Phosvitin-1 Peptide

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Phosvitin-derived peptides are fragments extracted from the egg-yolk phosphoprotein phosvitin, rich in phosphoserine residues. These sequences provide strong metal-chelating, antioxidant, and anti-inflammatory properties, protecting skin and muscle cells from oxidative stress. By modulating cytokine expression and enhancing fibroblast migration, they promote balanced tissue regeneration and wound recovery. Pv Hydrolysates are applied in cosmeceutical antioxidants, wound-healing creams, and nutraceutical formulations designed for cellular protection and recovery enhancement.

 

Peptide Type: Natural antioxidant and chelating peptide

Cat Number: PLS-NAT-E03

PRODUCT INFORMATION

 

 I. TECHNICAL SPECIFICATIONS

Structural / Composition Data

Structure / Formula

Enzymatic hydrolysate of egg-yolk phosvitin protein

Molecular Weight

500–3,000 Da (predominantly low MW fractions)

Appearance

Pale yellow to off-white powder

Purity

≥ 90% (HPLC protein/peptide purity)

Solubility

Soluble in water and physiological buffers

Form(s) Available

Lyophilized powder / spray-dried powder

Stability & Shelf Life

Storage

Store at 2–8°C or –20°C (long-term)

Post-Reconstitution

Stable for 10–14 days at 4°C

Stability Notes

Stable up to 24 months (dry, sealed form)

Quality & Compliance

QC Tests

HPLC fingerprinting, LC–MS/MS peptide mapping, DPPH antioxidant assay, antimicrobial activity assay

Intended Use

Nutraceutical and cosmeceutical ingredient for antioxidant, regenerative, and anti-inflammatory applications

Documentation

CoA, SDS, Specification Sheet, Technical Data Sheet

 

 II. PREPARATION / RECONSTITUTION

General Guidance

Dissolve in sterile Tris-Base buffer solution (pH 6.5–7.4).
Gently mix until uniform.

Recommendations

Compatible with aqueous, emulsion, and functional beverage systems. Avoid strong oxidizing agents.

 

 III. MECHANISM & BIOLOGICAL FUNCTION

Mechanism of Action

Phosvitin-derived peptides contain phosphoserine-rich sequences capable of binding iron, calcium, and other trace minerals, acting as natural chelators and antioxidants. They protect cells from oxidative damage, suppress inflammatory cytokines, and promote fibroblast migration and collagen synthesis.

Biological Claims

Exhibits antioxidant, anti-inflammatory, and wound-healing properties; supports dermal repair and muscle recovery through enhanced ECM stabilization and oxidative balance.

 

 IV. APPLICATIONS

Intended Uses

Anti-oxidative skin formulations, wound repair creams, muscle recovery nutraceuticals, mineral-chelated supplement blends, and regenerative serums.

 

 V. PACKAGING & PRESENTATION

Sizes
*(custom bulk formats available)

50 mg
(For research use)

100 mg
(For research use)

1 g

10 g

 

Phosvitin-1 Peptide

FEATURES AND KIENTICS

Phosvitin-derived peptides are natural phosphoprotein hydrolysates, rich in phosphoserine residues, granting strong antioxidant, chelating, and anti-inflammatory properties.

Natural antioxidant and metal-chelating peptides
Enhance collagen deposition and tissue regeneration
Suppress ROS and oxidative damage
Reduce inflammation and support skin recovery
Stimulate fibroblast proliferation and migration
Biocompatible and safe for topical or nutraceutical use

What's inside ?

A natural peptide complex engineered by controlled enzymatic hydrolysis for superior antioxidant and regenerative performance.

Egg-yolk–derived phosphopeptide fractions

Molecular weight range: 18.5 kDa to 60 kDa, Approx = 35 kDa

High-phosphoserine content for metal binding

Verified antioxidant activity (DPPH, ABTS assays)

Purity ≥99% (HPLC)

Non-toxic and fully biocompatible

Natural Defense and Regeneration

Phosvitin-derived peptides merge nutrition and biotechnology, offering superior antioxidant protection

Offering repair for both skin and muscle tissue integrity.

They promote fibroblast migration, accelerate wound repair, and protect skin.

Common Questions

What makes phosvitin-derived peptides unique?

Their phosphoserine-rich structure enables natural mineral binding, antioxidant defense, and cell-protective activity.

Are they suitable for ingestible or topical formulations?

Yes. They are safe and effective for both nutraceutical and cosmeceutical applications.

Do they show measurable antioxidant performance?

Yes, they exhibit strong DPPH and ABTS radical scavenging activity comparable to standard antioxidants.

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