Comedogenic rating scale: where the 0-5 numbers come from

The comedogenic rating scale is a 0-5 score attached to individual cosmetic ingredients, never to finished products. It came out of a rabbit-ear assay used in dermatology labs from the 1970s onward, and no regulator anywhere certifies it: every published rating table is a private compilation with an author and a cut-off date.

This page sets out where the numbers came from, what the assay could and could not observe, why the same ingredient can score 5 in one column and 1 in another, and what the reference behind this site’s own checker actually contains.

What a 0-5 rating is recording

A comedogenic rating records how much follicular plugging one ingredient produced in a standardised skin assay, graded from 0 to 5. It is a laboratory observation about a single material, tested largely on its own and usually near full strength. It is not a measurement of a finished formula on a human face.

RatingWhat the assay recordedHow to read it against a label
0No follicular reaction beyond the untreated controlThe material was tested and nothing was seen; shea butter and argan oil sit in this band
1-2Slight reactionFatty alcohols and several light emollients; the least discriminating part of the scale
3Moderate reactionWhere most plant oils in this site’s reference land
4-5Marked reaction near the top of the scaleMostly esters and solid butters tested neat, with the in-formula proportion unknown

The scale is ordinal, not proportional. A 4 is not twice a 2, and nothing in the underlying data supports averaging the ratings of an ingredient list into a single product score, which is why the pore-clogging ingredients checker prints each rating beside its match instead of summing them.

Where the 0-5 scale came from

The scale has a traceable research lineage, and knowing it explains most of its limits. It was built to screen raw materials quickly and cheaply, in an animal model chosen for speed, before anyone expected the resulting numbers to be read by consumers holding a moisturiser in a shop aisle.

1972 — acne cosmetica is named

Kligman and Mills describe in Archives of Dermatology a pattern of low-grade closed comedones on the faces of adult women using cosmetics. Naming the pattern created the demand for a screen that could test raw materials one at a time.

The rabbit ear becomes the screening model

Test material is applied to the inner surface of an albino rabbit ear for roughly two weeks, after which the tissue is examined for follicular keratosis and graded 0 to 5. The model was chosen because the follicles react quickly and the test is inexpensive.

1982 — a human model is published

Mills and Kligman describe an assay on human upper-back skin read by follicular biopsy: slower, costlier and far closer to the site people actually worry about. Most rating tables in circulation were never rebuilt on it.

1989 — Fulton’s tables enter general circulation

James Fulton publishes comedogenicity and irritancy scores ingredient by ingredient in the Journal of the Society of Cosmetic Chemists. Copied and re-copied since, those tables are the ancestor of nearly every pore-clogging list online, including the reference used here.

Why the rabbit ear reports more than a human face

The rabbit ear assay over-reports relative to human facial skin because the follicles of the rabbit’s external ear are unusually reactive: materials that produce visible follicular keratosis there frequently produce nothing measurable on human skin. The model was built for sensitivity, so it errs toward flagging, and a screening test that errs toward flagging is not a prediction.

Sensitivity was the point. A screen is supposed to catch candidates and hand them to a slower method, and the slower method — biopsy of human back follicles — was applied to only a fraction of the materials that now carry a number. The number survived; the second stage largely did not.

A comedogenic rating is the output of a screening assay, not a forecast about a face. It tells you a material was worth a second look, and in most cases the second look was never funded.

Concentration moves the number more than the ingredient does

Concentration is the variable the scale leaves out, and it is usually the largest one. The same material tested neat and tested at a few percent in a carrier can land four grades apart, so a rating copied from a table describes a test condition nobody’s bathroom shelf reproduces.

4-5 → ~1

Acetylated lanolin alcohol rates 4 to 5 at full strength and around 1 at 2.5 percent in propylene glycol — same material, same assay, different dilutionLabelPeek pore-clogging reference, 2026

Ingredient lists are ordered by descending proportion down to one percent, after which the order carries no information at all. An ester rated 5 sitting twenty-fourth on a label is a different proposition from the same ester sitting third, and no rating table can distinguish the two. That is a limit of the scale, not a defect of any particular list.

