Coatings For Controlled-Release Drug Delivery Systems

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Coatings for Controlled-Release Drug Delivery Systems ...

    https://www.tandfonline.com/doi/abs/10.3109/03639049809108573
    Apr 22, 1999 · Coatings for Controlled-Release Drug Delivery Systems C. T. Rhodes Department of Applied Pharmaceutical Sciences, University of Rhode Island, Kingston, Rl, 02881 & S. C. Porter Colorcon, West Point, PA, 19486Author: C. T. Rhodes, S. C. Porter

Coatings for controlled-release drug delivery systems ...

    http://europepmc.org/abstract/MED/9876571
    Jan 01, 1999 · Department of Applied Pharmaceutical Sciences, University of Rhode Island, Kingston 02881, USA.Author: C. T. Rhodes, S. C. Porter

Controlled release systems - drug delivery

    https://www.corbion.com/biomedical/applications/controlled-release-systems
    The PURASORB polymers are ideal resorbable excipients for controlled release drug delivery systems – enabling patients to control dosage over days, weeks, or months with a single injection.

Erodible drug delivery systems for time-controlled release ...

    https://www.sciencedirect.com/science/article/pii/S1773224715300344
    1. Introduction. Oral delivery systems for time-controlled release are able to defer the onset of drug release into the gastrointestinal tract for a programmable lag period independent of pH, ionic strength, enzyme concentration and other physiological parameters.Author: Alessandra Maroni, Lucia Zema, Matteo Cerea, Anastasia Foppoli, Luca Palugan, Andrea Gazzaniga

CHAPTER 22 DESIGN OF CONTROLLED- RELEASE DRUG …

    https://pdfs.semanticscholar.org/2079/b751e16d7a9d34d2e0604a35a312d5bca4b2.pdf
    designing controlled drug delivery systems. Various routes of administration pose different challenges for product design. As a result of the different barriers and pathways involved, selection of an administration route is an important factor for design of drug delivery system. For example, the oral route is most widely utilized route because

Controlled Release Drug Delivery Systems

    http://www.thepharmajournal.com/vol1Issue10/Issue_dec_2012/3.1.pdf
    The ideal drug delivery system should be inert, biocompatible, mechanically strong, comfortable for the patient, capable of achieving high drug loading, safe from accidental release, simple to administer and remove, and easy to fabricate and sterilize. The goal of many …

News Page 4096 of 4096 Pharma Excipients

    https://www.pharmaexcipients.com/news/page/4096/
    Cellulose-polysaccharide film-coating of cyclodextrin based pellets for controlled drug release Apr 12, 2017 12. April 2017 Abstract An oral controlled release system based on blends of ethylcellulose and pectin as film-coating material for pellets was developed.…

Controlled Drug Release - an overview ScienceDirect Topics

    https://www.sciencedirect.com/topics/pharmacology-toxicology-and-pharmaceutical-science/controlled-drug-release
    Encapsulation or conjugation of drugs with polymers enables the engineering of the release rate of that drug from the polymer matrix depending on the physical properties of both the drug and the polymer. And also polymer-based drug delivery systems can allow for controlled and/or continuous release of the drug…

(PDF) ORAL CONTROLLED RELEASE DRUG DELIVERY SYSTEM: AN ...

    https://www.researchgate.net/publication/307671765_ORAL_CONTROLLED_RELEASE_DRUG_DELIVERY_SYSTEM_AN_OVERVIEW
    Controlled release drug delivery system works on many different mechanisms to control the release rate of drugs. Various mechanisms like osmotic pressure, matrix system, reservoir system, altered density system etc. have been utilized as formulation approaches.

Poly (lactic-co-glycolic acid) controlled release systems ...

    https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3719420/
    PLGA is the most successful and most characterized polymer for controlled release drug delivery systems. It is favored because of its biocompatibility, biodegradability and mechanical strength and continues to be used to develop new controlled release systems. However several obstacles remain for PLGA in its use in controlled release systems.Author: Daniel J. Hines, David L. Kaplan

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