A Novel Oral Dosage Form with Drug Independent Formulation and Variable Controlled Release

A Novel Oral Dosage Form with Drug Independent Formulation and Variable Controlled Release

Author: Suzan Owaisat

Publisher:

Published: 2015

Total Pages: 207

ISBN-13:

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A unique dosage form which uses a hydrophilic polymer was developed to provide for a predicable release of several drugs. This drug release could be optimized for controlled release using erosion. It can also be designed to release drug utilizing electrochemical processes. The accuracy of drug delivery in terms of dose and timing is of utmost importance for the patient's health status and compliance. A well-designed drug delivery technology offers many advantages to the patient. These advantages include: reduction in dose frequency, reduction of drug side effects, reduced unwanted fluctuations in circulating drug levels, and a more uniform effect of the drug over time. The practice of drug delivery has been dramatically developed in the last decade including electronic controlled release innovative dosage forms. In this study the iontophoretic flux of ibuprofen was investigated using side- by-side diffusion cells. Iontophoresis is the process where electric current is applied to enhance transportation of drugs across the skin. The pH change was found to be an important factor in increasing the diffusion of the drug. The principle of using electric current as a driving force to control the drug release was initially demonstrated on an initial setup. Subsequently, a calcium binding polymer was the hydrogel used as a matrix to develop a new electric oral dosage form. The calcium binding polymer is produced in different forms. The production process of these forms suffers several limitations. In order to apply electric current in a practical way to the calcium binding polymer matrix a novel method was developed. The novel method also allowed for addressing the limitations related to the production process of the conventional dosage form made with this polymer. More uniform gel tablets in shape and size were produced. Different formulations were developed. Ibuprofen was the model drug initially used to investigate the factors that affected the release profiles of these tablets. A two-level, three-factor statistical design of experiments (DOE) was performed to evaluate the effect of those factors on certain responses. These responses included the release rate, time needed to release 80% of the model drug, and lag-time. A new formulation with certain adjuvants was developed. This formulation had the ability to release different kinds of drugs in a uniform release rate. A fail-safe tablet that can only release less than 20% of the drug in 24 hours was developed. The drug release was initiated only when the electric current was applied. This new electric dosage form was aimed to overcome the disadvantages related to conventional dosage forms such as the inability to supply drugs on demand.


Controlled Drug Release Of Oral Dosage Forms

Controlled Drug Release Of Oral Dosage Forms

Author: Jean-Maurice Vergnaud

Publisher: CRC Press

Published: 1993-07-31

Total Pages: 427

ISBN-13: 1482267357

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Numerical analysis of matter transfer is an area that pharmacists find difficult, but which is a technique frequently used in preparing controlled drug release and oral dosage forms. A practical guide which explains how to carry out the numerical analysis of matter transfer - a vital process when examining the formulation of oral dosage forms with controlled drug release. The author models the process of drug delivery using numerical analysis and computerization.


Oral Controlled Release Formulation Design and Drug Delivery

Oral Controlled Release Formulation Design and Drug Delivery

Author: Hong Wen

Publisher: John Wiley & Sons

Published: 2011-01-14

Total Pages: 571

ISBN-13: 1118060326

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This book describes the theories, applications, and challenges for different oral controlled release formulations. This book differs from most in its focus on oral controlled release formulation design and process development. It also covers the related areas like preformulation, biopharmaceutics, in vitro-in vivo correlations (IVIVC), quality by design (QbD), and regulatory issues.


Pharmaceutical Dosage Forms

Pharmaceutical Dosage Forms

Author: Larry L. Augsburger

Publisher: CRC Press

Published: 2017-10-30

Total Pages: 436

ISBN-13: 1841849774

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Pharmaceutical Dosage Forms: Capsules covers the development, composition, and manufacture of capsules. Despite the important role that capsules play in drug delivery and product development, few comprehensive texts on the science and technology of capsules have been available for the research and academic environments. This text addresses this gap, discussing how capsules provide unique capabilities and options for dosage form design and formulation.