It also explains a recurring argument. Coconut oil is rated 4 and isopropyl myristate is rated 5 in the reference below, yet both appear in products that many people use without incident, because the tested condition and the shelf condition are not the same condition.

Nobody certifies a comedogenic list

There is no FDA, EU or global organisation that certifies or regulates comedogenic ingredient lists. No agency issues one, approves one, or audits the ones in circulation. Ingredient naming is standardised — the EU published the current glossary of common ingredient names as Implementing Decision (EU) 2022/677 — but no annex of any such document assigns a comedogenic rating.

What is regulated

Ingredient names and label order. That is why the same material can be matched reliably across brands, and why a membership check is a verifiable claim.

What is not regulated

The ratings themselves. Every 0-5 table is a private compilation: someone chose the source studies, someone resolved the conflicts, and usually nobody dated the result.

What follows for you

Published lists disagree, and comparing two of them tells you about their compilers. Ask which list a checker uses, and when that list was last revised.

The practical test for any pore-clogging tool is therefore not how confident its verdict sounds but how much of its own working it shows. A checker that names the tables it summarises, prints the list in full on the same page and stamps it with a revision date is making a claim you can audit in a minute. A checker that returns a clean bill of health without saying how many names it managed to read is making a claim about your product out of a gap in its own vocabulary.

The reference this site publishes

The pore-clogging reference behind the checker on this site holds 88 entries, of which 86 carry a rating of 1 or higher and appear in the printed table below. It is a summary of published comedogenicity tables, kept as names and ratings only, with a version date shown wherever a result is produced.

86

ingredients rated 1 or higher in the published reference, list version 2026-08-10; 29 of them are rated 4 and 17 are rated 5LabelPeek pore-clogging reference, 2026

Two entries rated 0 are retained deliberately rather than deleted. Argan oil and shea butter are widely assumed to be pore-clogging and are rated 0 on the tables this reference draws from, so keeping them in the data at 0 means the checker returns nothing for them. Dropping the entries would leave the same silence with no record of why, and a tool that quietly omits the popular myths cannot be checked against the myth.

When a comedogenic number is the wrong tool

A comedogenic rating is the wrong tool whenever the question is about a specific finished product on specific skin. The scale ranks isolated materials under laboratory conditions; it has nothing to say about concentration, formulation, how long a product sits on skin, or the difference between comedones and other kinds of bump.

Screening an ingredient list against a published reference

Paste a label, see which names appear on a dated list and which do not, and read the individual ratings rather than a composite score. The check is a membership claim, and the list sits on the same page for verification.

Best for Narrowing a shortlist before you buy, and building a shared vocabulary for what to eliminate.

Where it falls short It says nothing about a finished product on your skin, cannot see concentration, and any trade name or truncated name on the label is a gap it must report rather than resolve.

Trialling one product at a time on your own skin

Introduce a single new product, hold the rest of the routine fixed, and give it four to eight weeks — roughly the interval over which a comedo becomes visible. Slow, unglamorous, and the only method that tests the actual formula.

Best for Deciding about a product you already own, or resolving a disagreement no list can settle.

The other common mismatch is diagnostic. Small uniform papules across the forehead, chest or back often belong to Malassezia folliculitis rather than comedonal acne, and comedogenic ratings are silent on that question because it turns on fatty-acid chain length instead of follicular plugging. The fungal acne safe checker applies a stated rule for that, and the rule is written out on the page.

Nothing here is medical advice, and this site publishes no verdict on any named brand’s product. Persistent or painful breakouts belong with a dermatologist, who can separate comedonal acne, folliculitis and rosacea — three things an ingredient list cannot tell apart.

The full reference, printed with its version date

Below is every ingredient the pore-clogging checker can flag, with its 0-5 rating and its job in a formula, sorted alphabetically. The version date belongs to the list rather than to this article: when the reference changes, the date above the table changes with it.

86 ingredients, list version 2026-08-10. Rating 0–5 as published; 0-rated entries such as shea butter and argan oil are held in the reference but never flagged.

