MOTS-c 10mg
SARMS and Peptides
MOTS-c 10mg

Manufacturer: Axiolabs
Pharmaceutical name: MOTS-c; Mitochondrial Peptide
Pack: vial (10 mg per vial)
⚠️ Provided in a lyophilized powder for stability

$42.00 $70.00
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MOTS-c 10mg by Axiolabs - Fat Loss & Metabolic Activation Peptide

MOTS-c is a mitochondrial-derived peptide that plays a key role in regulating metabolism, energy balance, and fat utilization. Unlike appetite-suppressing compounds, MOTS-c works at the cellular level, influencing how the body processes nutrients and uses energy. This makes it a unique compound in fat loss and metabolic optimization research.

Rather than simply reducing caloric intake, MOTS-c has been studied for its ability to improve metabolic efficiency, increase glucose uptake, and enhance fat oxidation. These mechanisms position it as a metabolic activator rather than a traditional weight loss agent.

Important medical note: MOTS-c is considered a research compound in many regions and is not widely approved for general medical use. Any use should occur under professional supervision where legally permitted.

AMPK Activation & Fat Metabolism

One of the key mechanisms behind MOTS-c is its activation of AMPK (AMP-activated protein kinase), often referred to as the body's metabolic master switch. AMPK regulates how cells use energy, particularly during periods of caloric deficit or physical activity.

Key metabolic effects include:
• Increased fat oxidation for energy
• Improved glucose uptake by muscle cells
• Enhanced metabolic flexibility
• Reduced energy storage in adipose tissue

By activating AMPK, MOTS-c encourages the body to utilize stored fat more efficiently.

Fat Loss Without Appetite Suppression

Unlike compounds such as Semaglutide, which primarily reduce appetite through GLP-1 receptor activity, MOTS-c focuses on metabolic pathways rather than hunger signals.

This distinction is important:
• MOTS-c - improves energy utilization and fat metabolism
• Semaglutide - reduces appetite and caloric intake

Because of this, MOTS-c is often discussed in contexts where maintaining food intake while improving metabolic efficiency is the goal.

Insulin Sensitivity & Glucose Regulation

MOTS-c has been studied for its potential effects on insulin sensitivity and glucose metabolism. Efficient glucose utilization is essential for both energy production and fat loss.

Research discussions include:
• Improved insulin sensitivity
• Enhanced glucose uptake in muscle tissue
• Reduced metabolic stress associated with insulin resistance
• Support for balanced blood sugar levels

These mechanisms contribute to improved metabolic health and energy balance.

Metabolic Efficiency & Body Composition

Body composition is influenced not only by calorie intake but also by how efficiently the body processes and uses energy. MOTS-c may support improvements in this area by optimizing cellular metabolism.

Potential benefits include:
• Increased fat utilization during activity
• Improved energy expenditure
• Support for leaner body composition
• Enhanced metabolic resilience under caloric restriction

For comprehensive fat loss strategies, MOTS-c is often discussed alongside peptides like Ipamorelin, which supports recovery and GH-related metabolism through different pathways.

Comparison Table

Compound Primary Function Main Pathway Fat Loss Mechanism
MOTS-c Metabolic activation AMPK Fat oxidation
Semaglutide Appetite control GLP-1 Reduced intake
Ipamorelin GH stimulation Ghrelin receptor GH-mediated lipolysis


Frequently Asked Questions

1) What is MOTS-c used for?

MOTS-c is studied for metabolic optimization, fat utilization, and energy regulation.

2) Does MOTS-c help with fat loss?

It may support fat loss by increasing fat oxidation and improving metabolic efficiency.

3) How does MOTS-c differ from Semaglutide?

MOTS-c affects metabolism at the cellular level, while Semaglutide reduces appetite.

4) Does MOTS-c affect insulin sensitivity?

Research suggests it may improve glucose uptake and insulin response.

5) Is MOTS-c approved for medical use?

In many regions, it is considered a research compound and not widely approved.

