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Wondering if you are eating enough protein? A 210 lb man holding at maintenance training 5 or more days per week needs about 180 grams of protein per day, split across 4 meals of about 45g each. That number is anchored to lean mass, not total body weight.
TDEE: 3548 kcal (Very Active, hard exercise 6-7 days per week). Lean mass: 172 lbs. BMR: 2057 kcal (Katch-McArdle).
| Schedule | Protein per meal |
|---|---|
| 3 meals per day | 60g |
| 4 meals per day | 45g |
| 5 meals per day | 36g |
210 lb is where mature training populations land. The absolute protein numbers look large: 155 to 210 grams per day depending on goal and training. At that volume, meal timing becomes the planning bottleneck, not ingredient availability.
Per-meal protein at this weight comfortably clears the 30-gram threshold at four meals and the 40-gram threshold at three. The MPS signaling research consistently rewards this level of per-meal distribution, and the practical eating pattern is more flexible than most people assume when they see the total.
The pattern Andrew sees at 210 lb is training volume creep. Trainees at this weight often run more total weekly volume than their calorie target supports. If you are 210 lb, very active, in a 20% cut, and running five heavy lifting sessions plus three cardio sessions per week, the deficit is probably too aggressive for that training load. Reduce one or the other. The macro math assumes you are making realistic training decisions.
Maintenance is the phase most people think is the boring one. It is actually the one that determines whether any of your other phases stick.
Maintenance means calories match TDEE and body comp drifts quietly toward whatever your protein, training, and sleep habits are pointing at. If your habits are solid, you get leaner over months without trying. If they are shaky, you get softer the same way. The phase reveals what your underlying routine actually does when it is not being forced one direction by a deficit or a surplus.
We use the same protein target as bulking (2.3 g/kg lean mass) because the muscle-preservation case does not disappear when calories stop moving. Fat stays at 30% of calories, carbs fill the rest. You have the most flexibility here. You can afford a weekend restaurant meal, a high-carb training day, a low-carb travel day, and the phase absorbs the variance.
The mistake Andrew sees most often during maintenance is people stop weighing their food because "I know what I eat." Two weeks later the protein is 40 grams under target because chicken breasts are bigger than they used to be, or the yogurt portion doubled. Recalibrate one week per quarter. Weigh everything for seven days. Adjust. That is the whole maintenance discipline.
The male version of the protein math starts from a higher average lean mass assumption. We use 18% body fat as the default for moderate training status, which means the lean-mass anchor for the protein calculation includes more muscle tissue than the equivalent female page. Your absolute protein number is higher because your lean mass is higher, not because male physiology asks for a different gram-per-kilogram ratio.
Testosterone's role in the muscle-protein-synthesis ceiling matters here. Higher natural testosterone supports a higher MPS rate per meal, which is why the classic "30g per meal" rule-of-thumb often fits male trainees comfortably at three to four meals a day. Schoenfeld and Aragon's 2018 review on per-meal distribution supports 0.4 g/kg body weight per meal as a functional ceiling, which for a 180 lb male lands near 32 grams per meal (Schoenfeld and Aragon, 2018, JISSN). We show you four-meal and five-meal splits so you can pick the pattern that fits your schedule without over-engineering a single mealtime.
Andrew watches male trainees under-eat protein more often than women do, especially at sedentary or moderate training levels. The assumption is "I'm not lifting heavy, I don't need it." The assumption is wrong. Lean mass preservation is not contingent on whether you had a gym session today.
Very active means 5 to 7 training sessions per week, competitive sport, endurance training, physically demanding work, or any combination that keeps the body under significant load most days. Activity multiplier is 1.725x BMR, and for some endurance athletes even that is conservative.
The protein number on a very-active page is larger in absolute grams, but we still calibrate to 2.6 or 2.3 g/kg lean mass depending on goal. Going substantially higher does not produce more muscle in resistance-trained populations, per Morton's 2018 meta-analysis in BJSM. Endurance athletes in a large energy deficit may need slightly more protein to protect muscle, per Bandegan 2017 in the Journal of Nutrition. The gap is small; the number we show you covers it.
Andrew has seen more very-active trainees under-eat calories than under-eat protein. The training drives hunger, they reach for protein shakes and lean chicken, and their total calorie intake drifts 300 to 500 kcal below what their training demands. Energy availability tanks, recovery collapses, sleep fractures. The protein number looks fine on paper but the body cannot use it because there is not enough total fuel for basic recovery. If you are very active and running a cut, check your calorie number carefully before you chase protein. The calorie floor matters as much as the protein ceiling.
If you train twice a day or compete, talk to a performance dietitian in addition to using this calculator. Our numbers are a defensible starting point, not a prescription.
Maintenance is the phase most people skip and most programs ignore. It is also the phase where body composition quietly changes for the better or worse over the long run. Your job at maintenance is not to force progress, it is to defend it.
We use Andrew Menechian's framework. Calories match TDEE. Protein lands at 2.3 grams per kilogram of lean body mass, the same number we use for bulking. Phillips and Van Loon's 2011 review in the Journal of Sports Sciences laid out the case that active adults benefit from protein intakes of 1.3 to 1.8 g/kg body weight across training years, which lines up with our LBM-anchored 2.3 g/kg target for a typical lean trainee (Phillips and Van Loon, 2011, J Sports Sci). The ISSN 2017 position stand puts the range at 1.4 to 2.0 g/kg body weight for exercising individuals (Jäger et al, 2017, JISSN); we sit at the upper end because the cost of slightly too much protein is nothing and the cost of slightly too little is measurable in recovery quality.
