Plga Peg Copolymer

PLGA-PEG copolymer is a biodegradable block copolymer that combines poly(lactic-co-glycolic acid) (PLGA) with hydrophilic poly(ethylene glycol) (PEG), linking degradability with water compatibility for bioengineering. Its PLGA segments hydrolyze into lactic and glycolic acid, while PEG forms a hydrated outer layer that improves aqueous dispersion and can reduce nonspecific interactions; the balance between the blocks enables self-assembly into micelles, nanoparticles, or other structures. These properties support controlled drug delivery, encapsulation of poorly water-soluble compounds, and engineered biomaterials. By adjusting block composition and architecture, researchers can tune particle stability, degradation, and cargo release.

Plga Peg Copolymer - Related Videos

Research

JoVE Journal - Chemistry

Anionic Polymerization of an Amphiphilic Copolymer for Preparation of Block Copolymer Micelles Stabilized by π-π Stacking Interactions

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Cited by 2 •

2016

The key steps of living anionic polymerization of phenyl glycidyl ether (PheGE) on methoxy-polyethylene glycol (mPEG-b-PPheGE) are described. The resulting block copolymer micelles (BCMs) were loaded with doxorubicin 14% (wt%) and sustained release of drug over 4 days under physiologically relevant conditions was obtained.

Research

JoVE Journal - Neuroscience
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Electrophysiology of Scorpion Peg Sensilla

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Cited by 4 •

2011

This article describes an electrophysiological method for isolating chemical stimulation to individual sensilla via extracellular, tip-recordings under mineral oil.

Synthesis of Ligand-free CdS Nanoparticles within a Sulfur Copolymer Matrix

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2016

Herein we present a method to synthesize ligand-free cadmium sulfide (CdS) nanoparticles based on a unique sulfur copolymer. The sulfur copolymer operates as a high temperature solvent and a sulfur source during the nanoparticle synthesis and stabilizes the nanoparticles after the reaction.

A Peg Plate Biofilm Assay for Screening Antibacterial Agents

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2025

This video demonstrates an assay for screening antimicrobial compounds that efficiently eliminate biofilms using a peg-plate. The methodology monitors the biofilm's metabolic state after treatment with antimicrobial compounds, facilitating the determination of the minimum biofilm eradication concentration.

PLGA Nanoparticles Formed by Single- or Double-emulsion with Vitamin E-TPGS

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Cited by 211 •

2013

We describe the production and characterization of nanoparticles and microparticles composed of poly(lactic-co-glycolic acid) using vitamin E-TPGS as an emulsifier. By varying formulation parameters such as the concentration of emulsifier, it is possible to produce nanoparticles with mean diameters ranging from 220 nm to 1.98 µm.

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