China Azelaic Acid And Hyaluronic Acid Together Suppliers & Product

Industrial Whitepaper & B2B Manufacturing Guide: Synergistic Bio-Chemical Innovations, Dual-Action Dermo-Cosmetic Formulations, and High-Purity Bulk Raw Material Supply

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Azelaic Acid CAS 123-99-9
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Biochemical Synergy: Combining Azelaic Acid & Hyaluronic Acid

An in-depth scientific analysis of molecular mechanics, skin barrier stabilization, and transdermal delivery optimization in modern topical cosmetics.

Mechanistic Dual Action

Azelaic Acid (C9H16O4, CAS 123-99-9) is a naturally occurring saturated dicarboxylic acid that functions as a competitive inhibitor of 5-alpha-reductase, tyrosinase, and mitochondrial oxidoreductases. When formulated alongside Hyaluronic Acid (Sodium Hyaluronate), the hyper-hygroscopic glycosaminoglycan matrix buffers localized transepidermal water loss (TEWL) and mitigates transient skin irritation traditionally associated with low-pH dicarboxylic acid topicals.

Molecular Weight Hierarchy

Formulating with multi-depth Hyaluronic Acid polymer networks (spanning Oligo-HA <10 kDa, Low MW 10-100 kDa, and High MW >1.8 MDa) creates a multi-layered molecular scaffold. High MW HA forms an occlusive non-comedogenic gel network on the stratum corneum to prevent TEWL, while micro-particle Azelaic Acid penetrates follicular infundibula to suppress Cutibacterium acnes proliferation and downregulate pro-inflammatory cytokines (IL-1β, IL-6, TNF-α).

Solubility & Rheology Matrix

Azelaic acid presents hydrophobic crystalline challenges in aqueous systems, requiring micronization (D90 < 10 µm) or specialized solubilizers such as PPG-20 Methyl Glucose Ether. Sodium hyaluronate acts as a structural viscoelastic stabilizer, suspending micronized azelaic acid crystals evenly throughout oil-in-water (O/W) emulsions without sacrificing rheological spreadability or causing phase separation during thermal stability stress testing.

Formulation Gain Insight for R&D Directors:

By coupling 10%–15% micronized Azelaic Acid with a 1.5% dual-molecular Hyaluronic Acid complex at a controlled pH of 4.2–4.8, clinical trials demonstrate a 43% reduction in erythema index compared to azelaic acid monotherapy, alongside an 88% retention rate in skin moisture over a 12-hour period.

Technical Roadmap & Future Outlook

Advancements in green chemical synthesis, biotechnology fermentations, and nanostructured carrier systems shaping the next generation of active ingredients.

Liposomal Encapsulation

Development of lipid nanocarriers (SLNs and NLCs) co-encapsulating Azelaic Acid and Sodium Hyaluronate. This technology ensures sustained controlled release within deeper epidermal layers while avoiding surface skin irritation.

Bio-Fermentative Azelaic Acid

Transitioning from traditional ozonolysis of oleic acid to enzymatic oxidation and microbial fermentative pathways, reducing carbon footprint by 62% and achieving zero-solvent botanical purity.

Cross-Linked HA Hydrosols

Integration of sodium hyaluronate crosspolymer matrices to create micro-moisturizing reservoirs that continuously release moisture to offset acid-induced dryness.

Multi-Active Smart Synergies

Formulating tri-component complexes combining Azelaic Acid, Hyaluronic Acid, and Ascorbyl Tetraisopalmitate or N-Acetyl-D-Glucosamine for enhanced melanogenesis inhibition.

Macro Industry Solutions & Clinical Applications

Solving complex dermatological challenges across global commercial cosmetic lines and pharmaceutical-grade treatments.

Rosacea & Erythema Relief

Targeting persistent papulopustular rosacea by blunting reactive oxygen species (ROS) production while restoring damaged cutaneous moisture barriers with high-purity Sodium Hyaluronate.

Post-Inflammatory Hyperpigmentation

Suppressing abnormal melanocyte hyper-function without hypopigmenting normal surrounding skin tissue, ideal for Fitzpatrick scale IV–VI skin tone formulations.

Acne Vulgaris Management

Exfoliating follicular keratinocytes to eliminate comedones while maintaining hydration levels, preventing rebound hyper-seborrhea triggered by harsh desiccation.

99.8% HPLC Assay Purity
< 10 PPM Heavy Metal Control
5,000+ Global Enterprise Clients
200+ Countries Exported To

China Factory 4.0: Supply Chain & Manufacturing

JIMPOCHEM CO., LTD was established in 2010 and is headquartered in the Chemical Industry Park of Jinan City, Shandong Province. The company covers an area of over 500 acres and is a professional chemical raw material manufacturer that integrates research and development, production, sales, and technical services. Its core focus is on high-end fine chemicals and cosmetic raw materials.

We have obtained multiple product-related certifications, including ISO quality system certification and environmental management system certification, and are committed to providing high-quality chemical products and one-stop procurement service solutions to global customers.

Our core team comprises experts with over 10 years of experience in the chemical industry. This enables us not only to provide professional products but also to offer solutions in product development, formula optimization, and supply chain management, meeting the personalized needs of diverse clients.

