4.8 Article

Poly(caprolactone)-modified Pluronic P105 micelles for reversal of paclitaxcel-resistance in SKOV-3 tumors

Journal

BIOMATERIALS
Volume 33, Issue 18, Pages 4741-4751

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.biomaterials.2012.03.013

Keywords

Pluronic; Ploy(caprolactone); Polymeric micelles; Multidrug resistance; Paclitaxel

Funding

  1. National Natural Science Foundation of China [30873177, 81072608]
  2. Foundation for University Young Talents by the Education Department of Anhui Province of China [2009SQRZ024ZD]
  3. Anhui University [02203105]

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Three poly(caprolactone)-modified Pluronic P105 polymers (P105/PCLs) were synthesized using commercially available e-caprolactone monomers and Pluronic P105 copolymers. The chemical structures, compositions and molecular weights of the P105/PCLs were confirmed by FT-IR, H-1 NMR and GPC measurements. Three paclitaxel (PTX)-loaded P105/PCL polymeric micelles were then prepared, and they showed average diameters in the range of 30-150 nm, drug-loading coefficients of 0.15%-5.43%, and encapsulation ratios of 2.1%-76.53%. The in vitro cytotoxicity assay demonstrated that three PTX-loaded P105/PCL micelles were able to sensitize the resistant SKOV-3/PTX tumor cells. The PTX-loaded P105/PCL50 micelle was then selected for an in vivo antitumor efficacy study. The tumor volumes in nude mice bearing s.c. resistant SKOV-3/PTX carcinoma treated with this micellar PTX were significantly less than the control group treated with Taxol. It was demonstrated that three PCL-modified P105 monomers and micelles inhibited P-gP efflux activity in the resistant SKOV-3/PTX cells via at least three intracellular events: 1) inhibition of ATPase of P-gP, 2) decrease of membrane microviscosity and 3) a loss of mitochondrial membrane potential and subsequent decrease of ATP levels at the concentration of monomers (0.001%) and/or micelles (0.01-1.0%). Considering other favorable characteristics, such as sustained PTX release in vitro, long-circulating time in vivo and increased PTX concentration in the tissues of ovaries and uterus in mice, the PCL-modified Pluronic P105 polymeric micelle system could have important clinical implications for delivery of paclitaxel and treatment of the resistant ovarian tumors. (C) 2012 Elsevier Ltd. All rights reserved.

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