资源类型:
期刊
WOS体系:
Article
Pubmed体系:
Journal Article
收录情况:
◇ SCIE
文章类型:
论著
机构:
[1]Department of Urology, Xuanwu Hospital, Capital Medical University, Beijing 100053, China.
外科系统
泌尿外科
首都医科大学宣武医院
[2]College of Veterinary Medicine, China Agricultural University, Beijing 100193, China.
[3]Department of Urology, Xuanwu Hospital, Capital Medical University, Beijing 100053, China.
外科系统
泌尿外科
首都医科大学宣武医院
[4]Department of Pathology, The 8th Medical Center, Chinese PLA General Hospital, Beijing 100091, China.
ISSN:
0753-3322
关键词:
Drug-resistant
Bladder cancer
Targeted delivery
Mesoporous silica
Aptamer
摘要:
Chemotherapy is the main treatment for bladder cancer, but drug resistance and side effects limit its application and therapeutic effect. Herein, we constructed doxorubicin (DOX)/COOH-mesoporous silica nanoparticle/polyethylenimine (PEI)/nucleic acid chimeras (DOX/MSN/Chimeras) to reduce the toxicity of chemotherapy drugs and the resistance of bladder cancer cells. Transmission electron microscopy showed that PEI was coated on the DOX/MSN/BSA nanoparticles with a diameter of about 150 nm. DOX/MSN/PEI could control DOX release for over 48 h, and the sudden release rate was significantly lower than DOX/MSN. Immunohistochemical results showed that DOX/MSN/Chimera specifically bound to bladder cancer cells, and markedly inhibited PI3K expression and proliferation of DOX-resistant bladder cancer cells. DOX/MSN/Chimera promoted the apoptosis of drug-resistant bladder cancer cells, which was superior to DOX/MSN/Aptamer or DOX/MSN. We further carried out animal experiments and found that DOX/MSN/Chimera could reduce the volume of transplanted tumors in vivo. Compared with DOX/MSN/Aptamer group, the proliferation rate was significantly decreased and the proportion of apoptotic cells was highly increased. Through the histological observation of kidneys and lungs, we believed that DOX/MSN/Chimera can effectively reduce the damage of chemotherapy drugs to normal tissues. In conclusion, we constructed a COOH-MSN/nucleic acid chimera conjugate for the targeted delivery of siRNA and anti-cancer drugs. Our study provides a new method for personalized and targeted treatment of drug-resistant bladder cancer.Copyright © 2024. Published by Elsevier Masson SAS.
被引次数:
1
WOS:
WOS:001280777400001
PubmedID:
39053429
中科院(CAS)分区:
出版当年[2023]版:
大类
|
2 区
医学
小类
|
1 区
药学
2 区
医学:研究与实验
最新[2023]版:
大类
|
2 区
医学
小类
|
1 区
药学
2 区
医学:研究与实验
JCR分区:
出版当年[2022]版:
Q1
MEDICINE, RESEARCH & EXPERIMENTAL
Q1
PHARMACOLOGY & PHARMACY
最新[2023]版:
Q1
MEDICINE, RESEARCH & EXPERIMENTAL
Q1
PHARMACOLOGY & PHARMACY
影响因子:
6.9
最新[2023版]
6.8
最新五年平均
7.5
出版当年[2022版]
6.8
出版当年五年平均
7.419
出版前一年[2021版]
6.9
出版后一年[2023版]
第一作者:
Yang Jintao
第一作者机构:
[1]Department of Urology, Xuanwu Hospital, Capital Medical University, Beijing 100053, China.
共同第一作者:
Liu Biao
通讯作者:
Ou Tongwen;Chen Wen
推荐引用方式(GB/T 7714):
Yang Jintao,Liu Biao,Wang Qi,et al.Carboxylated mesoporous silica nanoparticle-nucleic acid chimera conjugate-assisted delivery of siRNA and doxorubicin effectively treat drug-resistant bladder cancer[J].BIOMEDICINE & PHARMACOTHERAPY.2024,178:117185.doi:10.1016/j.biopha.2024.117185.
APA:
Yang Jintao,Liu Biao,Wang Qi,Yan Hao,Li Guangping...&Chen Wen.(2024).Carboxylated mesoporous silica nanoparticle-nucleic acid chimera conjugate-assisted delivery of siRNA and doxorubicin effectively treat drug-resistant bladder cancer.BIOMEDICINE & PHARMACOTHERAPY,178,
MLA:
Yang Jintao,et al."Carboxylated mesoporous silica nanoparticle-nucleic acid chimera conjugate-assisted delivery of siRNA and doxorubicin effectively treat drug-resistant bladder cancer".BIOMEDICINE & PHARMACOTHERAPY 178.(2024):117185