Clinically Tested Pcl(50,000)-b-mpeg(4,000), Diblock Polymer, Powder - Free 2-day Shipping [cljFKx01]
PCL(50,000)-b-mPEG(4,000) Diblock PolymerIntroducing our high-grade PCL(50,000)-b-mPEG(4,000) Diblock Polymer, a versatile and innovative material designed for biomedical research. This exceptional powder formulation offers a unique blend of properti
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Clinically Tested Pcl(50,000)-b-mpeg(4,000), Diblock Polymer, Powder - Free 2-day Shipping [cljFKx01]
PCL(50,000)-b-mPEG(4,000) Diblock Polymer
Introducing our high-grade PCL(50,000)-b-mPEG(4,000) Diblock Polymer, a versatile and innovative material designed for biomedical research. This exceptional powder formulation offers a unique blend of properties that make it ideal for a wide range of applications. The PCL-b-mPEG block copolymer combines the hydrophobic nature of polycaprolactone (PCL) with the hydrophilic properties of polyethylene glycol (PEG), resulting in a biodegradable and amphiphilic polymer that is both biocompatible and water-soluble.- High molecular weight for precise control over degradation and solubility.
- Biocompatibility suitable for use in drug delivery systems and tissue engineering.
Product Properties and Specifications
Our PCL(50,000)-b-mPEG(4,000) Diblock Polymer is supplied as a micronized powder, ensuring maximum purity and ease of use. This polymer boasts excellent physical and chemical properties, including tunable molecular weight and adjustable degradation rates. Its good solubility in organic solvents makes it highly adaptable for various research applications. Key specifications include:- Polycaprolactone segment: PCL(50,000)
- Polyethylene glycol segment: mPEG(4,000)
- Biodegradable and amphiphilic for versatile use in biomedical research.
Practical Applications and Benefits
The PCL(50,000)-b-mPEG(4,000) Diblock Polymer is a game-changer in the biomedical field, offering numerous benefits for researchers and innovators. Its ability to be tailored to specific application needs makes it highly suitable for drug delivery systems, nanoparticles, and coatings. The hydrophilic PEG segment provides steric stabilization, improving circulation times and bioavailability in drug delivery applications. Moreover, its slow degradation and biocompatibility make it ideal for use in scaffolds and implants in tissue engineering. Whether you're a scientist working on novel drug delivery systems or a researcher in tissue engineering, this polymer is your go-to material for innovative solutions.- Customizable molecular weight and PCL to PEG ratio for tailored applications.
- Biocompatible and suitable for drug delivery, tissue engineering, and hydrogels.
- Easy to process for efficient research and development workflows.
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