Literature DB >> 24215124

Arginine-stabilized mPEG-PDLLA (50/50) polymeric micelles of docetaxel by electrostatic mechanism for tumor-targeted delivery.

Jifeng Shi1, Jialin Zhang, Yan Shen, Lidan Tang, Jin Zhao, Jiasheng Tu, Yu Tian, Yanli Feng.   

Abstract

Arginine-stabilized, docetaxel-loaded polymeric micelles (AR-DTX-PM) were prepared to enhance the physical stability of micelles and control the degradation of docetaxel (DTX). Amphiphilic diblock copolymers, methoxy-(Polyethylene Glycol)-block-Poly (D, L-lactide) (mPEG-PDLLA) were synthesized and used for the formulation of lyophilized DTX-PM powders. The micelles were found to have diameters of 20-30 nm with narrow polydispersity, and the entrapment efficiency was 90-100%. The accumulative release of AR-DTX-PM was higher than that of glucose-dispersed DTX-PM (Glu-DTX-PM). The results of both physical and chemical stability studies showed that the concentration of arginine required for optimum stability was 2.0 mg/ml. Preliminary investigation of the mechanisms of stabilization by arginine suggested that it is due to the electrostatic interaction as well as hydrogen bonds between DTX and arginine. The acute toxicity studies demonstrated that AR-DTX-PM was better tolerated in beagle dogs than DTX injection. However, the pharmacokinetic studies revealed no significant difference in Cmax and AUC of AR-DTX-PM compared to DTX injection. When AR-DTX-PM was administrated at a dose of 30 mg/kg, the antitumor effect was stronger than that of commercial DTX injection at 10 mg/kg, and the increase of administration dose did not cause higher toxicity. The in vivo imaging test showed that the residence time of AR-DTX-PM at tumor sites was longer than its commercial formulation. In a word, it is expected that AR-DTX-PM can reduce systemic toxicity while retaining antitumor efficacy in cancer patients.

Entities:  

Keywords:  Antitumor efficacy; L-lactide); arginine; docetaxel; methoxy-(polyethylene glycol)-block-poly (D; polymeric micelles

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Substances:

Year:  2013        PMID: 24215124     DOI: 10.3109/10717544.2013.849779

Source DB:  PubMed          Journal:  Drug Deliv        ISSN: 1071-7544            Impact factor:   6.419


  4 in total

1.  A pharmacokinetic comparison of two voriconazole formulations and the effect of CYP2C19 polymorphism on their pharmacokinetic profiles.

Authors:  Hyewon Chung; Howard Lee; Hye Kyung Han; Hyungmi An; Kyoung Soo Lim; Yong Jin Lee; Joo-Youn Cho; Seo Hyun Yoon; In-Jin Jang; Kyung-Sang Yu
Journal:  Drug Des Devel Ther       Date:  2015-05-13       Impact factor: 4.162

2.  Electrostatic interactions between polyglutamic acid and polylysine yields stable polyion complex micelles for deoxypodophyllotoxin delivery.

Authors:  Yutong Wang; Liping Huang; Yan Shen; Lidan Tang; Runing Sun; Di Shi; Thomas J Webster; Jiasheng Tu; Chunmeng Sun
Journal:  Int J Nanomedicine       Date:  2017-10-30

3.  Polyunsaturated fatty acid-based targeted nanotherapeutics to enhance the therapeutic efficacy of docetaxel.

Authors:  Thiruganesh Ramasamy; Pasupathi Sundaramoorthy; Hima Bindu Ruttala; Yongjoo Choi; Woo Hyun Shin; Jee-Heon Jeong; Sae Kwang Ku; Han-Gon Choi; Hwan Mook Kim; Chul Soon Yong; Jong Oh Kim
Journal:  Drug Deliv       Date:  2017-11       Impact factor: 6.419

4.  Matrix metalloproteinases-2/9-sensitive peptide-conjugated polymer micelles for site-specific release of drugs and enhancing tumor accumulation: preparation and in vitro and in vivo evaluation.

Authors:  Xiaoyan Zhang; Xiaofei Wang; Weitong Zhong; Xiaoqing Ren; Xianyi Sha; Xiaoling Fang
Journal:  Int J Nanomedicine       Date:  2016-04-22
  4 in total

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