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5-Amino-1MQ Capsule

Product Name: 5-Amino-1MQ Capsule Cas number: 42464-96-0 Appearance: Borwn to red brown powder Specification: 98% Package: 1kg/bag 25kg/drum Sample: Available Certification: COA,MSDS,FDA,ISO9001,Halal,Kosher Delivery term: DHL, FEDEX, UPS, USPS, Air freight, Sea freight Stock: In stock Storage: Cool Dry Place

Description

 

Products Description

 

5-Amino-1MQ capsules are a dietary supplement containing a compound called 5-amino-1-methylquinolinium. It has gained attention for its unique metabolic regulatory potential demonstrated in scientific research and is often marketed as a "metabolic enhancer" or "fat converter."

1. Core Ingredient: What is 5-Amino-1MQ?

Chemical Nature: Its full name is 5-amino-1-methylquinolineonium, a small molecule compound.

Source: It is not extracted from natural foods but is a chemically synthesized substance.

Identity: In academic research, it is defined as a highly efficient and selective NNMT inhibitor. This is key to understanding its function.

 

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2. How Does It Work? (Core Mechanism of Action)

To understand 5-Amino-1MQ, it's essential to understand its target enzyme-NNMT.

What is NNMT? NNMT (nicotinamide N-methyltransferase) is an enzyme in the human body whose main function is to metabolize and process excess nicotinamide (a form of vitamin B3). However, when NNMT is overactive, problems arise.

The Role of 5-Amino-1MQ: It acts like a precise "switch," inhibiting (i.e., turning off) the activity of the NNMT enzyme.

By inhibiting NNMT, it triggers a series of positive chain reactions in the body, primarily in two aspects:

① Increased NAD+ Levels

With NNMT inhibited, the body has more raw materials (nicotinamide) to synthesize NAD+.

NAD+ is a core molecule in cellular energy metabolism, often referred to as "cellular fuel." It is crucial for the normal functioning of mitochondria (the cell's powerhouse). NAD+ levels naturally decline with age.

② Activation of SIRT1

Elevated NAD+ levels further activate the deacetylase SIRT1. SIRT1 is a member of the well-known "longevity protein" sirtuin family, responsible for regulating cellular energy metabolism, stress responses, and repair mechanisms.

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Product effects

 

1. Promotes Fat Metabolism and Weight Loss

Mechanism: Inhibiting NNMT in adipocytes (especially white adipocytes) increases NAD+ levels. Elevated NAD+ levels activate another key molecule-the deacetylase SIRT1.

Effects: Activated SIRT1 enhances mitochondrial biosynthesis and function, converting more energy-storing "white fat" into energy-burning "beige fat." This means the body's basal metabolic rate may increase, burning more calories even at rest, thus reducing fat storage and weight loss. Animal studies have shown that obese mice given 5-Amino-1MQ experienced significant reductions in weight and body fat without requiring increased exercise or reduced food intake.

2. Improves Metabolic Health

Mechanism: Also improves overall metabolic function by increasing NAD+ and activating SIRT1.

Effects:

Improved Insulin Sensitivity: Helps regulate blood sugar more effectively, potentially playing a positive role in the prevention or improvement of type 2 diabetes.

Lowered Blood Lipids: Improved cholesterol and triglyceride levels have been observed in animal studies.

3. **Relief of Nonalcoholic Fatty Liver Disease (NAFLD):** By promoting fat metabolism in the liver.

4. **Potential Anti-aging and Energy Boosting:**
Mechanism: NAD+ is crucial for maintaining mitochondrial health, cell repair, and gene stability. Increasing NAD+ levels is a key direction in current anti-aging research.

Effects:

Due to enhanced mitochondrial function, cellular energy (in the form of ATP) production is more efficient, potentially leading to feelings of increased energy and reduced fatigue.

Theoretically, improving cellular metabolic health could help delay age-related functional decline.

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Features

 

(1) High purity: 5-amino-1-methylquinolinium chloride can be obtained through a refined production process to obtain a high-purity product. High purity means better bioavailability.

(2) Targeting: 5-amino-1-methylquinolinium chloride specifically targets the NNMT enzyme and can effectively inhibit its activity, thereby affecting the metabolic pathway of nicotinamide.

(3) Stability: 5-amino-1-methylquinolinium chloride has good stability and can maintain its activity and effect under different environmental and storage conditions.

(4) Development prospects: Due to the various characteristics of 5-amino-1-methylquinolinium chloride, its development has received widespread attention and has broad research and application prospects.

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How to get

 

You can contact us directly or send me email : Jennie sales8@bpandabio.com

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Future Market Trends and Prospects

 

1.Growth in the Research Chemicals Sector: The initial and most stable market is the supply of high-purity chemicals for life science research. As interest in targeted therapies and novel antimicrobials grows, demand for well-characterized, sophisticated chemical tools like this one will increase. Suppliers who can guarantee purity, provide comprehensive analytical data, and offer derivative libraries will lead this space.

2.Precision Medicine and Targeted Therapies: The future of therapeutics lies in personalized, mechanism-driven approaches. A compound like this, which could be engineered for specific targets (e.g., a particular kinase or a microbial enzyme), aligns perfectly with this trend. Its value would be immense if it can be developed as a "theranostic" agent-combining therapeutic action with fluorescent imaging capabilities.

3.The Fight Against Antimicrobial Resistance (AMR): The global AMR crisis is a powerful driver for the development of new antimicrobial classes. Quinolinium salts represent a promising, underexplored chemical space for novel antibiotic discovery. Positive research outcomes could catapult such compounds into high-priority development pipelines, attracting significant investment.

4.Regulatory Hurdles and Commercial Viability: The primary challenge remains the immense cost and time required for drug development. The transition from a research chemical to an approved pharmaceutical is a high-risk endeavor. The commercial future of this specific compound as a medicine depends entirely on robust data demonstrating a significant advantage over existing treatments, such as superior efficacy, reduced side effects, or activity against untreatable conditions.

 

 

 

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