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Inhibitory Effect and Mechanism on Antiproliferation of Isoatriplicolide Tiglate (PCAC) from Paulownia Coreana

Paulownia coreana has traditionally been used as the medicine and health food in the treatment of cancer and infectious diseases. In the present study, a new antiproliferation agent, isoatriplicolide tiglate (PCAC) was isolated from the chloroform soluble fraction of the leaves of Paulownia coreana....

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Autores principales: Jung, Samil, Moon, Hyung-In, Ohk, Jiyeon, Lee, Soonduck, Li, Chengping, Kim, Soo-Ki, Lee, Myeong-Sok
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6269024/
https://www.ncbi.nlm.nih.gov/pubmed/22609785
http://dx.doi.org/10.3390/molecules17055945
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author Jung, Samil
Moon, Hyung-In
Ohk, Jiyeon
Lee, Soonduck
Li, Chengping
Kim, Soo-Ki
Lee, Myeong-Sok
author_facet Jung, Samil
Moon, Hyung-In
Ohk, Jiyeon
Lee, Soonduck
Li, Chengping
Kim, Soo-Ki
Lee, Myeong-Sok
author_sort Jung, Samil
collection PubMed
description Paulownia coreana has traditionally been used as the medicine and health food in the treatment of cancer and infectious diseases. In the present study, a new antiproliferation agent, isoatriplicolide tiglate (PCAC) was isolated from the chloroform soluble fraction of the leaves of Paulownia coreana. The antiproliferation activities of PCAC plant extract was examined in breast and cervical cancer cell lines in a time-and dose-dependent manners. Our in vitro experiments showed that PCAC suppresses the cell growth and proliferation of cancer cells at a relatively low concentration (<10 µg/mL) and induces apoptosis at a high concentration (>50 µg/mL). Western blot analysis showed that concentration higher than 50 µg/mL induces a time-dependent increase in the percentage of apoptotic cells. In this case, PCAC uses both extrinsic and intrinsic pathways for the apoptosis. PCAC treatment decreased the expression of pro-caspase 8, 9, and 3, the main regulators of apoptotic cell death, in MDA-MB-231 cells, accompanied by the activation of caspase 8, 9, and 3. More importantly, PCAC inhibited the in vitro proliferation of six other human breast and cervical cancer cell lines. In conclusion, our data strongly suggest that PCAC acts as an antiproliferation agents particularly against breast and cervical cancers by inducing cell cycle arrest in the S/G2 phase and caspase dependent apoptosis at relatively low (<10 μg/mL) and high (>50 µg/mL) concentrations, respectively.
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spelling pubmed-62690242018-12-20 Inhibitory Effect and Mechanism on Antiproliferation of Isoatriplicolide Tiglate (PCAC) from Paulownia Coreana Jung, Samil Moon, Hyung-In Ohk, Jiyeon Lee, Soonduck Li, Chengping Kim, Soo-Ki Lee, Myeong-Sok Molecules Communication Paulownia coreana has traditionally been used as the medicine and health food in the treatment of cancer and infectious diseases. In the present study, a new antiproliferation agent, isoatriplicolide tiglate (PCAC) was isolated from the chloroform soluble fraction of the leaves of Paulownia coreana. The antiproliferation activities of PCAC plant extract was examined in breast and cervical cancer cell lines in a time-and dose-dependent manners. Our in vitro experiments showed that PCAC suppresses the cell growth and proliferation of cancer cells at a relatively low concentration (<10 µg/mL) and induces apoptosis at a high concentration (>50 µg/mL). Western blot analysis showed that concentration higher than 50 µg/mL induces a time-dependent increase in the percentage of apoptotic cells. In this case, PCAC uses both extrinsic and intrinsic pathways for the apoptosis. PCAC treatment decreased the expression of pro-caspase 8, 9, and 3, the main regulators of apoptotic cell death, in MDA-MB-231 cells, accompanied by the activation of caspase 8, 9, and 3. More importantly, PCAC inhibited the in vitro proliferation of six other human breast and cervical cancer cell lines. In conclusion, our data strongly suggest that PCAC acts as an antiproliferation agents particularly against breast and cervical cancers by inducing cell cycle arrest in the S/G2 phase and caspase dependent apoptosis at relatively low (<10 μg/mL) and high (>50 µg/mL) concentrations, respectively. MDPI 2012-05-18 /pmc/articles/PMC6269024/ /pubmed/22609785 http://dx.doi.org/10.3390/molecules17055945 Text en © 2012 by the authors; licensee MDPI, Basel, Switzerland. http://creativecommons.org/licenses/by/3.0/ This article is an open-access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/3.0/).
spellingShingle Communication
Jung, Samil
Moon, Hyung-In
Ohk, Jiyeon
Lee, Soonduck
Li, Chengping
Kim, Soo-Ki
Lee, Myeong-Sok
Inhibitory Effect and Mechanism on Antiproliferation of Isoatriplicolide Tiglate (PCAC) from Paulownia Coreana
title Inhibitory Effect and Mechanism on Antiproliferation of Isoatriplicolide Tiglate (PCAC) from Paulownia Coreana
title_full Inhibitory Effect and Mechanism on Antiproliferation of Isoatriplicolide Tiglate (PCAC) from Paulownia Coreana
title_fullStr Inhibitory Effect and Mechanism on Antiproliferation of Isoatriplicolide Tiglate (PCAC) from Paulownia Coreana
title_full_unstemmed Inhibitory Effect and Mechanism on Antiproliferation of Isoatriplicolide Tiglate (PCAC) from Paulownia Coreana
title_short Inhibitory Effect and Mechanism on Antiproliferation of Isoatriplicolide Tiglate (PCAC) from Paulownia Coreana
title_sort inhibitory effect and mechanism on antiproliferation of isoatriplicolide tiglate (pcac) from paulownia coreana
topic Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6269024/
https://www.ncbi.nlm.nih.gov/pubmed/22609785
http://dx.doi.org/10.3390/molecules17055945
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