenic effects, providing an effective solution for consumers pursuing a healthy body shape.

catalyzer
 

The role of catalysts is crucial in chemical reactions. Due to its unique molecular structure and chemical properties, it has become an excellent catalyst in certain chemical reactions. The amino units in its structure have strong nucleophilicity and can effectively interact with other functional groups in the reactants, thereby accelerating the reaction process. This catalytic effect not only improves reaction efficiency, but also reduces energy consumption and production costs, providing strong support for the sustainable development of the chemical industry.

1,3-Dimethylpentylamine Hydrochloride uses | Shaanxi BLOOM Tech Co., Ltd

Fine chemical synthesis

 

1,3-Dimethylpentylamine Hydrochloride uses | Shaanxi BLOOM Tech Co., Ltd

In the field of fine chemical synthesis, it also plays a crucial role. As a raw material or intermediate, it can participate in the synthesis of various fine chemicals with specific structures and properties, such as surfactants, dyes, fragrances, etc. These fine chemicals play an indispensable role in daily life and industrial production, providing strong support for improving product quality and enhancing the quality of life. By reacting with different chemical raw materials, fine chemicals that meet various industrial needs can be prepared, injecting new vitality into the development of the chemical industry.

 

1,3-Dimethylpentanamine hydrochloride (CAS number: 13803-74-2) is a white or off white solid primarily used as a pharmaceutical intermediate and also as a catalyst. Abroad, it is mainly used as a functional additive in health products. In health products, they can increase energy, refresh the mind, and enhance body vitality, which is particularly effective for athletes to limit calories or gather energy. At the same time, it also has significant effects in weight loss, similar to ephedrine, which can increase the level of cAMP (cyclic adenosine monophosphate) in the body and promote fat breakdown.

The basic process of fat breakdown

Fat breakdown is the first step in which organisms use fat as a source of energy. In living organisms, fat is stored in adipocytes in the form of triglycerides. When the body needs energy, fat mobilization begins, and triglycerides are broken down by triacylglycerol lipase to produce glycerol and free fatty acids (FFA). Glycerol is mainly generated in liver cells through the action of glycerol kinase to produce 3-phosphoglycerol, which is then dehydrogenated to form phosphodihydroxyacetone. It is then broken down through the sugar metabolism pathway or converted into glucose through the gluconeogenesis pathway. And free fatty acids bind with albumin and are transported to various tissues throughout the body, where they are oxidized and decomposed in mitochondria, releasing a large amount of energy.

Mechanisms that promote fat breakdown

The mechanism of action of 1,3-Dimethylpentylamine hydrochloride in promoting fat breakdown is mainly related to its elevation of cAMP levels in the body.

1. Increase cAMP levels

 

 

CAMP is an important second messenger molecule involved in various cellular signal transduction processes. The level of cAMP has a significant impact on fat breakdown in adipocytes. When cAMP levels increase, it can activate hormone sensitive lipase (HSL) in adipocytes, promoting the breakdown of triglycerides to produce glycerol and free fatty acids.
It can increase the level of cAMP in the body through some mechanism. This effect may be related to its impact on the activity of adenylate cyclase in adipocytes. Adenosine cyclase is an enzyme that catalyzes the generation of cAMP from ATP. When activated, it can promote the production of cAMP. It may promote fat breakdown by activating adenylate cyclase, increasing cAMP production.

2. Activate hormone sensitive lipase

 

 

Hormone sensitive lipase (HSL) is one of the key enzymes involved in fat breakdown. When cAMP levels increase, it can activate HSL, promoting the breakdown of triglycerides to produce glycerol and free fatty acids. By increasing cAMP levels, HSL is indirectly activated, thereby accelerating the process of fat breakdown.

3. Affects the oxidative decomposition of fatty acids

 

 

The transport of free fatty acids in the blood requires binding with albumin. When fat is broken down to produce a large amount of free fatty acids, they are transported to various tissues throughout the body for oxidative degradation. In mitochondria, free fatty acids undergo a series of reactions (such as activation, transport, β - oxidation, etc.) to ultimately generate acetyl CoA, which enters the tricarboxylic acid cycle and releases a large amount of energy. By promoting fat breakdown, it increases the generation and transportation of free fatty acids. These free fatty acids are subsequently oxidized and broken down within mitochondria to provide energy for the body.

4. Inhibition of appetite and thermogenic effects

 

 

In addition to directly promoting fat breakdown, it also has appetite suppressing and thermogenic effects. These effects may be related to their impact on the central nervous system. By suppressing appetite, the body's intake of food can be reduced, thereby reducing energy intake and fat storage. Meanwhile, through its thermogenic effect, it can increase the body's energy expenditure, further promoting the breakdown and metabolism of fat.

Application in weight loss health products

Due to its various effects such as promoting fat breakdown, suppressing appetite, and inducing heat, it is widely used in weight loss health products. These health products usually exist in the form of capsules, tablets, or powders, making them convenient for consumers to take.
In weight loss supplements, they are usually used in combination with other ingredients such as caffeine, vitamin B complex, etc. to enhance their weight loss effects. Caffeine has the effects of stimulating the central nervous system, increasing energy expenditure, and fat oxidation; Vitamin B group helps promote metabolism and energy release. These ingredients work together to promote the breakdown and metabolism of fat, helping consumers achieve their weight loss goals.

 

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