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🧴 Cosmetic Peptide Regulation

Since China's cosmetics industry entered the efficacy evaluation era, the filing compliance and efficacy claims of cosmetic peptide ingredients must satisfy the strict requirements of the "Cosmetic Supervision and Administration Regulation" (effective 2021) and its supporting rules. This chapter systematically outlines China's cosmetic peptide registration, safety assessment, and efficacy claim regulatory framework, with international comparisons.


1. NMPA Cosmetic Ingredient Filing System

Ingredient Type Management Method Regulatory Basis Filing Process Cycle
Listed in Inventory of Existing Ingredients Filing "Inventory of Existing Cosmetic Ingredients" (2021 Edition) Submit filing info → Submit safety assessment 3–6 months
New Ingredient (General) Filing "Cosmetic New Ingredient Registration and Filing Data Management Rules" Toxicology assessment → Filing → 3-year monitoring period 6–12 months
New Ingredient (High-Risk) Registration "Cosmetic New Ingredient Registration and Filing Data Management Rules" Registration approval → 5-year monitoring period 12–24 months

Importance of the Existing Inventory

Major cosmetic peptides such as Copper Tripeptide, Acetyl Hexapeptide-8, and Palmitoyl Pentapeptide-4 are included in the "Inventory of Existing Cosmetic Ingredients" (2021 Edition). Peptide ingredients within this inventory can be managed as general cosmetic ingredients through the filing system, without requiring new ingredient registration. However, if structural modifications fall outside the inventory scope, new ingredient management procedures apply.


2. Peptide Ingredients in the Inventory of Existing Cosmetic Ingredients (IESL)

The following table lists the major peptide ingredients included in the Inventory of Existing Cosmetic Ingredients (2021 Edition):

Chinese Name INCI Name Usage Limit Primary Function Filing Status
乙酰基六肽-8 Acetyl Hexapeptide-8 ≤10% Anti-wrinkle, Botox-like effect Existing
棕榈酰五肽-4 Palmitoyl Pentapeptide-4 ≤5% Anti-wrinkle, collagen synthesis promotion Existing
棕榈酰三肽-1 Palmitoyl Tripeptide-1 ≤5% Anti-wrinkle, repair Existing
棕榈酰四肽-7 Palmitoyl Tetrapeptide-7 ≤3% Anti-inflammatory, anti-aging Existing
铜肽(三肽-1铜) Copper Tripeptide-1 ≤1% Repair, antioxidant Existing
乙酰基四肽-2 Acetyl Tetrapeptide-2 ≤5% Anti-wrinkle, firming Existing
乙酰基二肽-1鲸蜡酯 Acetyl Dipeptide-1 Cetyl Ester ≤3% Anti-wrinkle Existing
乙酰基七肽-4 Acetyl Heptapeptide-4 ≤3% Anti-wrinkle Existing
乙酰基八肽-3 Acetyl Octapeptide-3 ≤5% Expression line reduction Existing
六肽-9 Hexapeptide-9 ≤5% Firming, lifting Existing
五肽-3 Pentapeptide-3 ≤5% Anti-wrinkle Existing
三肽-10瓜氨酸 Tripeptide-10 Citrulline ≤3% Repair, anti-inflammatory Existing
二肽-2 Dipeptide-2 ≤3% Firming Existing
棕榈酰六肽-12 Palmitoyl Hexapeptide-12 ≤5% Anti-aging, elastin synthesis Existing
乙酰基六肽-1 Acetyl Hexapeptide-1 ≤10% Anti-wrinkle Existing
肌肽 Carnosine ≤5% Antioxidant, anti-glycation Existing
乙酰基十肽-3 Acetyl Decapeptide-3 ≤5% Anti-wrinkle Existing

Inventory Usage Notes

Although peptide ingredients in the existing inventory can be used directly via filing, note that: - Usage concentration should not exceed the historical concentration listed in the inventory or the company's self-established safe usage level - If usage exceeds historical concentration, additional safety assessment data must be submitted - The inventory is periodically updated (last update: 2021 Edition; next edition expected end of 2025); watch for added or adjusted entries


3. Cosmetic Peptide Safety Assessment Requirements

Per the "Technical Guidelines for Cosmetic Safety Assessment" (2024 Edition), peptide-containing cosmetic products must submit the following:

