Niosomes from 80s to present: the state of the art.

@article{Marianecci2014NiosomesF8,
  title={Niosomes from 80s to present: the state of the art.},
  author={Carlotta Marianecci and Luisa di Marzio and Federica Rinaldi and Christian Celia and Donatella Paolino and Franco Alhaique and Sara Esposito and Maria Carafa},
  journal={Advances in colloid and interface science},
  year={2014},
  volume={205},
  pages={
          187-206
        }
}
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Niosomes As A Potential Drug Delivery System T Review
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The present review describes preparation methods, characterization techniques, and recent studies on niosomal drug delivery systems and also gives up to date information regarding recent applications of niosomes in drug delivery.
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References

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Niosomes as a potential drug delivery system for increasing the efficacy and safety of nystatin
TLDR
Niosomal encapsulation thus provided means for parenteral administration of NYS, reducing its toxicity and making it a more active antifungal agent.
Characterization of niosomes prepared with various nonionic surfactants for paclitaxel oral delivery.
TLDR
High surface charges showed that niosomes can be suspended in water well and this is beneficial for their storage and administration and the slow release observed from these formulations might be beneficial for reducing the toxic side effects of PCT.
Niosomal Delivery of Isoniazid -Development and Characterization
TLDR
The isoniazid niosomes developed are capable of reducing drug dose and toxicity as well as dosing frequency which should bring about improved patient compliance and macrophage targeting should be feasible at sites where tuberculosis bacteria are harbored.
Sustained release of acyclovir from nano-liposomes and nano-niosomes: An in vitro study
TLDR
Niosome could be a better choice for intravenous delivery of acyclovir because of its good vesicular distributions and better stability compared with the liposomes.
Niosome-Encapsulated Gentamicin for Ophthalmic Controlled Delivery
TLDR
Investigation of the feasibility of using non-ionic surfactant vesicles (niosomes) as carriers for the ophthalmic controlled delivery of a water soluble local antibiotic; gentamicin sulphate found that niosomal formulations have exhibited a high retention of gentamic in sulphate inside the vesicle such that their in vitro release was slower compared to the drug solution.
Niosome: A future of targeted drug delivery systems
TLDR
The current deepening and widening of interest of niosomes in many scientific disciplines is reviewed and, particularly, its application in medicine is reviewed.
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