Zinc Thymulin Powder

Zinc Thymulin Powder

Brand: SONWU
Appearance: White powder
Specification: NLT99%
CAS: 63958-90-7
Molecular Formula: C33H54N12O15
Molecular Weight: 858.85
Shelf Life: 2 Years Proper Storage
Stock: Adequate Stock
Certificate: ISO,GMP, HACCP SGS
Service: OEM Service(Private Package)
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Description

SONWU PRODUCT

High Standards·Traceability·Scalability

Please feel free to contact Xi'an Sonwu Biotech Co., Ltd. for any products you are interested in.

 

 

 

what is zinc thymulin

 

Zinc Thymulin Powder-also known as Thymulin Zinc Powder-is a functional, bioactive powder ingredient formed through the chelation of active fragments of thymulin components with zinc ions. Developed utilizing modern biological extraction and chelation coordination technologies, it combines the biological activity of peptides with the synergistic properties of the trace element zinc. Consequently, it finds extensive application in fields such as raw materials for biopharmaceuticals, dietary nutritional supplements, and scientific research reagents. As a composite peptide-trace element powder ingredient developed through precision chelation technology, standardized biomanufacturing, and rigorous quality control, it holds significant value across scientific research, dietary ingredient sourcing, and biological intermediate production, owing to its stable molecular structure, controllable quality parameters, and broad compatibility. Its core competitive advantage lies in its targeted structural design at the R&D stage, refined manufacturing processes, and comprehensive quality testing-rather than solely in its efficacy for disease intervention-positioning it as a category with immense potential within the realm of modern functional biological ingredients.

1

 

Certificate Of Analysis

 

Item

Specification

Result

Appearance

White powder

Conforms

Purity (HPLC)

99%

Conforms

Odor

Characteristic

Conforms

Particle size

100% pass 80 mesh

Conforms

Bulk density

≥99%

99.54%

Water content

≤8%

5.4%

Heavy metals

Total heavy metals

≤10ppm

Conforms

Microbial

Total microbacterial count

≤800cfu/g

Conforms

Yeast &Mould

≤100cfu/g

Conforms

Escherichia coli presence

Negative

Conforms

Salmonella

Negative

Conforms

Staphylococcus

Negative

Conforms

Conclusion

Conforming to Enterprise Standard

 

zinc thymulin for sale

 

Xi'an Sonwu Biotech Co., Ltd is a peptide raw material supplier with peptide technology at its core and an international market orientation. Sonwu is dedicated to the R&D, manufacturing, and worldwide distribution of bioactive peptide and polypeptide ingredients. Sonwu's products are widely applied in multiple fields, including muscle building, beauty and anti-aging, hair health, weight management, nootropics, and pharmaceutical raw materials.

Sonwu's products serve a global clientele, supporting both research and development and industrialization projects. Based on this, Sonwu has received a lot of feedback on Sonwu's products. Therefore, if you need zinc thymulin, please contact Xi'an Sonwu.

Xi'an Sonwu not only provides large-scale production services but can also provide sample packages to customers first.

Form

Sample Amount

The Minimum of Quantity

Powder

1g

1g

 

Customers' Good Comment

 

 powder Customers Good Comment

 

OEM Service

 

Xi'an Sonwu not only supplies high-quality zinc thymulin, but can also customize products according to customer needs. In addition, Sonwu can provide customized packaging services, including repackaging products according to customer requirements.

1. Customized bottles(size, color, material, style)

2. Customized packaging(vacuum foil packaging, box, drum)

3. Customized label(paint film, matte film, optical mask)

OEM

 

Research and development and technology

 

The core R&D rationale for Thymosin Zinc is grounded in the coordination-binding characteristics between biologically active thymic peptides and the trace element zinc. While thymic peptides are naturally occurring small-molecule peptides secreted by the thymus, zinc-an essential trace element for the human body-serves as the critical coordinating ion that enables thymic peptides to maintain their structural integrity. Through molecular structure simulations, *in vitro* activity screening, and coordination kinetics experiments, the R&D team precisely determined the binding stoichiometry between zinc ions and the active sites of the thymic peptides. Furthermore, they optimized the chelation process parameters to prevent degradation reactions between free zinc and the peptides. During the research and development process, we focused on overcoming technical challenges such as the easy hydrolysis of peptides, the unstable binding of zinc ions, and the easy loss of activity. Through a large number of in vitro cell experiments and physicochemical stability tests, we determined standardized formulas and process routes to ensure the stability of raw material structure and controllable activity, laying a theoretical and experimental foundation for industrial production. The core function of the product stems from the synergistic interplay between the structural activity of the peptides and the presence of zinc; its overall mechanism operates across three key dimensions: biological signal modulation, molecular structural stabilization, and trace element supplementation. First, the small-molecule thymic peptides act as signaling molecules, participating in intercellular signal transduction to modulate the expression patterns of relevant cytokines and regulate the activity levels of the body's fundamental immune-related signaling pathways. Second, once chelated with the active fragments of the thymic peptides, zinc ions help preserve the peptides' spatial conformation, thereby preventing denaturation or hydrolysis under ambient temperatures or standard storage conditions and significantly enhancing the peptides' inherent structural stability. Third, compared to inorganic zinc, chelated zinc exhibits tighter molecular binding; this minimizes the rapid dissociation of zinc ions, facilitating a gradual and gentle release of the trace element while simultaneously mitigating the physicochemical irritation typically associated with free zinc. The overarching mechanism operates at the molecular level-focusing on structural stabilization and signal modulation-and is not intended for disease intervention, but rather serves to manifest the intrinsic biological activity characteristics of the raw material itself.

