Network insights on oxaliplatin anti-cancer mechanisms

被引:27
|
作者
Alian, Osama M. [1 ]
Azmi, Asfar S. [2 ]
Mohammadl, Ramzi M. [1 ,3 ]
机构
[1] Wayne State Univ, Karmanos Canc Inst, Dept Oncol, 4100 John R,HWCRC,Room 732, Detroit, MI 48201 USA
[2] Wayne State Univ, Dept Pathol, Detroit, MI 48201 USA
[3] Hamad Med Corp, Doha, Qatar
来源
关键词
Oxaliplatin; Chemotherapy; Resistance signatures; Systems biology; Network theory; Network modeling;
D O I
10.1186/2001-1326-1-26
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Oxaliplatin has been a crucial component of combination therapies since admission into the clinic causing modest gains in survival across multiple malignancies. However, oxaliplatin functions in a non-targeted manner, posing a difficulty in ascertaining precise efficacy mechanisms. While previously thought to only affect DNA repair mechanisms, Platinum-protein adducts (Pt-Protein) far outnumber Pt-DNA adducts leaving a big part of oxaliplatin function unknown. Through preliminary network modeling of high throughput data, this article critically reviews the efficacy of oxaliplatin as well as proposes a better model for enhanced efficacy based on a network approach. In our study, not only oxaliplatin's function in interrupting DNA-replication was confirmed, but also its role in initiating or intensifying tumorigenesis pathways was uncovered. From our data we present a novel picture of competing signaling networks that collectively provide a plausible explanation of chemotherapeutic resistance, cancer stem cell survival, as well as invasiveness and metastases. Here we highlight oxaliplatin signaling networks, their significance and the clinical implications of these interactions that verifies the importance of network modeling in rational drug design.
引用
收藏
页数:7
相关论文
共 50 条
  • [31] Multiple Mechanisms of Anti-Cancer Effects Exerted by Astaxanthin
    Zhang, Li
    Wang, Handong
    MARINE DRUGS, 2015, 13 (07): : 4310 - 4330
  • [32] Trichothecenes: immunomodulatory effects, mechanisms, and anti-cancer potential
    Wu, Qinghua
    Wang, Xu
    Nepovimova, Eugenie
    Miron, Anca
    Liu, Qianying
    Wang, Yun
    Su, Dongxiao
    Yang, Hualin
    Li, Li
    Kuca, Kamil
    ARCHIVES OF TOXICOLOGY, 2017, 91 (12) : 3737 - 3785
  • [33] Phenethyl isothiocyanate: A comprehensive review of anti-cancer mechanisms
    Gupta, Parul
    Wright, Stephen E.
    Kim, Sung-Hoon
    Srivastava, Sanjay K.
    BIOCHIMICA ET BIOPHYSICA ACTA-REVIEWS ON CANCER, 2014, 1846 (02): : 405 - 424
  • [34] MECHANISMS OF ACTION OF CERTAIN AGENTS WITH ANTI-CANCER ACTIVITY
    SKIPPER, HE
    TEXAS REPORTS ON BIOLOGY AND MEDICINE, 1952, 10 (04) : 1055 - 1061
  • [35] Potential Anti-Cancer Activities and Mechanisms of Costunolide and Dehydrocostuslactone
    Lin, Xuejing
    Peng, Zhangxiao
    Su, Changqing
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2015, 16 (05) : 10888 - 10906
  • [36] Anti-Cancer Effects of Pristimerin and the Mechanisms: A Critical Review
    Li, Jia-jun
    Yan, Yan-yan
    Sun, Hong-mei
    Liu, Yun
    Su, Chao-yue
    Chen, Hu-biao
    Zhang, Jian-ye
    FRONTIERS IN PHARMACOLOGY, 2019, 10
  • [37] Potential Mechanisms of Action of Bisphosphonates as Anti-Cancer Drugs
    Rogers, M. J.
    Roelofs, A. J.
    BONE, 2010, 47 : S280 - S280
  • [38] Basic Mechanisms Involved in the Anti-Cancer Effects of Melatonin
    Mediavilla, M. D.
    Sanchez-Barcelo, E. J.
    Tan, D. X.
    Manchester, L.
    Reiter, R. J.
    CURRENT MEDICINAL CHEMISTRY, 2010, 17 (36) : 4462 - 4481
  • [39] Frondoside A Enhances the Anti-Cancer Effects of Oxaliplatin and 5-Fluorouracil on Colon Cancer Cells
    Attoub, Samir
    Arafat, Kholoud
    Khalaf, Tamam
    Sulaiman, Shahrazad
    Iratni, Rabah
    NUTRIENTS, 2018, 10 (05)
  • [40] Molecular targets and mechanisms of anti-cancer effects of withanolides
    Zhang, Zhiruo
    Yang, Yueying
    Xu, Yang
    Liu, Yang
    Li, Hua
    Chen, Lixia
    CHEMICO-BIOLOGICAL INTERACTIONS, 2023, 384