Local cover image
Local cover image
Image from OpenLibrary

A pharmaceutical study on a central nervous system acting drug for intranasal administration / Marian Joseph Naguib ; Supervised Samia A. Nour , Nevine S. Abdelmalak

By: Contributor(s): Material type: TextLanguage: English Publication details: Cairo : Marian Joseph Naguib , 2016Description: 169 P. : charts ; 25cmOther title:
  • دراسة صيدلية على توصيل عقار يعمل على الجهاز العصبى المركزى عن طريق الانف [Added title page title]
Subject(s): Online resources: Available additional physical forms:
  • Issued also as CD
Dissertation note: Thesis (Ph.D.) - Cairo University - Faculty of Pharmacy - Department of Pharmaceutics Summary: This study aimed to formulate clonazepam (CZ) as intranasal nanocarriers for immediate control of status epilepticus. Nanocarriers generally have the ability to deliver the drug to the brain through olfactory and trigeminal nerves pathways circumventing the blood brain barrier. Chapter I: Formulation of clonazepam loaded polymeric micelles. A three-level three-factor central composite face-centered design (3³ CCFD) was applied for the preparation using thin film hydration technique. The independent variables were; pluronic® P123 concentration (X₁), Pluronics®: drug ratio (X₂) and hydration volume (X₃). The seventeen prepared formulae were evaluated for: Y₁: entrapment efficiency (%), Y₂: particle size (nm), Y₃: polydispersity index , Y₄: zeta potential (mV), Y₅: cumulative clonazepam released after eight hours (%), Y₆: time for the release of 50% of drug (hr) and Y₇: dissolution efficiency. All the responses except particle size and zeta potential were influenced by the studied variables. Optimization was done by maximizing entrapment efficiency, amount released after eight hours and dissolution efficiency and minimizing polydispersity index and time for the release of 50% drug. The highest desirability value obtained was 0.921 and was denoted to: X₁=50%, X₂=40:1 and X₃=10 ml (formula PM7). Differential scanning calorimetery and transmission electron microscopy demonstrated the ability of the optimized formula to incorporate clonazepam. This formula showed good thermodynamic and kinetic stability when stored for 4 weeks at room temperature. Chapter II: Formulation of clonazepam loaded Transferosomes. Full factorial design (FFD) (2² X 3¹) was adopted for the preparation using thin film hydration technique. The independent variables investigated were X₁: edge activator type (sodium deoxycholate and Labrafil®), X₂: lipid: edge activator molar ratio 10:1, 30:1 and 50:1 and X₃: initial drug amount 10 and 20 mg
Tags from this library: No tags from this library for this title. Log in to add tags.
Star ratings
    Average rating: 0.0 (0 votes)
Holdings
Item type Current library Home library Call number Copy number Status Barcode
Thesis قاعة الرسائل الجامعية - الدور الاول المكتبة المركزبة الجديدة - جامعة القاهرة Cai01.08.08.Ph.D.2016.Ma.P (Browse shelf(Opens below)) Not for loan 01010110071823000
CD - Rom مخـــزن الرســائل الجـــامعية - البدروم المكتبة المركزبة الجديدة - جامعة القاهرة Cai01.08.08.Ph.D.2016.Ma.P (Browse shelf(Opens below)) 71823.CD Not for loan 01020110071823000

Thesis (Ph.D.) - Cairo University - Faculty of Pharmacy - Department of Pharmaceutics

This study aimed to formulate clonazepam (CZ) as intranasal nanocarriers for immediate control of status epilepticus. Nanocarriers generally have the ability to deliver the drug to the brain through olfactory and trigeminal nerves pathways circumventing the blood brain barrier. Chapter I: Formulation of clonazepam loaded polymeric micelles. A three-level three-factor central composite face-centered design (3³ CCFD) was applied for the preparation using thin film hydration technique. The independent variables were; pluronic® P123 concentration (X₁), Pluronics®: drug ratio (X₂) and hydration volume (X₃). The seventeen prepared formulae were evaluated for: Y₁: entrapment efficiency (%), Y₂: particle size (nm), Y₃: polydispersity index , Y₄: zeta potential (mV), Y₅: cumulative clonazepam released after eight hours (%), Y₆: time for the release of 50% of drug (hr) and Y₇: dissolution efficiency. All the responses except particle size and zeta potential were influenced by the studied variables. Optimization was done by maximizing entrapment efficiency, amount released after eight hours and dissolution efficiency and minimizing polydispersity index and time for the release of 50% drug. The highest desirability value obtained was 0.921 and was denoted to: X₁=50%, X₂=40:1 and X₃=10 ml (formula PM7). Differential scanning calorimetery and transmission electron microscopy demonstrated the ability of the optimized formula to incorporate clonazepam. This formula showed good thermodynamic and kinetic stability when stored for 4 weeks at room temperature. Chapter II: Formulation of clonazepam loaded Transferosomes. Full factorial design (FFD) (2² X 3¹) was adopted for the preparation using thin film hydration technique. The independent variables investigated were X₁: edge activator type (sodium deoxycholate and Labrafil®), X₂: lipid: edge activator molar ratio 10:1, 30:1 and 50:1 and X₃: initial drug amount 10 and 20 mg

Issued also as CD

There are no comments on this title.

to post a comment.

Click on an image to view it in the image viewer

Local cover image
Share
Cairo University Libraries Portal Implemented & Customized by: Eng. M. Mohamady Contacts: new-lib@cl.cu.edu.eg | cnul@cl.cu.edu.eg
CUCL logo CNUL logo
© All rights reserved — Cairo University Libraries
CUCL logo
Implemented & Customized by: Eng. M. Mohamady Contact: new-lib@cl.cu.edu.eg © All rights reserved — New Central Library
CNUL logo
Implemented & Customized by: Eng. M. Mohamady Contact: cnul@cl.cu.edu.eg © All rights reserved — Cairo National University Library