Poly(glycolide-L-(-)-lactide)

ester terminated, lactide:glycolide 85:15, viscosity:5.0-7.0 dL/g

  • Product Code: 84642
  Alias:    Poly(glycolide-L-lactide) PGLA; Resomer LG 857 S; PLGA
  CAS:    30846-39-0
Molecular Weight: Molecular Formula:
EC Number: MDL Number:
Melting Point: Boiling Point:
Density: Storage Condition: 2-8°C
Product Description: Poly(glycolide-L-(-)-lactide) is widely used in the medical field, particularly in the development of biodegradable sutures. Its ability to break down naturally in the body makes it ideal for surgical applications where long-term presence is unnecessary. Additionally, it is utilized in drug delivery systems, where it serves as a carrier for controlled release of medications, ensuring a steady and prolonged therapeutic effect. The material is also employed in tissue engineering, providing a scaffold that supports cell growth and gradually degrades as new tissue forms. Its biocompatibility and tailored degradation rate make it a versatile choice for various biomedical applications.
Product Specification:
Test Specification
Appearance White to Off-White Granules
L-Lactide 82-88 mole%
Glycolide 12-18 mole%
Water <=0.5%
Inherent Viscosity 5.0-7.0 DL/G
Viscosity Conditions 0.1 in CHCl3 at 25°C
Infrared Spectrum Conforms to Structure
NMR Conforms to Structure
Sizes / Availability / Pricing:
Size Availability Price Quantity
1g 10-20 days ฿3,690.00
+
-
5g 10-20 days ฿12,960.00
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-
25g 10-20 days ฿46,332.00
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-
Poly(glycolide-L-(-)-lactide)
Poly(glycolide-L-(-)-lactide) is widely used in the medical field, particularly in the development of biodegradable sutures. Its ability to break down naturally in the body makes it ideal for surgical applications where long-term presence is unnecessary. Additionally, it is utilized in drug delivery systems, where it serves as a carrier for controlled release of medications, ensuring a steady and prolonged therapeutic effect. The material is also employed in tissue engineering, providing a scaffold that supports cell growth and gradually degrades as new tissue forms. Its biocompatibility and tailored degradation rate make it a versatile choice for various biomedical applications.
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