Lipid-dendrimer hybrid nanosystem as a novel delivery system for paclitaxel to treat ovarian cancer

2015 ◽  
Vol 220 ◽  
pp. 438-446 ◽  
Author(s):  
Yuanjie Liu ◽  
Yiwei Ng ◽  
Ming R. Toh ◽  
Gigi N.C. Chiu
2013 ◽  
Vol 10 (10) ◽  
pp. 3913-3921 ◽  
Author(s):  
Natalia V. Nukolova ◽  
Hardeep S. Oberoi ◽  
Yi Zhao ◽  
Vladimir P. Chekhonin ◽  
Alexander V. Kabanov ◽  
...  

2015 ◽  
Vol 47 (3) ◽  
pp. 1070-1076 ◽  
Author(s):  
ZHAO LI ◽  
LIPING SUN ◽  
ZAIJUN LU ◽  
XUANTAO SU ◽  
QIFENG YANG ◽  
...  

Molecules ◽  
2020 ◽  
Vol 25 (11) ◽  
pp. 2621
Author(s):  
Xinli Guo ◽  
Zhou Fang ◽  
Min Zhang ◽  
Deyu Yang ◽  
Shuyue Wang ◽  
...  

In order to enhance the sensitivity of drug-resistant ovarian cancer cells to cisplatin (DDP), a co-delivery system was designed for simultaneous delivery of curcumin (CUR) and p53 DNA. Firstly, the bifunctional peptide K14 composed of tumor targeting peptide (tLyP-1) and nuclear localization signal (NLS) was synthesized. A nonviral carrier (PEI-K14) was synthesized by cross-linking low molecular weight polyethyleneimine (PEI) with K14. Then, CUR was coupled to PEI-K14 by matrix metalloproteinase 9 (MMP9)-cleavable peptide to prepare CUR-PEI-K14. A co-delivery system, named CUR-PEI-K14/p53, was obtained by CUR-PEI-K14 and p53 self-assembly. Furthermore, the physicochemical properties and gene transfection efficiency were evaluated. Finally, ovarian cancer cisplatin-resistant (SKOV3-DDP) cells were selected to evaluate the effect of CUR-PEI-K14/p53 on enhancing the sensitivity of drug-resistant cells to DDP. The CUR-PEI-K14/DNA complexes appeared uniformly dispersed and spherical. The particle size was around 20–150 nm and the zeta potential was around 18–37 mV. It had good stability, high transfection efficiency, and low cytotoxicity. CUR-PEI-K14/p53 could significantly increase the sensitivity of SKOV3-DDP cells to DDP, and this effect was better as combined with DDP. The sensitizing effect might be related to the upregulation of p53 messenger RNA (mRNA), the downregulation of P-glycoprotein (P-gp) mRNA, and the upregulation of BCL2-Associated X (bax) mRNA. CUR-PEI-K14/p53 can be used as an effective strategy to enhance the sensitivity of drug-resistant ovarian cancer cells to DDP.


2019 ◽  
Vol 13 (1) ◽  
pp. 49-58 ◽  
Author(s):  
Erfaneh Ghassami ◽  
Jaleh Varshosaz ◽  
Mohsen Minaiyan ◽  
Mehrab Nasirikenari ◽  
Seyed M. Hoseini

Background:Docetaxel is a notably efficient anticancer drug administered for several types of malignancies including ovarian cancer. However, various side effects caused either by the nonspecific distribution of the active ingredient or by high contents of Tween 80 and ethanol in the currently marketed formulations, could even deprive the patients of the treatment.Objectives:In the current study, a novel targeted delivery system composed of Ecoflex® polymeric nanoparticles loaded with docetaxel and equipped with HER-2 specific aptamer molecules was evaluated regarding blood and tissue toxicity, and biodistribution.Method:The tumor-bearing nude mice, achieved by subcutaneous injection of SKOV-3 cells, were divided into four groups treated with normal saline, Taxotere®, targeted docetaxel nanoparticles, and non-targeted docetaxel nanoparticles. Few patents were alos cied in the article.Results:According to the results of hematologic evaluations, almost all hematologic parameters were in normal range with no significant difference among the four groups. Histopathological studies revealed that treatment with targeted nanoparticles caused a remarkable reduction in mitosis in tumor sections and overall reduced organ toxicity compared with Taxotere®. The only exception was spleen in which more damage was caused by the nanoparticles. The results of the biodistribution study were also in accordance with pathological assessments, with significantly lower drug concentration in non-tumor tissues, except for spleen, when targeted nanoparticles were used compared with Taxotere®.Conclusion:These results could evidence the efficiency of the targeted delivery system in concentrating the drug cargo mostly in its site of action leading to the elimination of its adverse effects caused by exposure of other tissues to the cytotoxic agent.


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