Nutrition

Creatine Beyond Muscle: What a New Study Found About Strength, Weight Loss and Brain Health

A 2026 study found creatine raised lean mass and strength in adults 45–65, even without exercise. Here's what the study found and how to put it in context.

Waleed S.Sep 27, 202614 min read
Tub of creatine powder with a scoop beside a creatine molecule diagram and images of a woman, an older man, and a brain, representing strength, healthy aging, and brain health

Key takeaways

  • In a 12-week trial of adults aged 45–65, 10 grams of creatine a day increased lean tissue and strength, including in people who didn't exercise.
  • A DXA scan counts water as "lean tissue," so the 1.1 kg (about 2.4 lb) gained by the no-exercise creatine group likely reflects both water and muscle.
  • The group that combined creatine with training and a modest calorie deficit had the largest drop in body fat percentage.
  • Creatine improved several memory and reaction-time tasks, which the authors describe as exploratory. Wider research on creatine and cognition in older adults is promising and still developing.
  • Creatine is one of the most studied supplements, and side effects in trials look similar to placebo. It doesn't replace the training stimulus: progressive overload still does the real work.

A new study from Texas A&M University found that creatine increased lean mass and strength in adults aged 45–65, even without a structured exercise program. It also looked at creatine during weight loss, and at memory and other health markers.

This article walks through what the study found and how to put it in context, then answers the questions people usually have next: how creatine works, whether your body already makes it, whether it helps during weight loss, what it does for the brain, and whether it's safe for your kidneys.

Disclaimer: This article is for educational purposes only and is not medical advice. Talk to a qualified clinician before starting a supplement, especially if you have kidney disease, take prescription medication, or are pregnant.

What did the new creatine study find?

A team at Texas A&M's Exercise and Sport Nutrition Lab, with Jisun Chun as first author and Dr. Richard Kreider as senior author, enrolled 73 healthy, sedentary adults aged 45–65. Of those, 64 finished the 12 weeks (average age 54.5; 40 women and 24 men). The results were published in the Journal of the International Society of Sports Nutrition in August 2026.

Participants first chose whether to join an exercise and diet program. Within each choice, they were then randomly assigned, double-blind, to creatine or a placebo. That gave four groups:

Group Finished Exercise and diet Daily supplement
No exercise + placebo 13 None Placebo (maltodextrin)
No exercise + creatine 13 None 10 g creatine monohydrate
Exercise + placebo 18 Supervised resistance and aerobic training 3x/week, 10,000 steps on other days, 300–500 calorie/day deficit Placebo (maltodextrin)
Exercise + creatine 20 Same as above 10 g creatine monohydrate

Body composition was measured with DXA scans, alongside strength, muscular endurance, fitness, blood markers, and a battery of cognitive tests at the start, at six weeks, and at 12 weeks.

What the researchers reported after 12 weeks:

  • Creatine without exercise: about 1.1 kg (2.4 lb) more lean tissue, significantly more than either placebo group, which saw essentially no change. Leg press and bench press 1RM (one-rep max) also increased.
  • Creatine with exercise and diet: about 1.3 kg (2.8 lb) more lean tissue while dieting. Body fat percentage fell 3.2 percentage points, compared with 1.9 in the exercise-and-placebo group. Leg press and bench press strength gains were larger than with exercise and placebo.
  • Cognition: creatine improved some memory and reaction-time tasks, such as word recall and word recognition, but had no effect on others, including the Stroop test and the Corsi block task.
  • Blood markers: HbA1c (a longer-term blood sugar marker) fell and some blood lipids improved in the no-exercise creatine group. The authors describe these as exploratory.
  • Side effects: creatine was well tolerated, with no clinically significant difference in reported side effects.

How to read the results

The authors describe the context for their findings in the paper itself:

  • Group size. 64 people completed the study, with 13–20 per group. The authors note this is larger than most earlier creatine studies of these outcomes; larger trials would help confirm the results.
  • Length. Twelve weeks shows short-term effects. Longer studies would show whether the changes continue.
  • Design. Participants chose whether to join the exercise program, and creatine versus placebo was then randomized and double-blind within each choice. This lets the study compare creatine with placebo under both conditions.
  • Exploratory outcomes. The study measured many cognitive and blood markers. The authors present these individual results as exploratory and recommend confirming them in studies designed specifically for each outcome.
  • Funding and disclosures. The study was funded by a gift from the WoodNext Foundation. AlzChem, a creatine manufacturer, provided the supplements and funded one blood assay; the paper states the sponsors weren't involved in data collection, analysis, or interpretation. The paper also discloses that Dr. Kreider chairs AlzChem's Scientific Advisory Board.

