Multifunctional Nanotheranostics for Overcoming the Blood–Brain Barrier

Author:

Beygi Mohammad1,Oroojalian Fatemeh23,Azizi‐Arani Soheil4,Hosseini Seyed Samad5,Mokhtarzadeh Ahad5,Kesharwani Prashant6ORCID,Sahebkar Amirhossein78

Affiliation:

1. Department of Agricultural Biotechnology College of Agriculture Isfahan University of Technology (IUT) Isfahan 8415683111 Iran

2. Department of Advanced Technologies School of Medicine North Khorasan University of Medical Sciences Bojnurd 94149‐74877 Iran

3. Natural Products and Medicinal Plants Research Center North Khorasan University of Medical Sciences Bojnurd 94149‐74877 Iran

4. V. Zelman Institute of Medicine and Psychology Novosibirsk State University Novosibirsk 630117 Russia

5. Immunology Research Center Tabriz University of Medical Sciences Tabriz 5166‐15731 Iran

6. Department of Pharmaceutics School of Pharmaceutical Education and Research Jamia Hamdard New Delhi 110062 India

7. Biotechnology Research Center Pharmaceutical Technology Institute Mashhad University of Medical Sciences Mashhad 9177948954 Iran

8. Applied Biomedical Research Center Mashhad University of Medical Sciences Mashhad 9177948564 Iran

Abstract

AbstractThe blood–brain barrier (BBB) is a tailored system of capillary endothelial cells intermixed with tight junctions and adherent junctions that regulates the transport of various materials and substances between the blood vasculature and the central nervous system (CNS). However, in cases of brain diseases, BBB's protective and regulatory effects hamper therapeutics from reaching affected sites in sufficient quantities. This has so far been a leading challenge in treating CNS diseases and disorders. For this problem to be overcome, recent research has sought to develop novel modalities to achieve efficient therapy and alleviate associated symptoms. Therefore, numerous strategies have operated in recent years to address the limitations of traditional and invasive methods, including poor brain penetration and serious side effects. As a desperately in‐demand technology, nanotheranostics has particularly shown promising results. Herein, this review reports recent advancements in CNS nanotheranostics and novel techniques and nanotechnology‐based strategies developed for treating neurodegenerative disorders. The study provides comprehensive data on the subject to be used for future studies for the therapy and management of CNS disorders and diseases.

Publisher

Wiley

Subject

Electrochemistry,Condensed Matter Physics,Biomaterials,Electronic, Optical and Magnetic Materials

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