Synergistic killing effect between vorinostat and target of CD146 in malignant cells
1Cancer Biology Research Center, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, Hubei, P.R. China.
Purpose:
Although histone deacetylase inhibitors (HDACi) are emerging as a new class of anticancer agents, one of the most significant concerns is that interactions with a wide array of substrates using these agents might initiate both therapeutic and undesired protective responses. Here, we sought to identify the potential protective reactions initiated by HDACi and determine whether targeting these reactions would enhance the antitumoral activity of HDACi.
Experimental Design:
Gene expression profiles were analyzed by cDNA microarray in Molt-4 cells before and after treatment of vorinostat. Induction of CD146 by vorinostat was examined in a wide range of tumors and nonmalignant cells. AA98, an anti-CD146 monoclonal antibody, was used to target CD146 function. Synergistic antitumoral and antiangiogenic effects between AA98 and vorinostat were examined both in vitro and in vivo. The potential effect of combined AA98 and vorinostat treatment on the AKT pathway was determined by Western blotting.
Results:
The induction of CD146 is a common phenomenon in vorinostat-treated cancer but not in nonmalignant cells. Targeting of CD146 with AA98 substantially enhanced vorinostat-induced killing via the suppression of activation of AKT pathways in cancer cells. Moreover, AA98 in combination with vorinostat significantly inhibited angiogenesis. In vivo, AA98 synergized with vorinostat to inhibit tumor growth and metastasis.
Conclusion:
The present study provided the first evidence that an undesired induction of CD146 could serve as a protective response to offset the antitumor efficacy of vorinostat. On the other hand, targeting CD146 in combination with vorinostat could be exploited as a novel strategy to more effectively kill cancer cells.
Insights
Histone deacetylase inhibitors (HDACi) can trigger protective CD146 induction in cancer cells. Targeting CD146 with AA98 antibody alongside HDACi enhances cancer cell killing and inhibits tumor growth.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Histone deacetylase inhibitors (HDACi) are a promising class of anticancer agents.
- HDACi can elicit both therapeutic and protective responses in cancer cells.
- Understanding and targeting protective mechanisms is crucial for enhancing HDACi efficacy.
Purpose of the Study:
- To identify protective reactions induced by HDAC inhibitors (HDACi).
- To investigate the role of CD146 induction as a protective response to vorinostat.
- To determine if targeting CD146 can enhance the antitumoral activity of HDACi.
Main Methods:
- Gene expression profiling using cDNA microarray to analyze vorinostat effects.
- Examining CD146 induction in various cell types and tumors.
- Utilizing anti-CD146 monoclonal antibody (AA98) to target CD146.
- Assessing synergistic effects of AA98 and vorinostat in vitro and in vivo.
- Investigating the impact on AKT pathways via Western blotting.
Main Results:
- Vorinostat treatment commonly induced CD146 in cancer cells but not nonmalignant cells.
- Targeting CD146 with AA98 enhanced vorinostat-induced cancer cell death by suppressing AKT activation.
- Combined AA98 and vorinostat treatment inhibited angiogenesis.
- In vivo studies showed synergistic inhibition of tumor growth and metastasis.
Conclusions:
- CD146 induction represents a protective response against vorinostat's antitumor effects.
- Targeting CD146 in combination with vorinostat offers a novel strategy for enhanced cancer therapy.
- This combination approach holds potential for more effective cancer cell killing and improved treatment outcomes.
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