Skip to Content
Merck
CN
  • Exploiting Radiation-Induced Signaling to Increase the Susceptibility of Resistant Cancer Cells to Targeted Drugs: AKT and mTOR Inhibitors as an Example.

Exploiting Radiation-Induced Signaling to Increase the Susceptibility of Resistant Cancer Cells to Targeted Drugs: AKT and mTOR Inhibitors as an Example.

Molecular cancer therapeutics (2017-08-13)
Iris Eke, Adeola Y Makinde, Molykutty J Aryankalayil, Veit Sandfort, Sanjeewani T Palayoor, Barbara H Rath, Lance Liotta, Mariaelena Pierobon, Emanuel F Petricoin, Matthew F Brown, Jayne M Stommel, Mansoor M Ahmed, C Norman Coleman
ABSTRACT

Implementing targeted drug therapy in radio-oncologic treatment regimens has greatly improved the outcome of cancer patients. However, the efficacy of molecular targeted drugs such as inhibitory antibodies or small molecule inhibitors essentially depends on target expression and activity, which both can change during the course of treatment. Radiotherapy has previously been shown to activate prosurvival pathways, which can help tumor cells to adapt and thereby survive treatment. Therefore, we aimed to identify changes in signaling induced by radiation and evaluate the potential of targeting these changes with small molecules to increase the therapeutic efficacy on cancer cell survival. Analysis of "The Cancer Genome Atlas" database disclosed a significant overexpression of AKT1, AKT2, and MTOR genes in human prostate cancer samples compared with normal prostate gland tissue. Multifractionated radiation of three-dimensional-cultured prostate cancer cell lines with a dose of 2 Gy/day as a clinically relevant schedule resulted in an increased protein phosphorylation and enhanced protein-protein interaction between AKT and mTOR, whereas gene expression of AKT, MTOR, and related kinases was not altered by radiation. Similar results were found in a xenograft model of prostate cancer. Pharmacologic inhibition of mTOR/AKT signaling after activation by multifractionated radiation was more effective than treatment prior to radiotherapy. Taken together, our findings provide a proof-of-concept that targeting signaling molecules after activation by radiotherapy may be a novel and promising treatment strategy for cancers treated with multifractionated radiation regimens such as prostate cancer to increase the sensitivity of tumor cells to molecular targeted drugs. Mol Cancer Ther; 17(2); 355-67. ©2017 AACRSee all articles in this MCT Focus section, "Developmental Therapeutics in Radiation Oncology."

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Duolink® In Situ Wash Buffers, Fluorescence
Sigma-Aldrich
Duolink® In Situ Probemaker MINUS
Sigma-Aldrich
Duolink® In Situ Detection Reagents Brightfield
Sigma-Aldrich
Duolink® In Situ PLA® Probe Anti-Goat PLUS
Sigma-Aldrich
Duolink® flowPLA Detection Kit - Orange, Duolink® PLA kit for Flow Cytometry with Orange Detection
Sigma-Aldrich
Duolink® flowPLA Detection Kit - FarRed, Duolink® PLA kit for Flow Cytometry with FarRed Detection
Sigma-Aldrich
Duolink® In Situ PLA® Probe Anti-Mouse PLUS
Sigma-Aldrich
Duolink® In Situ Detection Reagents FarRed
Sigma-Aldrich
Duolink® In Situ Detection Reagents Green
Sigma-Aldrich
Duolink® In Situ PLA® Probe Anti-Rabbit MINUS
Sigma-Aldrich
Duolink® PLA Control Kit - PPI, Control Kit to reliably detect Protein-Protein Interactions (PPI) with Duolink® PLA
Sigma-Aldrich
Duolink® In Situ Wash Buffer, Brightfield
Sigma-Aldrich
Duolink® In Situ Orange Starter Kit Mouse/Rabbit
Sigma-Aldrich
Duolink® In Situ PLA® Probe Anti-Goat MINUS, Affinity purified Donkey anti-Goat IgG (H+L)
Sigma-Aldrich
Duolink® In Situ Probemaker PLUS
Sigma-Aldrich
Duolink® In Situ Microplate Nuclear Stain, Anti-Fade
Sigma-Aldrich
Duolink® In Situ PLA® Probe Anti-Rabbit PLUS, Affinity purified Donkey anti-Rabbit IgG (H+L)
Sigma-Aldrich
Duolink® In Situ Detection Reagents Red
Sigma-Aldrich
Duolink® flowPLA Detection Kit - Red, DUOLINK® : PLA kit for Flow Cytometry with Red Detection
Sigma-Aldrich
Duolink® flowPLA Detection Kit - Green, Duolink® PLA kit for Flow Cytometry with Green Detection
Sigma-Aldrich
Duolink® In Situ Red Starter Kit Mouse/Goat
Sigma-Aldrich
Duolink® In Situ Orange Starter Kit Mouse/Goat
Sigma-Aldrich
Duolink® In Situ Orange Starter Kit Goat/Rabbit
Sigma-Aldrich
Duolink® In Situ Red Starter Kit Goat/Rabbit
Sigma-Aldrich
Duolink® In Situ Red Starter Kit Mouse/Rabbit
Sigma-Aldrich
Duolink® In Situ Microplate Heat Transfer Block
Sigma-Aldrich
Duolink® In Situ PLA® Probe Anti-Mouse MINUS, Affinity purified Donkey anti-Mouse IgG (H+L)
Sigma-Aldrich
Duolink® In Situ Mounting Medium with DAPI