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      Silica nanoparticles: A promising platform for enhanced oral delivery of macromolecules

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          Ordered mesoporous molecular sieves synthesized by a liquid-crystal template mechanism

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            Tight junctions: from simple barriers to multifunctional molecular gates.

            Epithelia and endothelia separate different tissue compartments and protect multicellular organisms from the outside world. This requires the formation of tight junctions, selective gates that control paracellular diffusion of ions and solutes. Tight junctions also form the border between the apical and basolateral plasma-membrane domains and are linked to the machinery that controls apicobasal polarization. Additionally, signalling networks that guide diverse cell behaviours and functions are connected to tight junctions, transmitting information to and from the cytoskeleton, nucleus and different cell adhesion complexes. Recent advances have broadened our understanding of the molecular architecture and cellular functions of tight junctions.
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              Is Open Access

              Peptide therapeutics: current status and future directions.

              Peptides are recognized for being highly selective and efficacious and, at the same time, relatively safe and well tolerated. Consequently, there is an increased interest in peptides in pharmaceutical research and development (R&D), and approximately 140 peptide therapeutics are currently being evaluated in clinical trials. Given that the low-hanging fruits in the form of obvious peptide targets have already been picked, it has now become necessary to explore new routes beyond traditional peptide design. Examples of such approaches are multifunctional and cell penetrating peptides, as well as peptide drug conjugates. Here, we discuss the current status, strengths, and weaknesses of peptides as medicines and the emerging new opportunities in peptide drug design and development.
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                Author and article information

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                Journal
                Journal of Controlled Release
                Journal of Controlled Release
                Elsevier BV
                01683659
                October 2020
                October 2020
                : 326
                : 544-555
                Article
                10.1016/j.jconrel.2020.07.021
                32687941
                4d17cd12-2a9a-4407-a6e0-da7bc8019edc
                © 2020

                https://www.elsevier.com/tdm/userlicense/1.0/

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