Fat sits at 30% of calories, carbs fill the rest. This is the most forgiving macro distribution we give you. Maintenance is where the body can absorb day-to-day variance without breaking the plan. Miss a protein meal on a Saturday at a restaurant, catch it back the next day, and the phase continues. That flexibility is what makes maintenance sustainable for years.
The common mistake Andrew sees with users in maintenance is underestimating how much protein they actually eat. They log "one chicken breast" without weighing it and the entry is low by 50%, or they skip tracking on weekends and drift for two days. Two weeks of that and the scale moves down or stays flat while muscle quietly softens. The fix is simple: weigh protein sources for one week every quarter. Recalibrate. Continue.
Schoenfeld and Aragon's 2018 review on per-meal protein distribution is worth reading during maintenance specifically because meal timing becomes your lever when you are not driving change through calorie manipulation (Schoenfeld and Aragon, 2018, JISSN). Three solid meals spaced four to six hours apart with 30 to 50 grams of protein each is the low-friction version. Four meals is the version that shows up in better body comp over the long run.
Antonio's 2015 one-year crossover in trained males confirms that sustained high-protein intakes produce no adverse markers in healthy populations (Antonio et al, 2015, J Nutr Metab). The worry that maintenance-level protein at 2.3 g/kg lean mass is "too much" is a holdover from the 1989 RDA era and has not survived the research of the last two decades.
This is educational, not medical advice. If you have kidney disease, liver disease, are pregnant, or take medications affecting protein metabolism, talk to your doctor before changing your intake.
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Someone running a first cut wrote, "I keep waking up starving at 3 a.m., what gives." Under-eating protein during the day is a common cause. Protein suppresses ghrelin and holds satiety longer than carbs or fat, which is why a higher-protein cut feels less punishing than a balanced-macro cut at the same calories. Put the number at 2.6 g/kg LBM and test whether the 3 a.m. hunger sorts itself out within a week.
Mayo Clinic's protein guidance is accurate for the population it was written for: the general adult public, most of whom are sedentary and most of whom are not trying to preserve or build muscle. For that audience, the RDA-anchored numbers Mayo cites are a reasonable starting point.
They are not the right numbers for someone who lifts three times a week and wants to hold muscle through a cut. Mayo's framing treats protein primarily as a nutritional requirement to meet, not as a performance variable to calibrate. That framing is medically safe and functionally incomplete for anyone reading this calculator.
The research has moved. Phillips and Van Loon's 2011 review, the ISSN 2017 position stand, Morton's 2018 BJSM meta-analysis, and Helms' 2014 evidence-based review for natural bodybuilding all point at targets substantially higher than the Mayo-cited RDA. Our calculator is built on that research. If your protein question is "am I getting enough for basic health," Mayo answers that. If your question is "am I getting enough to protect or build muscle while training," we answer that.
Reviewed by Andrew Menechian, Head of Fitness at FitCommit. Last updated 2026-04-24.
Indefinitely, for most people. Antonio's 2015 one-year crossover study in trained males found no adverse health markers at sustained intakes near 3.4 g/kg body weight (Antonio et al, 2015, J Nutr Metab). The ISSN 2017 position stand's review of longer-term data reached the same conclusion for healthy adults (Jäger et al, 2017, JISSN). A "high-protein" diet at 2.3 to 2.6 g/kg lean mass is not a cycle or a phase. It is the sustainable input level for anyone training with weights. This assumes you are healthy. If you have kidney disease, liver disease, or are pregnant, check with your doctor before sustaining intakes above 1.2 g/kg body weight.
Not necessary. Protein powder is a convenience tool, not a requirement. Whole foods like chicken, fish, eggs, Greek yogurt, cottage cheese, lean beef, tofu, and lentils can cover any daily target. Where powder helps: when your schedule does not allow a real meal, when you struggle to hit 30 to 40 grams in the first meal of the day, or when you are traveling. Morton's 2018 meta-analysis found that protein source (whole food vs supplement) had no significant effect on hypertrophy outcomes once total intake matched (Morton et al, 2018, BJSM). Use powder when it solves a logistics problem. Do not treat it as magic.
More, not less. Older adults lose muscle faster per unit of protein, a phenomenon called anabolic resistance. Research consensus now supports intakes of 1.2 to 1.6 g/kg body weight for adults over 50, which maps to roughly 2.3 to 2.8 g/kg lean body mass for a typical body composition. The ISSN 2017 position stand explicitly notes that older adults benefit from the upper end of the recommended range (Jäger et al, 2017, JISSN). Combine that with two to three resistance training sessions per week. Protein without training stalls. Training without protein stalls. This is educational, not medical advice. Check with your doctor if you have kidney concerns before raising intake.
Protein needs rise during pregnancy, particularly in the second and third trimesters, but the upper limit and optimal level are not well defined for high-intake athletic targets. The standard clinical guidance is roughly 1.1 g/kg body weight during pregnancy, up from the non-pregnant RDA of 0.8 g/kg. Whether 2.3 or 2.6 g/kg lean mass is safe during pregnancy has not been adequately studied and should not be assumed from non-pregnant data. This is not medical advice. Pregnancy changes kidney filtration, hormonal metabolism, and nutrient partitioning in ways a general calculator cannot account for. Talk to your OB or a registered dietitian before using any high-protein calculator output during pregnancy or while breastfeeding.
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Full macros for this profile
Protein + carbs + fat breakdown