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Updated: Mar 13, 2026

Testing Targeted Therapies in Cancer using Structural DNA Alteration Analysis and Patient-Derived Xenografts
Published on: July 25, 2020
Role of Akt signaling in resistance to DNA-targeted therapy
Abolfazl Avan1, Ravi Narayan1, Elisa Giovannetti1
1Abolfazl Avan, Elisa Giovannetti, Godefridus J Peters, Department of Medical Oncology, VU University Medical Center, 1081 HV Amsterdam, The Netherlands.
Abstract:
The Akt signal transduction pathway controls most hallmarks of cancer. Activation of the Akt cascade promotes a malignant phenotype and is also widely implicated in drug resistance. Therefore, the modulation of Akt activity is regarded as an attractive strategy to enhance the efficacy of cancer therapy and irradiation. This pathway consists of phosphatidylinositol 3 kinase (PI3K), mammalian target of rapamycin, and the transforming serine-threonine kinase Akt protein isoforms, also known as protein kinase B. DNA-targeted agents, such as platinum agents, taxanes, and antimetabolites, as well as radiation have had a significant impact on cancer treatment by affecting DNA replication, which is aberrantly activated in malignancies. However, the caveat is that they may also trigger the activation of repairing mechanisms, such as upstream and downstream cascade of Akt survival pathway. Thus, each target can theoretically be inhibited in view of improving the potency of conventional treatment. Akt inhibitors, e.g., MK-2206 and perifosine, or PI3K modulators, e.g., LY294002 and Wortmannin, have shown some promising results in favor of sensitizing the cancer cells to the therapy in vitro and in vivo, which have provided the rationale for incorporation of these novel agents into multimodality treatment of different malignancies. Nevertheless, despite the acceptable safety profile of some of these agents in the clinical studies, with regard to the efficacy, the results are still too preliminary. Hence, we need to wait for the upcoming data from the ongoing trials before utilizing them into the standard care of cancer patients.
Insights
Modulating the Akt pathway enhances cancer therapy efficacy. Akt inhibitors and PI3K modulators show promise in sensitizing cancer cells but require further clinical trial data for standard use.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Signaling
Background:
- The Akt signal transduction pathway is crucial in cancer development and drug resistance.
- Activation of the Akt cascade promotes malignancy and therapeutic resistance.
- Targeting the Akt pathway offers a strategy to improve cancer treatment and radiotherapy outcomes.
Approach:
- Investigated the role of phosphatidylinositol 3 kinase (PI3K), mammalian target of rapamycin, and Akt protein isoforms (protein kinase B) in cancer.
- Examined how DNA-targeted agents and radiation activate cancer repair mechanisms, including the Akt pathway.
- Evaluated Akt inhibitors (e.g., MK-2206, perifosine) and PI3K modulators (e.g., LY294002, Wortmannin) for their potential to sensitize cancer cells.
Key Points:
- Conventional cancer treatments like chemotherapy and radiation can paradoxically activate survival pathways, including Akt.
- Inhibiting the Akt pathway can overcome treatment resistance and enhance therapeutic effects.
- Preclinical studies demonstrate that Akt and PI3K inhibitors can sensitize cancer cells to therapy.
Conclusions:
- Akt pathway modulation is a promising strategy for improving cancer therapy and radiotherapy.
- While some Akt/PI3K inhibitors show potential, clinical efficacy data is still preliminary.
- Further clinical trials are necessary to establish the role of these agents in standard cancer care.
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