Cargando…

An Ionizable Lipid Material with a Vitamin E Scaffold as an mRNA Vaccine Platform for Efficient Cytotoxic T Cell Responses

[Image: see text] RNA vaccines based on lipid nanoparticles (LNPs) with in vitro transcribed mRNA (IVT-mRNA) encapsulated are now a currently successful but still evolving modality of vaccines. One of the advantages of RNA vaccines is their ability to induce CD8(+) T-cell-mediated cellular immunity...

Descripción completa

Detalles Bibliográficos
Autores principales: Oyama, Ryotaro, Ishigame, Harumichi, Tanaka, Hiroki, Tateshita, Naho, Itazawa, Moeko, Imai, Ryosuke, Nishiumi, Naomasa, Kishikawa, Jun-ichi, Kato, Takayuki, Anindita, Jessica, Nishikawa, Yoshifumi, Maeki, Masatoshi, Tokeshi, Manabu, Tange, Kota, Nakai, Yuta, Sakurai, Yu, Okada, Takaharu, Akita, Hidetaka
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10569098/
https://www.ncbi.nlm.nih.gov/pubmed/37814788
http://dx.doi.org/10.1021/acsnano.3c02251
_version_ 1785119493009178624
author Oyama, Ryotaro
Ishigame, Harumichi
Tanaka, Hiroki
Tateshita, Naho
Itazawa, Moeko
Imai, Ryosuke
Nishiumi, Naomasa
Kishikawa, Jun-ichi
Kato, Takayuki
Anindita, Jessica
Nishikawa, Yoshifumi
Maeki, Masatoshi
Tokeshi, Manabu
Tange, Kota
Nakai, Yuta
Sakurai, Yu
Okada, Takaharu
Akita, Hidetaka
author_facet Oyama, Ryotaro
Ishigame, Harumichi
Tanaka, Hiroki
Tateshita, Naho
Itazawa, Moeko
Imai, Ryosuke
Nishiumi, Naomasa
Kishikawa, Jun-ichi
Kato, Takayuki
Anindita, Jessica
Nishikawa, Yoshifumi
Maeki, Masatoshi
Tokeshi, Manabu
Tange, Kota
Nakai, Yuta
Sakurai, Yu
Okada, Takaharu
Akita, Hidetaka
author_sort Oyama, Ryotaro
collection PubMed
description [Image: see text] RNA vaccines based on lipid nanoparticles (LNPs) with in vitro transcribed mRNA (IVT-mRNA) encapsulated are now a currently successful but still evolving modality of vaccines. One of the advantages of RNA vaccines is their ability to induce CD8(+) T-cell-mediated cellular immunity that is indispensable for excluding pathogen-infected cells or cancer cells from the body. In this study, we report on the development of LNPs with an enhanced capability for inducing cellular immunity by using an ionizable lipid with a vitamin E scaffold. An RNA vaccine that contained this ionizable lipid and an IVT-mRNA encoding a model antigen ovalbumin (OVA) induced OVA-specific cytotoxic T cell responses and showed an antitumor effect against an E.G7-OVA tumor model. Vaccination with the LNPs conferred protection against lethal infection by Toxoplasma gondii using its antigen TgPF. The vitamin E scaffold-dependent type I interferon response was important for effector CD8(+) T cell differentiation induced by the mRNA-LNPs. Our findings also revealed that conventional dendritic cells (cDCs) were essential for achieving CD8(+) T cell responses induced by the mRNA-LNPs, while the XCR1-positive subset of cDCs, cDC1 specialized for antigen cross-presentation, was not required. Consistently, the mRNA-LNPs were found to selectively transfect another subset of cDCs, cDC2 that had migrated from the skin to lymph nodes, where they could make vaccine-antigen-dependent contacts with CD8(+) T cells. The findings indicate that the activation of innate immune signaling by the adjuvant activity of the vitamin E scaffold and the expression of antigens in cDC2 are important for subsequent antigen presentation and the establishment of antigen-specific immune responses.
