Ambroxol induces myeloma cell death by inhibiting autophagy
Yutaka Hattori1,2,3,4, Hiromu Sugiyama1, Yamato Miyashita1
1Division of Clinical Physiology and Therapeutics, Keio University Faculty of Pharmacy, Tokyo, Japan.
Abstract:
In the last decade, newly developed drugs have significantly improved the prognosis of patients with multiple myeloma (MM). However, most patients relapse sooner or later, and thus MM remains an incurable hematological malignancy. In addition, serious adverse events occasionally hamper the continuation of treatment. Exploitation of new drugs that potentiate antitumor activities and alleviate the adverse effects of existing drugs is needed. Here, we found through drug repositioning that ambroxol hydrochloride (ambroxol) induces apoptosis of MM cells. Interestingly, turnover and reporter assays revealed that ambroxol inhibits the late stage of autophagy. Transmission electron microscopy observation also revealed that MM cells treated with ambroxol accumulated autophagic vacuoles in the cytoplasm, further supporting the inhibition of late-stage autophagy. Existing anti-MM drugs demonstrate various effects on autophagy; panobinostat, a histone deacetylase inhibitor, induces autophagy, whereas bortezomib and lenalidomide do not. When administered together, ambroxol and panobinostat exhibited a synergistic antimyeloma effect, likely due to ambroxol inhibiting the activation of panobinostat-induced autophagy while downregulating MCL-1 expression. In the KMS11 xenograft model, ambroxol significantly delayed tumor growth when administered alone; when co-administered with panobinostat, ambroxol synergistically enhanced the panobinostat-induced inhibition of tumor growth. Interestingly, concomitant use of ambroxol and panobinostat alleviated panobinostat-induced diarrhea. Gene set enrichment and pathway analyses also revealed that ambroxol increased the expression of genes related to autophagy inhibition and unfolded protein response. These results suggested that autophagy is a promising therapeutic target for MM.
Insights
Ambroxol hydrochloride, a repurposed drug, shows promise in treating multiple myeloma (MM) by inhibiting autophagy and inducing cancer cell death. Combined with panobinostat, it enhances anti-MM effects and reduces side effects.
Area of Science:
- Hematology
- Oncology
- Pharmacology
Background:
- Multiple myeloma (MM) remains incurable despite recent therapeutic advances.
- Drug resistance and adverse events necessitate novel treatment strategies.
- Targeting cellular pathways like autophagy presents a potential therapeutic avenue for MM.
Purpose of the Study:
- To investigate the potential of drug repositioning for novel MM therapies.
- To evaluate ambroxol hydrochloride's effect on MM cells and its mechanism of action.
- To assess the synergistic effects and safety of ambroxol in combination with existing MM drugs.
Main Methods:
- Drug repositioning screens to identify novel MM agents.
- In vitro assays (turnover, reporter assays) to study autophagy inhibition.
- Transmission electron microscopy to visualize autophagic vacuoles.
- In vivo xenograft studies in a KMS11 model.
- Gene set enrichment and pathway analyses.
Main Results:
- Ambroxol hydrochloride induces apoptosis in MM cells and inhibits late-stage autophagy.
- Combination therapy with ambroxol and panobinostat demonstrates synergistic anti-MM activity.
- Ambroxol alleviates panobinostat-induced diarrhea in a xenograft model.
- Ambroxol upregulates genes associated with autophagy inhibition and unfolded protein response.
Conclusions:
- Ambroxol hydrochloride is a promising candidate for MM treatment, acting via autophagy inhibition.
- Combining ambroxol with panobinostat offers enhanced efficacy and improved tolerability.
- Autophagy modulation represents a viable therapeutic strategy for overcoming MM.
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