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Citrus limonL.-Derived Nanovesicles Show an Inhibitory Effect on Cell Growth in p53-Inactivated Colorectal Cancer Cells via the Macropinocytosis Pathway

Edible plant-derived nanovesicles have been explored as effective materials for preventing colorectal cancer (CRC) incidence, dependent on gene status, as a K-Ras-activating mutation via the macropinocytosis pathway. Approximately 70% of CRC harbors the p53 mutation, which is strongly associated wit...

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Autores principales: Takakura, Hideki, Nakao, Toshimasa, Narita, Takumi, Horinaka, Mano, Nakao-Ise, Yukako, Yamamoto, Tetsushi, Iizumi, Yosuke, Watanabe, Motoki, Sowa, Yoshihiro, Oda, Keisuke, Mori, Nobuhiro, Sakai, Toshiyuki, Mutoh, Michihiro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9219868/
https://www.ncbi.nlm.nih.gov/pubmed/35740377
http://dx.doi.org/10.3390/biomedicines10061352
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author Takakura, Hideki
Nakao, Toshimasa
Narita, Takumi
Horinaka, Mano
Nakao-Ise, Yukako
Yamamoto, Tetsushi
Iizumi, Yosuke
Watanabe, Motoki
Sowa, Yoshihiro
Oda, Keisuke
Mori, Nobuhiro
Sakai, Toshiyuki
Mutoh, Michihiro
author_facet Takakura, Hideki
Nakao, Toshimasa
Narita, Takumi
Horinaka, Mano
Nakao-Ise, Yukako
Yamamoto, Tetsushi
Iizumi, Yosuke
Watanabe, Motoki
Sowa, Yoshihiro
Oda, Keisuke
Mori, Nobuhiro
Sakai, Toshiyuki
Mutoh, Michihiro
author_sort Takakura, Hideki
collection PubMed
description Edible plant-derived nanovesicles have been explored as effective materials for preventing colorectal cancer (CRC) incidence, dependent on gene status, as a K-Ras-activating mutation via the macropinocytosis pathway. Approximately 70% of CRC harbors the p53 mutation, which is strongly associated with a poor prognosis for CRC. However, it has not been revealed whether p53 inactivation activates the macropinocytosis pathway or not. In this study, we investigated parental cells, wild-type or null for p53 treated with Citrus limon L.-derived nanovesicles, as potential materials for CRC prevention. Using ultracentrifugation, we obtained C. limon L.-derived nanovesicles, the diameters of which were approximately 100 nm, similar to that of the exosomes derived from mammalian cells. C. limon L.-derived nanovesicles showed inhibitory effects on cell growth in not p53-wild, but also in p53-inactivated CRC cells. Furthermore, we revealed that the macropinocytosis pathway is activated by p53 inactivation and C. limon L.-derived nanovesicles were up taken via the macropinocytosis pathway. Notably, although C. limon L.-derived nanovesicles contained citrate, the inhibitory effects of citrate were not dependent on the p53 status. We thus provide a novel mechanism for the growth inhibition of C. limon L.-derived nanovesicles via macropinocytosis and expect to develop a functional food product containing them for preventing p53-inactivation CRC incidence.
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spelling pubmed-92198682022-06-24 Citrus limonL.-Derived Nanovesicles Show an Inhibitory Effect on Cell Growth in p53-Inactivated Colorectal Cancer Cells via the Macropinocytosis Pathway Takakura, Hideki Nakao, Toshimasa Narita, Takumi Horinaka, Mano Nakao-Ise, Yukako Yamamoto, Tetsushi Iizumi, Yosuke Watanabe, Motoki Sowa, Yoshihiro Oda, Keisuke Mori, Nobuhiro Sakai, Toshiyuki Mutoh, Michihiro Biomedicines Article Edible plant-derived nanovesicles have been explored as effective materials for preventing colorectal cancer (CRC) incidence, dependent on gene status, as a K-Ras-activating mutation via the macropinocytosis pathway. Approximately 70% of CRC harbors the p53 mutation, which is strongly associated with a poor prognosis for CRC. However, it has not been revealed whether p53 inactivation activates the macropinocytosis pathway or not. In this study, we investigated parental cells, wild-type or null for p53 treated with Citrus limon L.-derived nanovesicles, as potential materials for CRC prevention. Using ultracentrifugation, we obtained C. limon L.-derived nanovesicles, the diameters of which were approximately 100 nm, similar to that of the exosomes derived from mammalian cells. C. limon L.-derived nanovesicles showed inhibitory effects on cell growth in not p53-wild, but also in p53-inactivated CRC cells. Furthermore, we revealed that the macropinocytosis pathway is activated by p53 inactivation and C. limon L.-derived nanovesicles were up taken via the macropinocytosis pathway. Notably, although C. limon L.-derived nanovesicles contained citrate, the inhibitory effects of citrate were not dependent on the p53 status. We thus provide a novel mechanism for the growth inhibition of C. limon L.-derived nanovesicles via macropinocytosis and expect to develop a functional food product containing them for preventing p53-inactivation CRC incidence. MDPI 2022-06-08 /pmc/articles/PMC9219868/ /pubmed/35740377 http://dx.doi.org/10.3390/biomedicines10061352 Text en © 2022 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
Takakura, Hideki
Nakao, Toshimasa
Narita, Takumi
Horinaka, Mano
Nakao-Ise, Yukako
Yamamoto, Tetsushi
Iizumi, Yosuke
Watanabe, Motoki
Sowa, Yoshihiro
Oda, Keisuke
Mori, Nobuhiro
Sakai, Toshiyuki
Mutoh, Michihiro
Citrus limonL.-Derived Nanovesicles Show an Inhibitory Effect on Cell Growth in p53-Inactivated Colorectal Cancer Cells via the Macropinocytosis Pathway
title Citrus limonL.-Derived Nanovesicles Show an Inhibitory Effect on Cell Growth in p53-Inactivated Colorectal Cancer Cells via the Macropinocytosis Pathway
title_full Citrus limonL.-Derived Nanovesicles Show an Inhibitory Effect on Cell Growth in p53-Inactivated Colorectal Cancer Cells via the Macropinocytosis Pathway
title_fullStr Citrus limonL.-Derived Nanovesicles Show an Inhibitory Effect on Cell Growth in p53-Inactivated Colorectal Cancer Cells via the Macropinocytosis Pathway
title_full_unstemmed Citrus limonL.-Derived Nanovesicles Show an Inhibitory Effect on Cell Growth in p53-Inactivated Colorectal Cancer Cells via the Macropinocytosis Pathway
title_short Citrus limonL.-Derived Nanovesicles Show an Inhibitory Effect on Cell Growth in p53-Inactivated Colorectal Cancer Cells via the Macropinocytosis Pathway
title_sort citrus limonl.-derived nanovesicles show an inhibitory effect on cell growth in p53-inactivated colorectal cancer cells via the macropinocytosis pathway
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9219868/
https://www.ncbi.nlm.nih.gov/pubmed/35740377
http://dx.doi.org/10.3390/biomedicines10061352
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