Atoderm Shower Gel

Bioderma

Atoderm Shower Gel

Atoderm Shower Gel

Bioderma

atoderm-shower-gel

Body care

9706827284773

Morning or Evening?

Morning
Evening
Both

How often will you use this product?

Everyday
Every other day
Every 3 days
Every 4 days
Every 5 days
Every 6 days
Once a week
Twice a week
On specific days
As needed
On rotation

Notes

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Compatibility Score

0%

Microbiome
Ingredients
Biological
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How It Fits Into Your Skincare Routine

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Highlights

WHAT IS IT?

Cleansing gel with 25 ingredients

FEATURES

Soap-free, non-stripping, respects dry sensitive skin

BEST FOR

Dry, sensitive skin

CHECKS

Free of harsh chemicals, fragrances , alcohol

Who Is It For?

All Ages Women And Men

What Does It Help With?

Dry Skin Sensitive Skin

Budget

Affordable

How To Use

Which routine should it be used in?

Morning
Evening
 
Cleanse
Tone
Eyecare
Serum
Moisturize
Suncare
 

Instructions:

Apply on wet skin. Work into a foam. Rinse well. Gently dry. Then use a skincare product from the Atoderm range.

Key Information

Vegan
Cruelty-free
Sensitive-safe
Non-comedogenic
Hypoallergenic
Microbiome-safe
Preservative-free
Eco-friendly
Pregnancy-safe
Oil-free

What Bioderma Says

Product Description:

Soap-free, non-stripping cleansing gel that respects dry, sensitive skin.

About the Brand:

BIODERMA is a French skincare brand that takes a biological approach to dermocosmetics. Known for its innovative micellar water and range of products for sensitive skin, this brand focuses on enhancing the skin's natural abilities. Experience skincare that works in harmony with your skin's biology for optimal health and radiance.

Ingredients Overview

Ingredients List

AQUA/WATER/EAU, SODIUM LAURETH SULFATE, COCO-BETAINE, SODIUM LAUROYL SARCOSINATE, GLYCERIN, METHYLPROPANEDIOL, COCO-GLUCOSIDE, GLYCERYL OLEATE, DISODIUM EDTA, CITRIC ACID, CAPRYLOYL GLYCINE, COPPER SULFATE, XYLITYLGLUCOSIDE, ANHYDROXYLITOL, XYLITOL, NIACINAMIDE, GLUCOSE, FRUCTOOLIGOSACCHARIDES, MANNITOL, TOCOPHEROL, HYDROGENATED PALM GLYCERIDES CITRATE, LECITHIN, RHAMNOSE, ASCORBYL PALMITATE, FRAGRANCE (PARFUM). [BI 548]

Key Ingredients

Glycerin, Niacinamide, Xylitol

Ingredients Details

Citric Acid

Common Name(s): Lemon acid,2-hydroxypropane-1,2,3-tricarboxylic acid

CAS Number: 77-92-9

DESCRIPTION

What It Does: Adjusts ph to optimal ranges, chelates destabilizing metal ions, provides mild exfoliation at higher concentrations.

Why It's Used: Universal cosmetic ph adjuster and chelating agent. aha exfoliant activity is secondary.

How It Works: As ph adjuster, donates protons. as chelating agent, three carboxylic groups bind divalent metals (caยฒโบ, mgยฒโบ, feยฒโบ) preventing oxidative degradation.

Typically Found In: Nearly all cosmetic formulations,brightening products,exfoliants

TECHNICAL DETAILS

Primary Category: Active ingredient โ€“ alpha hydroxy acid (aha)

Secondary Functions: Chelating agent,ph adjustment,preservation enhancement

Application Areas:

Facial Skincare

Body Care

Hair Care

Beard Care

Color Cosmetics (Makeup)

Dietary/Oral Supplements

Typical Concentration Range: 0.1%โ€“10%

SOURCING & ETHICS

Vegan Status: Yes โ€“ synthetic or fermentation-derived

Halal Status: Yes

Source Notes: Produced by fermentation of sugars by aspergillus niger. gras (e330). most abundant organic acid in citrus.

SKIN COMPATIBILITY

Irritancy Rating: 1/5 โ€“ very low at low concentrations; 2/5 at exfoliant concentrations

Comedogenicity Rating: 0/5 โ€“ non-comedogenic

Sensitivity Concerns: Photosensitizing โ€“ mandatory spf use. start at low frequency.

Safe for Sensitive Skin: Use with caution โ€“ spf required

SAFETY & COMPATIBILITY

Safety Profile: Safe at otc concentrations. eu: โ‰ค10% leave-on at ph โ‰ฅ3.5. mandatory spf advisory.

Works Well With: Niacinamide,ceramides,hyaluronic acid,spf

Avoid Combining With: Retinol in same step; multiple exfoliants simultaneously

SCIENTIFIC NOTE

Three carboxylic acid groups provide multiple proton donation sites and stronger chelation than monocarboxylic ahas. this makes citric acid the preferred cosmetic chelating agent alongside edta.

Last Verified: Cosing database,cir safety assessment,ewg skin deep

Primary Sources: 2026-03-12

Coco-betaine

Common Name(s): Coco-betaine,inci ingredient,cosmetic active

CAS Number: N/a

DESCRIPTION

What It Does: Provides documented cosmetic activity from coco-betaine.

Why It's Used: Coco-betaine delivers formulation value through its specific biological activity and established safety and efficacy.

How It Works: Source: coco-betaine. mechanism: documented in cosmetic literature. safety: cosing-reviewed. standard cosmetic use concentrations.

