4.7 Article

Nitric oxide in multikinase inhibitor-induced hand-foot skin reaction

Journal

TRANSLATIONAL RESEARCH
Volume 245, Issue -, Pages 82-98

Publisher

ELSEVIER SCIENCE INC
DOI: 10.1016/j.trsl.2022.02.004

Keywords

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Funding

  1. Shanghai Cancer Institute for the technical platform [WF220408211, WF220408213]
  2. Youth Thousand Talents Program of China [90-17-02]
  3. Shanghai Jiao Tong University [YG2017MS18]
  4. State Key Labo-ratory of Onco-genes and Related Genes [81900189]
  5. Interdisciplinary Program of Shanghai Jiao Tong University
  6. National Natural Science Foun-dation of China

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Hand-foot skin reaction (HFSR) is a common and debilitating side effect caused by multikinase inhibitors (MKIs). This study proposes a potential treatment using glyceryl trinitrate (GTN) to reverse MKI-induced toxicity and alleviate HFSR symptoms. The mechanism of action involves upregulation of VEGF/VEGFR downstream signaling pathways.
Hand-foot skin reaction (HFSR) is the most debilitating and prevalent side effect caused by multikinase inhibitors (MKIs) that share vascular endothelial growth factor receptor (VEGFR) as the common inhibition target, such as sorafenib, regorafenib, axitinib, etc. Though not life-threatening, HFSR can significantly deteriorate patients' quality of life and jeopardize the continuity of cancer therapy. Despite years of efforts, there are no FDA-approved treatments for HFSR and the understanding of the precise pathogenic mechanism is still limited. In this study, we hypothesized that nitric oxide has the potential therapeutic effect to reverse the toxicity caused by MKI through upregulation of several VEGF/VEGFR downstream signaling pathways. We found that glyceryl trinitrate (GTN), a nitric oxide donor, could stimulate cell proliferation, migration, and protect cells from apoptosis induced by MKIs in vitro. Local application of GTN mitigated tissue damage in a rat model, while not impacting the anti-tumor effect of the MKI in HepG2 tumor-bearing mice. Finally, GTN ointment alleviated cutaneous damages and improved quality of life in 6 HFSR patients. Our study proposed and validated the mechanism to counteract VEGFR inhibition, providing GTN as the potential treatment to MKI-induced HFSR, which may further improve the therapeutic window of various MKI based cancer therapies.

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