Recent Progress in the Endosomal Escape Mechanism and Chemical Structures of Polycations for Nucleic Acid Delivery

  • Mehta, Mohit J.
  • Kim, Hyun Jin
  • Lim, Sung Been
  • Naito, Mitsuru
  • Miyata, Kanjiro
Citations

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초록

Nucleic acid-based therapies are seeing a spiralling surge. Stimuli-responsive polymers, especially pH-responsive ones, are gaining widespread attention because of their ability to efficiently deliver nucleic acids. These polymers can be synthesized and modified according to target requirements, such as delivery sites and the nature of nucleic acids. In this regard, the endosomal escape mechanism of polymer-nucleic acid complexes (polyplexes) remains a topic of considerable interest owing to various plausible escape mechanisms. This review describes current progress in the endosomal escape mechanism of polyplexes and state-of-the-art chemical designs for pH-responsive polymers. The importance is also discussed of the acid dissociation constant (i.e., pKa) in designing the new generation of pH-responsive polymers, along with assays to monitor and quantify the endosomal escape behavior. Further, the use of machine learning is addressed in pKa prediction and polymer design to find novel chemical structures for pH responsiveness. This review will facilitate the design of new pH-responsive polymers for advanced and efficient nucleic acid delivery. This review explains the endosomal escape mechanism of cationic polymers, which is considered as the main parameter affecting the high transfection efficiency of nucleic acid drugs. Recent studies are also described that have reported novel chemical structures to determine pKa values for high endosomal escape.image

키워드

acid dissociation constantmRNAnucleic acid deliverypolyplexsiRNASUPPORTED LIPID-BILAYERSGENE DELIVERYSIRNA DELIVERYPROTON SPONGEPOLYMER STRUCTUREHOLE FORMATIONPOLYETHYLENIMINEPREDICTIONMEMBRANEPK(A)
제목
Recent Progress in the Endosomal Escape Mechanism and Chemical Structures of Polycations for Nucleic Acid Delivery
저자
Mehta, Mohit J.Kim, Hyun JinLim, Sung BeenNaito, MitsuruMiyata, Kanjiro
DOI
10.1002/mabi.202300366
발행일
2024-04
유형
Review
저널명
Macromolecular Bioscience
24
4