Instant Savings Pcl(10,000)-b-mpeg(4,000), Diblock Polymer, Powder Accessory [X7pdE0QM]
PCL(10,000)-b-mPEG(4,000) Diblock Polymer The PCL(10,000)-b-mPEG(4,000) Diblock Polymer is a high-grade, biodegradable and amphiphilic block copolymer designed for advanced biomedical research. This innovative material combines the hydrophobic proper
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Instant Savings Pcl(10,000)-b-mpeg(4,000), Diblock Polymer, Powder Accessory [X7pdE0QM]
PCL(10,000)-b-mPEG(4,000) Diblock Polymer
The PCL(10,000)-b-mPEG(4,000) Diblock Polymer is a high-grade, biodegradable and amphiphilic block copolymer designed for advanced biomedical research. This innovative material combines the hydrophobic properties of polycaprolactone (PCL) with the hydrophilic nature of polyethylene glycol (PEG), offering a unique blend of characteristics that make it highly versatile for various applications. Key features include its tunable molecular weight, adjustable degradation rates, and excellent solubility in organic solvents.- Biodegradability: The PCL segment ensures slow degradation, making it suitable for long-term applications.
- Biocompatibility: The PEG segment enhances water solubility and biocompatibility, making it ideal for use in biomedical research.
Product Properties and Specifications
This PCL-b-mPEG block copolymer is supplied as a micronized powder, ensuring ease of handling and precise dosing. Its high-grade quality is suitable for a wide range of biomedical research applications. The molecular weight and ratio of PCL to PEG can be tailored to meet specific application needs, providing flexibility in designing drug delivery systems, nanoparticles, and coatings.- Customizable: The molecular weight and PCL:PEG ratio can be adjusted for different research requirements.
- Excellent Solubility: The copolymer is highly soluble in organic solvents, facilitating various processing techniques.
Practical Uses and Benefits
The PCL(10,000)-b-mPEG(4,000) Diblock Polymer is highly suited for a variety of biomedical fields, including drug delivery, tissue engineering, and hydrogels. Its hydrophilic PEG segment provides steric stabilization for nanoparticles, improving circulation times and bioavailability in drug delivery applications. The slow degradation of PCL makes it ideal for controlled release systems. This versatile material is also attractive for use in scaffolds and implants in tissue engineering due to its biocompatibility and ease of processing.- Drug Delivery: Enhances circulation times and bioavailability of drug formulations.
- Tissue Engineering: Provides a suitable material for scaffolds and implants, promoting tissue growth and regeneration.
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