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Cationic Polymers as Transfection Reagents for Nucleic Acid Delivery

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Nucleic acid therapy can achieve lasting and even curative effects through gene augmentation, gene suppression, and genome editing. However, it is difficult for naked nucleic acid molecules to enter cells. As a result, the key to nucleic acid therapy is the introduction of nucleic acid molecules into cells. Cationic polymers are non-viral nucleic acid delivery systems with positively charged groups on their molecules that concentrate nucleic acid molecules to form nanoparticles, which help nucleic acids cross barriers to express proteins in cells or inhibit target gene expression. Cationic polymers are easy to synthesize, modify, and structurally control, making them a promising class of nucleic acid delivery systems. In this manuscript, we describe several representative cationic polymers, especially biodegradable cationic polymers, and provide an outlook on cationic polymers as nucleic acid delivery vehicles.
Title: Cationic Polymers as Transfection Reagents for Nucleic Acid Delivery
Description:
Nucleic acid therapy can achieve lasting and even curative effects through gene augmentation, gene suppression, and genome editing.
However, it is difficult for naked nucleic acid molecules to enter cells.
As a result, the key to nucleic acid therapy is the introduction of nucleic acid molecules into cells.
Cationic polymers are non-viral nucleic acid delivery systems with positively charged groups on their molecules that concentrate nucleic acid molecules to form nanoparticles, which help nucleic acids cross barriers to express proteins in cells or inhibit target gene expression.
Cationic polymers are easy to synthesize, modify, and structurally control, making them a promising class of nucleic acid delivery systems.
In this manuscript, we describe several representative cationic polymers, especially biodegradable cationic polymers, and provide an outlook on cationic polymers as nucleic acid delivery vehicles.

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