Level Amount How often Length Notes
Research ranges
Cautious start 2.5 mg 1–2 times a week 4–6 weeks Conservative starting point, under supervision
Moderate, intermittent 5 mg 2–3 times a week 4–8 weeks Range discussed most often
Higher frequency 5 mg 3–5 times a week 4–12 weeks Used for metabolic support or training blocks
10 mg dose 10 mg 1–3 times a week 4–8 weeks "10 mg" may refer to what's in the vial, not the amount per dose
Key facts
Approval status A peptide made in the mitochondria; there is no FDA-approved dose or clinical protocol
Usual route Injection under the skin (subcutaneous)
Sports testing USADA lists MOTS-c as an experimental drug, so no therapeutic use exemption is possible; the WADA 2026 Prohibited List applies from January 1, 2026
Possible side effects Reactions at the injection spot, changes in energy, poor sleep, swings in blood sugar
Do not use if Pregnant, breastfeeding, with a history of cancer, with organ impairment, or a tested athlete
Combining with other products Using it together with GLP-1 drugs, stimulants, thyroid medication, or other peptides makes side effects harder to trace
Disclaimer Figures are math conversions only; they do not confirm product quality, safety, or medical suitability
Reconstitution calculator
Find out how much bacteriostatic water to add and how many units to draw on your syringe for your MOTS-c dose.
Peptide in the vial
mg
Bacteriostatic water
mL
Dose you want
mg
Syringe
Results
Choose your values and press Calculate.
Concentration —
Amount to draw —
Units to draw —
Doses in the vial —
How the math works
1. Find the concentration Divide the peptide in the vial by the water added. For example, 10 mg ÷ 2 mL = 5 mg/mL
2. Work out the volume Divide the dose by the concentration. For example, 5 mg ÷ 5 mg/mL = 1 mL
3. Convert to units On a U-100 syringe, multiply the mL by 100. For example, 1 mL = 100 units
4. Check the syringe Make sure the amount fits the syringe you are using
Worked example
Vial 10 mg MOTS-c
Water 2 mL bacteriostatic water
Dose 5 mg
Syringe 100 units (1 mL)
Concentration 10 mg ÷ 2 mL = 5 mg/mL
Amount to draw 5 mg ÷ 5 mg/mL = 1 mL, which is 100 units on a U-100 syringe
Doses in the vial 10 mg ÷ 5 mg = 2 doses
Vial size vs dose
A vial marked "10 mg" holds 10 mg in total before it is mixed. It is not a single dose, and it does not mean you use the whole vial. The amount per dose depends on how much water you add and what your clinician prescribes. For example, 10 mg mixed with 2 mL gives 5 mg/mL, so a 2.5 mg dose is 0.5 mL, which is 50 units on a U-100 syringe.
Disclaimer
This tool does math conversions only. It does not choose a dose for you or confirm product quality, safety, or medical suitability.

Reconstitution & Storage

Mixing a peptide takes about a minute. What people usually get wrong is what happens afterwards. Work through the steps in the guide above, then store the vial the way we lay out further down.

How to reconstitute peptides

How to Reconstitute

The five steps above cover it. Let the vial and the bacteriostatic water sit out until they reach room temperature. Then run the bacteriostatic water down the inside wall of the vial, slowly, so it does not foam up. Swirl it gently until the powder is gone. Do not shake the vial, and do not squirt the bacteriostatic water straight onto the powder.

How to Store the Mixed Peptide

As soon as it is mixed, put the vial back in the fridge. 2 to 8°C (35.6°F to 46.4°F) is what you want, and it stays there until you have used it up. Write the mixing date on the label. Do not rely on memory for that.

  • Temperature: an ordinary fridge, 2 to 8°C (35.6°F to 46.4°F). Not the freezer, not a kitchen cupboard.
  • How long it lasts: around 4 weeks. Anything past 28 days goes in the bin.
  • Light: keep it in the box or in a dark drawer. Light breaks peptides down.
  • Handling: wipe the stopper with an alcohol swab before each draw, use a new needle and do not shake it. Swirl if it needs a mix.
  • Freezing: never freeze a mixed solution. Ice crystals form, and a freeze and thaw cycle costs you potency.
  • Throw it out if: the liquid goes cloudy, changes colour, or you can see particles in it.

The dry powder is much easier to keep. Store it dry and away from light, at room temperature if it is only for a short while, or at -20°C for the long term. Only mix what you are going to use.

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