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Cell Subtype-specific Analysis of Neuronal Membrane Proteasome in Somatosensory Neurons
Published on: October 10, 2025
Sensitizing human multiple myeloma cells to the proteasome inhibitor bortezomib by novel curcumin analogs
Taskeen Mujtaba1, Jyoti Kanwar, Sheng Biao Wan
1Barbara Ann Karmanos Cancer Institute, Department of Oncology, School of Medicine, Wayne State University, Detroit, MI 48201-2013, USA.
Abstract:
The proteasome plays a vital role in the degradation of proteins involved in several pathways including the cell cycle, cellular proliferation and apoptosis and is a validated target in cancer treatment. Bortezomib (Velcade®, PS-341) is the first US FDA approved proteasome inhibitor anticancer drug used in the treatment of refractory multiple myeloma. In spite of its improved efficacy compared to alternative therapies, about 60% of patients do not respond to bortezomib due to the emergence of resistance. We hypothesized that novel small molecules could enhance the proteasome-inhibitory and anticancer activities of bortezomib in resistant multiple myeloma cells in vitro and in vivo. The dietary polyphenol curcumin has been shown to exert anti-cancer activity in several cancer cell lines, but the effects of curcumin in solid tumors have been modest primarily due to poor water solubility and poor bioavailability in tissues remote from the gastrointestinal tract. Here we show that the water-soluble analog of curcumin #12, but not curcumin, in combination with bortezomib could enhance the proteasome-inhibitory effect in multiple myeloma cells. Furthermore, the sensitivity of the myeloma cells to cytotoxic killing in the presence of otherwise sublethal concentrations of bortezomib was enhanced by incubation with the curcumin analog #12. These findings justify further investigation into those combinations that may yield potential therapeutic benefit.
Insights
A water-soluble curcumin analog enhanced bortezomib
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- The proteasome is a validated cancer target, and bortezomib is an approved proteasome inhibitor for multiple myeloma.
- Resistance to bortezomib occurs in approximately 60% of patients, necessitating strategies to overcome it.
- Curcumin exhibits anticancer properties, but its therapeutic use is limited by poor solubility and bioavailability.
Purpose of the Study:
- To investigate if novel small molecules can enhance the efficacy of bortezomib in resistant multiple myeloma cells.
- To evaluate the combination of a water-soluble curcumin analog (#12) with bortezomib.
Main Methods:
- In vitro assessment of proteasome inhibition in multiple myeloma cells.
- Evaluation of enhanced cytotoxic killing in bortezomib-resistant myeloma cells.
- Comparison of curcumin analog #12 with native curcumin in combination therapy.
Main Results:
- The water-soluble curcumin analog #12, but not curcumin, enhanced bortezomib's proteasome-inhibitory effect in multiple myeloma cells.
- Curcumin analog #12 increased the sensitivity of myeloma cells to bortezomib-induced cytotoxic killing.
- The combination therapy demonstrated enhanced anti-cancer activity in vitro.
Conclusions:
- A water-soluble curcumin analog shows potential in overcoming bortezomib resistance in multiple myeloma.
- Combination therapy with bortezomib and curcumin analog #12 warrants further investigation for therapeutic benefit.
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