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Berberine Induces Combined Cell Death in Gastrointestinal Cell Lines

Berberine (BBR) is a plant alkaloid that has various biological activities. The effects of BBR on gastrointestinal cancer (GIC) have also been investigated and anti-tumor effects such as induction of cell death have been reported. However, the mechanism of BBR-induced cell death has not been fully e...

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Autores principales: Mori, Shiori, Fujiwara-Tani, Rina, Gyoten, Momoko, Nukaga, Shota, Sasaki, Rika, Ikemoto, Ayaka, Ogata, Ruiko, Kishi, Shingo, Fujii, Kiyomu, Kuniyasu, Hiroki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10094831/
https://www.ncbi.nlm.nih.gov/pubmed/37047563
http://dx.doi.org/10.3390/ijms24076588
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author Mori, Shiori
Fujiwara-Tani, Rina
Gyoten, Momoko
Nukaga, Shota
Sasaki, Rika
Ikemoto, Ayaka
Ogata, Ruiko
Kishi, Shingo
Fujii, Kiyomu
Kuniyasu, Hiroki
author_facet Mori, Shiori
Fujiwara-Tani, Rina
Gyoten, Momoko
Nukaga, Shota
Sasaki, Rika
Ikemoto, Ayaka
Ogata, Ruiko
Kishi, Shingo
Fujii, Kiyomu
Kuniyasu, Hiroki
author_sort Mori, Shiori
collection PubMed
description Berberine (BBR) is a plant alkaloid that has various biological activities. The effects of BBR on gastrointestinal cancer (GIC) have also been investigated and anti-tumor effects such as induction of cell death have been reported. However, the mechanism of BBR-induced cell death has not been fully elucidated. To this end, we investigated the effects of BBR using three GIC cell lines. Our analyses revealed that BBR inhibited cell proliferation, invasion, sphere formation, and anticancer drug resistance in all of the cell lines. BBR also induced an increase in mitochondrial superoxide, lipid peroxide and Fe(2+) levels, decreased mitochondrial membrane potential and respiration, decreased glutathione peroxidase 4 expression and glutathione and induced Parkin/PINK1-associated mitophagy. BBR, as well as rotenone, inhibited mitochondrial complex I and enhanced complex II, which were associated with autophagy, reactive oxidative species production, and cell death. Inhibition of complex II by malonate abrogated these changes. BBR-induced cell death was partially rescued by ferrostatin-1, deferoxamine, Z-VAD-FMK, and ATG5 knockdown. Furthermore, oral administration of BBR significantly reduced tumor weight and ascites in a syngeneic mouse peritoneal metastasis model using CT26 GIC cells. These findings suggest that BBR induced a combined type of cell death via complex I inhibition and autophagy. The marked anti-tumor and anti-stemness effects are expected to be useful as a new cell death-inducing agent for the treatment of GIC.
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spelling pubmed-100948312023-04-13 Berberine Induces Combined Cell Death in Gastrointestinal Cell Lines Mori, Shiori Fujiwara-Tani, Rina Gyoten, Momoko Nukaga, Shota Sasaki, Rika Ikemoto, Ayaka Ogata, Ruiko Kishi, Shingo Fujii, Kiyomu Kuniyasu, Hiroki Int J Mol Sci Article Berberine (BBR) is a plant alkaloid that has various biological activities. The effects of BBR on gastrointestinal cancer (GIC) have also been investigated and anti-tumor effects such as induction of cell death have been reported. However, the mechanism of BBR-induced cell death has not been fully elucidated. To this end, we investigated the effects of BBR using three GIC cell lines. Our analyses revealed that BBR inhibited cell proliferation, invasion, sphere formation, and anticancer drug resistance in all of the cell lines. BBR also induced an increase in mitochondrial superoxide, lipid peroxide and Fe(2+) levels, decreased mitochondrial membrane potential and respiration, decreased glutathione peroxidase 4 expression and glutathione and induced Parkin/PINK1-associated mitophagy. BBR, as well as rotenone, inhibited mitochondrial complex I and enhanced complex II, which were associated with autophagy, reactive oxidative species production, and cell death. Inhibition of complex II by malonate abrogated these changes. BBR-induced cell death was partially rescued by ferrostatin-1, deferoxamine, Z-VAD-FMK, and ATG5 knockdown. Furthermore, oral administration of BBR significantly reduced tumor weight and ascites in a syngeneic mouse peritoneal metastasis model using CT26 GIC cells. These findings suggest that BBR induced a combined type of cell death via complex I inhibition and autophagy. The marked anti-tumor and anti-stemness effects are expected to be useful as a new cell death-inducing agent for the treatment of GIC. MDPI 2023-04-01 /pmc/articles/PMC10094831/ /pubmed/37047563 http://dx.doi.org/10.3390/ijms24076588 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
Mori, Shiori
Fujiwara-Tani, Rina
Gyoten, Momoko
Nukaga, Shota
Sasaki, Rika
Ikemoto, Ayaka
Ogata, Ruiko
Kishi, Shingo
Fujii, Kiyomu
Kuniyasu, Hiroki
Berberine Induces Combined Cell Death in Gastrointestinal Cell Lines
title Berberine Induces Combined Cell Death in Gastrointestinal Cell Lines
title_full Berberine Induces Combined Cell Death in Gastrointestinal Cell Lines
title_fullStr Berberine Induces Combined Cell Death in Gastrointestinal Cell Lines
title_full_unstemmed Berberine Induces Combined Cell Death in Gastrointestinal Cell Lines
title_short Berberine Induces Combined Cell Death in Gastrointestinal Cell Lines
title_sort berberine induces combined cell death in gastrointestinal cell lines
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10094831/
https://www.ncbi.nlm.nih.gov/pubmed/37047563
http://dx.doi.org/10.3390/ijms24076588
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