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Meta-Z Kit (10mL vials)

$300.00

• Format: Multi-component liquid blend (9 active ingredients + excipients)

• Key Components: B12 (Methylcobalamin), Methionine, Inositol, Choline Bitartrate, Taurine, Leucine, L-Carnitine, L-Arginine, Alpha-lipoic acid

• Concentration Range: 1–500 mg/mL per component

• Excipients: 2% Benzoic Acid, 2% Lidocaine, sterile water

• Testing Status: Independent analysis pending

• Cost Efficiency: Contact for pricing

Meta-Z Kit is a proprietary multi-component research blend combining B-vitamins, amino acids, methyl donors, and metabolic cofactors for in-vitro experimentation. This research-grade material supports laboratory studies focused on cellular metabolism, methylation pathways, mitochondrial function, amino acid transport, and multi-component interaction analysis.

Notice Component - Compact
Research Use Only. Not for use in diagnostic tests.

Before Ordering
  • Independent certificate details, manufacturer IDs, and batch IDs should be reviewed before purchase when available.
  • Order cancellations for full refunds are available before shipment; shipped orders cannot be cancelled or refunded.
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SKU: META-Z-KIT-10ML-10097 Category:
Description

Buy Meta-Z Kit – Peptide Partners

Product Overview & Specifications

Meta-Z Kit is a proprietary multi-component research blend containing nine active ingredients: methylcobalamin (B12), methionine, inositol, choline bitartrate, taurine, leucine, L-carnitine, L-arginine, and alpha-lipoic acid. Peptide Partners supplies this research-grade formulation for in-vitro testing, laboratory experimentation, metabolic pathway analysis, cellular bioenergetics studies, and multi-component interaction research.

This complex formulation combines methyl donors, amino acids, metabolic cofactors, and antioxidant compounds at defined concentrations. Research applications include studies of cellular metabolism, methylation cycle biochemistry, mitochondrial function, amino acid transport mechanisms, redox biology, and analytical characterization of multi-component liquid formulations.

The product name supplied for this listing is “Meta-Z Kit.” Researchers should verify the exact composition, concentration ratios, formulation stability, and batch-specific certificate of analysis before beginning any experiment. Independent analysis is pending for this formulation.

Product Specifications

Specification Details
Product name Meta-Z Kit
Compound type Multi-component research blend (9 active ingredients)
Product format Liquid solution
Manufacturer ID DF05
Batch ID MZ20250726
Independent testing Pending

Active Ingredient Composition

Ingredient CAS Number Concentration
B12 (Methylcobalamin) 13422-55-4 1 mg/mL
Methionine 63-68-3 50 mg/mL
Inositol 87-89-8 100 mg/mL
Choline Bitartrate 87-67-2 400 mg/mL
Taurine 107-35-7 50 mg/mL
Leucine 61-90-5 20 mg/mL
L-Carnitine 541-15-1 500 mg/mL
L-Arginine 74-79-3 200 mg/mL
Alpha-lipoic acid 1077-28-7 25 mg/mL

Excipients & Formulation Notes

Component Concentration Function
Benzoic Acid 2% Preservative / antimicrobial agent
Lidocaine 0.1% Local anesthetic (research applications)
Sterile Water Vehicle Solvent / diluent

Note: Independent analysis is pending for this formulation. Researchers should review the batch-specific certificate of analysis upon availability and conduct preliminary characterization experiments to establish component stability and concentration verification before beginning complex experimental designs.

Component Research Context

Methylcobalamin (Vitamin B12)

Methylcobalamin is a biologically active form of vitamin B12 functioning as a cofactor in methionine synthase and methylmalonyl-CoA mutase reactions. Research applications include studies of methylation cycle biochemistry, homocysteine metabolism, mitochondrial function, and cellular energy production pathways.

Methionine

Methionine is an essential sulfur-containing amino acid serving as a precursor for S-adenosylmethionine (SAM), the primary methyl donor in cellular methylation reactions. Laboratory research examines methionine metabolism, transsulfuration pathways, protein synthesis, and redox homeostasis.

