Cargando…

Cargo-selective and adaptive delivery of nucleic acid therapeutics by bola-amphiphilic dendrimers

Nucleic acid therapeutics are becoming an important drug modality, offering the unique opportunity to address “undruggable” targets, respond rapidly to evolving pathogens, and treat diseases at the gene level for precision medicine. However, nucleic acid therapeutics have poor bioavailability and ar...

Descripción completa

Detalles Bibliográficos
Autores principales: Chen, Jiaxuan, Zhu, Dandan, Lian, Baoping, Shi, Kangjie, Chen, Peng, Li, Ying, Lin, Wenyi, Ding, Ling, Long, Qiulin, Wang, Yang, Laurini, Erik, Lan, Wenjun, Li, Yun, Tintaru, Aura, Ju, Caoyun, Zhang, Can, Pricl, Sabrina, Iovanna, Juan, Liu, Xiaoxuan, Peng, Ling
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10214173/
https://www.ncbi.nlm.nih.gov/pubmed/37186846
http://dx.doi.org/10.1073/pnas.2220787120
_version_ 1785145884935192576
author Chen, Jiaxuan
Zhu, Dandan
Lian, Baoping
Shi, Kangjie
Chen, Peng
Li, Ying
Lin, Wenyi
Ding, Ling
Long, Qiulin
Wang, Yang
Laurini, Erik
Lan, Wenjun
Li, Yun
Tintaru, Aura
Ju, Caoyun
Zhang, Can
Pricl, Sabrina
Iovanna, Juan
Liu, Xiaoxuan
Peng, Ling
author_facet Chen, Jiaxuan
Zhu, Dandan
Lian, Baoping
Shi, Kangjie
Chen, Peng
Li, Ying
Lin, Wenyi
Ding, Ling
Long, Qiulin
Wang, Yang
Laurini, Erik
Lan, Wenjun
Li, Yun
Tintaru, Aura
Ju, Caoyun
Zhang, Can
Pricl, Sabrina
Iovanna, Juan
Liu, Xiaoxuan
Peng, Ling
author_sort Chen, Jiaxuan
collection PubMed
description Nucleic acid therapeutics are becoming an important drug modality, offering the unique opportunity to address “undruggable” targets, respond rapidly to evolving pathogens, and treat diseases at the gene level for precision medicine. However, nucleic acid therapeutics have poor bioavailability and are chemolabile and enzymolabile, imposing the need for delivery vectors. Dendrimers, by virtue of their well-defined structure and cooperative multivalence, represent precision delivery systems. We synthesized and studied bola-amphiphilic dendrimers for cargo-selective and on-demand delivery of DNA and small interfering RNA (siRNA), both important nucleic acid therapeutics. Remarkably, superior performances were achieved for siRNA delivery with the second-generation dendrimer, yet for DNA delivery with the third generation. We systematically studied these dendrimers with regard to cargo binding, cellular uptake, endosomal release, and in vivo delivery. Differences in size both of the dendrimers and their nucleic acid cargos impacted the cooperative multivalent interactions for cargo binding and release, leading to cargo-adaptive and selective delivery. Moreover, both dendrimers harnessed the advantages of lipid and polymer vectors, while offering nanotechnology-based tumor targeting and redox-responsive cargo release. Notably, they allowed tumor- and cancer cell-specific delivery of siRNA and DNA therapeutics for effective treatment in different cancer models, including aggressive and metastatic malignancies, outperforming the currently available vectors. This study provides avenues to engineer tailor-made vectors for nucleic acid delivery and precision medicine.
format Online
Article
Text
id pubmed-10214173
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher National Academy of Sciences
record_format MEDLINE/PubMed
spelling pubmed-102141732023-11-15 Cargo-selective and adaptive delivery of nucleic acid therapeutics by bola-amphiphilic dendrimers Chen, Jiaxuan Zhu, Dandan Lian, Baoping Shi, Kangjie Chen, Peng Li, Ying Lin, Wenyi Ding, Ling Long, Qiulin Wang, Yang Laurini, Erik Lan, Wenjun Li, Yun Tintaru, Aura Ju, Caoyun Zhang, Can Pricl, Sabrina Iovanna, Juan Liu, Xiaoxuan Peng, Ling Proc Natl Acad Sci U S A Physical Sciences Nucleic acid therapeutics are becoming an important drug modality, offering the unique opportunity to address “undruggable” targets, respond rapidly to evolving pathogens, and treat diseases at the gene level for precision medicine. However, nucleic acid therapeutics have poor bioavailability and are chemolabile and enzymolabile, imposing the need for delivery vectors. Dendrimers, by virtue of their well-defined structure and cooperative multivalence, represent precision delivery systems. We synthesized and studied bola-amphiphilic dendrimers for cargo-selective and on-demand delivery of DNA and small interfering RNA (siRNA), both important nucleic acid therapeutics. Remarkably, superior