Hada Labo Softening & Exfoliating Face Wash (Jojoba Beads)

HADA LABO

Hada Labo Softening & Exfoliating Face Wash (Jojoba Beads)

Hada Labo Softening & Exfoliating Face Wash (Jojoba Beads)

HADA LABO

hada-labo-softening-exfoliating-face-wash-jojoba-beads

Cleanse

10084707533093

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
Environment
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How It Fits Into Your Skincare Routine

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Highlights

WHAT IS IT?

Face Wash with jojoba beads for exfoliation

FEATURES

Softening, Exfoliating, Contains Hyaluronic Acid, Salvia Sclarea Extract, Biodegradable Jojoba Beads

BEST FOR

sensitive

CHECKS

Not Available

Who Is It For?

What Does It Help With?

Cleanses Hydrates Exfoliates

Budget

Affordable (under $30)

How To Use

Which routine should it be used in?

Morning
Evening
 
Cleanse
Tone
Eyecare
Serum
Moisturize
Suncare
 

Instructions:

Key Information

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

What HADA LABO Says

Product Description:

Exfoliate and live eco-friendly. This wash thoroughly cleanses, hydrates and exfoliates with Hyaluronic Acid, Salvia Sclarea Extract and biodegradable Jojoba Beads.

About the Brand:

HADA LABO has perfected the art of hydration through their signature hyaluronic acid technology, creating formulations that deliver deep, lasting moisture without heaviness or greasiness. This Japanese brand's approach to hydration is both simple and sophisticated โ€“ they focus on different molecular weights of hyaluronic acid to target various skin layers, ensuring comprehensive moisture that improves both skin health and appearance.

Ingredients Overview

Ingredients List

Water, Glycerin, Lauric Acid, Stearic Acid, Potassium Hydroxide, Butylene Glycol, Palmitic Acid, Glycol Distearate, Cocamidopropyl Betaine, Acrylates Copolymer, Cocamide DEA, Sodium Laureth Sulfate, Jojoba Esters, Sodium Chloride, Dipropylene Glycol, Disteardimonium Hectorite, Polyquaternium-7, Hydroxyacetophenone, 1,2-Hexanediol, Disodium EDTA, Sodium Benzoate,Isopentyldiol, Caprylyl Glycol, Sodium Hyaluronate, Sodium Acetylated Hyaluronate, Propanediol, Salvia Sclarea (Clary) Extract, Potassium Sorbate

Key Ingredients

Hyaluronic Acid, Salvia Sclarea Extract, Jojoba Beads

Ingredients Details

1-2-hexanediol

Common Name(s): 1-2-hexanediol,cosmetic active,functional ingredient

CAS Number: N/a

DESCRIPTION

What It Does: Delivers characteristic cosmetic function at recommended use concentration.

Why It's Used: Selected for functional contribution and formulation compatibility supported by cosmetic science and regulatory safety data.

How It Works: Works through the mechanism of its molecular class โ€” physicochemical or biological interaction with skin proteins, lipids, or receptors as documented in peer-reviewed cosmetic literature.

Typically Found In: Skin care formulations

TECHNICAL DETAILS

Primary Category: Active ingredient โ€“ cosmetic active

Secondary Functions: Skin conditioning

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: Conditional

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

1-2-hexanediol has an established safety and efficacy profile within the cosmetic regulatory framework at standard use concentrations.

Last Verified: Cosing database,1-2-hexanediol technical literature

Primary Sources: 2026-03-12

Acrylates Copolymer

Common Name(s): Acrylic copolymer,carbopol ez,flexible film former

CAS Number: 25133-97-5

DESCRIPTION

What It Does: Provides versatile acrylic film formation and thickening across broad ph range.

Why It's Used: Versatile workhorse polymer for film formation and thickening across diverse cosmetic product types from acidic aha serums to alkaline cleansers.

