3D printing technology, otherwise known as additive manufacturing, has provided a promising tool for manufacturing customized biomaterials for tissue engineering and regenerative medicine applications. A vast variety of biomaterials including...
Star polymers are structures composed of multiple functional
linear
arms covalently connected through a central core. The unique conformation
of star polymers, with their tunable side arms and architectural plasticity,
makes them well equipped to deliver pharmaceutical drugs and biologicals
(peptides, nucleic acids), and design imaging agents. A great deal
has been reported on the design and synthesis of star polymers, with
several studies demonstrating the possibility for future translation.
In this work, we have for the first time performed a review on research
published over the last 5-years, focused on the translation of star
polymer nanoparticles toward therapeutic application. We discuss all
the important potential translational breakthroughs in the field as
well as offering a perspective on how the addition of cutting-edge
in vitro and in vivo models could provide us with the tools for the
successful future clinical translation of star polymer nanoparticles.
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