Assessment Item Requirement Applicable Peptides Suggested Exemption Conditions
Ingredient Safety Information MSDS, COA, heavy metal/microbial testing All peptide ingredients Mandatory
Skin Irritation/Sensitization Human/animal skin irritation test All peptide-containing products Exempt if sufficient historical safe use data exists
Phototoxicity 3T3 NRU phototoxicity test Peptides with photosensitive groups Exempt if no UV absorption
Local Toxicity Skin irritation/allergy/phototoxicity tests All peptide-containing products
Systemic Toxicity Repeat-dose toxicity, reproductive toxicity, mutagenicity Highly permeable small-molecule peptides (MW <500 Da) Exempt if MW >500 Da or no transdermal evidence
Mutagenicity Ames test + chromosome aberration test Synthetic peptide ingredients Exempt if no structural alerts
Stability Accelerated study (40°C/6 months) All peptide products
Preservation Efficacy PET (Preservation Efficacy Test) Peptide formulations need antimicrobial system compatibility
Impurity Control Synthetic by-product (EPC/DPA) residue limits Chemically synthesized peptides Simplified if purity >99%
Transdermal Absorption Study Franz diffusion cell / human stratum corneum model Active ingredient safety evaluation Generally not required if MW >1,000 Da

Safety Assessment Report Writing Essentials

Safety Assessment Module Content Requirements Evidence Type Reference Standard
Ingredient Physicochemical Properties Molecular weight, solubility, LogP, pKa Literature/measured OECD guidelines
Toxicological Endpoints Acute toxicity, irritation, sensitization, phototoxicity Toxicology test reports CNAS-accredited lab
Systemic Toxicity Assessment MOE (Margin of Exposure) calculation Systemic exposure dose estimation SCCS guidelines
Impurity Toxicology EPC/DPA/residual solvents/heavy metals Impurity profile + toxicological threshold ICH Q3C/Q3D
Stability Assessment Chemical stability, microbiological stability Accelerated/long-term stability data Cosmetic stability guidelines
Risk Assessment Conclusion Safe use conditions, concentration, warnings Comprehensive assessment Safety assessment guidelines

4. Efficacy Claims and Evaluation Methods

Efficacy Category Permitted Claims Evaluation Method Testing Instruments / Method Subjects Evidence Level Required Est. Cost (¥10K)
Anti-Wrinkle Improves wrinkles, reduces fine lines Human efficacy evaluation VISIA-CR / skin fast imaging ≥30 High 15–25
Firming Improves skin elasticity, firmness Human efficacy evaluation Cutometer / elasticity test ≥30 High 10–20
Anti-Aging Delays skin aging Human + in vitro dual validation VISIA + collagen synthesis assay ≥30 High 25–40
Moisturizing Improves skin hydration Human efficacy evaluation Corneometer ≥30 Medium 5–10
Repair Repairs skin barrier Human efficacy evaluation TEWL test (Tewameter) ≥30 Medium-High 10–15
Anti-Inflammatory/Soothing Soothes sensitivity, reduces redness Human efficacy evaluation Erythema index (Mexameter) ≥30 Medium 8–15
Acne Treatment Reduces blackheads/acne Human efficacy evaluation Sebum measurement / VISIA ≥30 Medium-High 10–18
Antioxidant Resists oxidative damage In vitro + literature DPPH/ORAC method / cell assay N/A Medium-Low 3–8

Efficacy Evaluation Strategy Selection

Strategy Applicable Scenario Advantages Disadvantages
Human Efficacy Evaluation (Gold Standard) Anti-aging/anti-wrinkle/firming core claims Highest evidence level, strong compliance High cost (¥100K–400K), long cycle (3–6 months)
In Vitro Efficacy Evaluation Supporting claims / mechanism substantiation Low cost, short cycle Cannot serve as standalone efficacy evidence
Consumer Test (>50-person survey) Supporting claims / product storytelling Moderate cost, quantifiable Cannot replace human instrument testing
Literature Citation Known efficacy, well-established ingredients Zero cost Must verify literature relevance and timeliness