Inositol

Inositol (myo-inositol) is a cyclic polyol involved in cell signaling, membrane structure, and osmotic regulation. Research applications include studies of phosphatidylinositol signaling cascades, insulin sensitivity, cellular stress responses, and lipotropic effects in various cell culture models.

Choline Bitartrate

Choline is an essential nutrient functioning as a methyl donor, membrane phospholipid precursor (phosphatidylcholine), and neurotransmitter (acetylcholine) precursor. Laboratory studies examine choline metabolism, betaine-homocysteine methyltransferase activity, and lipotropic mechanisms.

Taurine

Taurine is a sulfur-containing amino acid derivative with roles in osmoregulation, membrane stabilization, calcium homeostasis, and antioxidant defense. Research applications include studies of mitochondrial function, oxidative stress responses, and cellular protection mechanisms.

Leucine

Leucine is a branched-chain essential amino acid functioning as a key regulator of protein synthesis via mTOR signaling pathway activation. Laboratory research examines amino acid sensing, translation initiation, muscle protein metabolism, and metabolic regulation.

L-Carnitine

L-Carnitine is a quaternary ammonium compound essential for mitochondrial fatty acid beta-oxidation, facilitating long-chain fatty acid transport across the inner mitochondrial membrane. Research applications include studies of mitochondrial bioenergetics, fatty acid metabolism, and cellular energy production.

L-Arginine

L-Arginine is a semi-essential amino acid serving as a substrate for nitric oxide synthase (NOS), producing nitric oxide (NO), and as a precursor for creatine, polyamines, and urea cycle intermediates. Laboratory studies examine NO signaling, vasodilation mechanisms, and amino acid metabolism.

Alpha-Lipoic Acid

Alpha-lipoic acid (ALA) is a dithiol compound functioning as a mitochondrial enzyme cofactor and antioxidant. Research applications include studies of redox biology, mitochondrial function, glucose metabolism, and antioxidant defense systems in various experimental models.

Multi-Component Research Considerations

When working with complex multi-component formulations like Meta-Z Kit, researchers should consider potential interactions between components in experimental systems. Factors include chemical stability in solution, pH-dependent reactions, oxidation-reduction interactions, component degradation kinetics, and analytical challenges in quantifying individual ingredients.

Researchers are advised to conduct preliminary characterization experiments to establish baseline behavior of the formulation in their specific laboratory systems before proceeding with complex experimental designs. Component ratios, concentration ranges, time-course stability, and storage conditions should be empirically determined for each research application.

Standard Research Disclaimer

Research Use Only. Not for use in diagnostic tests.

This product is solely intended for research purposes as a chemical compound. It is designated exclusively for in-vitro testing and laboratory experimentation. All information provided about this product is educational and should be evaluated by appropriately qualified research personnel.

By law, bodily introduction of this product into humans or animals is strictly prohibited. This compound must not be used, administered, or represented as a drug, food, dietary supplement, vitamin supplement, energy product, weight-management product, metabolic treatment, diagnostic material, or medical treatment. It is not intended to diagnose, treat, cure, or prevent any disease. It should be handled only by licensed and qualified professionals in an appropriately equipped laboratory and in accordance with applicable laws, institutional procedures, and relevant safety requirements.

Additional information
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5 vials × 10mL (50mL total)

Storage details
Storage Information

Storage
  • All of our manufacturing partners produce peptides using the Lyophilization (Freeze Drying) process, ensuring products maintain stability for shipping and storage for 12+ months.
  • In lyophilized form, they are shelf-stable for many weeks. However, for long-term storage, it is recommended to store them in the freezer.
  • We often hear concerns about the standard "discard after 28 days of first use" disclaimer. Don't worry, this has nothing to do with studies regarding the efficacy of specific peptides. 28 days is the FDA requirement for producers of multi-use vials to prove their bacteriostatic maintains efficacy. This minimum requirement becomes the de facto standard.
  • In our experience, if you use proper sterile procedures and refrigerated storage, you can continue sampling from the same reconstituted vial for 3+ months.
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