2011
DOI: 10.1007/s11095-011-0602-7
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The Use of Nano Polymeric Self-Assemblies Based on Novel Amphiphilic Polymers for Oral Hydrophobic Drug Delivery

Abstract: Ch(5) and Dansyl(10) showed promising potential as nano-carriers for oral hydrophobic drug delivery.

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Cited by 16 publications
(4 citation statements)
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“…To date, there have been only limited in vitro studies on the use of amphiphilic starch nanospheres for improving the bioavailability of hydrophobic drugs . Nanospheres are used as drug carriers to achieve prolonged release of drugs with a specific release.…”
Section: In Vitro Release Studies Of the Nanospheresmentioning
confidence: 99%
“…To date, there have been only limited in vitro studies on the use of amphiphilic starch nanospheres for improving the bioavailability of hydrophobic drugs . Nanospheres are used as drug carriers to achieve prolonged release of drugs with a specific release.…”
Section: In Vitro Release Studies Of the Nanospheresmentioning
confidence: 99%
“…Amphiphilic polymers are comprised of hydrophilic and hydrophobic domains which spontaneously aggregate into core-shell nano-aggregates in aqueous environments. Poly(allylamine) grafted amphiphiles have been reported in the solubilisation of lipophilic drug molecules including propofol, prednisolone, griseofulvin (132) and the novel anticancer therapeutic BNIPDaoct (previously discussed) [47]. The formation of a polymer-HNP conjugate resulted in a bifunctional platform that can be used for image guided drug delivery via exploitation of the inherent magnetism possessed by the iron oxide core.…”
Section: Iron Oxide Incorporated Into Supramolecular Systemsmentioning
confidence: 99%
“…During the past few decades, amphiphilic polymers (APs) have been intensively studied owing to their ability to self‐assemble into various nanostructures and to mimic biological systems . After incorporation of environmentally sensitive moieties, the hydrophilic‐to‐hydrophobic balance of APs can be readily tuned when exposed to external stimuli, like pH, light, temperature, gas or ionic strength, which facilitates controlling the size, shape, and disassembly behaviors of the self‐assembled APs, enabling a wide‐range of applications like drug delivery, dispersants, emulsifiers, nanoreactors, nanosensors, and biological functional models .…”
Section: Introductionmentioning
confidence: 99%