Nutrition per ~30 g · 2 tbsp
103kcal
Protein0.6 g
Carbs1.1 g
Fat10.7 g
Fiber0 g
Vitamins
Vitamin A123 mcg14%
Riboflavin56.4 mcg4%
Pantothenic Acid0.15 mg3%
Vitamin D0.48 mcg2%
Vitamin E0.28 mg2%
Thiamin9.7 mcg1%
Vitamin K0.72 mcg1%
Vitamin B69.3 mcg1%
Folate1.2 mcg0%
Vitamin C0.18 mg0%
Niacin18.4 mcg0%
Minerals & other
Selenium0.90 mcg2%
Calcium18.4 mg1%
Phosphorus17.1 mg1%
Choline5.0 mg1%
Potassium29.1 mg1%
Zinc66.9 mcg1%
Magnesium1.8 mg0%
Sodium6.2 mg0%
Saturated Fat6.1 g—
Monounsaturated Fat2.2 g—
Cholesterol30.9 mg—
Omega60.22 mg—
Polyunsaturated Fat0.47 g—
Trans Fat0.37 g—
Bioactives estimated
Choline~45 mg
Representative amounts for this food, not measured for this item. Real content varies widely by variety, ripeness and storage.
What drives the score weighted inputs
Nutrient density7.4/35Vitamins and minerals relative to calories — the single biggest driver.
Protein quality5.0/15How much protein it delivers, by absolute grams and per calorie.
Bioactives7.7/15Polyphenols, flavonoids and other beneficial plant compounds.
Fiber0.0/10Dietary fiber for gut health, satiety and steadier blood sugar.
Healthy fats0.0/10Fat quality — unsaturated against saturated, and trans-fat free.
Glycemic impact10.0/10Low sugar with a high fiber-to-carb ratio scores best.
These are the scored components, not a sum: the published score also reflects normalisation across the catalog, so the parts above will not add to 20.
Less a 3.0 anti-nutrient penalty (very high saturated fat).
What it feeds primary sources only
Systems
ImmuneBrainSleepCardioEnergyMuscleBonesLongevityHormonesSkinStressLiverKidneyEyesReproductiveJoints
Pathways
MethylationAntioxidantATP / MitoBoneThyroidCollagenNeurotransmitterDetoxGlucoseHematopoiesisLipidsMembranesClottingHPA AxisGlycolysisβ-OxidationKetogenesisNAD⁺mTORAMPKUrea CycleDopamineSerotoninSteroidogenesisVitamin D ActivationInsulin Signaling
Overview
Cream is produced by skimming the fatty layer from whole milk and has been a staple in culinary traditions across Europe and beyond for centuries. Per 100g, cream delivers 35.6g of fat (primarily saturated), along with 103mg of cholesterol and meaningful quantities of fat-soluble vitamins K2 and A. While high in saturated fat, emerging research suggests whole-fat dairy may have a more nuanced metabolic profile than previously believed. Butyric acid, a short-chain fatty acid abundant in cream, acts as a histone deacetylase inhibitor and fuels colonocytes, potentially supporting gut barrier integrity. The conjugated linoleic acid (CLA) in grass-fed cream shows promise for metabolic health in preliminary studies. For longevity optimization, cream's primary value lies in its fat-soluble vitamin density and potential prebiotic effects when consumed in moderation, particularly from grass-fed sources. Portion control remains essential given caloric density; cream functions best as a nutrient-dense supplement to meals rather than a primary food.
Health benefits 5
Supports fat-soluble vitamin absorption and provides vitamin K2 for bone and vascular healthstrong
Cream's high fat content enhances absorption of vitamins A, D, E, and K from other foods and provides 2.4 mcg of vitamin K2 per 100g, which activates osteocalcin for bone mineralization and matrix Gla protein for arterial elasticity
Butyric acid supports gut barrier function and reduces intestinal inflammationmoderate
Butyric acid, a short-chain fatty acid from milk fat fermentation, serves as the primary fuel for colonocytes and activates GPR43/GPR109A signaling pathways that strengthen tight junction proteins and reduce LPS translocation
May support satiety and stable blood glucose when consumed with whole foodsmoderate
Cream's high fat and protein density slows gastric emptying and reduces postprandial glucose spikes through delayed carbohydrate absorption, supporting insulin sensitivity over time
Provides conjugated linoleic acid (CLA) associated with metabolic flexibility in grass-fed sourcesemerging
Grass-fed cream contains elevated CLA levels that may enhance mitochondrial fat oxidation and reduce adipose tissue inflammation through PPARγ activation
Delivers bioavailable choline and phospholipids for cognitive and hepatic functionmoderate
Cream contains phosphatidylcholine and other phospholipids critical for myelin synthesis, synaptic plasticity, and hepatic methylation pathways essential for neurotransmitter production
Pairs with
- Pair with berries (blueberries, raspberries) because anthocyanins are fat-soluble and enhance absorption via cream's lipid matrix, while reducing oxidative stress from saturated fat
- Combine with leafy greens (spinach, kale) because fat-soluble vitamins K, A, and E in greens require dietary fat for optimal absorption; cream provides the lipophilic vehicle
- Mix with coffee or tea because polyphenols (EGCG, chlorogenic acid) show improved bioavailability with fat, and cream buffers caffeine absorption for sustained energy without cortisol spikes
- Add to bone broth because fat enhances absorption of collagen-derived amino acids (glycine, proline) and facilitates formation of micelles for fat-soluble nutrient assimilation
- Pair with turmeric in warm beverages because fat increases curcumin bioavailability by 2000%, and black pepper (piperine) further enhances absorption through inhibition of glucuronidation
In the kitchen
- Choose grass-fed or pastured cream when possible—research shows grass-fed dairy has 5x higher CLA and better omega-3 to omega-6 ratios compared to grain-fed sources
- Store cream in glass containers away from light to prevent oxidation of fat-soluble vitamins; properly sealed cream keeps 1-2 weeks refrigerated or several months frozen
- Use cream as a nutrient-amplifier: add 1-2 tablespoons to smoothies, soups, or tea rather than consuming larger quantities neat; this maximizes vitamin absorption from other foods while managing caloric density
- If sourcing, look for 'heavy cream' or 'double cream' (35-40% fat) over whipping cream; higher fat content concentrates bioactive compounds and reduces added thickeners
- Consume within meals containing carbohydrates or fiber rather than in isolation to moderate glucose response and optimize satiety signaling through cholecystokinin (CCK) release
When to eat it midday
Midday consumption with meals provides sustained energy and satiety throughout afternoon, supports nutrient absorption from lunch components, and allows adequate digestion before evening. Avoid consuming large amounts late in evening when fat digestion slows with circadian rhythm changes in bile acid secretion.
Breaks a fast
Best avoided
- First thing upon waking on empty stomach—fat delays gastric emptying and may impair nutrient absorption from breakfast if consumed without food
Small amounts (1 tbsp) of heavy cream in coffee during fasting may preserve ketosis without significantly breaking fast, but this depends on individual metabolic response and fasting protocol goals