Typically Found In: Skin care formulations,active products

TECHNICAL DETAILS

Primary Category: Functional ingredient โ€“ humectant

Secondary Functions: Tewl reduction,skin plumping

Application Areas:

Facial Skincare

Body Care

Hair Care

Beard Care

Color Cosmetics (Makeup)

Dietary/Oral Supplements

Typical Concentration Range: 0.1%โ€“5%

SOURCING & ETHICS

Vegan Status: Conditional

Halal Status: Yes

Source Notes: Synthetic or naturally derived. excellent aqueous solubility.

SKIN COMPATIBILITY

Irritancy Rating: 1/5 โ€“ very low

Comedogenicity Rating: 0/5 โ€“ non-comedogenic

Sensitivity Concerns: Non-irritating; suitable for all skin types.

Safe for Sensitive Skin: Yes

SAFETY & COMPATIBILITY

Safety Profile: Excellent safety profile. ewg score: 1.

Works Well With: Ceramides,emollients,occlusives,glycerin,hyaluronic acid

Avoid Combining With: No significant incompatibilities

SCIENTIFIC NOTE

Coco-betaine provides cosmetic activity through its characteristic mechanism. at standard concentrations it delivers documented biological activity with an established safety profile from cosmetic science literature and regulatory review.

Last Verified: Cosing database,coco-betaine technical literature

Primary Sources: 2026-03-12

Coco-glucoside

Common Name(s): Coconut glucoside,apg c8-c16

CAS Number: 68515-73-1

DESCRIPTION

What It Does: Provides gentle, natural-origin cleansing with good foam from mixed coconut chain alkyl glucosides.

Why It's Used: Widely used natural surfactant for green beauty formulations requiring good foam performance with natural-origin and mild credentials.

How It Works: Mixed c8-c16 fatty alcohol chain lengths from coconut provide broader foam stability than single-chain glucosides. non-ionic glucoside headgroup provides mildness. better detergency and rinsing than individual chain-length apgs due to mixed chain distribution.

Typically Found In: Natural shampoos,body washes,facial cleansers

TECHNICAL DETAILS

Primary Category: Functional ingredient โ€“ coconut alkyl glucoside

Secondary Functions: Skin conditioning

Application Areas:

Facial Skincare

Body Care

Hair Care

Beard Care

Color Cosmetics (Makeup)

Dietary/Oral Supplements

Typical Concentration Range: 2%โ€“20%

SOURCING & ETHICS

Vegan Status: Yes โ€“ from coconut fatty alcohols and glucose

Halal Status: Yes

Source Notes: Commercially produced for cosmetic use. verify vegan/halal status with supplier.

SKIN COMPATIBILITY

Irritancy Rating: 1/5 โ€“ very low

Comedogenicity Rating: 0/5 โ€“ non-comedogenic

Sensitivity Concerns: Well-tolerated by most skin types.

Safe for Sensitive Skin: Yes

SAFETY & COMPATIBILITY

Safety Profile: Good safety profile at recommended concentrations. ewg score: 1โ€“2.

Works Well With: Standard skincare actives

Avoid Combining With: No known significant incompatibilities

SCIENTIFIC NOTE

Coco-glucoside's natural chain length distribution (c8-c16) provides synergistic surfactant effects where different chain lengths optimize different properties: shorter chains provide initial foam burst, longer chains provide foam stability and soil removal, creating better overall performance than any single chain length alone.

Last Verified: Cosing database,cir safety assessment

Primary Sources: 2026-03-12

Disodium Edta

Common Name(s): Edathamil disodium,edta disodium,versene 100

CAS Number: 139-33-3

DESCRIPTION

What It Does: Provides metal ion chelation to prevent product degradation and boost preservative and antioxidant efficacy.

Why It's Used: The most essential stability ingredient in cosmetics โ€” disodium edta's metal chelation prevents rancidity, discoloration, and preservative failure caused by trace metal contamination in virtually all aqueous cosmetic formulations.

How It Works: Ethylenediaminetetraacetic acid provides six potential coordination sites for metal ions (aminodiacetate groups). chelates caยฒโบ, mgยฒโบ (stability), feยณโบ (fenton radical prevention), cuยฒโบ (oxidase inhibition). disrupts gram-negative bacterial outer membrane by chelating membrane calcium, enhancing preservative penetration.

Typically Found In: Virtually all aqueous cosmetics โ€” creams, lotions, shampoos, toners

TECHNICAL DETAILS

Primary Category: Functional ingredient โ€“ chelating agent

Secondary Functions: Skin conditioning

Application Areas:

Facial Skincare

Body Care

Hair Care

Beard Care

Color Cosmetics (Makeup)

Dietary/Oral Supplements

Typical Concentration Range: 0.005%โ€“0.1%

SOURCING & ETHICS

Vegan Status: Yes โ€“ synthetic

Halal Status: Yes

Source Notes: Commercially produced for cosmetic use. verify vegan/halal status with supplier.

SKIN COMPATIBILITY

Irritancy Rating: 1/5 โ€“ very low

Comedogenicity Rating: 0/5 โ€“ non-comedogenic

Sensitivity Concerns: Well-tolerated by most skin types.

Safe for Sensitive Skin: Yes

SAFETY & COMPATIBILITY

Safety Profile: Good safety profile at recommended concentrations. ewg score: 1โ€“2.

Works Well With: Standard skincare actives

Avoid Combining With: No known significant incompatibilities

SCIENTIFIC NOTE

Disodium edta's preservative potentiation against gram-negative bacteria is mechanistically elegant: gram-negative outer membranes contain lipopolysaccharide stabilised by calcium and magnesium bridges. edta chelates these metal ions, destabilising the lps layer and creating pores that allow hydrophobic preservatives (phenoxyethanol, parabens) to penetrate โ€” converting gram-negative-resistant preservatives into broad-spectrum ones.

Last Verified: Cosing database,cir safety assessment

Primary Sources: 2026-03-12