BOC Sciences is a leading life sciences company specializing in providing high-quality custom synthesis services for the pharmaceutical, biotechnology, and chemical research fields. Our services cover a wide range of products, from basic research to preclinical and clinical stages, with a particular focus on the development and custom synthesis of placental peptides. Placental peptides are gaining increasing attention in drug development and cosmetic field due to their potential in immunomodulation, anti-aging, and cellular regeneration. BOC Sciences is dedicated to offering cutting-edge research services to accelerate innovation in this field.
At least two rounds of lyophilization to achieve complete sterility.
Strict endotoxin control standards, generally below 2 IU.
No residual solvents are allowed.
Placental peptides are short-chain amino acid molecules secreted by the placenta that possess various biological functions. These peptides typically consist of 2 to 50 amino acids linked by peptide bonds. During pregnancy, placental peptides play crucial regulatory roles, including hormone regulation, immunomodulation, and tissue repair. They generally have low molecular weights, with most placental peptides below 3000 Daltons. These peptides participate in numerous physiological activities during pregnancy through different mechanisms, such as promoting embryo implantation, vascular remodeling, and maintaining pregnancy. In addition, placental peptides are being studied for treating pregnancy-related diseases, such as gestational diabetes and placental insufficiency. Due to their powerful regenerative properties, placental peptides are becoming increasingly valuable in the cosmetics and medical aesthetics industries. They promote collagen production, enhance skin elasticity, reduce wrinkle formation, and support tissue regeneration, making them highly sought after in anti-aging products, facial treatments, and post-surgical skin recovery.
BOC Sciences manufactures placental peptides from healthy placental tissues that pass thorough screening and testing procedures to maintain raw material safety and bioactivity. Through the use of cutting-edge extraction methods such as enzymatic hydrolysis together with ultrafiltration and chromatographic separation, our company extracts bioactive peptide segments from the placenta in an efficient and gentle manner. These methods maximize placental peptide bioactivity retention while eliminating impurities to achieve high product purity and stability.
The bioactivity of placental peptides is fundamental to their potential for drug development. BOC Sciences offers a range of functional tests and bioactivity evaluations to assess the effects of placental peptides in areas such as antioxidant, anti-inflammatory, immunomodulatory, and antitumor activities. Our team can customize experimental protocols based on client requirements, delivering high-quality data to help clients screen placental peptide candidates with optimal bioactivity.
BOC Sciences is committed to providing high-quality placental peptide products to customers. To ensure product quality and safety, we have established a rigorous quality control system covering every aspect from raw material procurement to product delivery.
We strictly control the microbial limits in placental peptide products to ensure their safety and hygiene. Microbial limit tests are conducted to verify that indicators such as total bacterial count, coliforms, molds, and yeasts comply with national standards.
We employ advanced production processes, including cleaning, peeling, homogenization, hydrolysis, separation, and concentration, to ensure product purity and activity. Every production step is conducted under strict quality control to guarantee product stability and consistency.
We use advanced testing methods to inspect placental peptide products, including ultraviolet-visible spectrophotometry, HPLC, and MS, for protein content, peptide content, heavy metal content, and other quality indicators.
We utilize aseptic packaging technology to ensure the safety of placental peptide products during transportation and storage. Storage conditions meet the requirements specified on the label, typically in a cool, dry place away from direct sunlight and high temperatures.
We strictly follow national regulations to clearly label product names, ingredients, production dates, shelf life, and manufacturer information on placental peptide products, ensuring the accuracy, authenticity, and completeness of product information.
We have established a scientific and comprehensive quality management system that covers all stages from raw material procurement, production, testing, equipment maintenance, sales, and after-sales services. We conduct regular internal and external audits of the quality management system to ensure its continuous and effective operation, providing customers with safe, reliable, and high-quality placental peptide products.
Requirement Evaluation
Extraction and Modification
Purification and Detection
Formulation Integration
Quality Control and Testing
Compliance Support
BOC Sciences stands out in placental peptide development services compared to competitors in the following aspects:
BOC Sciences offers one-stop services from peptide extraction to commercialization, including peptide purification, detection, stability studies, and sequence identification. This all-inclusive capability provides a significant advantage in peptide development.
BOC Sciences supports different needs from small-scale laboratory research to large-scale production, ranging from milligram to ton levels, meeting the specific requirements of diverse clients.
The company is equipped with fully automated peptide synthesizers and a series of separation and purification systems to ensure high-quality product delivery. Additionally, BOC Sciences offers both GMP and non-GMP custom services suitable for laboratory research.
BOC Sciences' CMC team has extensive experience, providing comprehensive solutions from candidate drug screening to custom testing services. This expert team ensures efficient and reliable services throughout peptide development.
Placental peptides exhibit strong antioxidant capabilities, effectively scavenging free radicals and reducing oxidative stress-induced cellular damage. Free radicals are reactive molecules produced during cellular metabolism, and their excessive accumulation can damage cell membranes, proteins, and DNA, leading to various diseases. By eliminating free radicals, placental peptides protect cells from oxidative damage and slow down the aging process.
Inflammation is the body's defense response to injury or infection, but excessive inflammation can lead to tissue damage and disease. Placental peptides possess anti-inflammatory properties by inhibiting the release of inflammatory mediators and alleviating inflammatory responses. Research indicates that placental peptides modulate immune cell functions and suppress the production of inflammatory cytokines, thus exerting anti-inflammatory effects.
Placental peptides contain multiple growth factors and cytokines that promote cell proliferation and differentiation, accelerating tissue repair and regeneration. For example, epidermal growth factor (EGF) and fibroblast growth factor (FGF) present in placental peptides stimulate skin cell proliferation and enhance wound healing. Additionally, placental peptides promote angiogenesis, improve blood supply to tissues, and accelerate the repair of damaged tissues.
Placental peptides exhibit immunomodulatory properties, enhancing the body's immune function and improving disease resistance. Studies have shown that placental peptides activate immune cells, such as macrophages and lymphocytes, increasing their phagocytic and cytotoxic capabilities. Moreover, placental peptides regulate cytokine secretion, maintaining immune system balance and preventing overactive or suppressed immune responses.
Placental peptides are widely used in anti-aging products due to their ability to reduce wrinkles and improve skin elasticity by promoting collagen synthesis. Additionally, placental peptides enhance skin hydration and moisture retention, improving overall skin health.