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Emerging Application of Nanorobotics and Artificial Intelligence To Cross the BBB: Advances in Design, Controlled Maneuvering, and Targeting of the Barriers

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submitted on 2024-09-10, 10:55 and posted on 2024-09-10, 10:56 authored by Ajay Vikram Singh, Vaisali Chandrasekar, Poonam Janapareddy, Divya Elsa Mathews, Peter Laux, Andreas Luch, Yin Yang, Beatriz Garcia-Canibano, Shidin Balakrishnan, Julien Abinahed, Abdulla Al Ansari, Sarada Prasad Dakua

The blood–brain barrier (BBB) is a prime focus for clinicians to maintain the homeostatic function in health and deliver the theranostics in brain cancer and number of neurological diseases. The structural hierarchy and in situ biochemical signaling of BBB neurovascular unit have been primary targets to recapitulate into the in vitro modules. The microengineered perfusion systems and development in 3D cellular and organoid culture have given a major thrust to BBB research for neuropharmacology. In this review, we focus on revisiting the nanoparticles based bimolecular engineering to enable them to maneuver, control, target, and deliver the theragnostic payloads across cellular BBB as nanorobots or nanobots. Subsequently we provide a brief outline of specific case studies addressing the payload delivery in brain tumor and neurological disorders (e.g., Alzheimer’s disease, Parkinson’s disease, multiple sclerosis, etc.). In addition, we also address the opportunities and challenges across the nanorobots’ development and design. Finally, we address how computationally powered machine learning (ML) tools and artificial intelligence (AI) can be partnered with robotics to predict and design the next generation nanorobots to interact and deliver across the BBB without causing damage, toxicity, or malfunctions. The content of this review could be references to multidisciplinary science to clinicians, roboticists, chemists, and bioengineers involved in cutting-edge pharmaceutical design and BBB research.

Other Information

Published in: ACS Chemical Neuroscience
License: https://creativecommons.org/licenses/by-nc-nd/4.0/
See article on publisher's website: https://dx.doi.org/10.1021/acschemneuro.1c00087

Funding

Open Access funding provided by the Qatar National Library.

History

Language

  • English

Publisher

American Chemical Society

Publication Year

  • 2021

License statement

This Item is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.

Institution affiliated with

  • Hamad Medical Corporation
  • Hamad Bin Khalifa University
  • College of Science and Engineering - HBKU