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http://www.pssrc.org/member-directory/juergen-siepmann
Since 2010 Prof. Siepmann is heading the INSERM research group “Controlled Drug Delivery Systems and Biomaterials” (about 6 professors, 6 lecturers, 5 technical/administrative staff, 15 post-docs & PhD students and 10 master students). August 2014
https://www.sciencedirect.com/science/article/pii/S0378517308006169
The mathematical modeling of drug delivery has a significant potential to facilitate product development in the future and to help understanding complex pharmaceutical dosage forms. Due to the advances in information technology the accuracy of these models steadily increases and …Author: J. Siepmann, F. Siepmann
https://www.journals.elsevier.com/journal-of-drug-delivery-science-and-technology/editorial-board/professor-florence-siepmann
Prof. Siepmann’s research focuses on Controlled Drug Delivery Systems, in particular on the elucidation of the underlying mass transport phenomena and the optimization of the devices. A special focus is placed on biodegradable microparticles and in-situ forming implants.
https://www.ncbi.nlm.nih.gov/pubmed/18822362
Dec 08, 2008 · Siepmann J(1), Siepmann F. Author information: (1)College of Pharmacy, JE 2491, University of Lille, 3 rue du Professeur Laguesse, 59006 Lille, France. [email protected] Due to the significant advances in information technology mathematical modeling of drug delivery is a …Author: J. Siepmann, F. Siepmann
https://link.springer.com/chapter/10.1007%2F3-540-32702-9_3
Abstract. Microparticles offer various significant advantages as drug delivery systems, including: (i) an effective protection of the encapsulated active agent against (e.g. enzymatic) degradation, (ii) the possibility to accurately control the release rate of the incorporated drug over periods of hours to months, and (iii) an easy administration (compared to alternative parenteral controlled ...Author: Juergen Siepmann, Florence Siepmann
https://journals.lww.com/thehearingjournal/Fulltext/2019/07000/Inner_Ear_Drug_Delivery__Tomorrow_s_Treatment_for.1.aspx
Improvements in drug targeting and retention in the cochlea, gene and stem cell therapy for hair cell regeneration, and new methods to address drug delivery barriers have propelled progress in improving inner ear drug delivery systems.
https://www.sciencedirect.com/science/article/pii/S0169409X12002888
1. Introduction. Hydroxypropyl methylcellulose (HPMC) is the most important hydrophilic carrier material used for the preparation of oral controlled drug delivery systems , .One of its most important characteristics is the high swellability, which has a significant effect on the release kinetics of an incorporated drug.Author: J. Siepmann, Nicholas Peppas
https://www.journals.elsevier.com/international-journal-of-pharmaceutics/editorial-board/jurgen-siepmann-phd
Prof. Siepmann’s research focuses on controlled drug delivery systems, in particular on the: (i) elucidation of the underlying mass transport phenomena, (ii) mathematical modeling of system performance, and (iii) optimization of the devices.
https://www.ncbi.nlm.nih.gov/pubmed/28120753
[Implants for drug substance delivery]. [Article in French] Blanchemain N(1), Siepmann F(1), Siepmann J(1). Author information: (1)Université de Lille, Inserm, U1008, CHU de Lille, Controlled Drug Delivery Systems and Biomaterials, Faculté des Sciences Pharmaceutiques et Biologiques …Author: Nicolas Blanchemain, Florence Siepmann, Juergen Siepmann
https://experts.umn.edu/en/publications/fundamentals-and-applications-of-controlled-release-drug-delivery
TY - BOOK. T1 - Fundamentals and applications of controlled release drug delivery. AU - Siepmann, Juergen. AU - Siegel, Ronald A. AU - Rathbone, Michael J.Author: Jürgen Siepmann, Ronald Alan Siegel, Michael J. Rathbone
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