Sub Cat. No. |
Molecular Weight |
Glycan Name |
Functional Group |
Inquiry |
X25-04-ZQ621-1 |
PEG 350 Da |
Glucose |
PLA |
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|
X25-04-ZQ621-2 |
PEG 550 Da |
Glucose |
PLA |
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|
X25-04-ZQ621-3 |
PEG 750 Da |
Glucose |
PLA |
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|
X25-04-ZQ621-4 |
PEG 1 kDa |
Glucose |
PLA |
Inquiry
|
X25-04-ZQ621-5 |
PEG 2 kDa |
Glucose |
PLA |
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|
X25-04-ZQ621-6 |
PEG 3 kDa |
Glucose |
PLA |
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|
X25-04-ZQ621-7 |
PEG 4 kDa |
Glucose |
PLA |
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|
X25-04-ZQ621-8 |
PEG 5 kDa |
Glucose |
PLA |
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|
X25-04-ZQ621-9 |
PEG 10 kDa |
Glucose |
PLA |
Inquiry
|
X25-04-ZQ621-10 |
PEG 20 kDa |
Glucose |
PLA |
Inquiry
|
Properties
Description
This biocompatible and biodegradable polymer-carbohydrate conjugate features poly(lactic acid) (PLA), a widely used polyester for drug delivery and tissue engineering, covalently linked via a hydrophilic polyethylene glycol (PEG) spacer to glucose. This high-purity material is suitable for the fabrication of targeted drug delivery systems or the creation of glucose-functionalized scaffolds for tissue engineering applications with controlled degradation.
Source
Chemical synthesis
Solubility
PLA-PEG-glucose is soluble in a wide range of organic solvents, such as DCM, DMF, and DMSO, and shows excellent solubility in water.
Identity
Confirmed by NMR.
Applications
PLA-PEG-glucose can be used to develop biodegradable materials with a glucose scaffold.