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Updated: Oct 16, 2025

Lighting Up the Pathways to Caspase Activation Using Bimolecular Fluorescence Complementation
Published on: March 5, 2018
A long way to go: caspase inhibitors in clinical use
Shanel Dhani1, Yun Zhao1, Boris Zhivotovsky2,3
1Institute of Environmental Medicine, Karolinska Institutet, Box 210, 17177, Stockholm, Sweden.
Abstract:
Caspases are an evolutionary conserved family of cysteine-dependent proteases that are involved in many vital cellular processes including apoptosis, proliferation, differentiation and inflammatory response. Dysregulation of caspase-mediated apoptosis and inflammation has been linked to the pathogenesis of various diseases such as inflammatory diseases, neurological disorders, metabolic diseases, and cancer. Multiple caspase inhibitors have been designed and synthesized as a potential therapeutic tool for the treatment of cell death-related pathologies. However, only a few have progressed to clinical trials because of the consistent challenges faced amongst the different types of caspase inhibitors used for the treatment of the various pathologies, namely an inadequate efficacy, poor target specificity, or adverse side effects. Importantly, a large proportion of this failure lies in the lack of understanding various caspase functions. To overcome the current challenges, further studies on understanding caspase function in a disease model is a fundamental requirement to effectively develop their inhibitors as a treatment for the different pathologies. Therefore, the present review focuses on the descriptive properties and characteristics of caspase inhibitors known to date, and their therapeutic application in animal and clinical studies. In addition, a brief discussion on the achievements, and current challenges faced, are presented in support to providing more perspectives for further development of successful therapeutic caspase inhibitors for various diseases.
Insights
Caspase inhibitors show promise for treating diseases like cancer and neurological disorders. Further research into caspase functions is crucial for developing effective and safe therapeutic strategies.
Area of Science:
- Biochemistry
- Molecular Biology
- Pharmacology
Background:
- Caspases are critical proteases regulating apoptosis, inflammation, and cellular processes.
- Dysregulated caspase activity is implicated in diseases including cancer, neurological, and metabolic disorders.
- Caspase inhibitors are explored as therapeutics for cell death-related pathologies.
Purpose of the Study:
- To review current caspase inhibitors, their properties, and therapeutic applications.
- To discuss achievements and challenges in developing caspase inhibitor therapies.
- To highlight the need for better understanding of caspase functions in disease models.
Main Methods:
- Literature review of caspase inhibitors.
- Analysis of therapeutic applications in animal and clinical studies.
- Discussion of current challenges and future perspectives.
Main Results:
- Multiple caspase inhibitors have been developed, but few reach clinical trials due to efficacy, specificity, or side effect issues.
- Understanding caspase functions is key to overcoming therapeutic limitations.
- Current research focuses on refining inhibitor design and understanding disease-specific roles.
Conclusions:
- Developing effective caspase inhibitors requires a deeper understanding of caspase biology in disease contexts.
- Overcoming challenges in efficacy and specificity is essential for successful therapeutic translation.
- Further research will guide the development of novel caspase-targeted therapies.
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