Nitroglycerin Sustained Release Tablet. Formulation Design and Evaluation

Nitroglycerin Sustained Release Tablet. Formulation Design and Evaluation

Author: Subrata Bhadra

Publisher: GRIN Verlag

Published: 2013-08-07

Total Pages: 135

ISBN-13: 3656475849

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Master's Thesis from the year 2010 in the subject Medicine - Pharmacology, Pharmacy, University of Dhaka (M. Pharm, in Pharmaceutical Technology), language: English, abstract: The aim of the present studies was to develop and characterize 2.6 mg sustained release matrix tablets of Nitroglycerin. Tablets were prepared by direct compression method. Methocel K15M CR and Methocel K100LV CR polymers were used as rate retarding agents in nine formulations (F-1 to F-9). The granules were evaluated for angle of repose, loose bulk density, tapped bulk density, Carr’s index, Hausner ratio, moisture content, total porosity and assay. The tablets were subjected to diameter, thickness, assay, uniformity of content, assay after 1Month at 40°C+75%RH, hardness, friability, and in vitro dissolution studies. The granules showed satisfactory flow properties, compressibility, and drug content. All the tablet formulations showed acceptable pharmacotechnical properties and complied with pharmacopoeial specifications for tested parameters. The in vitro dissolution study was carried out for 8 hour using USP-2009 Apparatus-I (Rotating basket method) in distilled water as the dissolution medium. The release mechanisms were explored and explained by Zero order, First order, Higuchi, Korsmeyer-Peppas and Hixson-Crowell equations. Nine formulations were prepared by using three variable ratio of two polymers; Methocel K15M CR (25%, 20% and 15%) and Methocel K100LV CR (15%, 10% and 5%) where all the formulations (F-1 to F-9) contained 0.5% colloidal silicon dioxide and 1% magnesium stearate. Among these nine formulations, six formulations; F-2 (Methocel K15M CR: Methocel K100LV CR = 25% : 10%), F-3 (Methocel K15M CR : Methocel K100LV CR = 25% : 5%), F-4 (Methocel K15M CR : Methocel K100LV CR = 20% : 15%) F-5 (Methocel K15M CR: Methocel K100LV CR = 20% : 10%), F-6 (Methocel K15M CR : Methocel K100LV CR = 20% : 5%) and F-7 (Methocel K15M CR : Methocel K100LV CR = 15% : 15%) met the official specification of release profile. It was also found that the type and the amount of polymers significantly affect the time required for 50% (T50% or MDT) of drug release, release rate constant and diffusion exponent. Higher the MDT value indicates a higher drug retaining capacity of the polymers and vice-versa. Kinetic modeling of in vitro dissolution profiles revealed the drug release mechanism of all proposed formulations followed anomalous type or non-Fickian transport (n>0.43 and n


Rapid Dissolve Solid Oral Dosage Form

Rapid Dissolve Solid Oral Dosage Form

Author: Supriya Mhatre

Publisher: LAP Lambert Academic Publishing

Published: 2013

Total Pages: 56

ISBN-13: 9783659373510

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Oral drug delivery system still need advancements because of their some drawbacks related to particular class of patients which include gediatrics, pediatrics, and dysphasics patients associated with many medical conditions as they have difficulty in swallowing or chewing solid oral dosage forms. In the current scenario of novel drug delivery system, much emphasis has been given to effective dosage form in term of producing steady level concentration in plasma for controlled release drug delivery system and rapid release drug for quick effects. In case of allergy, chemotherapeutics side effect treatment, pain medicines and pediatric as well as geriatrics drug delivery prefers rapid response of drug. Numbers of drug from above categories have been formulated in rapid release tablet or film. With the use of natural polymers and superdisintegrants it is feasible to prepare these dosage forms to dissolve within 1min with minimum quantity of water. The aim of present review is to give complete detailed including all formulation aspects and evaluation parameters of rapid dissolve tablet and film. This review also covers patented technology.


How to Develop Robust Solid Oral Dosage Forms

How to Develop Robust Solid Oral Dosage Forms

Author: Bhavishya Mittal

Publisher: Academic Press

Published: 2016-10-05

Total Pages: 192

ISBN-13: 0128047321

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How to Develop Robust Solid Oral Dosage Forms from Conception to Post-Approval uses a practical and hands-on approach to cover the development process of solid oral dosage forms in one single source. The book details all of the necessary steps from formulation through the post-approval phase and contains industry case studies, real world advice, and troubleshooting tips. By merging the latest scientific information with practical instructions, this book provides pharmaceutical scientists in formulation research and development with a concrete look at the key aspects in the development of solid oral dosage forms. Focuses on important topics, such as robustness, bioavailability, formulation design, continuous processing, stability tests, modified release dosage forms, international guidelines, process scale-up, and much more Part of the Expertise in Pharmaceutical Process Technology series edited by Michael Levin Discusses common, real-world problems and offers both theoretical and practical solutions to these everyday issues


Pharmaceutical Dosage Forms

Pharmaceutical Dosage Forms

Author: Herbert Lieberman

Publisher: CRC Press

Published: 2020-08-26

Total Pages: 558

ISBN-13: 1000148416

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Stressing the theory involved in formulating suspensions, emulsions, and colloidal drug products, this Second Edition of a well-received reference test highlights typical formulations, the avoidance of formulation pitfalls, and compliance with established regulatory principles.