format Online
Article
Text
id pubmed-10569098
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher American Chemical Society
record_format MEDLINE/PubMed
spelling pubmed-105690982023-10-13 An Ionizable Lipid Material with a Vitamin E Scaffold as an mRNA Vaccine Platform for Efficient Cytotoxic T Cell Responses Oyama, Ryotaro Ishigame, Harumichi Tanaka, Hiroki Tateshita, Naho Itazawa, Moeko Imai, Ryosuke Nishiumi, Naomasa Kishikawa, Jun-ichi Kato, Takayuki Anindita, Jessica Nishikawa, Yoshifumi Maeki, Masatoshi Tokeshi, Manabu Tange, Kota Nakai, Yuta Sakurai, Yu Okada, Takaharu Akita, Hidetaka ACS Nano [Image: see text] RNA vaccines based on lipid nanoparticles (LNPs) with in vitro transcribed mRNA (IVT-mRNA) encapsulated are now a currently successful but still evolving modality of vaccines. One of the advantages of RNA vaccines is their ability to induce CD8(+) T-cell-mediated cellular immunity that is indispensable for excluding pathogen-infected cells or cancer cells from the body. In this study, we report on the development of LNPs with an enhanced capability for inducing cellular immunity by using an ionizable lipid with a vitamin E scaffold. An RNA vaccine that contained this ionizable lipid and an IVT-mRNA encoding a model antigen ovalbumin (OVA) induced OVA-specific cytotoxic T cell responses and showed an antitumor effect against an E.G7-OVA tumor model. Vaccination with the LNPs conferred protection against lethal infection by Toxoplasma gondii using its antigen TgPF. The vitamin E scaffold-dependent type I interferon response was important for effector CD8(+) T cell differentiation induced by the mRNA-LNPs. Our findings also revealed that conventional dendritic cells (cDCs) were essential for achieving CD8(+) T cell responses induced by the mRNA-LNPs, while the XCR1-positive subset of cDCs, cDC1 specialized for antigen cross-presentation, was not required. Consistently, the mRNA-LNPs were found to selectively transfect another subset of cDCs, cDC2 that had migrated from the skin to lymph nodes, where they could make vaccine-antigen-dependent contacts with CD8(+) T cells. The findings indicate that the activation of innate immune signaling by the adjuvant activity of the vitamin E scaffold and the expression of antigens in cDC2 are important for subsequent antigen presentation and the establishment of antigen-specific immune responses. American Chemical Society 2023-09-26 /pmc/articles/PMC10569098/ /pubmed/37814788 http://dx.doi.org/10.1021/acsnano.3c02251 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Oyama, Ryotaro
Ishigame, Harumichi
Tanaka, Hiroki
Tateshita, Naho
Itazawa, Moeko
Imai, Ryosuke
Nishiumi, Naomasa
Kishikawa, Jun-ichi
Kato, Takayuki
Anindita, Jessica
Nishikawa, Yoshifumi
Maeki, Masatoshi
Tokeshi, Manabu
Tange, Kota
Nakai, Yuta
Sakurai, Yu
Okada, Takaharu
Akita, Hidetaka
An Ionizable Lipid Material with a Vitamin E Scaffold as an mRNA Vaccine Platform for Efficient Cytotoxic T Cell Responses
title An Ionizable Lipid Material with a Vitamin E Scaffold as an mRNA Vaccine Platform for Efficient Cytotoxic T Cell Responses
title_full An Ionizable Lipid Material with a Vitamin E Scaffold as an mRNA Vaccine Platform for Efficient Cytotoxic T Cell Responses
title_fullStr An Ionizable Lipid Material with a Vitamin E Scaffold as an mRNA Vaccine Platform for Efficient Cytotoxic T Cell Responses
title_full_unstemmed An Ionizable Lipid Material with a Vitamin E Scaffold as an mRNA Vaccine Platform for Efficient Cytotoxic T Cell Responses
title_short An Ionizable Lipid Material with a Vitamin E Scaffold as an mRNA Vaccine Platform for Efficient Cytotoxic T Cell Responses
title_sort ionizable lipid material with a vitamin e scaffold as an mrna vaccine platform for efficient cytotoxic t cell responses
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10569098/
https://www.ncbi.nlm.nih.gov/pubmed/37814788
http://dx.doi.org/10.1021/acsnano.3c02251
work_keys_str_mv AT oyamaryotaro anionizablelipidmaterialwithavitaminescaffoldasanmrnavaccineplatformforefficientcytotoxictcellresponses
