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Updated: Feb 19, 2026

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Published on: August 3, 2021
Polymalic Acid Tritryptophan Copolymer Interacts with Lipid Membrane Resulting in Membrane Solubilization
Hui Ding1, Irving Fox1, Rameshwar Patil1
1Department of Neurosurgery, Cedars-Sinai Medical Center, Los Angeles, CA 90048, USA.
We developed a new anionic polymer, P/WWW, for drug delivery. It uses a novel "belt" mechanism to permeate cell membranes, distinct from other polymers, offering potential for targeting abnormal cells.
Area of Science:
- Biomaterials Science
- Polymer Chemistry
- Cell Biology
Background:
- Anionic polymers are crucial for cytoplasmic drug delivery.
- Existing polymalic acid (PMLA) copolymers use distinct membrane permeation mechanisms.
- Novel mechanisms are needed for enhanced drug delivery.
Purpose of the Study:
- To develop a novel anionic copolymer for enhanced membrane permeation.
- To elucidate the unique mechanism of membrane interaction for the new copolymer.
- To explore potential applications in targeted drug delivery.
Main Methods:
- Synthesis of tritryptophan-containing PMLA copolymer (P/WWW).
- Investigation of membrane permeation using size-exclusion chromatography, confocal microscopy, and fluorescence energy transfer.
- Analysis of copolymer-membrane interactions.
Main Results:
- P/WWW exhibits a novel "belt" mechanism for membrane permeation, distinct from "barrel stave" (P/LLL) and "carpet" (P/LOEt) mechanisms.
- Copolymer forms "belts" around planar membrane "packages," solubilizing membranes.
- Mechanism involves hydrophobic tryptophan side chains inserting into the lipid bilayer, dependent on membrane fluidity.
Conclusions:
- The "belt" mechanism offers a new paradigm for polymer-based membrane permeation.
- P/WWW shows potential for targeted delivery to abnormal cells with increased membrane fluidity.
- This mechanism may be responsive to conditions like hyperthermia.
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