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Quercetin-biapigenin nanoparticles are effective to penetrate the blood-brain barrier. | LitMetric

Quercetin-biapigenin nanoparticles are effective to penetrate the blood-brain barrier.

Drug Deliv Transl Res

Centre of Molecular and Environmental Biology (CBMA), Biology Department, Department of Biology, University of Minho, 4710-057, Braga, Portugal.

Published: January 2022

AI Article Synopsis

  • Scientists are looking for new medicines to help with brain problems, but there's a barrier called the blood-brain barrier (BBB) that makes it hard for these medicines to work.
  • This study tested special nanoparticles loaded with quercetin and biapigenin, which are believed to protect brain cells from damage caused by a harmful substance.
  • The results showed that these nanoparticles can help reduce toxicity in different brain cells and get through the BBB better than the free forms of these compounds.

Article Abstract

Search for efficient therapeutic agents for central nervous system (CNS) disorders has been extensive. Nevertheless, blood-brain barrier (BBB) is an obstacle that prevents the majority of compounds to act in these diseases. It is, thus, of extreme relevance the BBB overcome, in order to deliver a drugs therapeutically active concentration to the action site, with the least losses and interaction with other organs, tissues, or cells. The present study aimed to investigate the potential protective effect of quercetin-biapigenin encapsulated into poly(Ɛ-polycaprolactone) (PCL) nanoparticles against t-BOOH-induced oxidative stress in several brain cell lines, as well as evaluate the permeability of those active molecules through an in vitro BBB model. The three cell lines under study (BV-2, hcmec/D3, and U87) presented different reactions to t-BOOH. In general, quercetin-biapigenin PCL-loaded nanoparticles were able to minimize compound toxicity they convey, regardless the cell line. Quercetin-biapigenin PCL-loaded nanoparticles (Papp of approximately 80 × 10-6 cm/s) revealed to be more permeable than free compounds (Papp of approximately 50 × 10-6 cm/s). As of our knowledge, this is the first report of quercetin-biapigenin PCL-loaded nanoparticle activity in brain cells. It is also the first determining its permeability through BBB, as an effective nanocarrier for brain delivery.

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Source
http://dx.doi.org/10.1007/s13346-021-00917-6DOI Listing

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