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Paclitaxel-Containing Extract Exerts Anti-Cancer Activity through Oral Administration in A549-Xenografted BALB/C Nude Mice: Synergistic Effect between Paclitaxel and Flavonoids or Lignoids

Taxus yunnanensis is a paclitaxel-containing herb with traditional usage in cancer treatment, and its extract possesses great oral bioavailability of paclitaxel. However, it is elusive whether paclitaxel-containing extract (HDS-1) can exert anti-tumor effect through oral administration and how other...

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Autores principales: Cai, Dake, Jin, Jing, Bi, Huichang, Zhong, Guoping, Zhou, Minhua, Guo, Jianfen, Cai, Yike, Liang, Miaoyin, Gu, Qiong, Hu, Zixuan, Lai, Yijing, Dai, Zi, Li, Lingjie, Chen, Yuxing, Gao, Haili, Huang, Min
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9060980/
https://www.ncbi.nlm.nih.gov/pubmed/35509628
http://dx.doi.org/10.1155/2022/3648175
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author Cai, Dake
Jin, Jing
Bi, Huichang
Zhong, Guoping
Zhou, Minhua
Guo, Jianfen
Cai, Yike
Liang, Miaoyin
Gu, Qiong
Hu, Zixuan
Lai, Yijing
Dai, Zi
Li, Lingjie
Chen, Yuxing
Gao, Haili
Huang, Min
author_facet Cai, Dake
Jin, Jing
Bi, Huichang
Zhong, Guoping
Zhou, Minhua
Guo, Jianfen
Cai, Yike
Liang, Miaoyin
Gu, Qiong
Hu, Zixuan
Lai, Yijing
Dai, Zi
Li, Lingjie
Chen, Yuxing
Gao, Haili
Huang, Min
author_sort Cai, Dake
collection PubMed
description Taxus yunnanensis is a paclitaxel-containing herb with traditional usage in cancer treatment, and its extract possesses great oral bioavailability of paclitaxel. However, it is elusive whether paclitaxel-containing extract (HDS-1) can exert anti-tumor effect through oral administration and how other components contribute to its efficacy. Therefore, we investigate the oral-route anti-tumor effect of HDS-1 in A549-bearing mice. HDS-1-derived flavonoids (HDS-2) and lignoids (HDS-3) are hypothesized to contribute to HDS-1's efficacy, and their effects of enhancing enterocytic absorption and cytotoxicity of paclitaxel are validated in 2 permeability experiments and apoptosis-related assay, respectively. In vivo, A549 growth is significantly inhibited by 86.1 ± 12.94% (P < 0.01) at 600 mg/kg of HDS-1 and 65.7 ± 38.71% (P < 0.01) at 200 mg/kg. HDS-2 and HDS-3 significantly reduce the efflux ratio of paclitaxel to 2.33 and 3.70, respectively, in Caco-2 permeability experiment and reduce paclitaxel reflux in MDCK-MDR1 experiment. Furthermore, HDS-2 and HDS-3 potentiated paclitaxel-induced cytotoxicity by 19.1–22.45% (P < 0.05) and 10.52–18.03% (P < 0.05), respectively, inhibited the expression of cyclinB1, Bcl-2, and pMCL-1, and increased the percentage of necrosis cell in the condition of paclitaxel exposure. Conclusively, paclitaxel-containing extracts exert anti-cancer effects through oral administration, and flavonoid and lignoids contribute to its anti-cancer effect through simultaneously improving enterocytic absorption of paclitaxel and the cytotoxic effect of paclitaxel.
