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Orally disintegrating films: A modern expansion in drug delivery system.

TLDR
Orally disintegrating films have potential for business and market exploitation because of their myriad of benefits over orally disintegrating tablets and the market prospect of this innovative dosage form is also targeted.
Abstract
Over the past few decades, tendency toward innovative drug delivery systems has majorly increased attempts to ensure efficacy, safety and patient acceptability. As discovery and development of new chemical agents is a complex, expensive and time consuming process, so recent trends are shifting toward designing and developing innovative drug delivery systems for existing drugs. Out of those, drug delivery system being very eminent among pediatrics and geriatrics is orally disintegrating films (ODFs). These fast disintegrating films have superiority over fast disintegrating tablets as the latter are associated with the risks of choking and friability. This drug delivery system has numerous advantages over conventional fast disintegrating tablets as they can be used for dysphasic and schizophrenic patients and are taken without water due to their ability to disintegrate within a few seconds releasing medication in mouth. Various approaches are employed for formulating ODFs and among which solvent casting and spraying methods are frequently used. Generally, hydrophilic polymers along with other excipients are used for preparing ODFs which allow films to disintegrate quickly releasing incorporated active pharmaceutical ingredient (API) within seconds. Orally disintegrating films have potential for business and market exploitation because of their myriad of benefits over orally disintegrating tablets. This present review attempts to focus on benefits, composition, approaches for formulation and evaluation of ODFs. Additionally, the market prospect of this innovative dosage form is also targeted.

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Journal ArticleDOI

Thiolation of Biopolymers for Developing Drug Delivery Systems with Enhanced Mechanical and Mucoadhesive Properties: A Review.

TL;DR: Thiolation is an easily reproducible and efficient method for customization of mucoadhesive and mechanical properties of biopolymers for drug delivery applications.
Journal ArticleDOI

Orally disintegrating films focusing on formulation, manufacturing process, and characterization

TL;DR: A brief overview of the advantages, formulation considerations, critical manufacturing processes and methods, characterization, and CQAs of ODFs is provided, which might be beneficial to understand the dosage form better in a comprehensive way.
Journal ArticleDOI

The Food-Materials Nexus: Next Generation Bioplastics and Advanced Materials from Agri-Food Residues.

TL;DR: The most recent strategies available for upcycling agri-food losses and waste (FLW) into functional bioplastics and advanced materials are reviewed and the valorization of food residuals are put in perspective, adding to the water-food-energy nexus.
Journal ArticleDOI

Gelatin/hydroxypropyl methylcellulose matrices - Polymer interactions approach for oral disintegrating films.

TL;DR: The addition of HPMC increased the elongation, hydrophilicity and in vitro bioadhesive force and decreased in vitro disintegration time, important properties in the development of oral disintegrating films, may contribute to theDevelopment of new applications for polymeric matrices in the pharmaceutical industry.
Journal ArticleDOI

Designing Fast-Dissolving Orodispersible Films of Amphotericin B for Oropharyngeal Candidiasis.

TL;DR: Although further toxicological and in vivo efficacy studies are required, this novel Amphotericin B orodispersible films is a promising, physicochemically stable formulation with potential wide application in clinical practice, especially for immunocompromised patients suffering from oropharyngeal candidiasis.
References
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Journal ArticleDOI

Fast dissolving films made of maltodextrins.

TL;DR: This work aimed to study maltodextrins (MDX) with a low dextrose equivalent as film forming material and their application in the design of oral fast-dissolving films, and the MDX/plasticizer interactions were investigated by ATR-FTIR spectroscopy.
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Orally dissolving strips: A new approach to oral drug delivery system

TL;DR: As the drug is directly absorbed into systemic circulation, degradation in gastrointestinal tract and first pass effect can be avoided, these points make this formulation most popular and acceptable among pediatric and geriatric patients and patients with fear of choking.
Journal ArticleDOI

Formulation and evaluation of fast dissolving films for delivery of triclosan to the oral cavity.

TL;DR: Eugenol containing films improved the acceptability of TC-Poloxamer 407 films with respect to taste masking and mouth freshening without compromising the in vivo dissolution time.

A Short Review on "A Novel Approach in Oral Fast Dissolving Drug Delivery System and Their Patents"

Garima Garg, +1 more
TL;DR: The oral thin-film technology is still in the beginning stages and has bright future ahead because it fulfils all the need of patients, and for future growth point of view the oral thin film sector is well-positioned.
Journal ArticleDOI

Orally disintegrating systems: innovations in formulation and technology.

TL;DR: This article attempts at discussing the patents relating to orally disintegrating systems with respect to the use of different formulation ingredients and technologies.
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