Dasatinib causes keratinocyte apoptosis via inhibiting high mobility group Box 1-mediated mitophagy
Zizheng Gao1, Yuhuai Hu2, Huangxi Fu1
1Center for Drug Safety Evaluation and Research of Zhejiang University, College of Pharmaceutical Sciences, Zhejiang University, Hangzhou 310058, Zhejiang, PR China.
Abstract:
Dasatinib, a second-generation BCR-ABL inhibitor, is currently used as first-line treatment for patients with chronic myeloid leukemia. However, dasatinib treatment increases the risk of severe cutaneous toxicity, which limits its long-term safe use in clinic. The underlying mechanism for dasatinib-induced cutaneous toxicity has not been clarified. In this study, we tested the toxicity of dasatinib on human immortal keratinocyte line (HaCaT) and normal human epidermal keratinocytes (NHEK). We found that dasatinib directly caused cytotoxicity on keratinocytes, which could be the explanation of the clinical characteristic of pathology. Mechanistically, dasatinib impaired mitophagy by downregulating HMGB1 protein level in keratinocytes, which led to the accumulation of dysfunctional mitochondria. Mitochondria-derived ROS caused DNA damage and cell apoptosis. More importantly, we confirmed that overexpression of HMGB1 could reverse dasatinib-induced keratinocyte apoptosis, and preliminarily explored the intervention effect of saikosaponin A, which could increase HMGB1 expression, on cutaneous toxicity caused by dasatinib. Collectively, our study revealed that dasatinib induced keratinocyte apoptosis via inhibiting HMGB1-mediated mitophagy and saikosaponin A could be a viable strategy for prevention of dasatinib-induced cutaneous toxicity.
Insights
Dasatinib causes skin cell death by disrupting mitophagy and lowering HMGB1 protein. Saikosaponin A may prevent this toxicity by boosting HMGB1 levels.
Area of Science:
- Dermatology
- Oncology
- Molecular Biology
Background:
- Dasatinib, a BCR-ABL inhibitor, is a first-line treatment for chronic myeloid leukemia.
- Dasatinib treatment can cause severe cutaneous toxicity, limiting its clinical use.
- The mechanism of dasatinib-induced skin toxicity is not fully understood.
Purpose of the Study:
- To investigate the mechanism of dasatinib-induced cutaneous toxicity.
- To evaluate the protective effect of HMGB1 and saikosaponin A against dasatinib toxicity in keratinocytes.
Main Methods:
- Assessed dasatinib toxicity on HaCaT and NHEK cells.
- Investigated the effect of dasatinib on mitophagy and HMGB1 protein levels.
- Examined the role of HMGB1 overexpression and saikosaponin A treatment.
Main Results:
- Dasatinib directly induced cytotoxicity and apoptosis in keratinocytes.
- Dasatinib impaired mitophagy by downregulating HMGB1, leading to mitochondrial dysfunction and ROS production.
- Overexpression of HMGB1 reversed dasatinib-induced apoptosis.
- Saikosaponin A showed potential in preventing dasatinib-induced cutaneous toxicity.
Conclusions:
- Dasatinib induces keratinocyte apoptosis by inhibiting HMGB1-mediated mitophagy.
- Saikosaponin A represents a potential therapeutic strategy for managing dasatinib-induced skin toxicity.
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