前药
多西紫杉醇
体内
光动力疗法
血卟啉
药代动力学
分布(数学)
药理学
药效学
药物输送
药品
体外
光敏剂
化疗
材料科学
化学
医学
纳米技术
生物化学
内科学
生物
有机化学
数学
生物技术
数学分析
作者
Guolian Ren,Yujie Li,Canqi Ping,Danyu Duan,Ning Li,Jiaqi Tang,Rongrong Wang,Wenju Guo,Xiaomin Niu,Qiuyue Ji,Guolong Zhang,Shuqiu Zhang
出处
期刊:Drug Delivery
[Informa]
日期:2022-11-17
卷期号:29 (1): 3358-3369
标识
DOI:10.1080/10717544.2022.2147280
摘要
To realize the synergistic anti-tumor effect of chemotherapy and photodynamic therapy, the mono sulfide-modified docetaxel (DTX) prodrugs (DSD) provided by our laboratory and hematoporphyrin (HP) were used to physically prepare co-assembled nanoparticles (DSD/HP NPs) by nano-precipitation. For the first time, this study showed its characteristics, in vitro anti-tumor activity, pharmacokinetic behavior in rats, in vivo distribution, and pharmacodynamic effects on 4T1 tumor-bearing Bal b/c mice. DSD/HP NPs optimized by single-factor and response surface optimization had several distinct characteristics. First, it had dark purple appearance with particle size of 105.16 ± 1.24 nm, PDI of 0.168 ± 0.15, entrapment efficiency and drug loading of DSD and HP in DSD/HP NPs of 96.27 ± 1.03% and 97.70 ± 0.20%, 69.22 ± 1.03% and 20.03 ± 3.12%, respectively. Second, it had good stability and could release DTX and HP slowly in the media of pH 7.4 PBS with 10 mM DTT (H2O2). Moreover, DSD/HP NPs along with NiR treatment significantly inhibited 4T1 cells proliferation, and induced more reactive oxygen species and cells apoptosis. In vivo pharmacokinetic and pharmacodynamic studies showed that DSD/HP NPs could prolong the drug circulation time in rats, increase drug distribution in tumor site, obviously inhibit tumor growth, and decrease the exposure of drug to normal tissues. Therefore, DSD/HP NPs as a promising co-assembled nano-drug delivery system could potentially improve the therapeutic efficiency of chemotherapeutic drug and achieve better anti-tumor effects due to the combination of chemotherapy and photodynamic therapy.
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