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FAT BLASTER

£39.99

– Lipotropic Injection Formula | L-Carnitine + MIC Complex + B6 + B12 + NADH | 10mL Vial(FAT BLASTER) | ≥99% Purity🔥 High-Potency Lipotropic & Energy Complex – Designed for Advanced Metabolic Research📜 Scientifically Verified – COA & MSDS Provided🌍 Trusted Worldwide – Consistent Results in Fat Metabolism, Cellular Energy...

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Why Choose Us ?

Maxx Labs delivers trusted quality, expert support, and reliable service—so your research stays precise, professional, and on track.

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All products are sold strictly for research use. Returns are only accepted if items arrive damaged, defective, or incorrect—please contact us within 7 days of delivery.

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– Lipotropic Injection Formula | L-Carnitine + MIC Complex + B6 + B12 + NADH | 10mL Vial
(FAT BLASTER) | ≥99% Purity
🔥 High-Potency Lipotropic & Energy Complex – Designed for Advanced Metabolic Research
📜 Scientifically Verified – COA & MSDS Provided
🌍 Trusted Worldwide – Consistent Results in Fat Metabolism, Cellular Energy & Hepatic Support Models


Chemical Information
Active Components per mL (526mg total):
L-Carnitine: 300mg
Methionine: 25mg
Inositol: 50mg
Choline: 50mg
Vitamin B6 (Pyridoxine): 50mg
Vitamin B12 (Methylcobalamin): 1mg
NADH: 50mg

Total Volume: 10mL (multi-dose sterile solution)
Form: Sterile injectable aqueous solution
Purity: ≥99% (Analytical-grade)


Storage Conditions
Before Use: Store at room temperature in a cool, dark place
After Opening: Keep stored in a cool, dark environment and use within standard laboratory stability periods
Protect from heat, light exposure, and contamination


Description
FAT BLASTER is a concentrated lipotropic and metabolic research formula crafted to support studies involving fat transport, mitochondrial energy production, hepatic function, and metabolic regulation. It integrates the classic MIC components with high-dose L-carnitine, energizing B vitamins, and NADH—a key coenzyme central to mitochondrial ATP generation.

Each ingredient plays a distinct research role:

L-Carnitine (300mg) – Critical for transporting long-chain fatty acids into mitochondria for β-oxidation and energy release.

Methionine (25mg) – An essential amino acid studied for its involvement in hepatic detoxification and methylation processes.

Inositol (50mg) – Investigated for its contribution to lipid metabolism, cellular signaling, and metabolic regulation.

Choline (50mg) – Supports liver lipid export, phospholipid synthesis, and cell membrane health.

Vitamin B6 (50mg) – Essential for amino acid metabolism, neurotransmitter synthesis, and fat-mobilizing enzymatic pathways.

Vitamin B12 (1mg) – Assists metabolic reactions and supports methylation pathways alongside methionine.

NADH (50mg) – A reduced form of nicotinamide adenine dinucleotide, central to ATP generation and mitochondrial energy transfer, frequently used in cellular energy research.

Together, this formula offers a potent blend for studies involving metabolic rate, fat oxidation, mitochondrial performance, and overall biochemical energy turnover.


Key Research Applications
💡 Lipid Transport & Fat Oxidation – L-carnitine and MIC components examined in fat metabolism pathways
💡 Mitochondrial Energy Production – NADH and B vitamins support studies on ATP generation
💡 Hepatic Detoxification & Lipotropic Support – Methionine, inositol, and choline widely studied in liver function research
💡 Cellular Metabolism & Biochemical Function – B6 and B12 influence metabolic enzyme activity
💡 Neuro-Metabolic Research – Inositol and NADH investigated in cognitive and oxidative models


Reported Research Benefits
📚 Based on in vitro and animal research, studies involving these components have demonstrated potential benefits in metabolic, hepatic, and mitochondrial models:

Enhanced Fat Metabolism: L-carnitine supports efficient transport and utilization of fatty acids
Energy Production Boost: NADH directly participates in mitochondrial ATP synthesis
Liver Function Support: Methionine, inositol, and choline assist in hepatic processing of fats
Improved Metabolic Enzyme Function: B6 and B12 influence enzymatic pathways tied to energy and lipid metabolism
Neurochemical & Cellular Support: Inositol and NADH contribute to cellular resilience and oxidative balance

These findings are based on animal and in vitro research and are not intended to imply therapeutic use in humans.


Product Assurance
✅ HPLC Verified – Ensuring ≥99% purity
✅ COA Provided – On Request
✅ Manufactured in a GMP-Certified Facility – Developed & Dispatched in the UK
✅ Third-Party Testing Covered – Independent Verification Available on Request
✅ Ambient-Stable Shipping – Formulated for room-temperature transport


⚠️ For Research Use Only
This compound is intended solely for scientific research and laboratory use. It is not approved for human or veterinary use, nor for therapeutic, diagnostic, or medicinal application. Misuse outside a regulated research setting is strictly prohibited.

⚠️ For Research Use Only – Not for Human Consumption
This product is intended strictly for laboratory research purposes and is not approved for human or veterinary use, therapeutic application, or diagnostic procedures. All handling must be performed by trained professionals in compliance with appropriate laboratory safety protocols and applicable regulations.

18+ Notice: This material is not for sale to individuals under the age of 18. By purchasing, you confirm that you are a qualified individual or acting on behalf of a qualified institution, and that the compound will be used exclusively for legitimate scientific investigation.

We acknowledge that in certain regions—particularly in countries outside of the United Kingdom, where manufacturing oversight and regulatory enforcement may be less stringent—there are isolated cases of individuals attempting to self-administer research compounds. We strongly discourage and explicitly warn against any such misuse. The self-experimentation of unapproved substances carries significant, unquantifiable risks and is both medically irresponsible and ethically unsound. Without proper analytical validation, GMP-level controls, and clinical context, the safety, quality, and pharmacological reliability of these materials cannot be assured.

All compounds must be handled in secure, controlled environments by competent personnel. Any deviation from these principles is contrary to responsible research practice and breaches both our terms of sale and the intended scientific use of these products.