Creatine gummies vs creatine powder – laboratory test shows major differences

Read time: 3–4 min
Creatine gummies vs creatine powder – laboratory test shows major differences

Creatine is one of the world’s most studied dietary supplements and is used primarily to improve performance during repeated short, high-intensity efforts. In recent years, creatine has also started being sold in more and more forms, not only as traditional powder, but also as capsules, drinks, and above all gummies. Creatine gummies are often marketed as a more convenient and tastier alternative to creatine powder. But a laboratory investigation from SuppCo raises an important question: Do creatine gummies really contain the amount of creatine stated on the label?

In SuppCo’s analysis, all the tested creatine powders passed the laboratory check, while four of the six tested gummy creatine products contained extremely little or no detectable creatine. The result does not mean that all creatine gummies on the market are bad. However, the investigation illustrates a fundamental problem with creatine: creatine is very stable in dry crystalline form, but significantly less stable when it is in a moist environment.

11 creatine products sent to an independent laboratory

SuppCo purchased eleven commercially available creatine products and sent them to an independent laboratory accredited according to ISO/IEC 17025.

The products consisted of:

  • 5 creatine powders
  • 6 creatine gummies

The laboratory analyzed, among other things:

  • the amount of creatine per serving
  • creatine purity
  • the presence of creatinine
  • heavy metals
  • the product’s identity and formulation

The differences between powders and gummies were large.

All five creatine powders passed the test

All five powder products contained, according to SuppCo’s laboratory results, approximately the amount of creatine that was expected. The powders showed about 98–100 percent creatine purity and exhibited very low levels of creatinine, a by-product with no function in the body. That is important because creatinine can form when creatine breaks down. The result also aligns with what one would chemically expect from creatine monohydrate. Creatine monohydrate in dry, crystalline form has very good stability, which is one reason why the powder form is so easy to formulate and store.

Four out of six creatine gummies failed

The situation looked very different for gummies. Of the six gummy products that SuppCo analyzed, only two delivered roughly the declared amount of creatine. Four products, on the other hand, contained very small amounts or no detectable creatine at all. SuppCo reported the following: For two creatine gummies, SuppCo estimated that the concentration was so low that it would theoretically require hundreds or thousands of gummies to match a normal creatine dose of about 5 grams. In addition, one of these creatine gummies was analyzed from two different packages and two different batches, according to SuppCo, and no detectable creatine was reported in any of the samples. 

Two creatine gummies did pass the analysis

At the same time, it is important not to conclude that it is impossible to manufacture effective creatine gummies. Two products passed SuppCo’s analysis. This shows that it is possible to formulate gummies that actually contain a relevant amount of creatine. But the laboratory also found higher levels of creatinine in these gummies than in the tested powder products. That is interesting because it points to a fundamental formulation challenge.

Why can creatine be harder to formulate in gummies?

The most important difference between creatine powder and a gummy is not the taste or texture. It is the water activity and the chemical environment. Dry creatine monohydrate is very stable. When creatine is in an environment where water is available, however, the molecule can gradually convert through intramolecular cyclization to creatinine. How quickly this happens is affected by, among other things:

  • water activity
  • pH
  • temperature
  • storage time
  • formulation
  • moisture content

Gummies normally contain significantly more available water than a dry creatine powder. In addition, gummies often contain organic acids such as citric or malic acid to create flavor, texture, and stability. That can create a far more complicated environment for creatine than the dry environment in a jar of powder.

Creatine is considerably more stable in dry form

The problem is well known in research. Studies of creatine show that crystalline creatine has very high stability as long as it remains dry. When creatine is dissolved or exposed to water, the situation changes. A study published in Drug Development and Industrial Pharmacy investigated, among other things, how water activity and temperature affect creatine stability. The researchers concluded that both water activity and temperature influenced how quickly creatine degraded to creatinine. The more water that was available in the system, the greater the potential for degradation reactions generally became. This does not automatically mean that a gummy will destroy the creatine. But it does mean that a gummy is a much more advanced formulation challenge than filling a jar with dry creatine monohydrate.

pH also affects creatine stability

Creatine’s degradation in solution is also strongly affected by pH. The International Society of Sports Nutrition has previously summarized studies where creatine was stored in solution at different pH levels. After three days at about 25 °C, for example, roughly the following was reported:

  • 4 percent degradation at pH 5.5
  • 12 percent at pH 4.5
  • 21 percent at pH 3.5

This illustrates why long-term storage in a water-containing and relatively acidic product can be much more problematic than storing creatine as a dry powder. A gummy may also need to be stable for many months from manufacturing to the final use date. Therefore, it is not enough that the product contains the right amount of creatine immediately after production. The manufacturer must also be able to show that the declared amount remains throughout the product’s entire shelf life.

