Literature DB >> 30066406

Overcoming the Blood-Brain Barrier: The Role of Nanomaterials in Treating Neurological Diseases.

Denzil Furtado1, Mattias Björnmalm1,2, Scott Ayton3, Ashley I Bush3,4, Kristian Kempe5, Frank Caruso1.   

Abstract

Therapies directed toward the central nervous system remain difficult to translate into improved clinical outcomes. This is largely due to the blood-brain barrier (BBB), arguably the most tightly regulated interface in the human body, which routinely excludes most therapeutics. Advances in the engineering of nanomaterials and their application in biomedicine (i.e., nanomedicine) are enabling new strategies that have the potential to help improve our understanding and treatment of neurological diseases. Herein, the various mechanisms by which therapeutics can be delivered to the brain are examined and key challenges facing translation of this research from benchtop to bedside are highlighted. Following a contextual overview of the BBB anatomy and physiology in both healthy and diseased states, relevant therapeutic strategies for bypassing and crossing the BBB are discussed. The focus here is especially on nanomaterial-based drug delivery systems and the potential of these to overcome the biological challenges imposed by the BBB. Finally, disease-targeting strategies and clearance mechanisms are explored. The objective is to provide the diverse range of researchers active in the field (e.g., material scientists, chemists, engineers, neuroscientists, and clinicians) with an easily accessible guide to the key opportunities and challenges currently facing the nanomaterial-mediated treatment of neurological diseases.
© 2018 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.

Entities:  

Keywords:  blood-brain barrier; drug delivery; nanomaterials; nanoparticles; neurological diseases

Mesh:

Substances:

Year:  2018        PMID: 30066406     DOI: 10.1002/adma.201801362

Source DB:  PubMed          Journal:  Adv Mater        ISSN: 0935-9648            Impact factor:   30.849


  70 in total

1.  Small-sized gadolinium oxide based nanoparticles for high-efficiency theranostics of orthotopic glioblastoma.

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Review 2.  Interactions of nanomaterials with ion channels and related mechanisms.

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3.  Nanomaterial based drug delivery systems for the treatment of neurodegenerative diseases.

Authors:  Shima Masoudi Asil; Jyoti Ahlawat; Gileydis Guillama Barroso; Mahesh Narayan
Journal:  Biomater Sci       Date:  2020-07-08       Impact factor: 6.843

4.  The membrane axis of Alzheimer's nanomedicine.

Authors:  Yuhuan Li; Huayuan Tang; Nicholas Andrikopoulos; Ibrahim Javed; Luca Cecchetto; Aparna Nandakumar; Aleksandr Kakinen; Thomas P Davis; Feng Ding; Pu Chun Ke
Journal:  Adv Nanobiomed Res       Date:  2020-11-26

5.  Ultrathin Silicon Membranes for in Situ Optical Analysis of Nanoparticle Translocation across a Human Blood-Brain Barrier Model.

Authors:  Diána Hudecz; Tejas Khire; Hung Li Chung; Laurent Adumeau; Dale Glavin; Emma Luke; Morten S Nielsen; Kenneth A Dawson; James L McGrath; Yan Yan
Journal:  ACS Nano       Date:  2020-01-14       Impact factor: 15.881

6.  In vitro and in vivo characterization of CPP and transferrin modified liposomes encapsulating pDNA.

Authors:  Bruna Dos Santos Rodrigues; Takahisa Kanekiyo; Jagdish Singh
Journal:  Nanomedicine       Date:  2020-05-30       Impact factor: 5.307

7.  Nanotherapeutics Engineered to Cross the Blood-Brain Barrier for Advanced Drug Delivery to the Central Nervous System.

Authors:  Jinhwan Kim; Song Ih Ahn; YongTae Kim
Journal:  J Ind Eng Chem       Date:  2019-01-28       Impact factor: 6.064

8.  Target-driven supramolecular self-assembly for selective amyloid-β photooxygenation against Alzheimer's disease.

Authors:  Zhenqi Liu; Mengmeng Ma; Dongqin Yu; Jinsong Ren; Xiaogang Qu
Journal:  Chem Sci       Date:  2020-10-06       Impact factor: 9.825

Review 9.  Nanogels as a Versatile Drug Delivery System for Brain Cancer.

Authors:  Brielle Stawicki; Tyler Schacher; Hyunah Cho
Journal:  Gels       Date:  2021-05-26

10.  LncRNA HAS2-AS1 Promotes Glioblastoma Proliferation by Sponging miR-137.

Authors:  Yalin Lu; Gaochao Guo; Rujun Hong; Xingjie Chen; Yan Sun; Fang Liu; Zhimeng Zhang; Xun Jin; Jun Dong; Kai Yu; Xuejun Yang; Yang Nan; Qiang Huang
Journal:  Front Oncol       Date:  2021-05-20       Impact factor: 6.244

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