Protein Powder (unsweetened)

Protein Powder (unsweetened)

Concentrated protein source for shakes, breakfast and baking

Other

Whey protein concentrate/isolate or plant protein concentrate

Origin: Modern supplement, developed in the 1950s for sports nutrition

#supplement#high-protein#muscle-building#post-workout#recovery

✔ High protein✔ Low fat✔ Low sugar

What is this ingredient?

Protein powder is a concentrated ingredient made by isolating protein from milk whey, casein, soy, pea, rice or hemp. Production techniques such as membrane filtration and ion exchange often raise the protein content to 70-90%, while part of the carbohydrates and fats is removed. The result is a practical powder for shakes, oatmeal, yogurt, pancakes and other recipes where extra protein is desired.

## Protein and training

Protein contributes to the growth and maintenance of muscle mass. In sports nutrition research, protein powder is often used because it is easy to dose precisely and quick to mix into a meal or shake. Morton et al. (2018) analyzed 49 studies with 1,863 participants and reported that protein supplementation during resistance training was associated with an average of 0.30 kg more fat-free mass than placebo. Whey is relatively rich in leucine (about 10-12 g per 100 g), an essential amino acid that receives substantial attention in muscle protein synthesis research.

## Dosing and timing

Many studies use servings of 20-40 g protein at a time, depending on body weight, total protein intake and training load. A post-workout shake is practical, but total daily protein intake is usually more important than one exact timing window. Casein is often chosen when a thicker, slower-digesting shake is desired; whey is more often used for a lighter shake that mixes quickly.

## Satiety and daily use

Protein-rich meals generally feel more filling than meals with little protein. Protein powder can therefore be useful in breakfast, snacks or smoothies when regular foods alone do not provide enough protein. Prefer an unsweetened version with a short ingredient list and check whether the source fits your dietary preferences: whey or casein for dairy-based options, or pea, rice, soy or hemp for plant-based options.

How does it taste?

Mild, lightly creamy and sometimes subtly malty; the flavor depends on source, processing and any added aromas.

Pairs well with:

Pairs well with bananapeanut butteroatmealcacaostrawberries and plant milk.

Did you know...?
  • Whey protein powder was once a by-product of cheese production that was often discarded.
  • The first commercial protein powders did not appear until the 1950s.

Nutritional Value & Energy

Per 100g

Protein Powder (unsweetened) provides energy thanks to natural nutrients .

375 kcal (1569 kJ)
1g Fiber

80gProtein
8gCarbs
3gFat
4gSugar

Per 100g

Minerals

2.0mg Iron 600mg Calcium 4.0mg Zinc 50mg Magnesium 350mg Potassium 15mcg Iodine 20.0mcg Selenium

Vitamins

15mcg Vitamin A 1.00mg Vitamin B6 1.2mcg Vitamin B12 1mg Vitamin C 0.1mcg Vitamin D 0.5mg Vitamin E 1mcg Vitamin K 10mcg Folate

Omega-3 fatty acids

0mg DHA 0mg EPA
More nutrients

B-Vitamins

0.71mg Thiamin (B1) 0.86mg Riboflavin (B2) 10.0mg Niacin (B3) 0.06mg Pantothenic Acid (B5)

Trace Minerals

1.00mg Copper 0.01mg Manganese 643mg Phosphorus

What's in a serving?

1 serving

Calcium good 23%

Protein Powder (unsweetened) naturally contains calcium (600 mg per 100 g).

Iron a small amount 4%
Magnesium a small amount 4%
Potassium a little 5%

Protein Powder (unsweetened) naturally contains potassium (350 mg per 100 g).

Selenium a little 11%

Protein Powder (unsweetened) naturally contains selenium (20 mcg per 100 g).

Vitamin B12 a little 14%

Protein Powder (unsweetened) naturally contains vitamin B12 (1.2 mcg per 100 g).

Zinc a little 12%

Protein Powder (unsweetened) naturally contains zinc (4 mg per 100 g).

Iodine a small amount 3%

% of daily reference intake (DRI)

EU-approved nutrition claims
✔ EFSA claims via nutrients

This ingredient contains nutrients for which EFSA-authorized health claims exist (at nutrient level, not ingredient-specific).

