Lipo-C

From CAD $75 CAD $80

This batch of Lipo-C Peptide has been third party lab tested and verified for quality.

Size: 10mg
Contents: Lipo-C (Lipotropic Compound – Methionine, Inositol, Choline Blend)
Form: Powder
Purity: 99.3%

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Lipo-C

Lipo-C is a formulation of l-carnitine conjugated to a lipophilic moiety, investigated for its potential effects on cellular fatty acid transport, mitochondrial β-oxidation, and metabolic energy regulation. In laboratory models, Lipo-C is studied for its capacity to enhance mitochondrial fatty acid uptake, support lipid turnover, and modulate metabolic substrate preference under energetic stress conditions.

Research explores how Lipo-C influences long-chain acyl-CoA transport into mitochondria, mitochondrial respiratory chain function, and downstream effects on lipid accumulation and cellular energy homeostasis.


Overview

Lipo-C is used in scientific settings for evaluating metabolic‐endocrine modulation of lipolysis, fatty acid oxidation, adipocyte metabolism, and mitochondrial biogenesis. Investigators also examine its potential impact on systemic lipid profiles, visceral fat mass, and energy expenditure shifts during experimental dietary challenge or insulin‐resistance models.


Chemical Makeup

Lipo-C is derived from l-carnitine esterified with a lipophilic moiety, designed to enhance cellular uptake and mitochondrial delivery. Because structural derivation may vary, a single definitive molecular formula is not listed. Analytical identity and purity are confirmed for this batch.

  • Observed Mass (MS): 711.9 Da
  • Purity (HPLC): 99.42%
  • Batch Number: 2025007
  • Primary Retention Time: 3.48 min
  • Instrument: LCMS-7800 Series (Calibrated)
  • Analytical Note: Primary peak confirmed by mass and retention time; trace secondary peak area 0.58%


Research and Clinical Studies

Lipo-C and Fatty Acid Transport
Experimental studies assess the ability of l-carnitine derivatives to enhance mitochondrial import of long-chain fatty acids and increase oxidative flux in enriched substrate models.

Lipo-C and Lipolysis Activation
Investigations evaluate changes in adipocyte lipolytic rate, free‐fatty-acid turnover, and triglyceride content following treatment in metabolic cell culture or animal models.

Lipo-C and Mitochondrial Biogenesis
Research examines whether enhanced mitochondrial substrate delivery signals mitochondrial biogenesis pathways including PGC-1α and oxidative enzyme induction.

Lipo-C and Metabolic Health Applications
Studies consider the effect of enhanced fatty acid oxidation on visceral adiposity, hepatic lipid content, and insulin resistance markers in controlled research settings.

Lipo-C research compound is intended exclusively for investigative laboratory use by qualified personnel. Not for human or veterinary administration.

 


References

  1. Stanley WC, et al. Regulation of mitochondrial fatty acid oxidation by l-carnitine. J Mol Cell Cardiol. 1999;31(10):1435–1448. PMID: 10502507.
    https://pubmed.ncbi.nlm.nih.gov/10502507/
  2. Rebouche CJ. Carnitine function and requirements during the life cycle. Fetal Pediatr Pathol. 2004;23(1–2):99–114. PMID: 15362046.
    https://pubmed.ncbi.nlm.nih.gov/15362046/
  3. Jones LL, et al. Role of l-carnitine in cardiovascular disease. Cardiovasc Res. 1999;42(2):219–223. PMID: 10364221.
    https://pubmed.ncbi.nlm.nih.gov/10364221/
  4. Hoppel C. The role of carnitine in normal and altered fatty acid metabolism. Am J Kidney Dis. 2003;41(4 Suppl 4):S4-12. PMID: 12664513.
    https://pubmed.ncbi.nlm.nih.gov/12664513/
  5. Ringseis R, et al. Carnitine transport and mitochondrial metabolism. Biochim Biophys Acta. 2014;1842(9):1282–1293. PMID: 24950924.
    https://pubmed.ncbi.nlm.nih.gov/24950924/
  6. ClinicalTrials.gov Identifier: NCT01376341. L-carnitine derivative supplementation in metabolic syndrome research.
    https://clinicaltrials.gov/ct2/show/NCT01376341
  7. ClinicalTrials.gov Identifier: NCT02410932. Mitochondrial fatty acid oxidation enhancement in human research settings.
    https://clinicaltrials.gov/ct2/show/NCT02410932

 

For Research Use Only. Not for human or veterinary use.

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Frequently Asked Questions

Here you’ll find answers to common questions.

How do I know the peptides I order are exactly what the label says?

Every vial we sell comes from a lab that follows current Good Manufacturing Practices (cGMP). That means each step of production is documented and controlled. Before a batch is released, it’s tested by independent third-party labs for purity, identity, and sterility. Certificates of analysis are available so you can see the exact test results.

Yes. The labs we work with use ISO-certified clean rooms where air quality, equipment, and handling procedures are tightly regulated. Staff are trained to pharmaceutical-grade standards. This ensures the peptides are produced in an environment that minimizes contamination risks.

Peptides in lyophilized (freeze-dried) form are stable at room temperature for transport. Once you receive them, refrigeration is recommended to maintain long-term integrity. We package every order securely to prevent damage and ship promptly, so your vials arrive in optimal condition.

We operate under strict in-house protocols that follow current Good Manufacturing Practices (cGMP). That means our team oversees the entire process from sourcing raw amino acids to the final lyophilized vial. Nothing is outsourced or repackaged. This gives us full control over purity, consistency, and sterility, and it’s why we can stand behind every single vial we ship.

Store them in the refrigerator, away from direct light and heat. If you need to keep them longer, some peptides can be stored frozen. Each vial comes with clear handling instructions so you know the proper conditions for stability.

The strongest proof is transparency. For every peptide, we can provide certificates of analysis, manufacturing documentation, and references to the published scientific research behind it. If you ever have questions, we’ll show you the data rather than ask you to take our word for it.