 

Manufacturing Processes and Quality Control

 

The benefits are primarily manifested across three key dimensions-raw material performance, compatibility, and safety-all viewed through the lenses of manufacturing, quality, and technology. First, from a technical standpoint, the chelation process enhances peptide stability; this powdered raw material is highly shelf-stable, resistant to deactivation, and retains a high level of biological activity under sealed, ambient-temperature conditions, making it compatible with a wide range of formulation processing techniques. Second, regarding manufacturing, the purity of the raw material is precisely controlled, ensuring an exact stoichiometric ratio between the peptides and zinc ions while remaining free of residual impurities, thereby meeting the rigorous demands of precision manufacturing. Third, in terms of quality, the chelated structure mitigates the inherent irritancy of zinc, resulting in a gentle raw material suitable for diverse applications ranging from dietary supplements to scientific research. Fourth, at the application level, the synergistic interaction between the peptides and zinc achieves a dual-function integration within a single raw material, simplifying formula design, facilitating the development of multi-functional ingredient blends, and enhancing the overall synergistic efficacy of the final product formulation. Regarding manufacturing and quality control, Thymopeptide Zinc Powder is produced using a standardized biomanufacturing process that enforces strict quality control throughout the entire production lifecycle. The raw material preparation begins with active peptides derived from the thymus gland as a base; utilizing low-temperature enzymatic hydrolysis and membrane separation purification technologies, high-purity thymopeptide fragments are isolated, effectively removing large-molecule impurities and inactive peptide segments. Subsequently, precise chelation technology is employed within a strictly controlled temperature and pH environment to facilitate the targeted binding of zinc ions to the thymopeptides, thereby preventing the formation of unwanted byproducts. The process concludes with drying techniques-such as spray drying and low-temperature lyophilization-to produce the final powder; throughout the entire process, low-temperature conditions are maintained to prevent the thermal deactivation of the peptides. For quality assurance, a multi-dimensional testing framework has been established to monitor physicochemical parameters, biological activity levels, heavy metal content, microbial contamination, and zinc-peptide binding efficiency. Utilizing sophisticated analytical techniques-including High-Performance Liquid Chromatography (HPLC), Atomic Absorption Spectrometry (AAS), and Mass Spectrometry (MS)-each production batch is rigorously screened to verify its purity, stability, and contaminant levels, ensuring that every batch of raw material meets uniform specifications, complies with regulatory standards, and adheres to general quality guidelines for biological raw materials.

 

Factory

 

1. Xi'an Sonwu Biotech Co . Ltd has established a complete technology platform covering peptide molecular design, custom synthesis, precision purification, structural identification, and quality control. Strictly adhering to international quality management standards, the company ensures that its peptide raw materials meet the high-end raw material requirements of overseas customers in terms of purity, stability, and batch consistency.

2. Looking to the future, Sonwu will continue to deepen peptide technology innovation, expand Sonwu's global cooperation network, and strive to become a trusted long-term peptide raw material solution partner for international customers.

powder factory

how to order

 

Certificates

 

CERES

CERES

HACCP

HACCP

HALAL

HALAL

ISO9001

ISO9001

ISO14001

ISO14001

ISO22000

ISO22000

 

 

Packaging

 

powder PACKAGING

 

Logistics

 

powder Logistics

Besides guaranteeing the product, the most important thing is that customers receive the goods smoothly. So, Xi'an Sonwu offers a range of couriers to meet different needs.

Express delivery

 

FAQ

 

Regarding side effects and potential risks, this raw material generally exhibits a high safety profile; potential risks are primarily associated with usage dosage, purity, and processing methods, and there are no known specific toxic side effects. From a quality perspective, if the raw material is not thoroughly purified-resulting in residual macromolecular impurities or excessive heavy metals-prolonged use in large quantities may lead to physicochemical irritation. From a technical perspective, excessive intake of zinc ions can disrupt the body's trace element balance; although chelated zinc is generally mild, adding it in dosages exceeding recommended limits still poses potential risks. From a manufacturing perspective, if the raw material is not produced using low-temperature processing techniques, the peptides may degrade and active ingredients may lose their efficacy, thereby compromising the material's actual performance in applications. In rare instances, sensitive individuals exposed to high concentrations of the powder may experience mild respiratory irritation. Therefore, in practical applications, it is essential to strictly control the dosage, select raw material batches that meet regulatory compliance standards, and avoid excessive use to ensure safety.

If you want to find a zinc thymulin supplier, contact Xi'an Sonwu. Click the email, and then you get high-quality products.

Email: sales02@sonwu.com

 

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