IngredientRatingWhat it does in a formula
Acetylated Lanolin4/5Lanolin-derived emollient.
Acetylated Lanolin Alcohol4/5Emollient and thickener.
Algae Extract5/5Plant extract used as a humectant.
Algin4/5Thickener from brown seaweed.
Almond Oil2/5Plant oil emollient.
Apricot Kernel Oil2/5Plant oil emollient.
Avocado Oil3/5Plant oil emollient.
Benzaldehyde1/5Fragrance component.
Butyl Stearate3/5Emollient that adds slip.
Ceteareth-204/5Non-ionic emulsifier.
Cetearyl Alcohol + Ceteareth-204/5Emulsifying pair used in creams.
Cetyl Acetate4/5Emollient.
Cetyl Alcohol2/5Fatty alcohol: thickener and co-emulsifier.
Chondrus Crispus5/5Red seaweed extract used as a thickener.
Cocoa Butter4/5Solid plant butter used as an emollient.
Coconut Butter4/5Solid coconut butter.
Coconut Oil4/5Plant oil emollient.
Colloidal Sulfur3/5Active used against breakouts.
Corn Oil3/5Plant oil emollient.
Cotton Seed Oil3/5Plant oil emollient.
D & C Red3/5A family of colourants for colour cosmetics.
Decyl Oleate3/5Emollient.
Dioctyl Succinate3/5Emollient.
Disodium Monooleamido Sulfosuccinate3/5Mild surfactant.
Ethylhexyl Palmitate4/5Emollient and solvent for UV filters.
Evening Primrose Oil2/5Plant oil emollient.
Glyceryl Stearate SE3/5Self-emulsifying emulsifier.
Glyceryl-3 Diisostearate4/5Emulsifier for anhydrous formulas.
Hexylene Glycol2/5Solvent and stabiliser.
Hydrogenated Vegetable Oil3/5Solid fat used as an emollient.
Isocetyl Alcohol4/5Branched fatty alcohol emollient.
Isocetyl Stearate5/5Emollient.
Isodecyl Oleate4/5Emollient.
Isopropyl Isostearate5/5Emollient.
Isopropyl Linoleate5/5Emollient.
Isopropyl Myristate5/5Light emollient that cuts greasiness in a texture.
Isopropyl Palmitate4/5Emollient.
Isostearic Acid4/5Fatty acid emollient.
Isostearyl Isostearate5/5Emollient.
Isostearyl Neopentanoate4/5Emollient.
Laminaria Digitata Extract5/5Brown seaweed extract.
Lanolin2/5Occlusive emollient of animal origin.
Laureth-233/5Non-ionic emulsifier.
Laureth-45/5Non-ionic emulsifier.
Lauric Acid4/5Fatty acid.
Linseed Oil4/5Plant oil emollient.
Marula Oil3/5Plant oil emollient.
Mink Oil3/5Emollient of animal origin.
Myristic Acid3/5Fatty acid.
Myristyl Lactate4/5Emollient.
Myristyl Myristate5/5Emollient and thickener.
Octyl Stearate5/5Emollient.
Oleth-35/5Non-ionic emulsifier.
Oleyl Alcohol4/5Unsaturated fatty alcohol.
Olive Oil2/5Plant oil emollient.
Palm Oil4/5Plant oil emollient.
Peach Kernel Oil2/5Plant oil emollient.
Peanut Oil2/5Plant oil emollient.
PEG 100 Distearate3/5Emulsifier.
PEG 16 Lanolin4/5Water-soluble lanolin derivative.
PEG 200 Dilaurate3/5Emulsifier.
PEG 8 Stearate3/5Emulsifier.
PG Monostearate3/5Emulsifier.
Polyglyceryl-3 Diisostearate4/5Emulsifier for anhydrous formulas.
Potassium Chloride5/5Viscosity regulator and electrolyte.
Ppg 2 Myristyl Propionate4/5Emollient.
Red Algae5/5Seaweed extract.
Rose Hip Oil1/5Plant oil emollient.
Sesame Oil2/5Plant oil emollient.
Sodium Chloride5/5Thickener for surfactant systems.
Sodium Laureth Sulfate3/5Anionic surfactant.
Sodium Lauryl Sulfate5/5Anionic surfactant.
Solulan 164/5Lanolin derivative.
Sorbitan Oleate3/5Emulsifier.
Soybean Oil3/5Plant oil emollient.
Steareth-104/5Non-ionic emulsifier.
Steareth-202/5Non-ionic emulsifier.
Stearic Acid2/5Fatty acid, also a thickener.
Stearyl Heptanoate4/5Emollient.
Sulfated Castor Oil3/5Water-soluble castor oil derivative.
Sulfated Jojoba Oil3/5Jojoba derivative.
Syearyl Heptanoate4/5Emollient.
Talc1/5Mineral filler in colour cosmetics.
Wheat Germ Glyceride3/5Emollient.
Wheat Germ Oil5/5Plant oil emollient.
Xylene4/5Solvent (almost never seen in skincare).

