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L-Alanyl-L-Tyrosine CAS 3061-88-9 Wholesale quotation From Chinese supplier

time:2026-08-14

L-Alanyl-L-Tyrosine (CAS: 3061-88-9) Product Introduction

1. Product Overview

L-Alanyl-L-Tyrosine (CAS 3061-88-9) is a high-purity synthetic dipeptide biochemical raw material for biomedical laboratories and cosmetic formulation institutions, solving poor solubility, low metabolic efficiency and unstable batch purity of single amino acid and common peptide raw materials.

2. Core Product Categories

Biochemical Dipeptide Raw Material, Biomedical Synthetic Intermediate, Cosmetic Functional Additive, Laboratory Analytical Reagent

3. Target Crowd

Biomedical research laboratories, cosmetic R&D manufacturers, biochemical testing institutions and pharmaceutical intermediate processing enterprises

4. Core Solved Pain Points

·Single tyrosine raw materials feature low water solubility, limiting homogeneous dissolution in aqueous experimental and formulation systems

·Conventional mixed amino acid materials have unbalanced absorption metabolism, resulting in low biological utilization efficiency

·Low-grade dipeptide products contain residual synthesis impurities, interfering with precision experimental data and formula stability

·Common peptide raw materials have weak structural stability, prone to molecular decomposition during storage and reaction processes

5. Core Selling Points

·Maintains 99.2% minimum HPLC purity with single impurity content below 0.1%, eliminating experimental interference and ensuring stable formula compatibility.

·Achieves 85g/L water solubility at 25, 6 times higher than pure L-tyrosine, supporting efficient dissolution in aqueous solution systems.

·Controls heavy metal residue below 3 ppm tested by ICP-MS, meeting medical and cosmetic grade safety production standards.

·Retains complete molecular structure stability below 120, avoiding decomposition during conventional heating and stirring processes.

6. Core Product Parameters

This product has a fixed CAS number of 3061-88-9 with a molecular formula of C12H16N2O4 and molecular weight of 252.27g/mol. It appears as white crystalline powder at 25℃ with a minimum HPLC purity of 99.2%. Water solubility reaches 85g/L at 25. Heavy metal content is strictly controlled below 3 ppm, and single miscellaneous peptide impurity is limited below 0.1%. Sealed storage at 2℃ to 8℃ provides a 24-month valid shelf life with stable physical and chemical properties.

7. Application Scenarios

Biomedical laboratories use this high-purity dipeptide for amino acid metabolism research and cell physiological mechanism exploration.

Cosmetic R&D teams apply the high-solubility dipeptide raw material to prepare stable functional skin care formula systems.

Biochemical testing institutions adopt the standard reagent for peptide component analysis and experimental calibration work.

Pharmaceutical intermediate enterprises utilize this stable dipeptide for targeted drug synthesis and structural modification experiments.

8. Frequently Asked Questions

Q1: What is the biggest advantage of L-Alanyl-L-Tyrosine over single L-tyrosine?

It delivers 6 times higher water solubility and better metabolic activity, solving the poor dissolution and low utilization defects of single tyrosine monomers.

Q2: What purity standard does this dipeptide product reach?

It has a minimum HPLC purity of 99.2% with single impurity below 0.1%, fully adapting to precision experiments and high-end formula development.

Q3: What storage conditions ensure long-term product stability?

Seal and store at 2℃ to 8℃ away from strong light and humidity, maintaining complete molecular activity within the 24-month shelf life.

Q4: Is this dipeptide suitable for cosmetic formula preparation?

Yes, ultra-low heavy metal residues and high solubility ensure safe and stable application in functional cosmetic raw material formulas.

Q5: Will high temperature cause molecular decomposition of the product?

The product maintains stable molecular structure below 120, resisting decomposition in conventional experimental and production heating processes.

Q6: What research fields is this dipeptide mainly used for?

It is widely applied in cell metabolism research, biomedical experiments and high-end cosmetic functional formula development fields.

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