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1.
Nanomedicine ; 13(5): 1693-1701, 2017 07.
Artículo en Inglés | MEDLINE | ID: mdl-28343016

RESUMEN

Chemotherapy for bone tumors is a major challenge because of the inability of therapeutics to penetrate dense bone mineral. We hypothesize that a nanostructured formulation with high affinity for bone could deliver drug to the tumor while minimizing off-target toxicity. Here, we evaluated the efficacy and toxicity of a novel bone-targeted, pH-sensitive liposomal formulation containing doxorubicin in an animal model of bone metastasis. Biodistribution studies with the liposome showed good uptake in tumor, but low accumulation of doxorubicin in the heart. Mice treated with the bone-targeted liposome formulation showed a 70% reduction in tumor volume, compared to 35% reduction for free doxorubicin at the same dose. Both cardiac toxicity and overall mortality were significantly lower for animals treated with the bone-targeted liposomes compared to free drug. Bone-targeted, pH-sensitive, doxorubicin containing liposomes represent a promising approach to selectively delivering doxorubicin to bone tumors while minimizing cardiac toxicity.


Asunto(s)
Antibióticos Antineoplásicos/administración & dosificación , Neoplasias Óseas/tratamiento farmacológico , Doxorrubicina/administración & dosificación , Liposomas , Animales , Antibióticos Antineoplásicos/toxicidad , Neoplasias Óseas/secundario , Cardiotoxicidad , Doxorrubicina/toxicidad , Concentración de Iones de Hidrógeno , Ratones , Distribución Tisular
2.
Int J Nanomedicine ; 11: 3737-51, 2016.
Artículo en Inglés | MEDLINE | ID: mdl-27563241

RESUMEN

BACKGROUND: Despite recent advances in cancer therapy, the treatment of bone tumors remains a major challenge. A possible underlying hypothesis, limitation, and unmet need may be the inability of therapeutics to penetrate into dense bone mineral, which can lead to poor efficacy and high toxicity, due to drug uptake in healthy organs. The development of nanostructured formulations with high affinity for bone could be an interesting approach to overcome these challenges. PURPOSE: To develop a liposomal formulation with high affinity for hydroxyapatite and the ability to release doxorubicin (DOX) in an acidic environment for future application as a tool for treatment of bone metastases. MATERIALS AND METHODS: Liposomes were prepared by thin-film lipid hydration, followed by extrusion and the sulfate gradient-encapsulation method. Liposomes were characterized by average diameter, ζ-potential, encapsulation percentage, X-ray diffraction, and differential scanning calorimetry. Release studies in buffer (pH 7.4 or 5), plasma, and serum, as well as hydroxyapatite-affinity in vitro analysis were performed. Cytotoxicity was evaluated by MTT assay against the MDA-MB-231 cell line, and biodistribution was assessed in bone metastasis-bearing animals. RESULTS: Liposomes presented suitable diameter (~170 nm), DOX encapsulation (~2 mg/mL), controlled release, and good plasma and serum stability. The existence of interactions between DOX and the lipid bilayer was proved through differential scanning calorimetry and small-angle X-ray scattering. DOX release was faster when the pH was in the range of a tumor than at physiological pH. The bone-targeted formulation showed a strong affinity for hydroxyapatite. The encapsulation of DOX did not interfere in its intrinsic cytotoxicity against the MDA-MB-231 cell line. Biodistribution studies demonstrated high affinity of this formulation for tumors and reduction of uptake in the heart. CONCLUSION: These results suggest that bone-targeted pH-sensitive liposomes containing DOX can be an interesting strategy for selectively delivering this drug into bone-tumor sites, increasing its activity, and reducing DOX-related toxicity.


Asunto(s)
Neoplasias Óseas/tratamiento farmacológico , Neoplasias Óseas/secundario , Huesos/efectos de los fármacos , Fenómenos Químicos , Doxorrubicina/análogos & derivados , Animales , Antibióticos Antineoplásicos/química , Tampones (Química) , Rastreo Diferencial de Calorimetría , Muerte Celular/efectos de los fármacos , Línea Celular Tumoral , Química Farmacéutica , Modelos Animales de Enfermedad , Doxorrubicina/química , Doxorrubicina/farmacología , Doxorrubicina/uso terapéutico , Durapatita/química , Femenino , Humanos , Concentración de Iones de Hidrógeno , Ratones , Ratones Endogámicos BALB C , Ratones Desnudos , Nanoestructuras/química , Polietilenglicoles/síntesis química , Polietilenglicoles/química , Polietilenglicoles/farmacología , Polietilenglicoles/uso terapéutico , Dispersión del Ángulo Pequeño , Suero , Distribución Tisular/efectos de los fármacos , Difracción de Rayos X
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