performances were achieved for siRNA delivery with the second-generation dendrimer, yet for DNA delivery with the third generation. We systematically studied these dendrimers with regard to cargo binding, cellular uptake, endosomal release, and in vivo delivery. Differences in size both of the dendrimers and their nucleic acid cargos impacted the cooperative multivalent interactions for cargo binding and release, leading to cargo-adaptive and selective delivery. Moreover, both dendrimers harnessed the advantages of lipid and polymer vectors, while offering nanotechnology-based tumor targeting and redox-responsive cargo release. Notably, they allowed tumor- and cancer cell-specific delivery of siRNA and DNA therapeutics for effective treatment in different cancer models, including aggressive and metastatic malignancies, outperforming the currently available vectors. This study provides avenues to engineer tailor-made vectors for nucleic acid delivery and precision medicine. National Academy of Sciences 2023-05-15 2023-05-23 /pmc/articles/PMC10214173/ /pubmed/37186846 http://dx.doi.org/10.1073/pnas.2220787120 Text en Copyright © 2023 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/This article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Physical Sciences
Chen, Jiaxuan
Zhu, Dandan
Lian, Baoping
Shi, Kangjie
Chen, Peng
Li, Ying
Lin, Wenyi
Ding, Ling
Long, Qiulin
Wang, Yang
Laurini, Erik
Lan, Wenjun
Li, Yun
Tintaru, Aura
Ju, Caoyun
Zhang, Can
Pricl, Sabrina
Iovanna, Juan
Liu, Xiaoxuan
Peng, Ling
Cargo-selective and adaptive delivery of nucleic acid therapeutics by bola-amphiphilic dendrimers
title Cargo-selective and adaptive delivery of nucleic acid therapeutics by bola-amphiphilic dendrimers
title_full Cargo-selective and adaptive delivery of nucleic acid therapeutics by bola-amphiphilic dendrimers
title_fullStr Cargo-selective and adaptive delivery of nucleic acid therapeutics by bola-amphiphilic dendrimers
title_full_unstemmed Cargo-selective and adaptive delivery of nucleic acid therapeutics by bola-amphiphilic dendrimers
title_short Cargo-selective and adaptive delivery of nucleic acid therapeutics by bola-amphiphilic dendrimers
title_sort cargo-selective and adaptive delivery of nucleic acid therapeutics by bola-amphiphilic dendrimers
topic Physical Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10214173/
https://www.ncbi.nlm.nih.gov/pubmed/37186846
http://dx.doi.org/10.1073/pnas.2220787120
work_keys_str_mv AT chenjiaxuan cargoselectiveandadaptivedeliveryofnucleicacidtherapeuticsbybolaamphiphilicdendrimers
AT zhudandan cargoselectiveandadaptivedeliveryofnucleicacidtherapeuticsbybolaamphiphilicdendrimers
AT lianbaoping cargoselectiveandadaptivedeliveryofnucleicacidtherapeuticsbybolaamphiphilicdendrimers
AT shikangjie cargoselectiveandadaptivedeliveryofnucleicacidtherapeuticsbybolaamphiphilicdendrimers
AT chenpeng cargoselectiveandadaptivedeliveryofnucleicacidtherapeuticsbybolaamphiphilicdendrimers
AT liying cargoselectiveandadaptivedeliveryofnucleicacidtherapeuticsbybolaamphiphilicdendrimers
AT linwenyi cargoselectiveandadaptivedeliveryofnucleicacidtherapeuticsbybolaamphiphilicdendrimers
AT dingling cargoselectiveandadaptivedeliveryofnucleicacidtherapeuticsbybolaamphiphilicdendrimers
AT longqiulin cargoselectiveandadaptivedeliveryofnucleicacidtherapeuticsbybolaamphiphilicdendrimers
AT wangyang cargoselectiveandadaptivedeliveryofnucleicacidtherapeuticsbybolaamphiphilicdendrimers
AT laurinierik cargoselectiveandadaptivedeliveryofnucleicacidtherapeuticsbybolaamphiphilicdendrimers
AT lanwenjun cargoselectiveandadaptivedeliveryofnucleicacidtherapeuticsbybolaamphiphilicdendrimers
AT liyun cargoselectiveandadaptivedeliveryofnucleicacidtherapeuticsbybolaamphiphilicdendrimers
AT tintaruaura cargoselectiveandadaptivedeliveryofnucleicacidtherapeuticsbybolaamphiphilicdendrimers
AT jucaoyun cargoselectiveandadaptivedeliveryofnucleicacidtherapeuticsbybolaamphiphilicdendrimers
AT zhangcan cargoselectiveandadaptivedeliveryofnucleicacidtherapeuticsbybolaamphiphilicdendrimers
AT priclsabrina cargoselectiveandadaptivedeliveryofnucleicacidtherapeuticsbybolaamphiphilicdendrimers
AT iovannajuan cargoselectiveandadaptivedeliveryofnucleicacidtherapeuticsbybolaamphiphilicdendrimers
AT liuxiaoxuan cargoselectiveandadaptivedeliveryofnucleicacidtherapeuticsbybolaamphiphilicdendrimers
AT pengling cargoselectiveandadaptivedeliveryofnucleicacidtherapeuticsbybolaamphiphilicdendrimers