细胞毒性
A549电池
壳聚糖
流式细胞术
细胞凋亡
化学
IC50型
细胞周期
纳米颗粒
毒品携带者
药理学
生物物理学
色谱法
药物输送
纳米技术
分子生物学
体外
生物
生物化学
材料科学
有机化学
作者
Neeta Solanki,Meenu Mehta,Dinesh Kumar Chellappan,Gaurav Gupta,Nicole G. Hansbro,Murtaza M. Tambuwala,Alaa A. A. Aljabali,Keshav Raj Paudel,Gang Liu,Saurabh Satija,Philip M. Hansbro,Kamal Dua,Harish Dureja
出处
期刊:Future Medicinal Chemistry
[Newlands Press Ltd]
日期:2020-10-30
卷期号:12 (22): 2019-2034
被引量:56
标识
DOI:10.4155/fmc-2020-0083
摘要
Aim: In the present study boswellic acids-loaded chitosan nanoparticles were synthesized using ionic gelation technique. The influence of independent variables were studied and optimized on dependent variables using central composite design. Methodology & results: The designed nanoparticles were observed spherical in shape with an average size of 67.5-187.2 nm and have also shown an excellent entrapment efficiency (80.06 ± 0.48). The cytotoxicity assay revealed enhanced cytotoxicity for drug-loaded nanoparticles in contrast to the free drug having an IC50 value of 17.29 and 29.59 μM, respectively. Flow cytometry confirmed that treatment of cells with 40 μg/ml had arrested 22.75 ± 0.3% at SubG0 phase of the cell cycle when compared with untreated A459 cells. The observed results justified the boswellic acids-loaded chitosan nanoparticles were effective due to greater cellular uptake, sustained intercellular drug retention and enhanced antiproliferative effect by inducing apoptosis.
科研通智能强力驱动
Strongly Powered by AbleSci AI