How much creatine did the study use?

The study used 10 grams per day, taken as two 5 g doses. The researchers chose a higher dose partly because some evidence suggests more may be needed to affect the brain. That's about double the most commonly recommended maintenance dose of 3–5 grams per day, or roughly 0.1 g per kg of body weight.

Some protocols start with a "loading phase" of about 20 grams per day (5 g four times a day) for 5–7 days. Loading fills muscle creatine stores faster; 3–5 grams a day gets there over roughly 3–4 weeks. The study wasn't designed to compare doses, so it doesn't tell us whether 10 grams works better than 3–5.

Can creatine build muscle without lifting?

Creatine increased lean mass even without exercise in this study. To understand that result, it helps to know what "lean mass" means on a DXA scan.

A DXA scan splits your body into fat, bone, and "lean tissue." Lean tissue is everything else, including muscle, organs, and water, and a DXA scan can't tell water apart from muscle protein.

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Creatine is osmotically active: as muscle takes it up, some water follows. Water retention is the most commonly reported effect of creatine, mainly in the first several days. Studies lasting several weeks are mixed on whether total body water stays higher.

So the 1.1 kg gained without exercise likely reflects some combination of water and muscle, and a DXA scan can't show the split. Future studies using other measurement methods could separate the two. Building muscle itself is most reliably driven by resistance training.

The practical point: if you start creatine, a small increase in scale weight early on is common and isn't a sign you're gaining fat. For a realistic sense of how fast muscle can actually be built, see the natural muscle gain calculator.

How creatine works

Creatine is a fast energy reserve

About 95% of the body's creatine is stored in skeletal muscle, around two-thirds of it as phosphocreatine. When muscles break down ATP for energy, phosphocreatine helps rebuild it quickly, which matters most during maximal efforts like a heavy set of squats. Supplementing raises muscle creatine and phosphocreatine stores, giving you a larger reserve for repeated high-intensity efforts.

Does your body make creatine?

Yes, and in a way most articles skip. Your body makes creatine mainly in the liver and kidneys, in two steps:

  1. An enzyme called AGAT combines two amino acids, arginine and glycine, into guanidinoacetate.
  2. A second enzyme, GAMT, adds a methyl group (supplied via the amino acid methionine), turning guanidinoacetate into creatine.

This is a significant metabolic job. Creatine synthesis uses around 40% of the methyl groups supplied by the body's main methyl donor, and roughly 20–30% of arginine's amidino groups (the nitrogen-containing part of arginine that becomes part of creatine).

In people who eat meat and fish, about half of the creatine the body needs each day comes from food, and the rest is made by the body. Vegetarians have to make nearly all of theirs, tend to have lower muscle creatine stores, and may see larger increases in muscle creatine from supplementing.

So if your body makes it, why supplement? A normal diet leaves muscle creatine stores roughly 60–80% full. Supplementing can raise muscle creatine and phosphocreatine by about 20–40%.

Why creatine helps during resistance training

A bigger energy reserve can help you sustain high-intensity work. Over weeks, more work across your sets means a stronger signal for your body to adapt.

That's why creatine combined with resistance training has consistently been reported to increase muscle mass more than training alone, in both younger and older adults. It supports hypertrophy (muscle growth) by helping you do more of the work that causes it. The supplement makes more training possible; the training is what makes you stronger. The principles behind that are covered in Progressive Overload 101.

Can creatine help preserve muscle while losing weight?

This is one of the study's more useful findings. The exercise-and-creatine group was eating 300–500 calories a day below maintenance, yet gained lean tissue and had a larger drop in body fat percentage than the exercise-and-placebo group. The authors say this is the first study to show that effect during an exercise and weight-loss program.

One possible explanation is training quality: hard training is harder in a calorie deficit, and creatine may help you hold onto performance. Larger trials would help confirm the result, and as above, part of the lean tissue gain may be water.

One more detail: participants averaged only about 0.94 g of protein per kg of body weight per day. The authors called that relatively low for people doing resistance training and suggested future studies test creatine alongside more protein.

The foundations of keeping muscle during a cut haven't changed:

  • Keep strength training, and keep trying to progress.
  • Eat enough protein. The protein calculator gives a starting target.
  • Use a modest deficit rather than an aggressive one.

Creatine may be a reasonable addition to those basics. It isn't a substitute for them. To see how your lean mass compares with typical ranges, try the fat-free mass index calculator.

Does creatine help the brain?

The brain uses creatine for energy too, which is why researchers have been testing it for memory and thinking.

