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Cisplatin-loaded polymeric complex micelles with a modulated drug/copolymer ratio for improved in vivo performance.
- Source :
-
Acta biomaterialia [Acta Biomater] 2019 Jul 01; Vol. 92, pp. 205-218. Date of Electronic Publication: 2019 May 06. - Publication Year :
- 2019
-
Abstract
- This study aimed to evaluate the performance of cisplatin-loaded polymeric micelles (CDDP-PMs) with different drug/copolymer ratios of 1:1, 1:3 and 1:6 (w/w) prepared by coordinated complexation and self-assembly method. The mass ratio influenced the self-assembly behaviors and the complex degree, where both single- and double- complexation existed in CDDP-PMs. With the increase of CDDP/copolymer ratio, the particle size and drug loading increased, while encapsulation efficiency decreased. The PEG density of CDDP-PM <subscript>1-6</subscript> , CDDP-PM <subscript>1-3</subscript> and CDDP-PM <subscript>1-1</subscript> were 0.20, 0.61 and 0.38 PEG/nm <superscript>2</superscript> , respectively. CDDP-PM <subscript>1-3</subscript> and CDDP-PM <subscript>1-6</subscript> had similar sustained release behavior, while CDDP-PM <subscript>1-1</subscript> showed burst release. Pharmacokinetics showed the AUC of CDDP-PM <subscript>1-6</subscript> , CDDP-PM <subscript>1-3</subscript> and CDDP-PM <subscript>1-1</subscript> was 27.2, 76.6 and 13.0 fold higher than CDDP solution. Tissue distribution presented the platinum concentration of CDDP-PM <subscript>1-6</subscript> , CDDP-PM <subscript>1-3</subscript> and CDDP-PM <subscript>1-1</subscript> was 1.03, 0.80 and 0.48 times of CDDP solution in kidney at 10 min, and 17.61, 28.63 and 16.6 times in tumor at 48 h respectively, indicating CDDP-PMs significantly reduced nephrotoxicity and increased tumor-targeting accumulation. In vivo antitumor test showed that CDDP-PMs exhibited an improved antitumor efficacy and lower systemic toxicity compared with CDDP solution. From CDDP-PM <subscript>1-1</subscript> to CDDP-PM <subscript>1-6</subscript> , the toxicity decreased with the increase of copolymer ratio, but the tumor inhibition rate also decreased. CDDP-PM <subscript>1-3</subscript> had relative high therapeutic effect and low toxicity compared with other formulations. CDDP-PM <subscript>1-3</subscript> could improve the antitumor efficacy by increasing the dose within systemic tolerability, but CDDP solution cannot. This work provides an effective strategy by modulating drug/copolymer ratio of CDDP-PMs to balance the antitumor efficacy and toxicity for better payoff. STATEMENT OF SIGNIFICANCE: Cancer chemotherapy always exists a contradiction between antitumor efficacy and toxicity. Higher efficacy against tumor often associated with larger toxicity for normal tissues. This work provides an important strategy by modulating the drug/copolymer ratios to balance the antitumor efficacy and toxicity to obtain better payoff. The cisplatin-loaded polymeric micelles (CDDP-PMs) based on the complexation between CDDP and copolymer with different mass ratios make differences in vitro and in vivo because of the single- or double-complexation degree. Most importantly, we found the balance at CDDP/copolymer ratio of 1:3, which has relative high therapeutic effect and low toxicity compared with other formulations. CDDP-PM <subscript>1-3</subscript> could improve the antitumor efficacy by increasing the dose within systemic tolerability, but CDDP solution cannot.<br /> (Copyright © 2019 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.)
- Subjects :
- Animals
Antineoplastic Agents pharmacokinetics
Antineoplastic Agents pharmacology
Apoptosis
Cell Line, Tumor
Cisplatin pharmacokinetics
Colloids chemistry
Drug Liberation
Humans
Male
Mice, Inbred BALB C
Mice, Nude
Particle Size
Polyethylene Glycols chemical synthesis
Polyethylene Glycols chemistry
Proton Magnetic Resonance Spectroscopy
Rats, Sprague-Dawley
Static Electricity
Tissue Distribution drug effects
Tumor Burden
Cisplatin pharmacology
Micelles
Polymers chemistry
Subjects
Details
- Language :
- English
- ISSN :
- 1878-7568
- Volume :
- 92
- Database :
- MEDLINE
- Journal :
- Acta biomaterialia
- Publication Type :
- Academic Journal
- Accession number :
- 31071475
- Full Text :
- https://doi.org/10.1016/j.actbio.2019.05.007