Common questions

Who came up with the comedogenic rating scale
The comedogenic rating scale grew out of dermatology research by Albert Kligman and James Fulton. Kligman and Mills described acne cosmetica in Archives of Dermatology in 1972, and Fulton published ingredient-by-ingredient scores in the Journal of the Society of Cosmetic Chemists in 1989. Those tables are the ancestor of most lists circulating today.
Should I avoid every ingredient rated 4 or 5
A rating of 4 or 5 describes an ingredient tested at or near full strength in an animal assay, not the proportion used in a finished formula. Acetylated lanolin alcohol scores 4 to 5 neat and around 1 at 2.5 percent in propylene glycol. Treat a high number as a candidate for elimination testing, not a verdict.
Does the FDA regulate comedogenic ingredient lists
No regulator certifies comedogenic ingredient lists. Neither the FDA, the European Commission nor any global body issues, approves or audits one, so every published list is a private compilation with an author, a method and a cut-off date. That is why two careful lists can score the same ingredient differently.
Is shea butter comedogenic on this scale
Shea butter is rated 0 on the published comedogenicity tables this site draws on, and the entry is retained in the reference at that rating rather than deleted. Keeping the zero visible means the checker never flags shea butter, which is exactly why the entry is held rather than dropped, since the tool should not confirm a popular assumption.
How current is the comedogenic list on this page
The pore-clogging reference printed on this page carries version date 2026-08-10 and holds 86 ingredients rated 1 or higher, sorted alphabetically. The version date sits directly above the table so anyone can tell which edition of the list a result came from, and when the wording last changed.

Sources

Every factual claim on this page that can be checked against a document is listed here with the document it comes from.

  1. Acne cosmeticaArchives of Dermatology 1972;106(6):843-50 — PubMed (PMID 4264346) · pubmed.ncbi.nlm.nih.govThat Kligman and Mills named acne cosmetica in Archives of Dermatology in 1972, the event the timeline on this page dates.
  2. Comedogenicity of current therapeutic products, cosmetics, and ingredients in the rabbit earJournal of the American Academy of Dermatology 1984;10(1):96-105 — PubMed (PMID 6229554) · pubmed.ncbi.nlm.nih.govThat Fulton and colleagues graded cosmetic and therapeutic ingredients for comedogenicity in the rabbit ear assay, and that isopropyl myristate and lanolin derivatives were among the materials flagged there.
  3. A human model for assessing comedogenic substancesArchives of Dermatology 1982;118(11):903-5 — PubMed (PMID 7138047) · pubmed.ncbi.nlm.nih.govThat Mills and Kligman published a human upper-back follicular-biopsy model in 1982, and that the rabbit ear model is the more sensitive of the two — the basis for this page saying the rabbit assay over-reports relative to human skin.
  4. 21 CFR 701.3 — Designation of ingredientseCFR · ecfr.govThat US cosmetic labels must declare ingredient names in descending order of predominance, and that ingredients at not more than 1 percent may be listed without respect to order — the regulated part of a label, as against the unregulated 0-5 ratings.