Approved health claims (EU)

Vitamin_b12 EU 432/2012

Vitamin B12 contributes to the normal function of the immune system

Contains 1.2mcg/100g (threshold: ≥0.375mcg/100g)

Vitamin_b12 EU 432/2012

Vitamin B12 contributes to the reduction of tiredness and fatigue

Contains 1.2mcg/100g (threshold: ≥0.375mcg/100g)

Vitamin_b12 EU 432/2012

Vitamin B12 contributes to the normal functioning of the nervous system

Contains 1.2mcg/100g (threshold: ≥0.375mcg/100g)

Zinc EU 432/2012

Zinc contributes to the normal function of the immune system

Contains 4mg/100g (threshold: ≥1.5mg/100g)

Zinc EU 432/2012

Zinc contributes to the maintenance of normal skin

Contains 4mg/100g (threshold: ≥1.5mg/100g)

Calcium EU 432/2012

Calcium is needed for the maintenance of normal bones

Contains 600mg/100g (threshold: ≥120mg/100g)

Potassium EU 432/2012

Potassium contributes to the maintenance of normal blood pressure

Contains 350mg/100g (threshold: ≥300mg/100g)

Vitamin_b12 EU 432/2012

Vitamin B12 contributes to normal energy-yielding metabolism

Contains 1.2mcg/100g (threshold: ≥0.375mcg/100g)

Vitamin_b12 EU 432/2012

Vitamin B12 contributes to normal homocysteine metabolism

Contains 1.2mcg/100g (threshold: ≥0.375mcg/100g)

Vitamin_b12 EU 432/2012

Vitamin B12 contributes to normal psychological function

Contains 1.2mcg/100g (threshold: ≥0.375mcg/100g)

Vitamin_b12 EU 432/2012

Vitamin B12 contributes to normal red blood cell formation

Contains 1.2mcg/100g (threshold: ≥0.375mcg/100g)

Vitamin_b12 EU 432/2012

Vitamin B12 has a role in the process of cell division

Contains 1.2mcg/100g (threshold: ≥0.375mcg/100g)

Calcium EU 432/2012

Calcium is needed for the maintenance of normal teeth

Contains 600mg/100g (threshold: ≥120mg/100g)

Calcium EU 432/2012

Calcium contributes to normal blood clotting

Contains 600mg/100g (threshold: ≥120mg/100g)

Calcium EU 432/2012

Calcium contributes to normal energy-yielding metabolism

Contains 600mg/100g (threshold: ≥120mg/100g)

Calcium EU 432/2012

Calcium contributes to normal muscle function

Contains 600mg/100g (threshold: ≥120mg/100g)

Calcium EU 432/2012

Calcium contributes to normal neurotransmission

Contains 600mg/100g (threshold: ≥120mg/100g)

Calcium EU 432/2012

Calcium contributes to the normal function of digestive enzymes

Contains 600mg/100g (threshold: ≥120mg/100g)

Calcium EU 432/2012

Calcium has a role in the process of cell division and specialisation

Contains 600mg/100g (threshold: ≥120mg/100g)

Zinc EU 432/2012

Zinc contributes to normal acid-base metabolism

Contains 4mg/100g (threshold: ≥1.5mg/100g)

Zinc EU 432/2012

Zinc contributes to normal carbohydrate metabolism

Contains 4mg/100g (threshold: ≥1.5mg/100g)

Zinc EU 432/2012

Zinc contributes to normal cognitive function

Contains 4mg/100g (threshold: ≥1.5mg/100g)

Zinc EU 432/2012

Zinc contributes to normal DNA synthesis

Contains 4mg/100g (threshold: ≥1.5mg/100g)

Zinc EU 432/2012

Zinc contributes to normal fertility and reproduction

Contains 4mg/100g (threshold: ≥1.5mg/100g)

Zinc EU 432/2012

Zinc contributes to normal macronutrient metabolism

Contains 4mg/100g (threshold: ≥1.5mg/100g)

Zinc EU 432/2012

Zinc contributes to normal metabolism of fatty acids

Contains 4mg/100g (threshold: ≥1.5mg/100g)

Zinc EU 432/2012

Zinc contributes to normal metabolism of vitamin A

Contains 4mg/100g (threshold: ≥1.5mg/100g)

Zinc EU 432/2012

Zinc contributes to normal protein synthesis

Contains 4mg/100g (threshold: ≥1.5mg/100g)

Zinc EU 432/2012

Zinc contributes to the maintenance of normal bones

Contains 4mg/100g (threshold: ≥1.5mg/100g)

Zinc EU 432/2012

Zinc contributes to the maintenance of normal hair

Contains 4mg/100g (threshold: ≥1.5mg/100g)

Zinc EU 432/2012

Zinc contributes to the maintenance of normal nails

Contains 4mg/100g (threshold: ≥1.5mg/100g)

Zinc EU 432/2012

Zinc contributes to the maintenance of normal testosterone levels in the blood

Contains 4mg/100g (threshold: ≥1.5mg/100g)

Zinc EU 432/2012

Zinc contributes to the maintenance of normal vision

Contains 4mg/100g (threshold: ≥1.5mg/100g)

Zinc EU 432/2012

Zinc contributes to the protection of cells from oxidative stress

Contains 4mg/100g (threshold: ≥1.5mg/100g)

Zinc EU 432/2012

Zinc has a role in the process of cell division

Contains 4mg/100g (threshold: ≥1.5mg/100g)

