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The fabrication and characterization of a PLGA nanoparticle–Pheroid® combined drug delivery system combined drug delivery system

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dc.contributor.author Chelopo, MP
dc.contributor.author Kalombo, Lonji
dc.contributor.author Wesley-Smith, J
dc.contributor.author Grobler, A
dc.contributor.author Hayeshi, R
dc.date.accessioned 2018-05-31T09:11:08Z
dc.date.available 2018-05-31T09:11:08Z
dc.date.issued 2017-03
dc.identifier.citation Chelopo, M.P., Kalombo, L., Wesley-Smith, J., Grobler, A. and Hayeshi, R. 2017. The fabrication and characterization of a PLGA nanoparticle–Pheroid® combined drug delivery system combined drug delivery system. Journal of Materials Science, vol 52(6), pp 3133-3145 en_US
dc.identifier.issn 0022-2461
dc.identifier.uri https://link.springer.com/article/10.1007/s10853-016-0602-4
dc.identifier.uri http://hdl.handle.net/10204/10243
dc.description Copyright: 2017. Springer. Due to copyright restrictions, the attached PDF file only contains the abstract of the full text item. For access to the full text item, please consult the publisher's website. The definitive version of the work is published in Journal of Materials Science, vol 52(6), pp 3133-3145 en_US
dc.description.abstract The combination of polymeric nanoparticles (NPs) as a core and lipid vesicles as a shell has emerged to be a robust and promising drug delivery strategy. This study explores the development of a novel combined delivery system where poly d,l, lactic-co-glycolic acid (PLGA) NPs are entrapped within Pheroid® drug delivery system. The solid NPs were combined with the Pheroid® vesicles using two different methods: pre-mix and post-mix. The surface properties of the PLGA NPs were altered through the inclusion (pos-NPs) and exclusion (neg-NPs) of chitosan (CT) and polyethylene glycol (PEG), to evaluate their interaction with the Pheroid® Vesicles. The average particle size of the novel NP–Pheroid® combined system ranged from approximately 1990–2450 nm while the zeta potential (ZP) ranged from -18 to -30 mV, measured using dynamic light scattering (DLS) and electrophoretic velocity techniques, respectively. The NP/Pheroid® mixing ratio experiment indicated that a maximum of 2.5% (w/v) NPs can be optimally added to the Pheroid® vesicles without compromising the structure and the stability of the NP–Pheroid® combined system. Visual analysis of this system was done through transmission electron microscopy (TEM), cryogenic (cryo) TEM and confocal laser scanning microscopy (CLSM) techniques to obtain adequate information of this novel combined drug delivery system which includes the localization of the PLGA NPs with the Pheroid® vesicles. en_US
dc.language.iso en en_US
dc.publisher Springer Verlag en_US
dc.relation.ispartofseries Workflow;20509
dc.subject Chitosan en_US
dc.subject Combine System en_US
dc.subject Dynamic Light Scattering en_US
dc.subject Zeta Potential en_US
dc.title The fabrication and characterization of a PLGA nanoparticle–Pheroid® combined drug delivery system combined drug delivery system en_US
dc.type Article en_US
dc.identifier.apacitation Chelopo, M., Kalombo, L., Wesley-Smith, J., Grobler, A., & Hayeshi, R. (2017). The fabrication and characterization of a PLGA nanoparticle–Pheroid® combined drug delivery system combined drug delivery system. http://hdl.handle.net/10204/10243 en_ZA
dc.identifier.chicagocitation Chelopo, MP, Lonji Kalombo, J Wesley-Smith, A Grobler, and R Hayeshi "The fabrication and characterization of a PLGA nanoparticle–Pheroid® combined drug delivery system combined drug delivery system." (2017) http://hdl.handle.net/10204/10243 en_ZA
dc.identifier.vancouvercitation Chelopo M, Kalombo L, Wesley-Smith J, Grobler A, Hayeshi R. The fabrication and characterization of a PLGA nanoparticle–Pheroid® combined drug delivery system combined drug delivery system. 2017; http://hdl.handle.net/10204/10243. en_ZA
dc.identifier.ris TY - Article AU - Chelopo, MP AU - Kalombo, Lonji AU - Wesley-Smith, J AU - Grobler, A AU - Hayeshi, R AB - The combination of polymeric nanoparticles (NPs) as a core and lipid vesicles as a shell has emerged to be a robust and promising drug delivery strategy. This study explores the development of a novel combined delivery system where poly d,l, lactic-co-glycolic acid (PLGA) NPs are entrapped within Pheroid® drug delivery system. The solid NPs were combined with the Pheroid® vesicles using two different methods: pre-mix and post-mix. The surface properties of the PLGA NPs were altered through the inclusion (pos-NPs) and exclusion (neg-NPs) of chitosan (CT) and polyethylene glycol (PEG), to evaluate their interaction with the Pheroid® Vesicles. The average particle size of the novel NP–Pheroid® combined system ranged from approximately 1990–2450 nm while the zeta potential (ZP) ranged from -18 to -30 mV, measured using dynamic light scattering (DLS) and electrophoretic velocity techniques, respectively. The NP/Pheroid® mixing ratio experiment indicated that a maximum of 2.5% (w/v) NPs can be optimally added to the Pheroid® vesicles without compromising the structure and the stability of the NP–Pheroid® combined system. Visual analysis of this system was done through transmission electron microscopy (TEM), cryogenic (cryo) TEM and confocal laser scanning microscopy (CLSM) techniques to obtain adequate information of this novel combined drug delivery system which includes the localization of the PLGA NPs with the Pheroid® vesicles. DA - 2017-03 DB - ResearchSpace DP - CSIR KW - Chitosan KW - Combine System KW - Dynamic Light Scattering KW - Zeta Potential LK - https://researchspace.csir.co.za PY - 2017 SM - 0022-2461 T1 - The fabrication and characterization of a PLGA nanoparticle–Pheroid® combined drug delivery system combined drug delivery system TI - The fabrication and characterization of a PLGA nanoparticle–Pheroid® combined drug delivery system combined drug delivery system UR - http://hdl.handle.net/10204/10243 ER - en_ZA


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