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Engineering precision nanoparticles for drug delivery

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TLDR
Advances in nanoparticle design that overcome heterogeneous barriers to delivery are discussed, arguing that intelligent nanoparticles design can improve efficacy in general delivery applications while enabling tailored designs for precision applications, thereby ultimately improving patient outcome overall.
Abstract
In recent years, the development of nanoparticles has expanded into a broad range of clinical applications. Nanoparticles have been developed to overcome the limitations of free therapeutics and navigate biological barriers - systemic, microenvironmental and cellular - that are heterogeneous across patient populations and diseases. Overcoming this patient heterogeneity has also been accomplished through precision therapeutics, in which personalized interventions have enhanced therapeutic efficacy. However, nanoparticle development continues to focus on optimizing delivery platforms with a one-size-fits-all solution. As lipid-based, polymeric and inorganic nanoparticles are engineered in increasingly specified ways, they can begin to be optimized for drug delivery in a more personalized manner, entering the era of precision medicine. In this Review, we discuss advanced nanoparticle designs utilized in both non-personalized and precision applications that could be applied to improve precision therapies. We focus on advances in nanoparticle design that overcome heterogeneous barriers to delivery, arguing that intelligent nanoparticle design can improve efficacy in general delivery applications while enabling tailored designs for precision applications, thereby ultimately improving patient outcome overall.

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References
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Journal ArticleDOI

Nanoscale drug delivery systems and the blood-brain barrier

TL;DR: This review comprehensively discusses the functional morphology of the BBB and the challenges that must be overcome by drug-delivery systems and elaborates on the potential targets, mechanisms, and formulations to improve drug delivery to the CNS.
Journal ArticleDOI

Nanotechnology-based drug delivery systems for the treatment of Alzheimer's disease.

TL;DR: A systematic review of nanotechnology-based drug delivery systems for the treatment of Alzheimer’s disease finds each are promising tools for the delivery of therapeutic devices to the brain via various routes of administration, particularly the intranasal route.
Journal ArticleDOI

Stimuli-responsive nanotherapeutics for precision drug delivery and cancer therapy.

TL;DR: This review offers a comprehensive overview of several specific stimuli, including internal stimuli and external stimuli, and envision that applications of these smart nanotherapeutics can benefit cancer patients and provide a good chance for clinical translation of many nanoparticle formulas.
Journal ArticleDOI

Pre-existing anti-polyethylene glycol antibody linked to first-exposure allergic reactions to pegnivacogin, a PEGylated RNA aptamer.

TL;DR: These findings are the first to document the potential clinical significance of pre-existing antibody to PEG, a component of numerous consumer and medicinal products.
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