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https://www.researchgate.net/publication/285681780_Oral_solid_dosage_forms_of_lipid-based_drug_delivery_systems
Accordingly, Solid-self emulsifying drug delivery systems (S-SEDDS), prepared by solidification of liquid/semi-solid self emulsifying ingredients into powders in order to create solid dosage forms.
https://www.sciencedirect.com/science/article/pii/S2211383513000919
The availability of novel lipid excipients with acceptable regulatory and safety profiles coupled with their ability to enhance oral bioavailability has helped in the development of lipid based formulations as a means for drug delivery. Lipid-based drug delivery (LBDD) systems have gained much importance in the recent years due to their ability ...Author: Sandeep Kalepu, Mohanvarma Manthina, Veerabhadhraswamy Padavala
https://www.ncbi.nlm.nih.gov/pubmed/23775443
Transforming lipid-based oral drug delivery systems into solid dosage forms: an overview of solid carriers, physicochemical properties, and biopharmaceutical performance. Tan A(1), Rao S, Prestidge CA. Author information: (1)Ian Wark Research Institute, University of South Australia, Mawson Lakes Campus, Mawson Lakes, SA, 5095, Australia.Author: Angel Tan, Shasha Rao, Clive A. Prestidge
https://drug-dev.com/lipid-based-delivery-are-lipid-based-drug-delivery-systems-in-your-formulation-toolbox/
INTRODUCTION TO LIPID-BASED DOSAGE FORMS. Lipid-based drug delivery systems (LBDDS) is a wide-ranging designation for formulations containing a dissolved or suspended drug in lipidic excipients. Lipids are esters of fatty acids – lipophilic hydrocarbon chains linked to a hydrophilic group like glycerol, polyglycerol, or polyalcohol (Figure 1).
https://www.researchgate.net/publication/239943099_ChemInform_Abstract_Transforming_Lipid-Based_Oral_Drug_Delivery_Systems_into_Solid_Dosage_Forms_An_Overview_of_Solid_Carriers_Physicochemical_Properties_and_Biopharmaceutical_Performance
ChemInform Abstract: Transforming Lipid-Based Oral Drug Delivery Systems into Solid Dosage Forms: An Overview of Solid Carriers, Physicochemical Properties, and Biopharmaceutical Performance
https://link.springer.com/10.1007/s11095-013-1107-3
Jun 18, 2013 · The diversity of lipid excipients available commercially has enabled versatile formulation design of lipid-based drug delivery systems for enhancing the oral absorption of poorly water-soluble drugs, such as emulsions, microemulsions, micelles, liposomes, niosomes and various self-emulsifying systems. The transformation of liquid lipid-based systems into solid dosage forms has been ...Author: Angel Tan, Shasha Rao, Clive A. Prestidge
https://research.monash.edu/en/publications/transforming-lipid-based-oral-drug-delivery-systems-into-solid-do
The diversity of lipid excipients available commercially has enabled versatile formulation design of lipid-based drug delivery systems for enhancing the oral absorption of poorly water-soluble drugs, such as emulsions, microemulsions, micelles, liposomes, niosomes and various self-emulsifying systems.Author: Angel Tan, Shasha Rao, Clive A. Prestidge
https://www.sciencedirect.com/topics/pharmacology-toxicology-and-pharmaceutical-science/lipid-based-drug-delivery-system
The lipid-based drug delivery systems (SLN, NLCs, ... W. Zheng, in Developing Solid Oral Dosage Forms (Second Edition), 2017. 17.5.4.2 Selection of excipients. Before selecting the excipients, it is beneficial to understand the structural constituents of lipid-based formulations.
https://www.catalent.com/expert-content/strategies-to-develop-lipid-based-drug-delivery-systems-and-oral-dosage-forms/
» Strategies To Develop Lipid-Based Drug Delivery Systems And Oral Dosage Forms Strategies To Develop Lipid-Based Drug Delivery Systems And Oral Dosage Forms Summary: Liquid-filled capsules (LFC) are the primary delivery platform for oral delivery of lipid formulations which includes both softgels and liquid-filled hard capsules.
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