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Updated: Mar 10, 2026

Cell Subtype-specific Analysis of Neuronal Membrane Proteasome in Somatosensory Neurons
Published on: October 10, 2025
Proteasome inhibitors in cancer therapy: Treatment regimen and peripheral neuropathy as a side effect
Gulce Sari Kaplan1, Ceyda Corek Torcun1, Tilman Grune2
1Department of Biochemistry, School of Medicine/Genetic and Metabolic Diseases Research and Investigation Center, Marmara University, 34854 Maltepe, Istanbul, Turkey.
Abstract:
Proteasomal system plays an important role in protein turnover, which is essential for homeostasis of cells. Besides degradation of oxidized proteins, it is involved in the regulation of many different signaling pathways. These pathways include mainly cell differentiation, proliferation, apoptosis, transcriptional activation and angiogenesis. Thus, proteasomal system is a crucial target for treatment of several diseases including neurodegenerative diseases, cystic fibrosis, atherosclerosis, autoimmune diseases, diabetes and cancer. Over the last fifteen years, proteasome inhibitors have been tested to highlight their mechanisms of action and used in the clinic to treat different types of cancer. Proteasome inhibitors are mainly used in combinational therapy along with classical chemo-radiotherapy. Several studies have proved their significant effects but serious side effects such as peripheral neuropathy, limits their use in required effective doses. Recent studies focus on peripheral neuropathy as the primary side effect of proteasome inhibitors. Therefore, it is important to delineate the underlying mechanisms of peripheral neuropathy and develop new inhibitors according to obtained data. This review will detail the role of proteasome inhibition in cancer therapy and development of peripheral neuropathy as a side effect. Additionally, new approaches to prevent treatment-limiting side effects will be discussed in order to help researchers in developing effective strategies to overcome side effects of proteasome inhibitors.
Insights
The proteasome system is vital for cell health and cancer treatment. This review explores proteasome inhibitors in cancer therapy, focusing on managing peripheral neuropathy side effects.
Area of Science:
- Molecular Biology
- Cellular Biology
- Pharmacology
Background:
- The proteasomal system is essential for cellular protein turnover and homeostasis.
- It regulates key cellular processes including differentiation, proliferation, apoptosis, and angiogenesis.
- Dysregulation of the proteasome is implicated in various diseases, notably cancer.
Purpose of the Study:
- To review the role of proteasome inhibition in cancer therapy.
- To detail the development of peripheral neuropathy as a significant side effect.
- To discuss novel strategies for mitigating treatment-limiting side effects.
Main Methods:
- Literature review of proteasome inhibitor mechanisms and clinical applications.
- Analysis of studies investigating proteasome inhibitor-induced peripheral neuropathy.
- Exploration of emerging approaches for side effect management.
Main Results:
- Proteasome inhibitors are effective in cancer treatment, often in combination therapy.
- Peripheral neuropathy is a major dose-limiting toxicity associated with proteasome inhibitors.
- Understanding the mechanisms of neuropathy is crucial for developing safer inhibitors.
Conclusions:
- Proteasome inhibition remains a valuable strategy in oncology.
- Addressing peripheral neuropathy is critical for optimizing proteasome inhibitor therapy.
- Further research into novel inhibitors and supportive strategies is warranted.
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