Formulation and Evaluation of Itraconazole Nanosuspension

Prijzen vanaf
59,25

Uitgelicht

VERGELIJK ALLE AANBIEDERS (2)

Beschrijving

Bol Poor water solubility of active pharmaceutical ingredients (APIs) presents a significant challenge in oral drug administration, leading to reduced bioavailability and compromised therapeutic effectiveness. This study aimed to address this issue by developing an optimized itraconazole nanosuspension for intranasal delivery, potentially enhancing drug availability across the blood-brain barrier. Then a nanosuspension was prepared and characterized using various analytical techniques. FTIR and DSC analyses verified the drug's chemical structure and crystalline state .A Box-Behnken Design was employed to optimize the formulation, resulting in nanoparticles with favorable size, polydispersity index, zeta potential, and entrapment efficiency. TEM imaging revealed a core-shell structure of the nanoparticles. The optimized nanosuspension demonstrated improved drug release compared to a conventional suspension. These findings suggest that the developed itraconazole nanosuspension has potential to enhance the drug's solubility and bioavailability.

Vergelijk aanbieders (2)

Shop
Prijs
Verzendkosten
Totale prijs
59,25
Gratis
59,25
Naar shop
Gratis Shipping Costs
60,90
Gratis
60,90
Naar shop
Gratis Shipping Costs
Beschrijving (2)
Bol

Poor water solubility of active pharmaceutical ingredients (APIs) presents a significant challenge in oral drug administration, leading to reduced bioavailability and compromised therapeutic effectiveness. This study aimed to address this issue by developing an optimized itraconazole nanosuspension for intranasal delivery, potentially enhancing drug availability across the blood-brain barrier. Then a nanosuspension was prepared and characterized using various analytical techniques. FTIR and DSC analyses verified the drug's chemical structure and crystalline state .A Box-Behnken Design was employed to optimize the formulation, resulting in nanoparticles with favorable size, polydispersity index, zeta potential, and entrapment efficiency. TEM imaging revealed a core-shell structure of the nanoparticles. The optimized nanosuspension demonstrated improved drug release compared to a conventional suspension. These findings suggest that the developed itraconazole nanosuspension has potential to enhance the drug's solubility and bioavailability.

Amazon

Pages: 104, Paperback, LAP Lambert Academic Publishing


Productspecificaties

Merk LAP LAMBERT Academic Publishing
EAN
  • 9786208427740
Maat


Prijshistorie

* Prijshistorie bevat geen data van Amazon.

Prijzen voor het laatst bijgewerkt op:

Uitgelichte Keuze
59,25
Naar shop