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Published on: September 17, 2019
Combined Effect of Bortezomib and Menadione Sodium Bisulfite on Proteasomes of Tumor Cells: The Dramatic Decrease of
Tatiana M Astakhova1, Alexey V Morozov2, Pavel A Erokhov3
1Laboratory of Biochemistry of Ontogenesis Processes, Koltzov Institute of Developmental Biology, Russian Academy of Sciences, 26 Vavilov Street, 119334 Moscow, Russia. tastakhova@bk.ru.
Abstract:
Tumor growth is associated with elevated proteasome expression and activity. This makes proteasomes a promising target for antitumor drugs. Current antitumor drugs such as bortezomib that inhibit proteasome activity have significant side effects. The purpose of the present study was to develop effective low-toxic antitumor compositions with combined effects on proteasomes. For compositions, we used bortezomib in amounts four and ten times lower than its clinical dose, and chose menadione sodium bisulfite (MSB) as the second component. MSB is known to promote oxidation of NADH, generate superoxide radicals, and as a result damage proteasome function in cells that ensure the relevance of MSB use for the composition development. The proteasome pool was investigated by the original native gel electrophoresis method, proteasome chymotrypsin-like activity-by Suc-LLVY-AMC-hydrolysis. For the compositions, we detected 10 and 20 μM MSB doses showing stronger proteasome-suppressing and cytotoxic in cellulo effects on malignant cells than on normal ones. MSB indirectly suppressed 26S-proteasome activity in cellulo, but not in vitro. At the same time, MSB together with bortezomib displayed synergetic action on the activity of all proteasome forms in vitro as well as synergetic antitumor effects in cellulo. These findings determine the properties of the developed compositions in vivo: antitumor efficiency, higher (against hepatocellular carcinoma and mammary adenocarcinoma) or comparable to bortezomib (against Lewis lung carcinoma), and drastically reduced toxicity (LD50) relative to bortezomib. Thus, the developed compositions represent a novel generation of bortezomib-based anticancer drugs combining high efficiency, low general toxicity, and a potentially expanded range of target tumors.
Insights
This study developed novel low-toxicity anticancer drug compositions combining bortezomib and menadione sodium bisulfite (MSB). These compositions show synergistic antitumor effects and reduced toxicity compared to bortezomib alone.
Area of Science:
- Biochemistry
- Oncology
- Pharmacology
Background:
- Elevated proteasome expression and activity are hallmarks of tumor growth, making proteasomes a key target for cancer therapy.
- Current proteasome inhibitors like bortezomib, while effective, exhibit significant side effects.
- Developing low-toxicity, effective antitumor agents targeting proteasomes remains a critical challenge in cancer research.
Purpose of the Study:
- To develop novel antitumor compositions with combined proteasome-inhibiting effects and reduced toxicity.
- To investigate the synergistic potential of combining low-dose bortezomib with menadione sodium bisulfite (MSB).
Main Methods:
- Proteasome pool analysis using native gel electrophoresis.
- Proteasome chymotrypsin-like activity assay (Suc-LLVY-AMC-hydrolysis).
- In vitro and in vivo evaluation of cytotoxic and antitumor effects, and toxicity (LD50).
Main Results:
- Menadione sodium bisulfite (MSB) at 10 and 20 μM demonstrated selective proteasome suppression and cytotoxicity against malignant cells.
- MSB indirectly suppressed 26S-proteasome activity in cells but showed synergistic effects with bortezomib in vitro and in vivo.
- The developed compositions exhibited comparable or superior antitumor efficacy to bortezomib with drastically reduced toxicity.
Conclusions:
- The novel bortezomib-MSB compositions represent a new generation of anticancer drugs.
- These compositions offer high antitumor efficiency with low general toxicity.
- The findings suggest a potentially expanded range of target tumors for these novel agents.
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