Creatinine means some of the creatine has broken down

Creatinine is a cyclic degradation product that can form from creatine. When assessing the quality of a creatine product, the amount of creatinine can therefore be used as an indicator of how well the creatine has retained its original form. Small amounts of creatinine do not necessarily mean that the product is dangerous. The relevant quality issue is rather that creatine that has been converted to creatinine is no longer creatine and therefore cannot be counted as part of the intended creatine dose.

Are creatine gummies worse than creatine powder?

Not necessarily, but we would be extremely cautious with gummies that contain creatine. A well-developed gummy can contain the right amount of creatine, as two of the six products in SuppCo’s test demonstrated. But the gummy format introduces more variables that the manufacturer must control. A traditional pure creatine monohydrate powder can, in principle, consist of a single ingredient. A gummy, on the other hand, may contain water, sweeteners, gelling agents, flavors, acids, colorants, and other ingredients that together create a much more complex chemical environment. This means that questions about, for example, stability testing and finished product control become especially important.

What should you check when buying creatine?

For those who want to choose creatine, the form itself is only part of the quality assessment. Some of the most important things to check are the following.

1. Is the amount of creatine clearly declared?

The product should state the amount of creatine or creatine monohydrate per recommended serving. Be cautious with products that only state the weight of a blend without specifying the amount of creatine.

2. Are there analyses of the finished product?

A raw material certificate shows the quality of the creatine before production. That is not the same as analyzing the finished product. This is particularly relevant for gummies and other moist formulations where creatine stability can be affected after production.

3. Has the company conducted shelf-life studies?

For a complex product, it is really not enough to know how much creatine it contained when it was manufactured. You want to know how much remains:

  • after a few months
  • after long-term storage
  • under realistic temperature conditions
  • up to the best-before date

4. Which form of creatine is used?

Creatine monohydrate is by far the most studied form of creatine and has been used in hundreds of scientific studies. More exotic forms of creatine do not automatically mean better absorption or better effect.

5. Does the product contain unnecessary amounts of sugar or other ingredients?

To get, for example, 3–5 grams of creatine from gummies, you may need several gummies per day. This can also make the amounts of sugar, sugar alcohols, acids, and other excipients significant. It is worth checking the entire serving size and not just the amount per single gummy.

Powder has a very simple technical advantage

There is a reason why regular creatine monohydrate powder is still the standard form in both research and sports nutrition. The formulation is extremely simple. A high-quality creatine powder can consist of:

  • 100 percent creatine monohydrate.
  • No water needs to be present in the product.
  • No acid is needed.
  • No flavoring is needed.
  • No sweeteners are needed.
  • No gel structure needs to be created.

This does not automatically make every creatine powder high quality, but it eliminates several of the stability problems that arise when creatine is built into more complicated food matrices.

Should you avoid creatine gummies?

You cannot draw that conclusion from a single laboratory test, but given the result we would be extremely cautious with creatine gummies. SuppCo analyzed only six gummy products, and the results apply to the specific batches that were sent to the laboratory. But the results show why consumers should not rely solely on what is stated on the front of the package. For creatine gummies, three questions in particular are relevant:

  1. Has the finished product been analyzed?
  2. Is there stability data for the entire shelf life?
  3. Does the declared amount of creatine still remain when the product is consumed?

If the company can document this, a gummy can be a viable alternative. If such documentation is lacking, or if you want to avoid consuming sweeteners, dry creatine monohydrate powder offers a much simpler chemical solution.

Common questions about creatine gummies and creatine powder

Do creatine gummies work?

Yes, creatine gummies can work if they actually contain the declared amount of creatine and the creatine remains stable throughout the product’s shelf life. In SuppCo’s laboratory test, two of the six gummy products tested met their declared creatine dose reasonably well. Four products, on the other hand, contained very little or no detectable creatine.

Is creatine powder better than creatine gummies?

Creatine monohydrate powder has a technical formulation advantage because creatine is very stable in dry crystalline form. It is purer and you get the amount stated on the package. You also avoid sweeteners. Gummies also contain more moisture and often acids, which makes stability more complicated. That does not mean that all gummies are bad, but the manufacturer needs to have good control over both formulation and shelf life.

Can creatine break down in gummies?

Yes. Creatine can gradually convert to, among other things, creatinine when it is in an environment where water is available. The degradation rate is affected by factors such as temperature, pH, water activity, and storage time.

What happens when creatine becomes creatinine?

When creatine converts to creatinine, that molecule is no longer present as creatine. This means the amount of active creatine in the product decreases.

Is creatinine in creatine supplements dangerous?

The presence of creatinine is mainly used as an indicator of creatine degradation. The issue from a product standpoint is primarily that creatine converted to creatinine no longer contributes to the declared creatine dose.

Which form of creatine is the most studied?

Creatine monohydrate is clearly the most studied form of creatine and the form used in the majority of research on creatine supplementation.

How much creatine do people usually take?

A common daily dose in research and practical use is about 5 grams of creatine monohydrate per day for muscle hypertrophy and up to 20 grams for brain function. A loading phase is not necessary to increase the body’s creatine stores over time.

Author and Reviewer