How It Works: Copolymer of acrylic acid and methacrylic acid esters. thickens via polymer chain entanglement and electrostatic repulsion. film formation from chain entanglement on water evaporation. broad ph stability from balanced acid/neutral monomer composition.

Typically Found In: Serums,lotions,sunscreens โ€” versatile across formulation types

TECHNICAL DETAILS

Primary Category: Functional ingredient โ€“ acrylic film former

Secondary Functions: Skin conditioning

Application Areas:

Facial Skincare

Body Care

Hair Care

Beard Care

Color Cosmetics (Makeup)

Dietary/Oral Supplements

Typical Concentration Range: 0.1%โ€“3%

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

Acrylates copolymers' broad ph thickening stability (vs carbomer's ph-sensitive thickening, requiring neutralisation for viscosity) enables thickening of acidic aha serums (ph 3-4) without neutralisation โ€” maintaining the low ph required for aha efficacy while providing viscosity control. this acid-stable thickening is impossible with conventional carbomers.

Last Verified: Cosing database,cir safety assessment

Primary Sources: 2026-03-12

Butylene Glycol

Common Name(s): 1,3-butanediol,bg,1,3-butylene glycol

CAS Number: 107-88-0

DESCRIPTION

What It Does: Provides humectant hydration and active ingredient solubilization with excellent skin feel.

Why It's Used: Preferred glycol humectant in premium and k-beauty formulations for superior skin feel vs propylene glycol with equivalent functionality.

How It Works: Two hydroxyl groups at 1,3-positions provide water binding and solvent activity. better tolerated than propylene glycol with minimal sensitization risk. 4-carbon backbone provides slightly greater hydrophobic character enabling dissolution of less polar actives vs pg.

Typically Found In: Toners,essences,serums,k-beauty formulas

TECHNICAL DETAILS

Primary Category: Functional ingredient โ€“ glycol 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: 1%โ€“10%

SOURCING & ETHICS

Vegan Status: Yes โ€“ synthetic

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

K-beauty's preference for butylene glycol over propylene glycol is driven by two factors: bg's superior skin feel (less tacky than pg's higher viscosity) and its lower sensitization potential (1,3-bg has better spatial distribution of hydroxyl groups that reduces protein interaction vs pg's 1,2-position oh groups).

Last Verified: Cosing database,cir safety assessment

Primary Sources: 2026-03-12

Caprylyl Glycol

Common Name(s): 1,2-octanediol,octanediol,sensiva sc 50

CAS Number: 1117-86-8

DESCRIPTION

What It Does: Provides the most potent antimicrobial diol activity alongside skin feel enhancement.

Why It's Used: Premium antimicrobial diol โ€” caprylyl glycol's c8 chain provides the strongest membrane-disrupting antimicrobial activity of common diol preservative boosters with unique skin-feel enhancement.

How It Works: C8 1,2-diol: c8 chain length provides strongest bacterial and fungal membrane disruption of common diols. emollient skin feel improvement from c8 chain length interaction with skin surface. active at lower concentrations than shorter-chain diols. synergistic with ethylhexylglycerin.

Typically Found In: Natural preservation systems,skin feel enhancement

TECHNICAL DETAILS

Primary Category: Functional ingredient โ€“ antimicrobial humectant

Secondary Functions: Skin conditioning

Application Areas:

Facial Skincare

Body Care

Hair Care

Beard Care

Color Cosmetics (Makeup)

Dietary/Oral Supplements

Typical Concentration Range: 0.1%โ€“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

Caprylyl glycol's antimicrobial potency follows the chain-length dependent membrane activity of fatty acids: c8 is the optimal chain length for membrane disruption (same as caprylic acid's antimicrobial optimum), providing maximum membrane integration without the skin sensitisation associated with longer chain lengths. this chain-length pharmacophore relationship is why c8 > c6 > c5 in diol antimicrobial potency despite identical head group chemistry.

Last Verified: Cosing database,schรผlke sensiva sc 50 technical data,cir safety assessment

Primary Sources: 2026-03-12