Abstract
Over the past decades, the topic “drug delivery” has been the driving force of pharmaceutical companies that comprises a high competitive and fast developing of novel technological approaches and intelligent and noninvasive delivery systems to treat unmet medical requirements. These strategies aim to overtake the challenging barriers increasing the clinical success of therapeutic products considering the rigorous demands of regulatory protocols. The novel drug delivery system potentially optimize dosage, enhancing the therapeutic agent performance and minimizing the systemic side effects are applied in already commercial drugs (i.e. conventional drugs), based on their economic beneficial, as well as in new classes of pharmaceuticals and biopharmaceuticals (i.e. peptides, proteins, nucleic acids and cell based products) [1-3].
Highlights
Over the past decades, the topic “drug delivery” has been the driving force of pharmaceutical companies that comprises a high competitive and fast developing of novel technological approaches and intelligent and noninvasive delivery systems to treat unmet medical requirements
The novel drug delivery system potentially optimize dosage, enhancing the therapeutic agent performance and minimizing the systemic side effects are applied in already commercial drugs, based on their economic beneficial, as well as in new classes of pharmaceuticals and biopharmaceuticals [1,2,3]
A significant number of research teams around the world center their attention in nanotechnology, which is supposed to offer promising platforms for advanced therapeutic approaches
Summary
The topic “drug delivery” has been the driving force of pharmaceutical companies that comprises a high competitive and fast developing of novel technological approaches and intelligent and noninvasive delivery systems to treat unmet medical requirements. Faculty of Health Sciences, Fernando Pessoa University, Portugal
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