Preparation of PLGA/Rose Bengal colloidal particles by double emulsion and layer-by-layer for breast cancer treatment

MF Loya-Castro, M Sánchez-Mejía… - Journal of colloid and …, 2018 - Elsevier
MF Loya-Castro, M Sánchez-Mejía, DR Sánchez-Ramírez, R Domínguez-Ríos, N Escareño
Journal of colloid and interface science, 2018Elsevier
The use of colloidal particles (CPs) in the transport of drugs is developing rapidly thanks to
its effectiveness and biosafety, especially in the treatment of various types of cancer. In this
study Rose Bengal/PLGA CPs synthesized by double emulsion (W/O/W) and by electrostatic
adsorption (layer-by-layer), were characterized and evaluated as potential breast cancer
treatment. CPs were evaluated in terms of size, zeta potential, drug release kinetics and cell
viability inhibition efficacy with the triple negative breast cancer cell line HCC70. The results …
Abstract
The use of colloidal particles (CPs) in the transport of drugs is developing rapidly thanks to its effectiveness and biosafety, especially in the treatment of various types of cancer. In this study Rose Bengal/PLGA CPs synthesized by double emulsion (W/O/W) and by electrostatic adsorption (layer-by-layer), were characterized and evaluated as potential breast cancer treatment. CPs were evaluated in terms of size, zeta potential, drug release kinetics and cell viability inhibition efficacy with the triple negative breast cancer cell line HCC70. The results showed that both types of CPs can be an excellent alternative to conventional cancer treatment by taking advantage of the enhanced permeation and retention (EPR) effect, manifested by solid tumors; however, the double emulsion CPs showed more suitable delivery times of up to 60% within two days, while layer-by-layer showed fast release of 50% in 90 min. Both types of CPs were capable to decrease cell viability, which encourage us to further testing in in vivo models to prove their efficacy and feasible use in the treatment of triple negative breast cancer.
Elsevier
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