Skip to navigation Skip to content
  • Woodruff
  • Business
  • Health Sciences
  • Law
  • MARBL
  • Oxford College
  • Theology
  • Schools
    • Undergraduate

      • Emory College
      • Oxford College
      • Business School
      • School of Nursing

      Community

      • Emory College
      • Oxford College
      • Business School
      • School of Nursing
    • Graduate

      • Business School
      • Graduate School
      • School of Law
      • School of Medicine
      • School of Nursing
      • School of Public Health
      • School of Theology
  • Libraries
    • Libraries

      • Robert W. Woodruff
      • Business
      • Chemistry
      • Health Sciences
      • Law
      • MARBL
      • Music & Media
      • Oxford College
      • Theology
    • Library Tools

      • Course Reserves
      • Databases
      • Digital Scholarship (ECDS)
      • discoverE
      • eJournals
      • Electronic Dissertations
      • EmoryFindingAids
      • EUCLID
      • ILLiad
      • OpenEmory
      • Research Guides
  • Resources
    • Resources

      • Administrative Offices
      • Emory Healthcare
      • Academic Calendars
      • Bookstore
      • Campus Maps
      • Shuttles and Parking
      • Athletics: Emory Eagles
      • Arts at Emory
      • Michael C. Carlos Museum
      • Emory News Center
      • Emory Report
    • Resources

      • Emergency Contacts
      • Information Technology (IT)
      • Outlook Web Access
      • Office 365
      • Blackboard
      • OPUS
      • PeopleSoft Financials: Compass
      • Careers
      • Human Resources
      • Emory Alumni Association
  • Browse
    • Works by Author
    • Works by Journal
    • Works by Subject
    • Works by Dept
    • Faculty by Dept
  • For Authors
    • How to Submit
    • Deposit Advice
    • Author Rights
    • Publishing Your Data
    • FAQ
    • Emory Open Access Policy
    • Open Access Fund
  • About OpenEmory
    • About OpenEmory
    • About Us
    • Citing Articles
    • Contact Us
    • Privacy Policy
    • Terms of Use
 
Contact Us

Filter Results:

Year

  • 2012 (1)

Author

  • Chen, Kejun (1)
  • Du, Yuhong (1)
  • Duan, Jin-Ao (1)
  • Fu, Haian (1)
  • Huang, Zhenzhou (1)
  • Jiang, Fengrong (1)
  • Jiang, Miao (1)
  • Qui, Min (1)
  • Tang, Yuping (1)
  • Wang, Mingyan (1)
  • Xiong, Fei (1)
  • Ye, Lihong (1)
  • Yin, Lian (1)
  • Zhan, Zhen (1)
  • Zhang, Xu (1)
  • Zhou, Jing (1)

Subject

  • Health Sciences, Oncology (1)

Journal

  • Oncology Reports (1)

Keyword

  • 3 (1)
  • akt (1)
  • autophagi (1)
  • b (1)
  • cancer (1)
  • cell (1)
  • k (1)
  • kaktmtor (1)
  • lung (1)
  • medicin (1)
  • natur (1)
  • non (1)
  • nonsmal (1)
  • pi (1)
  • small (1)
  • tor (1)

Author department

  • Pharmacology: Admin (1)

Search Results for all work with filters:

  • Chen, Meijuan
  • Chen, Jianping
  • Health Sciences, Pharmacology
  • ophiopogonin
  • m

Work 1 of 1

Sorted by relevance

Article

Ophiopogonin B-induced autophagy in non-small cell lung cancer cells via inhibition of the PI3K/Akt signaling pathway

by Meijuan Chen; Yuhong Du; Min Qui; Mingyan Wang; Kejun Chen; Zhenzhou Huang; Miao Jiang; Fei Xiong; Jianping Chen; Jing Zhou; Fengrong Jiang; Lian Yin; Yuping Tang; Lihong Ye; Zhen Zhan; Jin-Ao Duan; Haian Fu; Xu Zhang

2012

Subjects
  • Health Sciences, Pharmacology
  • Health Sciences, Oncology
  • File Download
  • View Abstract

Abstract:Close

Ophiopogonin B (OP-B) is a bioactive component of Radix Ophiopogon Japonicus, which is often used in Chinese traditional medicine to treat pulmonary disease. However, whether or not OP-B has any potential antitumor activity has not been reported. Here, we show that the non-small cell lung cancer (NSCLC) cell lines NCI-H157 and NCI-H460 treated with OP-B grow more slowly and accumulate vacuoles in their cytoplasm compared to untreated control cells. Flow cytometric analysis showed that the cells were arrested in G0/G1 phase. Nuclear morphology, Annexin-V/PI staining, and expression of cleaved caspase-3 all confirm that OP-B does not induce apoptosis. Instead, based on results from both transmission electron microscopy (TEM) and the expression of microtubule-associated protein 1 light chain 3-II (LC3-II), we determined that OP-B treatment induced autophagy in both cell lines. Next, we examined the PI3K/Akt/mTOR signaling pathway and found that OP-B inhibited phosphorylation of Akt (Ser473, Thr308) in NCI-H157 cells and also inhibited several key components of the pathway in NCI-H460 cells, such as p-Akt(Ser473, Thr308), p-p70S6K (Thr389). Additionally, insulin-mediated activation of the PI3K/Akt/mTOR pathway provides evidence that activation of this pathway may correlate with induction of autophagy in H460 cells. Therefore, OP-B is a prospective inhibitor of PI3K/Akt and may be used as an alternative compound to treat NSCLC.
Site Statistics
  • 16,941
  • Total Works
  • 3,662,722
  • Downloads
  • 1,138,633
  • Downloads This Year
  • 6,807
  • Faculty Profiles

Copyright © 2016 Emory University - All Rights Reserved
540 Asbury Circle, Atlanta, GA 30322-2870
(404) 727-6861
Privacy Policy | Terms & Conditions

v2.2.8-dev

Contact Us Recent and Popular Items
Download now