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Silk-fibroin-coated liposomes for long-term and targeted drug delivery

Many barriers to drug delivery into a tumor site require careful consideration when designing a new drug. In this study, the adhesive targeting and drug specificity of modified liposomal vesicles on human-scar-producing cells, keloid fibroblasts, were investigated. Keloids express abundant levels of...

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Detalles Bibliográficos
Autores principales: Gobin, Andrea S, Rhea, Robyn, Newman, Robert A, Mathur, Anshu B
Formato: Texto
Lenguaje:English
Publicado: Dove Medical Press 2006
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2426758/
https://www.ncbi.nlm.nih.gov/pubmed/17722265
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author Gobin, Andrea S
Rhea, Robyn
Newman, Robert A
Mathur, Anshu B
author_facet Gobin, Andrea S
Rhea, Robyn
Newman, Robert A
Mathur, Anshu B
author_sort Gobin, Andrea S
collection PubMed
description Many barriers to drug delivery into a tumor site require careful consideration when designing a new drug. In this study, the adhesive targeting and drug specificity of modified liposomal vesicles on human-scar-producing cells, keloid fibroblasts, were investigated. Keloids express abundant levels of mucopolysaccharides and receptor tyrosine kinase (RTK). In this report, the structural properties, drug release kinetics, and therapeutic availability of silk-fibroin-coated, emodin-loaded liposomes (SF-ELP), compared with uncoated, emodin-loaded liposomes (ELP), were investigated. SF-ELP had a highly organized lamellae structure, which contributed to 55% of the liposomal diameter. This modified liposomal structure decreased emodin release rates by changing the release kinetics from a swelling and diffusional process to a purely diffusional process, probably due to steric hindrance. SF-ELP also increased adhesion targeting to keloid fibroblasts. Increased retention of SF-ELP is most likely due to the interaction of the fibrous protein coating around the ELP with the pericellular molecules around the cell. SF-ELP also decreased survival rate of keloids that expressed high levels of RTK. These results demonstrated that SF-ELP enhanced emodin delivery by improved diffusion kinetics and specific cell targeting.
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spelling pubmed-24267582008-06-20 Silk-fibroin-coated liposomes for long-term and targeted drug delivery Gobin, Andrea S Rhea, Robyn Newman, Robert A Mathur, Anshu B Int J Nanomedicine Original Research Many barriers to drug delivery into a tumor site require careful consideration when designing a new drug. In this study, the adhesive targeting and drug specificity of modified liposomal vesicles on human-scar-producing cells, keloid fibroblasts, were investigated. Keloids express abundant levels of mucopolysaccharides and receptor tyrosine kinase (RTK). In this report, the structural properties, drug release kinetics, and therapeutic availability of silk-fibroin-coated, emodin-loaded liposomes (SF-ELP), compared with uncoated, emodin-loaded liposomes (ELP), were investigated. SF-ELP had a highly organized lamellae structure, which contributed to 55% of the liposomal diameter. This modified liposomal structure decreased emodin release rates by changing the release kinetics from a swelling and diffusional process to a purely diffusional process, probably due to steric hindrance. SF-ELP also increased adhesion targeting to keloid fibroblasts. Increased retention of SF-ELP is most likely due to the interaction of the fibrous protein coating around the ELP with the pericellular molecules around the cell. SF-ELP also decreased survival rate of keloids that expressed high levels of RTK. These results demonstrated that SF-ELP enhanced emodin delivery by improved diffusion kinetics and specific cell targeting. Dove Medical Press 2006-03 /pmc/articles/PMC2426758/ /pubmed/17722265 Text en © 2006 Dove Medical Press Limited. All rights reserved
spellingShingle Original Research
Gobin, Andrea S
Rhea, Robyn
Newman, Robert A
Mathur, Anshu B
Silk-fibroin-coated liposomes for long-term and targeted drug delivery
title Silk-fibroin-coated liposomes for long-term and targeted drug delivery
title_full Silk-fibroin-coated liposomes for long-term and targeted drug delivery
title_fullStr Silk-fibroin-coated liposomes for long-term and targeted drug delivery
title_full_unstemmed Silk-fibroin-coated liposomes for long-term and targeted drug delivery
title_short Silk-fibroin-coated liposomes for long-term and targeted drug delivery
title_sort silk-fibroin-coated liposomes for long-term and targeted drug delivery
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2426758/
https://www.ncbi.nlm.nih.gov/pubmed/17722265
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