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Time-Course of Transcriptomic Change in the Lungs of F344 Rats Repeatedly Exposed to a Multiwalled Carbon Nanotube in a 2-Year Test

Despite intensive toxicological studies of carbon nanotubes (CNTs) over the last two decades, only a few studies have demonstrated their pulmonary carcinogenicities in chronic animal experiments, and the underlying molecular mechanisms are still unclear. To obtain molecular insights into CNT-induced...

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Autores principales: Hojo, Motoki, Maeno, Ai, Sakamoto, Yoshimitsu, Yamamoto, Yukio, Taquahashi, Yuhji, Hirose, Akihiko, Suzuki, Jin, Inomata, Akiko, Nakae, Dai
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10383707/
https://www.ncbi.nlm.nih.gov/pubmed/37513116
http://dx.doi.org/10.3390/nano13142105
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author Hojo, Motoki
Maeno, Ai
Sakamoto, Yoshimitsu
Yamamoto, Yukio
Taquahashi, Yuhji
Hirose, Akihiko
Suzuki, Jin
Inomata, Akiko
Nakae, Dai
author_facet Hojo, Motoki
Maeno, Ai
Sakamoto, Yoshimitsu
Yamamoto, Yukio
Taquahashi, Yuhji
Hirose, Akihiko
Suzuki, Jin
Inomata, Akiko
Nakae, Dai
author_sort Hojo, Motoki
collection PubMed
description Despite intensive toxicological studies of carbon nanotubes (CNTs) over the last two decades, only a few studies have demonstrated their pulmonary carcinogenicities in chronic animal experiments, and the underlying molecular mechanisms are still unclear. To obtain molecular insights into CNT-induced lung carcinogenicity, we performed a transcriptomic analysis using a set of lung tissues collected from rats in a 2-year study, in which lung tumors were induced by repeated intratracheal instillations of a multiwalled carbon nanotube, MWNT-7. The RNA-seq-based transcriptome identified a large number of significantly differentially expressed genes at Year 0.5, Year 1, and Year 2. Ingenuity Pathway Analysis revealed that macrophage-elicited signaling pathways such as phagocytosis, acute phase response, and Toll-like receptor signaling were activated throughout the experimental period. At Year 2, cancer-related pathways including ERBB signaling and some axonal guidance signaling pathways such as EphB4 signaling were perturbed. qRT-PCR and immunohistochemistry indicated that several key molecules such as Osteopontin/Spp1, Hmox1, Mmp12, and ERBB2 were markedly altered and/or localized in the preneoplastic lesions, suggesting their participation in the induction of lung cancer. Our findings support a scenario of inflammation-induced carcinogenesis and contribute to a better understanding of the molecular mechanism of MWCNT carcinogenicity.
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spelling pubmed-103837072023-07-30 Time-Course of Transcriptomic Change in the Lungs of F344 Rats Repeatedly Exposed to a Multiwalled Carbon Nanotube in a 2-Year Test Hojo, Motoki Maeno, Ai Sakamoto, Yoshimitsu Yamamoto, Yukio Taquahashi, Yuhji Hirose, Akihiko Suzuki, Jin Inomata, Akiko Nakae, Dai Nanomaterials (Basel) Article Despite intensive toxicological studies of carbon nanotubes (CNTs) over the last two decades, only a few studies have demonstrated their pulmonary carcinogenicities in chronic animal experiments, and the underlying molecular mechanisms are still unclear. To obtain molecular insights into CNT-induced lung carcinogenicity, we performed a transcriptomic analysis using a set of lung tissues collected from rats in a 2-year study, in which lung tumors were induced by repeated intratracheal instillations of a multiwalled carbon nanotube, MWNT-7. The RNA-seq-based transcriptome identified a large number of significantly differentially expressed genes at Year 0.5, Year 1, and Year 2. Ingenuity Pathway Analysis revealed that macrophage-elicited signaling pathways such as phagocytosis, acute phase response, and Toll-like receptor signaling were activated throughout the experimental period. At Year 2, cancer-related pathways including ERBB signaling and some axonal guidance signaling pathways such as EphB4 signaling were perturbed. qRT-PCR and immunohistochemistry indicated that several key molecules such as Osteopontin/Spp1, Hmox1, Mmp12, and ERBB2 were markedly altered and/or localized in the preneoplastic lesions, suggesting their participation in the induction of lung cancer. Our findings support a scenario of inflammation-induced carcinogenesis and contribute to a better understanding of the molecular mechanism of MWCNT carcinogenicity. MDPI 2023-07-19 /pmc/articles/PMC10383707/ /pubmed/37513116 http://dx.doi.org/10.3390/nano13142105 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Hojo, Motoki
Maeno, Ai
Sakamoto, Yoshimitsu
Yamamoto, Yukio
Taquahashi, Yuhji
Hirose, Akihiko
Suzuki, Jin
Inomata, Akiko
Nakae, Dai
Time-Course of Transcriptomic Change in the Lungs of F344 Rats Repeatedly Exposed to a Multiwalled Carbon Nanotube in a 2-Year Test
title Time-Course of Transcriptomic Change in the Lungs of F344 Rats Repeatedly Exposed to a Multiwalled Carbon Nanotube in a 2-Year Test
title_full Time-Course of Transcriptomic Change in the Lungs of F344 Rats Repeatedly Exposed to a Multiwalled Carbon Nanotube in a 2-Year Test
title_fullStr Time-Course of Transcriptomic Change in the Lungs of F344 Rats Repeatedly Exposed to a Multiwalled Carbon Nanotube in a 2-Year Test
title_full_unstemmed Time-Course of Transcriptomic Change in the Lungs of F344 Rats Repeatedly Exposed to a Multiwalled Carbon Nanotube in a 2-Year Test
title_short Time-Course of Transcriptomic Change in the Lungs of F344 Rats Repeatedly Exposed to a Multiwalled Carbon Nanotube in a 2-Year Test
title_sort time-course of transcriptomic change in the lungs of f344 rats repeatedly exposed to a multiwalled carbon nanotube in a 2-year test
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10383707/
https://www.ncbi.nlm.nih.gov/pubmed/37513116
http://dx.doi.org/10.3390/nano13142105
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