Low-Dose Perifosine, a Phase II Phospholipid Akt Inhibitor, Selectively Sensitizes Drug-Resistant
Jae Hyeon Park1, Haeun Lee1, Tian Zheng1
1School of Pharmacy, Sungkyunkwan University, Suwon 16419, Republic of Korea.
Abstract:
We identified drugs or mechanisms targeting ABCB1 (or P-glycoprotein; P-gp)-overexpressing drug-resistant cancer populations, given that these cells play a key role in tumor recurrence. Specifically, we searched for Akt inhibitors that could increase cytotoxicity in P-gp-overexpressing drug-resistant cancer cells. We performed cytotoxicity assays using five cell lines: 1. MCF-7/ADR, 2. KBV20C cancer cells (P-gp overexpression, vincristine [VIC] resistance, and GSK690693-resistance), 3. MCF-7, 4. normal HaCaT cells (non-P-gp-overexpressing, VIC-sensitive, and GSK690693-sensitive), and 5. MDA-MB-231 cancer cells (non-P-gp overexpression, relatively VIC-resistance, and GSK690693-sensitive). Herein, we found that low-dose perifosine markedly and selectively sensitizes both MCF-7/ADR and KBV20C drug-resistant cancer cells exhibiting P-gp overexpression. Compared with other Akt inhibitors (AZD5363, BKM120, and GSK690693), low-dose perifosine specifically sensitized P-gp-overexpressing resistant MCF-7/ADR cancer cells. Conversely, Akt inhibitors (other than perifosine) could enhance sensitization effects in drugsensitive MCF-7 and HaCaT cells. Considering that perifosine has both an alkyl-phospholipid structure and is an allosteric inhibitor for membrane-localizing Akt-targeting, we examined structurally and functionally similar Akt inhibitors (miltefosine and MK-2206). However, we found that these inhibitors were non-specific, suggesting that the specificity of perifosine in P-gp-overexpressing resistant cancer cells is unrelated to phospholipid localizing membranes or allosteric inhibition. Furthermore, we examined the molecular mechanism of low-dose perifosine in drug-resistant MCF-7/ADR cancer cells. MCF-7/ADR cells exhibited increased apoptosis via G2 arrest and autophagy induction. However, no increase in P-gp-inhibitory activity was observed in drug-resistant MCF-7/ADR cancer cells. Single low-dose perifosine treatment exerted a sensitization effect similar to co-treatment with VIC in P-gp-overexpressing drug-resistant MCF-7/ADR cancer cells, suggesting that single treatment with low-dose perifosine is a more powerful tool against P-gp-overexpressing drug-resistant cancer cells. These findings could contribute to its clinical use as a first-line treatment, explicitly targeting P-gp-overexpressing resistant cancer populations in heterogeneous tumor populations. Therefore, perifosine may be valuable in delaying or reducing cancer recurrence by targeting P-gp-overexpressing drug-resistant cancer cells.
Insights
Low-dose perifosine selectively sensitizes P-glycoprotein (P-gp)-overexpressing resistant cancer cells, inducing apoptosis and G2 arrest. This targeted approach may reduce cancer recurrence by overcoming drug resistance.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- ABCB1 (P-glycoprotein; P-gp) overexpression drives cancer recurrence by conferring multidrug resistance.
- Targeting Akt signaling is a strategy to overcome drug resistance in cancer.
- Identifying specific Akt inhibitors for P-gp-overexpressing cells is crucial for effective cancer therapy.
Purpose of the Study:
- To identify Akt inhibitors that enhance cytotoxicity in P-gp-overexpressing drug-resistant cancer cells.
- To evaluate the selective efficacy of perifosine compared to other Akt inhibitors in resistant cancer models.
- To elucidate the molecular mechanisms underlying perifosine's action in drug-resistant cancer cells.
Main Methods:
- Cytotoxicity assays were performed on five cell lines, including P-gp-overexpressing resistant (MCF-7/ADR, KBV20C) and sensitive (MCF-7, HaCaT, MDA-MB-231) cells.
- Comparative analysis of Akt inhibitors (perifosine, AZD5363, BKM120, GSK690693, miltefosine, MK-2206) for their sensitization effects.
- Investigation of molecular mechanisms, including apoptosis, cell cycle arrest, autophagy, and P-gp inhibitory activity.
Main Results:
- Low-dose perifosine selectively sensitized P-gp-overexpressing resistant MCF-7/ADR and KBV20C cells.
- Perifosine demonstrated superior specificity compared to other Akt inhibitors in sensitizing resistant cells.
- Perifosine induced apoptosis via G2 arrest and autophagy in resistant cells, without increasing P-gp inhibition.
Conclusions:
- Low-dose perifosine is a potent agent for targeting P-gp-overexpressing drug-resistant cancer cells.
- Single-agent low-dose perifosine treatment shows promise in overcoming drug resistance and reducing cancer recurrence.
- Findings support the clinical investigation of perifosine as a first-line treatment for P-gp-overexpressing resistant cancers.
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