Chao Yang 1 , Yue Gao 1 , Yu Fan 1 , Liu Cao 1 , Jin Li 1 , Yulong Ge 2 , Wenzhi Tu 2 , Yong Liu 2 , Xueyan Cao 1 , Xiangyang Shi 1 . Show Affiliations »
Abstract
Development of a powerful sensitization system to alleviate radioresistance for enhanced tumor radiotherapy (RT) remains to be explored. Herein, we present a unique dual-mode endogenous and exogenous nanosensitizer based on dendrimer-entrapped gold nanoparticles (Au DENPs) to realize enhanced tumor RT. Methods: Generation 5 poly(amidoamine) dendrimers partially modified with 1,3-propanesultone were used for templated synthesis of Au NPs, and the created zwitterionic Au DENPs were adopted for serum-enhanced delivery of siRNA to lead to the knockdown of hypoxia-inducible factor-1α (HIF-1α) protein and downstream genes to relieve tumor invasion. The Au DENPs/siRNA polyplexes were also used for dual-mode endogenous and exogenous sensitization of tumor RT in vivo. Results: Due to the dual-mode endogenous sensitization through HIF-1α gene silencing and the exogenous sensitization through the existing Au component, enhanced RT of cancer cells in vitro and a tumor model in vivo can be realized, which was confirmed by enhanced cytotoxic reactive oxygen species (ROS) generation in vitro and double-strand DNA damage verified from the γ-H2AX protein expression in tumor cells in vivo. By integrating the advantages of HIF-1α gene silencing-induced downregulation of downstream genes and the dual-mode sensitization-enhanced RT, simultaneous inhibition of primary tumors and metastasis can be readily realized. Conclusions: The developed zwitterionic Au DENPs may be used as a promising platform for dual-mode endogenously and exogenously sensitized RT of other tumor types. © The author(s).
Develop ment of a powerful sensi tization system to alleviate radioresi stance for enhanced tumor radiotherapy (RT) remains to be explored. Herein, we present a unique dual-mode endogenous and exogenous nanosensi tizer based on dendrimer -entrapped gold nanoparticles (Au DENPs ) to realize enhanced tumor RT. Methods: Generation 5 poly(amidoamine) dendrimer s partially modified with 1,3-propanesultone were used for templated synthesi s of Au NPs, and the created zwitterionic Au DENPs were adopted for serum-enhanced delivery of si RNA to lead to the knockdown of hypoxia -inducible factor-1α (HIF-1α) protein and downstream genes to relieve tumor invasi on. The Au DENPs /si RNA polyplexes were also used for dual-mode endogenous and exogenous sensi tization of tumor RT in vivo. Results: Due to the dual-mode endogenous sensi tization through HIF-1α gene si lencing and the exogenous sensi tization through the existing Au component, enhanced RT of cancer cells in vitro and a tumor model in vivo can be realized, which was confirmed by enhanced cytotoxic reactive oxygen species (ROS ) generation in vitro and double-strand DNA damage verified from the γ-H2AX protein expressi on in tumor cells in vivo. By integrating the advantages of HIF-1α gene si lencing-induced downregulation of downstream genes and the dual-mode sensi tization-enhanced RT, si multaneous inhibition of primary tumors and metastasi s can be readily realized. Conclusi ons: The developed zwitterionic Au DENPs may be used as a promisi ng platform for dual-mode endogenously and exogenously sensi tized RT of other tumor types. © The au thor(s).
Entities: CellLine
Chemical
Disease
Gene
Species
Keywords:
HIF-1α siRNA; dendrimers; gene silencing; gold nanoparticles; radiotherapy
Year: 2021
PMID: 33408777 PMCID: PMC7778585 DOI: 10.7150/thno.54930
Source DB: PubMed Journal: Theranostics ISSN: 1838-7640 Impact factor: 11.556