Supply Chain & Production

Leveraging years of industry experience, we have established stable raw material procurement channels and partnered with top global chemical suppliers. Our modern production base employs intelligent control systems to automate and digitally manage production, balancing scale with customization.

Quality Control System

Adhering to "quality is the lifeline of an enterprise," every step from raw material warehousing, real-time synthesis monitoring, to full-item finished product testing adheres to strict international standards. Full batch traceability is maintained.

Green & Sustainable

In response to global "dual-carbon" goals, we focus on eco-friendly chemical processes, optimizing wastewater, waste gas, and residue recycling. Our green chemical processes support downstream clients in reaching carbon-neutral manufacturing goals.

Factory Infrastructure & R&D Facilities

Take an inside look at our 500-acre modern manufacturing base, high-tech analytical laboratories, automated packing lines, and global logistics hubs.

B2B Technical Specifications & Commercial Buying Standard

Key quality control criteria and formulation compatibility benchmarks for pharmaceutical and cosmetic brand purchasers.

Parameter Azelaic Acid (CAS 123-99-9) Hyaluronic Acid (Sodium Hyaluronate) Combined Formulation Guidelines
Chemical Identity / INCI Azelaic Acid / Nonanedioic Acid Sodium Hyaluronate Azelaic Acid + Sodium Hyaluronate Complex
Assay Purity (HPLC) ≥ 99.0% (Pharma & Cosmetic Grade) ≥ 95.0% Glucuronic Acid Content Active Content: 10%–15% AA + 1.0%–2.0% HA
Physical Appearance White to off-white crystalline powder White powder / granular O/W Gel-Cream or Hydro-Serum emulsion
Particle Size Micronization D90 < 10 µm (Micronized Grade) N/A (Soluble Polymer) Homogenized suspension for high skin absorption
pH Stability Range Stable between pH 4.0 – 5.5 Stable between pH 4.0 – 8.0 Optimized target pH: 4.2 – 4.8
Heavy Metal Limits Pb < 5 ppm, As < 1 ppm, Total < 10 ppm Total Heavy Metals < 10 ppm Strict compliance with EU, FDA, NMPA limits
Packaging Specifications 25 kg/fiber drum with dual PE liners 1 kg/foil bag or 10 kg/drum Moisture-proof, light-shielded nitrogen flushed drums

Localization Support & Regulatory Compliance

Comprehensive global documentation and regulatory dossier support ensuring seamless international distribution and market registration.

Global Regulatory Dossiers

We provide complete regulatory support packages including Full REACH Registration (EU), US FDA VCRP/MoCRA records, CPNP portal dossiers, and China NMPA raw material safety code filings.

Quality & Safety Testing

Each shipment is delivered with comprehensive Certificates of Analysis (COA), Safety Data Sheets (SDS in 16 languages), Stability Test Reports, Micro-biological Challenge Tests, and Heavy Metal / Solvent residue analyses.

Customization & Logistics

Offering tailored particle size milling (mesh 100 to sub-micron), premixed formulation bases, private label ODM/OEM services, and temperature-controlled global shipping via air, sea, and rail freight.

Frequently Asked Questions (FAQ)

Answers to common technical, procurement, and formulation questions for chemical buyers and cosmetic formulation engineers.

Can Azelaic Acid and Hyaluronic Acid be safely combined in the same skin care formulation?
Yes, absolutely. Azelaic Acid and Hyaluronic Acid are highly complementary. Azelaic Acid provides targeted antibacterial, anti-inflammatory, and tyrosinase-inhibiting properties to combat acne and hyperpigmentation, while Hyaluronic Acid provides intense hydration, restores stratum corneum lipid barrier integrity, and counteracts potential dryness or peeling caused by dicarboxylic acids.
What is the recommended particle size for Azelaic Acid in topical O/W emulsions?
For optimal dermal feel and bioavailability, micronized Azelaic Acid with a particle distribution of D90 < 10 µm is strongly recommended. Non-micronized grades tend to recrystallize, causing a gritty texture and uneven drug distribution. JIMPOCHEM supplies ultra-fine micronized grades specifically engineered for silky, non-gritty cosmetic gels and creams.
What minimum order quantities (MOQ) and lead times does JIMPOCHEM offer for bulk buyers?
Our standard MOQ for Azelaic Acid CAS 123-99-9 and Sodium Hyaluronate CAS 9004-61-9 starts at 25 kg for standard packaging drums. Sample orders (1 kg – 5 kg) are available for R&D validation. Standard delivery lead time is 7 to 10 working days from our Jinan manufacturing plant to global ports.
What molecular weight of Hyaluronic Acid works best with Azelaic Acid?
We recommend a multi-molecular blend: High Molecular Weight HA (>1.5 MDa) at 0.5% for film-forming surface hydration and micro-vesicle stabilization, combined with Low or Oligo Molecular Weight HA (<100 kDa) at 1.0% to deeply hydrate the dermis and soothe inflammatory pathways triggered by cutaneous lesions.
How does JIMPOCHEM ensure batch-to-batch quality consistency?
Every batch manufactured at our Jinan plant undergoes rigorous automated digital control and multi-point testing via High-Performance Liquid Chromatography (HPLC), Gas Chromatography (GC), and Inductively Coupled Plasma Mass Spectrometry (ICP-MS). Full COA documentation and retained control samples are stored for up to 3 years.

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