Selenium EU 432/2012

Selenium contributes to the maintenance of normal hair

Contains 20mcg/100g (threshold: ≥8.25mcg/100g)

Selenium EU 432/2012

Selenium contributes to the maintenance of normal nails

Contains 20mcg/100g (threshold: ≥8.25mcg/100g)

Selenium EU 432/2012

Selenium contributes to the normal function of the immune system

Contains 20mcg/100g (threshold: ≥8.25mcg/100g)

Selenium EU 432/2012

Selenium contributes to normal thyroid function

Contains 20mcg/100g (threshold: ≥8.25mcg/100g)

Selenium EU 432/2012

Selenium contributes to normal spermatogenesis

Contains 20mcg/100g (threshold: ≥8.25mcg/100g)

Selenium EU 432/2012

Selenium contributes to the protection of cells from oxidative stress

Contains 20mcg/100g (threshold: ≥8.25mcg/100g)

Potassium EU 432/2012

Potassium contributes to normal functioning of the nervous system

Contains 350mg/100g (threshold: ≥300mg/100g)

Potassium EU 432/2012

Potassium contributes to normal muscle function

Contains 350mg/100g (threshold: ≥300mg/100g)

Comparison

vsmelk

Protein Powder (unsweetened) contains about 5× more calcium per 100 g than milk.

What's being researched?
Other

Protein powder and muscle protein synthesis

Protein powder is widely studied in research on muscle protein synthesis, resistance training and post-exercise recovery. Dosage, protein source and total daily protein intake remain important research topics.

Supported by: [1] Morton RW (2018) , [4] Res PT (2012) , [5] Macnaughton LS (2016)

Good Combinations (Synergy)

Combine protein powder (unsweetened) smartly to enhance the effect:

Complementary
Protein Powder (unsweetened) Protein Powder (unsweetened) Banana Banana

Fast protein + fast carbs for post-workout recovery

Technical: Whey protein powder contains 80g protein per 100g with high leucine content (10g/100g) that activates the mTOR pathway for maximum muscle protein synthesis (MPS). Banana provides 22g fast carbohydrates per 100g that stimulate insulin response. Post-workout is the anabolic window (0-2 hours) when insulin maximally promotes amino acid transport to muscles. The potassium in banana (358mg/100g) replenishes electrolytes lost through sweat.

What does this mean for you? A protein shake with banana right after your workout is the golden standard for good reason. The protein repairs muscles, banana drives amino acids to muscles via insulin, and potassium prevents cramps.

Complementary
Protein Powder (unsweetened) Protein Powder (unsweetened) Chia Seeds Chia Seeds

Leucine muscle synthesis + omega-3 bioactive support = complementary post-workout recovery

Leucine activates mTOR muscle protein synthesis, omega-3 ALA inhibits post-exercise COX-2 inflammation

Technical: Protein powder (whey) contains 10-12% leucine — the primary trigger for mTOR-mediated muscle protein synthesis after training. Chia seed provides 17.8g omega-3 ALA per 100g that modulates COX-2 mediated signaling pathways via EPA/DHA conversion. Post-workout, both muscle repair (anabolic) and signaling pathway management are needed — leucine and omega-3 address both needs complementarily.

What does this mean for you? Add chia seeds to your protein shake after working out. The protein repairs your muscles while the omega-3 fatty acids modulate the training response — recovery on two fronts.

Complementary
Protein Powder (unsweetened) Protein Powder (unsweetened) Oatmeal Oatmeal

Fast protein + slow carbs for sustained muscle building

Technical: Protein powder (whey) absorbs quickly (30-60 min) reaching peak amino acid levels in blood. Oats provide complex carbohydrates (66g/100g) that digest slowly (GI 55) and gradually raise insulin. This creates an extended anabolic response: the fast amino acid peak from whey triggers MPS, the slow insulin from oats maintains amino acid transport to muscles longer. Beta-glucans (4g/100g) slow gastric emptying and extend the absorption period.

What does this mean for you? Proats (protein + oats) is the ideal breakfast for muscle building. The protein immediately starts muscle repair, while oats provide hours of fuel without a sugar dip.

