20(s)-Protopanaxadiol (PPD) increases the radiotherapy sensitivity of laryngeal carcinoma.

Keywords
  • Panax ginseng
  • animal models
  • apoptosis
  • carcinoma
  • cytotoxicity
  • head and neck neoplasms
  • human cell lines
  • in vivo studies
  • larynx
  • morbidity
  • mortality
  • neoplasm cells
  • patients
  • radiotherapy
  • signal transduction
  • synergism
Publication Dbxref
PMID:29090703
Title
20(s)-Protopanaxadiol (PPD) increases the radiotherapy sensitivity of laryngeal carcinoma.
Publication Type
Journal Article
Series Name
Food & function
Volume
8
Publication Year
2017
Issue
12
Page Numbers
4469-4477
DOI
10.1039/c7fo00853h
Journal Abbreviation
Food Funct
EISSN
2042-650X
Publication Date
2017 Dec 13
Citation
Teng B, Zhao L, Gao J, He P, Li H, Chen J, Feng Q, Yi C. 20(s)-Protopanaxadiol (PPD) increases the radiotherapy sensitivity of laryngeal carcinoma.. Food & function. 2017 Dec 13; 8(12):4469-4477.
ISSN
2042-650X
Language Abbr
eng
Publication Model
Print
Authors
Teng B, Zhao L, Gao J, He P, Li H, Chen J, Feng Q, Yi C
Language
English
Elocation
10.1039/c7fo00853h
Journal Country
England
Abstract

Laryngeal carcinoma (LC) is one of the most prevalent malignant tumors in the head and neck area. Due to its high morbidity and mortality, LC poses a serious threat to human life and health. Even with surgical removal, some patients were not sensitive to radiotherapy or experienced transfer or recurrence. 20(s)-Protopanaxadiol (PPD), a natural product from Panax ginseng, has been reported to have cytotoxic effects against several cancer cell lines. However, whether it can improve the radiation sensitivity and the underlying mechanism of PPD's sensitization effect is still unknown. Herein, from in vitro and in vivo experiments, we found that the combination of PPD and radiation not only significantly inhibited proliferation and induced apoptosis, but also suppressed the tumor growth in mouse models. These findings confirmed the role of PPD in enhancing the sensitivity of radiotherapy. Moreover, our work showed that the expression levels of mTOR and its downstream effectors decreased remarkably after PPD addition when compared to radiation only. This result suggested that PPD's excellent synergistic effects with radiation might be associated with the down-regulation of the mTOR signaling pathway in Hep-2 cells.

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