Literature DB >> 8142172

Enhanced cytotoxicity of doxorubicin encapsulated in polyisohexylcyanoacrylate nanospheres against multidrug-resistant tumour cells in culture.

S Bennis1, C Chapey, P Couvreur, J Robert.   

Abstract

We have studied the cytotoxicity and accumulation of doxorubicin encapsulated in polyisohexylcyanoacrylate nanospheres in a model of doxorubicin-resistant rat glioblastoma variants differing by their degree of resistance to this drug. We observed that the particulate form of doxorubicin was always more cytotoxic than free doxorubicin, whereas coadministration of drug-unloaded nanospheres with free doxorubicin did not modify significantly doxorubicin cytotoxicity. In C6 0.001 cells, which were 6-fold resistant and present a pure multidrug-resistant phenotype, the reversal of doxorubicin resistance was complete. In C6 0.1 cells, which were 60-fold resistant, as with C6 1V cells (selected with vincristine), the reversal of doxorubicin resistance was almost complete, with a residual resistance factor of 2-3. In C6 0.5 cells, which were 600-fold resistant to doxorubicin, the reversal of resistance was only partial and, in all cases, not above the expected participation of P-glycoprotein to the phenotype of resistance. Intracellular drug accumulation after 2-h exposure to 17.2 mumol/l doxorubicin was systematically reduced by a factor of 2-3 when doxorubicin was incubated under the form of nanospheres; doxorubicin accumulation after a 2-h exposure to IC50 was also highly reduced in all cell lines for doxorubicin-loaded nanospheres. This work shows that association of doxorubicin with nanoparticles could provide a useful tool for circumventing multidrug resistance, probably by a bypass of P-glycoprotein rather than by an inhibition of this pump.

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Year:  1994        PMID: 8142172     DOI: 10.1016/s0959-8049(05)80025-5

Source DB:  PubMed          Journal:  Eur J Cancer        ISSN: 0959-8049            Impact factor:   9.162


  28 in total

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Authors:  Xiaowei Dong; Russell J Mumper
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2.  Ability of doxorubicin-loaded nanoparticles to overcome multidrug resistance of tumor cells after their capture by macrophages.

Authors:  C E Soma; C Dubernet; G Barratt; F Nemati; M Appel; S Benita; P Couvreur
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4.  Ketoprofen-loaded polymeric nanocapsules selectively inhibit cancer cell growth in vitro and in preclinical model of glioblastoma multiforme.

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Review 6.  Drug delivery systems for intraperitoneal therapy.

Authors:  Gaurav Bajaj; Yoon Yeo
Journal:  Pharm Res       Date:  2010-03-03       Impact factor: 4.200

7.  Co-delivery of doxorubicin and Bcl-2 siRNA by mesoporous silica nanoparticles enhances the efficacy of chemotherapy in multidrug-resistant cancer cells.

Authors:  Alex M Chen; Min Zhang; Dongguang Wei; Dirk Stueber; Oleh Taratula; Tamara Minko; Huixin He
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8.  Doxorubicin loaded pH-sensitive micelle: antitumoral efficacy against ovarian A2780/DOXR tumor.

Authors:  Dongin Kim; Eun Seong Lee; Kyeongsoon Park; Ick Chan Kwon; You Han Bae
Journal:  Pharm Res       Date:  2008-05-01       Impact factor: 4.200

9.  Self-assembled polyethylenimine-graft-poly(epsilon-caprolactone) micelles as potential dual carriers of genes and anticancer drugs.

Authors:  Li Yan Qiu; You Han Bae
Journal:  Biomaterials       Date:  2007-06-20       Impact factor: 12.479

10.  Daunorubicin-loaded magnetic nanoparticles of Fe3O4 overcome multidrug resistance and induce apoptosis of K562-n/VCR cells in vivo.

Authors:  Bao-an Chen; Bin-bin Lai; Jian Cheng; Guo-hua Xia; Feng Gao; Wen-lin Xu; Jia-hua Ding; Chong Gao; Xin-chen Sun; Cui-rong Xu; Wen-ji Chen; Ning-na Chen; Li-jie Liu; Xiao-mao Li; Xue-mei Wang
Journal:  Int J Nanomedicine       Date:  2009-10-19
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