Recipes with Protein Powder (unsweetened)

Discover delicious recipes featuring protein powder (unsweetened):

Avocado Spinach Muscle Builder Shake 5 min Creamy green shake with 650 calories for post-workout 546 kcal 28g protein 1 synergies Blueberry Walnut Smoothie 5 min Fruity smoothie with blueberries, walnuts, spinach and flaxseed 359 kcal 19g protein 1 synergies Date Banana Mass Shake 15 min Hearty shake with dates, oats, almond butter and cinnamon 724 kcal 36g protein 1 synergies Turmeric Ginger Cherry Smoothie 5 min Spiced smoothie with turmeric, ginger, tart cherries and pineapple 362 kcal 16g protein 2 synergies Maca Chocolate Smoothie with Flaxseed 5 min Creamy smoothie with Peruvian maca, cacao and dates 397 kcal 21g protein 1 synergies Peanut Butter Oat Power Shake 10 min Thick, nutritious shake with peanut butter, oats, banana and cinnamon 662 kcal 36g protein 1 synergies
In the Kitchen

Storage

Location:Pantry

Preparation

Mix 1 scoop (25-30 g) with 250-300 ml liquid, such as water, milk or plant milk. Use a shaker or blender for a smooth consistency. You can also stir it into smoothies, oatmeal, yogurt, pancakes or baking recipes. Avoid very high temperatures above 200°C if you want to keep a soft texture.

Substitutes

griekse-yoghurt 1:3 Lower protein content, but creamy and ready to use.
kwark 1:3 Whole dairy source with mild flavor and creamy texture.

Smart preparation

1First mix protein powder with a small amount of liquid to form a smooth paste.

Why?

This gives fewer lumps when you add the rest of the liquid afterwards.

2Add protein powder to pancake batter for a higher-protein version.

3Use a shaker or blender for the smoothest consistency.

Caution / Warnings

Protein Powder (unsweetened) is very safe, but there are scientific considerations:

Kidney disease and reduced kidney function Severe

In existing kidney disease, very high protein intake may add extra load because protein breakdown products are excreted through the kidneys.

Advice:

With chronic kidney disease or reduced eGFR: discuss safe protein intake with a doctor or nephrologist and monitor relevant blood values.

Dairy allergy and lactose intolerance (whey/casein) Severe

Whey and casein come from milk. Depending on the type, they may contain lactose and milk proteins.

Advice:

With dairy allergy: choose a fully plant-based protein powder. With lactose intolerance, whey isolate may sometimes suit better, but test a small amount first.

Liver disorders Moderate

In advanced liver problems, processing large amounts of protein may require individualized medical guidance.

Advice:

With liver cirrhosis or hepatic encephalopathy: discuss amount, timing and type of protein with a doctor or hepatologist.

Levodopa (Parkinson medication) Moderate

Large protein portions may affect levodopa absorption because amino acids compete for the same transporters.

Advice:

Do not take protein powder close to levodopa without guidance. Discuss timing and protein distribution through the day with your doctor or neurologist.

Summary

Protein powder is a practical, concentrated protein source with about 80 g protein per 100 g. Protein contributes to the growth and maintenance of muscle mass. Whey mixes lightly and quickly, casein makes a thicker shake, and plant-based options such as pea, rice, soy or hemp suit vegan use. Mix 20-40 g per shake with water, milk or plant milk.

Scientific Sources [1] Morton RW, Murphy KT, McKellar SR, et al. (2018) A systematic review, meta-analysis and meta-regression of the effect of protein supplementation on resistance training-induced gains in muscle mass and strength in healthy adults British Journal of Sports Medicine Research on protein supplementation during resistance training and changes in muscle mass and strength Meta-analysis PMID: 28698222 [2] Meijer AJ, Lorin S, Blommaart EF, et al. (2015) Regulation of autophagy by amino acids and MTOR-dependent signal transduction. Amino acids Research on leucine and the regulation of mTOR by amino acids Review PMID: 24880909 [3] Westerterp-Plantenga MS, Lemmens SG, Westerterp KR (2012) Protein intake and energy balance Physiology & Behavior Research on protein intake, energy balance and satiety Review PMID: 23107521 [4] Res PT, Groen B, Pennings B, et al. (2012) Protein ingestion before sleep improves postexercise overnight recovery Medicine and Science in Sports and Exercise Research on protein ingestion before sleep and post-exercise recovery Review PMID: 22330017 [5] Macnaughton LS, Wardle SL, Witard OC, et al. (2016) The response of muscle protein synthesis following whole-body resistance exercise is greater following 40 g than 20 g of ingested whey protein Physiological Reports Research on 20 g versus 40 g whey protein after whole-body resistance exercise Review PMID: 27511985 [6] Paddon-Jones D, Westman E, Mattes RD, et al. (2008) Dietary protein - its role in satiety, energetics, weight loss and health British Journal of Nutrition Research on protein, satiety, energy expenditure and weight management Review PMID: 18469287 [7] West DWD, Abou Sawan S, Mazzulla M, et al. (2017) Whey Protein Supplementation Enhances Whole Body Protein Metabolism and Performance Recovery after Resistance Exercise: A Double-Blind Crossover Study. Nutrients Research on whey protein, protein metabolism and recovery after resistance exercise Randomized trial PMID: 28696380

This information is intended for educational purposes and does not replace medical advice. Consult a doctor or dietitian for personal advice.