Efficacy Evaluation Strategy Recommendations

  1. Gold Standard: Anti-aging/anti-wrinkle products with peptides must complete human efficacy evaluation (at least 30 subjects) using quantitative instruments such as VISIA or Cutometer
  2. Alternative Path: Consumer tests (>50-person questionnaire) can support auxiliary claims but cannot replace human instrument testing
  3. In Vitro Data Support: Collagen synthesis quantity, MMP-1 inhibition rate, and other in vitro results can serve as mechanism substantiation
  4. Cost Optimization: Multi-peptide combination products can undergo single-formulation human evaluation, with multiple claims sharing evaluation data

5. Restricted / Monitored Peptide Ingredients

Ingredient Current Status Reason for Restriction Compliance Requirement
Snake Venom Mimetic Peptide (SYN-AKE) Under debate Some components not in the inventory Must register as new ingredient
High-Concentration Copper Peptide (>1%) Enhanced monitoring Excess copper ions may cause irritation Submit high-concentration safety assessment
Unlisted Synthetic Peptides Non-compliant Not in the existing inventory Requires new ingredient registration or filing
Botulinum Toxin Mimetic Peptides Enhanced oversight May affect neurotransmitter release Must register as new ingredient (high-risk category)

6. Peptide-Containing Cosmetic Registration Process

Ingredient Compliance Confirmation
Formulation Development (Peptide Compatibility Stability Testing)
Efficacy Evaluation (Human / In Vitro / Consumer Testing)
Safety Assessment Report (Toxicology + Formulation Safety)
Filing Submission (NMPA Filing Platform)
Post-Filing Supervision and Management (3-year monitoring period)
Phase Estimated Duration Key Milestones
Ingredient Assessment 1–2 months Confirm ingredient is in existing inventory
Formulation Development 2–4 months Stability/compatibility/preservation challenge testing
Efficacy Evaluation 3–6 months Human efficacy report is most time-consuming
Filing Approval 2–4 months NMPA formal review + filing certificate

7. International Cosmetic Peptide Regulation Comparison

Comparison Dimension China (NMPA) European Union (EU) United States (FDA)
Regulatory Framework Cosmetic Supervision and Administration Regulation (2021) EU Cosmetics Regulation 1223/2009 FD&C Act + MoCRA (2023 update)
Ingredient Management Existing inventory / new ingredient registration and filing Prohibited/restricted lists + active filing (CPNP) Voluntary registration (VCRP) + prohibited list
New Ingredient Evaluation Safety + efficacy + monitoring period Safety assessment report (CPSR) Safety assessment (company's own responsibility)
Efficacy Claim Management Strict (requires human efficacy evidence) Moderate (requires sufficient evidence, CE marking) Relaxed (no pre-approval, FTC oversight)
Special Peptide Requirements Peptides in existing inventory can be used directly Must ensure record in CosIng database Generally Recognized as Safe (GRAS) or NMI
Safety Assessment Cycle 6–12 months (filing) + 3-year monitoring 4–8 months (CPNP filing) Company's own responsibility
Animal Testing Gradually restricted (alternative methods encouraged) Fully banned (effective 2013) Partially accepted (MoCRA promoting alternatives)
Label Ingredient Identification INCI name + Chinese standard name INCI name INCI name

International Benchmarking Insights

China's cosmetic regulatory system has approached or even exceeded EU standards in certain dimensions (e.g., strictness of efficacy claim management), though new ingredient management remains differentiated. For peptide-containing cosmetic companies targeting all three markets (China, EU, US), recommended strategies include: - Use INCI names for unified ingredient identification to reduce multi-market registration costs - Human efficacy evaluation data satisfying China's requirements can also serve as supplementary data for EU/US filings - Closely monitor new US ingredient filing requirements under MoCRA during the 2024–2025 transition period


Regulatory Basis: "Cosmetic Supervision and Administration Regulation" (2021), "Cosmetic Registration and Filing Management Measures," "Technical Guidelines for Cosmetic Safety Assessment" (2024 Edition), "Cosmetic Efficacy Claims Evaluation Standards." The above information is general reference only; specific product registration pathways should be determined based on ingredient characteristics and formulation complexity. For cosmetic peptide compliance consulting, safety assessment report writing, or efficacy evaluation plan design — contact the cosmetic peptide compliance services for one-stop compliance solutions covering cosmetic peptide regulatory filing services across China, the EU, and the US.