In this study, creatine improved some memory and reaction-time tasks but not several others, and the authors called the cognitive findings exploratory.

The broader evidence is promising but not settled:

  • A 2026 systematic review in Nutrition Reviews found that five of six studies in adults aged 55 and older reported a positive link between creatine and cognition, particularly memory and attention. But three of the six studies were rated poor quality, and the authors called for better trials.
  • A 2024 meta-analysis of 16 randomized trials found benefits for memory, attention time, and processing speed, but not for overall cognitive function or executive function.
  • In 2024, the European Food Safety Authority evaluated a proposed health claim that creatine improves cognitive function and concluded that a cause-and-effect link hadn't been established. A working-memory benefit seen in two studies at 20 g/day for 5–7 days wasn't seen at lower doses (2.2–14 g/day) or at 5 g/day taken for six weeks.

A fair summary: creatine may help some aspects of memory, especially in older adults, but it isn't a reliable brain supplement yet. If you take it, take it for training, and treat any cognitive benefit as a possible bonus.

Does creatine hurt your kidneys?

Most of the concern comes from a misunderstanding about creatinine.

Your body breaks down creatine into creatinine, which healthy kidneys filter out. Doctors measure creatinine in your blood to estimate how well your kidneys filter, a number called eGFR. Taking creatine can raise blood creatinine, which lowers eGFR even when the kidneys are filtering normally.

This study shows exactly that:

  • In the no-exercise creatine group, blood creatinine rose 6–8% (less than 0.1 mg/dL), and eGFR fell 5–7%.
  • In the exercise-and-creatine group, creatinine rose 16–18% (less than 0.16 mg/dL), and eGFR fell 14–20%.
  • Even in the exercise-and-creatine group, creatinine stayed below 1.0 mg/dL and eGFR stayed above 60 mL/min/1.73 m², within normal clinical ranges.

The study didn't measure cystatin C, a kidney marker that isn't derived from creatine, or directly measured kidney filtration. The authors caution that the eGFR drop shouldn't be read as evidence that the kidneys were filtering less.

The broader evidence points the same way:

  • The International Society of Sports Nutrition's 2017 position stand concluded that creatine is safe and well tolerated in healthy people, including in studies up to 30 g/day for five years.
  • A 2021 review of common creatine misconceptions concluded that more than 20 years of research shows no adverse effects on kidney health at recommended doses.
  • A 2025 analysis of 685 clinical trials found side effects reported by 4.60% of people taking creatine and 4.21% taking placebo, a difference that wasn't statistically significant, across 35 side effects evaluated.

These findings apply to healthy people and don't guarantee safety for everyone. If you have kidney disease or reduced kidney function, speak with your doctor before taking creatine. If you already take it, tell your doctor before blood work so a raised creatinine isn't misread. Your doctor can decide whether a test that doesn't depend on creatinine, such as cystatin C, makes sense.

What should lifters take away from this study?

  • Creatine is one of the few supplements with a deep evidence base for strength training. This study adds new data for adults in midlife, including during weight loss.
  • More isn't clearly better. The study used 10 g/day; the most commonly recommended maintenance dose is 3–5 g/day. Check with a clinician about what's right for you.
  • Expect a little early weight gain. Water that follows creatine into muscle can add to the scale. Judge progress by your lifts, not the scale alone.
  • Training is still the main driver. Adding weight or reps over time, as covered in progressive overload for beginners, is what builds strength and muscle. Creatine helps you do a bit more of that work.
  • Responses vary. Some lifters notice a clear change in performance and some notice little. That's not universal either way.

A practical way to see whether creatine helps you is your training log. Compare reps and loads at similar effort in the weeks before and after you start. Bazu (also on Google Play) tracks your PRs (personal records) and estimated 1RM for free, and Bazu Pro adds progressive overload recommendations for your next session.

Conclusion

The new Texas A&M study adds useful data on creatine for adults in midlife. It found gains in lean mass and strength with and without exercise, a larger drop in body fat percentage when creatine was paired with training and a calorie deficit, and early signals for memory and some health markers. The authors present the cognitive and blood-marker findings as a starting point for further research.

The bigger picture is unchanged: creatine is a well-studied, generally safe supplement that may help you train a little harder. Getting stronger still comes from the training itself.

References

Waleed S.

Waleed S.

Founder of Bazu · 10+ years strength training

I'm the builder and user of Bazu. I've been lifting for over 10 years across strength and hypertrophy work, and I built Bazu to make progress simpler for serious lifters — every feature is designed around how real training actually works.

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