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Entrapment efficiency of docetaxel was found to be 85%% ± 3 confirming good entrapment efficiency of nanolipid carrier.
In this process, several factors impact the formation of NPs with acceptable size, polydispersity, and good entrapment efficiency.
The formulations that showed good entrapment efficiency F1, F2, F3, and F4 are described in detail and shown in this manuscript.
Formulations F5, F6, F7 and F8 were selected for enteric coating with cellulose acetate phthalate as they showed desirable shape, size, and good entrapment efficiency.
As designed, ANbp results showed better sustained (86.54% as compared to control SLNps 94.48% in 24 h) release, kinetics & stability behavior with good entrapment efficiency (97.58%) and desired smaller particle size (108 nm).
The study demonstrates that the nanoprecipitation (solvent diffusion) technique followed by lyophilization is a viable technique to obtain PLGA NPs with mean particle size of about 150 nm and good entrapment efficiencies (63.88 ± 1.5 for ETN and 41.36 ± 1.93 for QDN).
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These formulations showed an appropriate average size for ophthalmic administration (232.8 and 277.6 nm, respectively) and a good yield of entrapment efficiency (94.60% and 93.55%, respectively).
Cellulose biopolymer composite hydrogels proved to be good supports for entrapment of enzymes and have many potential applications, including drug delivery, biosensors, biofuel cells, and tissue engineering due to their inherent excellent biocompatibility and biodegradability.
On the other hand, the experimental paradigm used in this study represents a good model of entrapment (compressive) neuropathy as CCI leads to massive nerve degeneration, with changes of both axonal and myelin components [ 2, 38, 39].
Doxorubicin (DOX -loaded nanoparticles (NPs) were characterizeDOX -loaded unanoparticlesistributioNPshigh entrapment efficiency, good stability in plasma as were as a pH dependent drug release pattern.
Microspheres were discrete, spherical, free flowing and showed a good percentage of drug entrapment efficiency.
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