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Hybrid red blood cell membrane coated porous silicon nanoparticles functionalized with cancer antigen induce depletion of T cells

Erythrocyte-based drug delivery systems have been investigated for their biocompatibility, long circulation time, and capability to transport cargo all around the body, thus presenting enormous potential in medical applications. In this study, we investigated hybrid nanoparticles consisting of nano-...

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Autores principales: Rahikkala, Antti, Fontana, Flavia, Bauleth-Ramos, Tomás, Correia, Alexandra, Kemell, Marianna, Seitsonen, Jani, Mäkilä, Ermei, Sarmento, Bruno, Salonen, Jarno, Ruokolainen, Janne, Hirvonen, Jouni, Santos, Hélder A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9056825/
https://www.ncbi.nlm.nih.gov/pubmed/35515680
http://dx.doi.org/10.1039/d0ra05900e
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author Rahikkala, Antti
Fontana, Flavia
Bauleth-Ramos, Tomás
Correia, Alexandra
Kemell, Marianna
Seitsonen, Jani
Mäkilä, Ermei
Sarmento, Bruno
Salonen, Jarno
Ruokolainen, Janne
Hirvonen, Jouni
Santos, Hélder A.
author_facet Rahikkala, Antti
Fontana, Flavia
Bauleth-Ramos, Tomás
Correia, Alexandra
Kemell, Marianna
Seitsonen, Jani
Mäkilä, Ermei
Sarmento, Bruno
Salonen, Jarno
Ruokolainen, Janne
Hirvonen, Jouni
Santos, Hélder A.
author_sort Rahikkala, Antti
collection PubMed
description Erythrocyte-based drug delivery systems have been investigated for their biocompatibility, long circulation time, and capability to transport cargo all around the body, thus presenting enormous potential in medical applications. In this study, we investigated hybrid nanoparticles consisting of nano-sized autologous or allogeneic red blood cell (RBC) membranes encapsulating porous silicon nanoparticles (PSi NPs). These NPs were functionalized with a model cancer antigen TRP2, which was either expressed on the surface of the RBCs by a cell membrane-mimicking block copolymer polydimethylsiloxane-b-poly-2-methyl-2-oxazoline, or attached on the PSi NPs, thus hidden within the encapsulation. When in the presence of peripheral blood immune cells, these NPs resulted in apoptotic cell death of T cells, where the NPs having TRP2 within the encapsulation led to a stronger T cell deletion. The deletion of the T cells did not change the relative proportion of CD4(+) and cytotoxic CD8(+) T cells. Overall, this work shows the combination of nano-sized RBCs, PSi, and antigenic peptides may have use in the treatment of autoimmune diseases.
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spelling pubmed-90568252022-05-04 Hybrid red blood cell membrane coated porous silicon nanoparticles functionalized with cancer antigen induce depletion of T cells Rahikkala, Antti Fontana, Flavia Bauleth-Ramos, Tomás Correia, Alexandra Kemell, Marianna Seitsonen, Jani Mäkilä, Ermei Sarmento, Bruno Salonen, Jarno Ruokolainen, Janne Hirvonen, Jouni Santos, Hélder A. RSC Adv Chemistry Erythrocyte-based drug delivery systems have been investigated for their biocompatibility, long circulation time, and capability to transport cargo all around the body, thus presenting enormous potential in medical applications. In this study, we investigated hybrid nanoparticles consisting of nano-sized autologous or allogeneic red blood cell (RBC) membranes encapsulating porous silicon nanoparticles (PSi NPs). These NPs were functionalized with a model cancer antigen TRP2, which was either expressed on the surface of the RBCs by a cell membrane-mimicking block copolymer polydimethylsiloxane-b-poly-2-methyl-2-oxazoline, or attached on the PSi NPs, thus hidden within the encapsulation. When in the presence of peripheral blood immune cells, these NPs resulted in apoptotic cell death of T cells, where the NPs having TRP2 within the encapsulation led to a stronger T cell deletion. The deletion of the T cells did not change the relative proportion of CD4(+) and cytotoxic CD8(+) T cells. Overall, this work shows the combination of nano-sized RBCs, PSi, and antigenic peptides may have use in the treatment of autoimmune diseases. The Royal Society of Chemistry 2020-09-23 /pmc/articles/PMC9056825/ /pubmed/35515680 http://dx.doi.org/10.1039/d0ra05900e Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Rahikkala, Antti
Fontana, Flavia
Bauleth-Ramos, Tomás
Correia, Alexandra
Kemell, Marianna
Seitsonen, Jani
Mäkilä, Ermei
Sarmento, Bruno
Salonen, Jarno
Ruokolainen, Janne
Hirvonen, Jouni
Santos, Hélder A.
Hybrid red blood cell membrane coated porous silicon nanoparticles functionalized with cancer antigen induce depletion of T cells
title Hybrid red blood cell membrane coated porous silicon nanoparticles functionalized with cancer antigen induce depletion of T cells
title_full Hybrid red blood cell membrane coated porous silicon nanoparticles functionalized with cancer antigen induce depletion of T cells
title_fullStr Hybrid red blood cell membrane coated porous silicon nanoparticles functionalized with cancer antigen induce depletion of T cells
title_full_unstemmed Hybrid red blood cell membrane coated porous silicon nanoparticles functionalized with cancer antigen induce depletion of T cells
title_short Hybrid red blood cell membrane coated porous silicon nanoparticles functionalized with cancer antigen induce depletion of T cells
title_sort hybrid red blood cell membrane coated porous silicon nanoparticles functionalized with cancer antigen induce depletion of t cells
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9056825/
https://www.ncbi.nlm.nih.gov/pubmed/35515680
http://dx.doi.org/10.1039/d0ra05900e
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