Nanoparticle Interactions with the Blood Brain Barrier: Insights from Drosophila and Implications for Human Astrocyte Targeted Therapies

Akshata Choudhari Padti, Santosh Mallikarjun Bhavi, Bothe Thokchom, Sapam Riches Singh, Shivanand S. Bhat, B. P. Harini, Mika Sillanpää, Ramesh Babu Yarajarla

Research output: Contribution to journalReview articlepeer-review

Abstract

This review explores the intricate connections between Drosophila models and the human blood-brain barrier (BBB) with nanoparticle-based approaches for neurological treatment. Drosophila serves as a powerful model organism due to its evolutionary conservation of key biological processes, particularly in the context of the BBB, which is formed by glial cells that share structural and functional similarities with mammalian endothelial cells. Recent advancements in nanoparticle technology have highlighted their potential for effective drug delivery across the BBB, utilizing mechanisms such as passive diffusion, receptor-mediated transcytosis, and carrier-mediated transport. The ability to engineer nanoparticles with specific physicochemical properties—such as size, surface charge, and functionalization—enhances their targeting capabilities, particularly towards astrocytes, which play a crucial role in maintaining BBB integrity and responding to neuroinflammation. Insights gained from Drosophila studies have informed the design of personalized nanomedicine strategies aimed at treating neurodegenerative diseases, including Alzheimer’s, Parkinson’s disease etc. As research progresses, the integration of findings from Drosophila models with emerging humanized BBB systems will pave the way for innovative therapeutic approaches that improve drug delivery and patient outcomes in neurological disorders.

Original languageEnglish
Article number80
JournalNeurochemical Research
Volume50
Issue number1
DOIs
Publication statusPublished - Feb 2025
Externally publishedYes

Keywords

  • Astrocytes
  • Blood brain barrier
  • Central nervous system
  • Drosophila
  • Glial cell
  • Nanoparticles

ASJC Scopus subject areas

  • Biochemistry
  • Cellular and Molecular Neuroscience

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