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spelling pubmed-90609802022-05-03 Paclitaxel-Containing Extract Exerts Anti-Cancer Activity through Oral Administration in A549-Xenografted BALB/C Nude Mice: Synergistic Effect between Paclitaxel and Flavonoids or Lignoids Cai, Dake Jin, Jing Bi, Huichang Zhong, Guoping Zhou, Minhua Guo, Jianfen Cai, Yike Liang, Miaoyin Gu, Qiong Hu, Zixuan Lai, Yijing Dai, Zi Li, Lingjie Chen, Yuxing Gao, Haili Huang, Min Evid Based Complement Alternat Med Research Article Taxus yunnanensis is a paclitaxel-containing herb with traditional usage in cancer treatment, and its extract possesses great oral bioavailability of paclitaxel. However, it is elusive whether paclitaxel-containing extract (HDS-1) can exert anti-tumor effect through oral administration and how other components contribute to its efficacy. Therefore, we investigate the oral-route anti-tumor effect of HDS-1 in A549-bearing mice. HDS-1-derived flavonoids (HDS-2) and lignoids (HDS-3) are hypothesized to contribute to HDS-1's efficacy, and their effects of enhancing enterocytic absorption and cytotoxicity of paclitaxel are validated in 2 permeability experiments and apoptosis-related assay, respectively. In vivo, A549 growth is significantly inhibited by 86.1 ± 12.94% (P < 0.01) at 600 mg/kg of HDS-1 and 65.7 ± 38.71% (P < 0.01) at 200 mg/kg. HDS-2 and HDS-3 significantly reduce the efflux ratio of paclitaxel to 2.33 and 3.70, respectively, in Caco-2 permeability experiment and reduce paclitaxel reflux in MDCK-MDR1 experiment. Furthermore, HDS-2 and HDS-3 potentiated paclitaxel-induced cytotoxicity by 19.1–22.45% (P < 0.05) and 10.52–18.03% (P < 0.05), respectively, inhibited the expression of cyclinB1, Bcl-2, and pMCL-1, and increased the percentage of necrosis cell in the condition of paclitaxel exposure. Conclusively, paclitaxel-containing extracts exert anti-cancer effects through oral administration, and flavonoid and lignoids contribute to its anti-cancer effect through simultaneously improving enterocytic absorption of paclitaxel and the cytotoxic effect of paclitaxel. Hindawi 2022-04-25 /pmc/articles/PMC9060980/ /pubmed/35509628 http://dx.doi.org/10.1155/2022/3648175 Text en Copyright © 2022 Dake Cai et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Cai, Dake
Jin, Jing
Bi, Huichang
Zhong, Guoping
Zhou, Minhua
Guo, Jianfen
Cai, Yike
Liang, Miaoyin
Gu, Qiong
Hu, Zixuan
Lai, Yijing
Dai, Zi
Li, Lingjie
Chen, Yuxing
Gao, Haili
Huang, Min
Paclitaxel-Containing Extract Exerts Anti-Cancer Activity through Oral Administration in A549-Xenografted BALB/C Nude Mice: Synergistic Effect between Paclitaxel and Flavonoids or Lignoids
title Paclitaxel-Containing Extract Exerts Anti-Cancer Activity through Oral Administration in A549-Xenografted BALB/C Nude Mice: Synergistic Effect between Paclitaxel and Flavonoids or Lignoids
title_full Paclitaxel-Containing Extract Exerts Anti-Cancer Activity through Oral Administration in A549-Xenografted BALB/C Nude Mice: Synergistic Effect between Paclitaxel and Flavonoids or Lignoids
title_fullStr Paclitaxel-Containing Extract Exerts Anti-Cancer Activity through Oral Administration in A549-Xenografted BALB/C Nude Mice: Synergistic Effect between Paclitaxel and Flavonoids or Lignoids
title_full_unstemmed Paclitaxel-Containing Extract Exerts Anti-Cancer Activity through Oral Administration in A549-Xenografted BALB/C Nude Mice: Synergistic Effect between Paclitaxel and Flavonoids or Lignoids
title_short Paclitaxel-Containing Extract Exerts Anti-Cancer Activity through Oral Administration in A549-Xenografted BALB/C Nude Mice: Synergistic Effect between Paclitaxel and Flavonoids or Lignoids
title_sort paclitaxel-containing extract exerts anti-cancer activity through oral administration in a549-xenografted balb/c nude mice: synergistic effect between paclitaxel and flavonoids or lignoids
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9060980/
https://www.ncbi.nlm.nih.gov/pubmed/35509628
http://dx.doi.org/10.1155/2022/3648175
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