Hyaluronic acid-targeted topotecan liposomes improve therapeutic efficacy against lung cancer in animals
文献类型: 外文期刊
第一作者: Xue, Gangqiang
作者: Xue, Gangqiang;Tang, Lu;Pan, Xinyan;Li, Sanni;Zhao, Juan
作者机构:
关键词: hyaluronidase; topotecan; liposomes; lung cancer; pharmacokinetics
期刊名称:FRONTIERS IN ONCOLOGY ( 影响因子:3.3; 五年影响因子:3.8 )
ISSN: 2234-943X
年卷期: 2024 年 14 卷
页码:
收录情况: SCI
摘要: Lung cancer, as a serious threat to human health and life, necessitating urgent treatment and intervention. In this study, we prepared hyaluronic acid (HA)-targeted topotecan liposomes for site-specific delivery to tumor cells. The encapsulation efficiency, stability, chemical structure, and morphology of HA-targeted topotecan liposomes were studied, and the release properties, cellular uptake capacity, and therapeutic efficacy of topotecan were further investigated. Results found that the coupling efficiency of HA on the surface of PEG-coated liposomes was determined to be 13.65 nmol/mg of lipid. The HA-targeted topotecan liposomes demonstrated a high encapsulation efficiency of 95% for topotecan, with an average particle size of 98.26 nm and excellent storage and dispersion stability. Drug release and cellular experiments indicated that the coating of HA further reduced the release rate of topotecan and decreased the survival rate of A549 cells, respectively. Flow cytometry and fluorescence staining analyses revealed that the HA-targeted topotecan liposomes enhanced the uptake of topotecan and exhibited significant anti-tumor effects on A549 cancer cells transplanted in mice. H&E staining showed that the pathological tissue treated with HA-targeted topotecan liposomes corresponded to Miller-Payne grade IV. Furthermore, these liposomes increased the accumulation of topotecan in tumors and extended the blood circulation time of the drug. Therefore, HA-targeted topotecan liposomes can be used as a new and easily prepared carrier in the field of lung chemotherapy, demonstrating considerable potential for anti-tumor therapy.
分类号:
- 相关文献
作者其他论文 更多>>
-
Adsorption and in vitro controlled-release properties of a soybean cellulose nanocrystal/polyacrylamide-based hydrogel as a carrier for different polyphenols
作者:Tang, Lu;Zhao, Dan;Wang, Bo;Bai, Shiru;Fan, Bei;Zhang, Liang;Wang, Fengzhong;Wang, Bo
关键词:Hydrogel; Polyphenols; Absorption; Release; Bioavailability
-
Enhanced healing of MRSA-infected wounds with okara cellulose nanocrystals-based temperature-sensitive cationic hydrogel: Development and characterization
作者:Tang, Lu;Wang, Bo;Bai, Shiru;Liu, Xiaolin;Zhao, Dan;Fan, Bei;Zhang, Liang;Wang, Fengzhong;Wang, Bo;Wang, Fengzhong;Wang, Fengzhong
关键词:Hydrogel; Functional properties; MRSA-infected wound healing
-
NaCl inhibits Geotrichum citri-aurantii growth by inducing lipid droplets accumulation and enhances the biocontrol efficacy of Kloeckera apiculata 34-9
作者:Zhao, Juan;Zhao, Juan;Wang, Yuqing;Liu, Qianyi;Long, Chaoan;Long, Chaoan;Long, Chaoan
关键词:NaCl; Geotrichum citri-aurantii; Kloeckera apiculata; LDs; Postharvest preservation; Citrus
-
Characterization and fungicides sensitivity of Colletotrichum species causing Hydrangea macrophylla anthracnose in Beijing, China
作者:Zhao, Juan;Cheng, Yanli;Liu, Yayong;Zhang, Taotao;Qin, Wentao;Zhao, Juan;Liu, Yayong;Zhang, Taotao;Qin, Wentao;Cheng, Yanli;Shi, Xiaojing
关键词:
Hydrangea macrophylla ; anthracnose;Colletotrichum species; multi-loci phylogeny; fungicide sensitivity -
Development of mint essential oil based-nanosprays loaded with curcumin and β-carotene for accelerating wound healing
作者:Bai, Shiru;Tang, Lu;Zhao, Dan;Wang, Bo;Fan, Bei;Zhang, Liang;Wang, Fengzhong;Bai, Shiru;Zhang, Liang;Zhang, Liang;Wang, Bo
关键词:Mint essential oil; Composite nanosprays; beta-Carotene; Curcumin; Wound healing
-
Efficient adsorption of crystal violet by different temperature pyrolyzed biochar-based sodium alginate microspheres: A green solution for food industry dye removal
作者:Tang, Lu;Liu, Xiaolin;Zhang, Liang;Fan, Bei;Wang, Bo;Wang, Fengzhong;Liu, Chunxiao;Liu, Chunxiao;Fan, Bei;Wang, Fengzhong;Wang, Bo
关键词:Biochar; Sodium alginate; Microspheres; Crystal violet; Adsorption mechanism
-
E3 Ubiquitin Ligase OsRFI2 Regulates Salinity Tolerance by Targeting Ascorbate Peroxidase OsAPX8 for its Degradation in Rice
作者:Zhao, Wenjing;Wen, Junli;Zhao, Juan;Liu, Linlin;Huang, Menghan;Fang, Chaowei;Liu, Qingpo;Wang, Mei
关键词:Rice; Salt stress; E3 ubiquitin ligase; Ubiquitination; Ascorbate peroxidase