AT ishigameharumichi anionizablelipidmaterialwithavitaminescaffoldasanmrnavaccineplatformforefficientcytotoxictcellresponses
AT tanakahiroki anionizablelipidmaterialwithavitaminescaffoldasanmrnavaccineplatformforefficientcytotoxictcellresponses
AT tateshitanaho anionizablelipidmaterialwithavitaminescaffoldasanmrnavaccineplatformforefficientcytotoxictcellresponses
AT itazawamoeko anionizablelipidmaterialwithavitaminescaffoldasanmrnavaccineplatformforefficientcytotoxictcellresponses
AT imairyosuke anionizablelipidmaterialwithavitaminescaffoldasanmrnavaccineplatformforefficientcytotoxictcellresponses
AT nishiuminaomasa anionizablelipidmaterialwithavitaminescaffoldasanmrnavaccineplatformforefficientcytotoxictcellresponses
AT kishikawajunichi anionizablelipidmaterialwithavitaminescaffoldasanmrnavaccineplatformforefficientcytotoxictcellresponses
AT katotakayuki anionizablelipidmaterialwithavitaminescaffoldasanmrnavaccineplatformforefficientcytotoxictcellresponses
AT aninditajessica anionizablelipidmaterialwithavitaminescaffoldasanmrnavaccineplatformforefficientcytotoxictcellresponses
AT nishikawayoshifumi anionizablelipidmaterialwithavitaminescaffoldasanmrnavaccineplatformforefficientcytotoxictcellresponses
AT maekimasatoshi anionizablelipidmaterialwithavitaminescaffoldasanmrnavaccineplatformforefficientcytotoxictcellresponses
AT tokeshimanabu anionizablelipidmaterialwithavitaminescaffoldasanmrnavaccineplatformforefficientcytotoxictcellresponses
AT tangekota anionizablelipidmaterialwithavitaminescaffoldasanmrnavaccineplatformforefficientcytotoxictcellresponses
AT nakaiyuta anionizablelipidmaterialwithavitaminescaffoldasanmrnavaccineplatformforefficientcytotoxictcellresponses
AT sakuraiyu anionizablelipidmaterialwithavitaminescaffoldasanmrnavaccineplatformforefficientcytotoxictcellresponses
AT okadatakaharu anionizablelipidmaterialwithavitaminescaffoldasanmrnavaccineplatformforefficientcytotoxictcellresponses
AT akitahidetaka anionizablelipidmaterialwithavitaminescaffoldasanmrnavaccineplatformforefficientcytotoxictcellresponses
AT oyamaryotaro ionizablelipidmaterialwithavitaminescaffoldasanmrnavaccineplatformforefficientcytotoxictcellresponses
AT ishigameharumichi ionizablelipidmaterialwithavitaminescaffoldasanmrnavaccineplatformforefficientcytotoxictcellresponses
AT tanakahiroki ionizablelipidmaterialwithavitaminescaffoldasanmrnavaccineplatformforefficientcytotoxictcellresponses
AT tateshitanaho ionizablelipidmaterialwithavitaminescaffoldasanmrnavaccineplatformforefficientcytotoxictcellresponses
AT itazawamoeko ionizablelipidmaterialwithavitaminescaffoldasanmrnavaccineplatformforefficientcytotoxictcellresponses
AT imairyosuke ionizablelipidmaterialwithavitaminescaffoldasanmrnavaccineplatformforefficientcytotoxictcellresponses
AT nishiuminaomasa ionizablelipidmaterialwithavitaminescaffoldasanmrnavaccineplatformforefficientcytotoxictcellresponses
AT kishikawajunichi ionizablelipidmaterialwithavitaminescaffoldasanmrnavaccineplatformforefficientcytotoxictcellresponses
AT katotakayuki ionizablelipidmaterialwithavitaminescaffoldasanmrnavaccineplatformforefficientcytotoxictcellresponses
AT aninditajessica ionizablelipidmaterialwithavitaminescaffoldasanmrnavaccineplatformforefficientcytotoxictcellresponses
AT nishikawayoshifumi ionizablelipidmaterialwithavitaminescaffoldasanmrnavaccineplatformforefficientcytotoxictcellresponses
AT maekimasatoshi ionizablelipidmaterialwithavitaminescaffoldasanmrnavaccineplatformforefficientcytotoxictcellresponses
AT tokeshimanabu ionizablelipidmaterialwithavitaminescaffoldasanmrnavaccineplatformforefficientcytotoxictcellresponses
AT tangekota ionizablelipidmaterialwithavitaminescaffoldasanmrnavaccineplatformforefficientcytotoxictcellresponses
AT nakaiyuta ionizablelipidmaterialwithavitaminescaffoldasanmrnavaccineplatformforefficientcytotoxictcellresponses
AT sakuraiyu ionizablelipidmaterialwithavitaminescaffoldasanmrnavaccineplatformforefficientcytotoxictcellresponses
AT okadatakaharu ionizablelipidmaterialwithavitaminescaffoldasanmrnavaccineplatformforefficientcytotoxictcellresponses
AT akitahidetaka ionizablelipidmaterialwithavitaminescaffoldasanmrnavaccineplatformforefficientcytotoxictcellresponses