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Novel Nanoparticles Based on N,O-Carboxymethyl Chitosan-Dopamine Amide Conjugate for Nose-to-Brain Delivery

Pharmaceutics 2022 27 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 50 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Adriana Trapani, Stefania Cometa, Stefania Cometa, Elvira De Giglio, Filomena Corbo, Stefania Cometa, Roberta Cassano, Maria Luisa Di Gioia, Sonia Trombino, Maria Luisa Di Gioia, Md Niamat Hossain, Sante Di Gioia, Giuseppe Trapani, Giuseppe Trapani, Massimo Conese

Summary

Researchers developed novel chitosan-dopamine nanoparticles for nose-to-brain drug delivery targeting Parkinson's disease, demonstrating their compatibility with olfactory cells and enhanced cellular uptake in the presence of mucin.

Body Systems
Models

A widely investigated approach to bypass the blood brain barrier is represented by the intranasal delivery of therapeutic agents exploiting the olfactory or trigeminal connections nose-brain. As for Parkinson's disease (PD), characterized by dopaminergic midbrain neurons degeneration, currently there is no disease modifying therapy. Although several bio-nanomaterials have been evaluated for encapsulation of neurotransmitter dopamine (DA) or dopaminergic drugs in order to restore the DA content in parkinsonian patients, the premature leakage of the therapeutic agent limits this approach. To tackle this drawback, we undertook a study where the active was linked to the polymeric backbone by a covalent bond. Thus, novel nanoparticles (NPs) based on <i>N</i>,<i>O</i>-Carboxymethylchitosan-DA amide conjugate (<i>N</i>,<i>O</i>-CMCS-DA) were prepared by the nanoprecipitation method and characterized from a technological view point, cytotoxicity and uptake by Olfactory Ensheating Cells (OECs). Thermogravimetric analysis showed high chemical stability of <i>N</i>,<i>O</i>-CMCS-DA NPs and X-ray photoelectron spectroscopy evidenced the presence of amide linkages on the NPs surface. MTT test indicated their cytocompatibility with OECs, while cytofluorimetry and fluorescent microscopy revealed the internalization of labelled <i>N</i>,<i>O</i>-CMCS-DA NPs by OECs, that was increased by the presence of mucin. Altogether, these findings seem promising for further development of <i>N</i>,<i>O</i>-CMCS-DA NPs for nose-to-brain delivery application in PD.

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