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Effect of histidine on sorafenib-induced vascular damage: Analysis using novel medaka fish model
Yoko Shinagawa-Kobayashi1, Kenya Kamimura1, Ryo Goto1
1Division of Gastroenterology and Hepatology, Graduate School of Medical and Dental Sciences, Niigata University, Niigata, Niigata, Japan.
Background:
Sorafenib (SFN) is an anti-angiogenic chemotherapeutic that prolongs survival of patients with hepatocellular carcinoma (HCC); its side effects, including vascular damages such as hand-foot syndrome (HFS), are a major cause of therapy discontinuation. We previously reported that maintenance of peripheral blood flow by intake of dried bonito broth (DBB) significantly prevented HFS and prolonged the administration period. The amino acids contained in DBB probably contribute to its effects, but the mechanism has not been clarified. We hypothesized that histidine, the largest component among the amino acids contained in DBB, has effects on SFN-induced vascular damage, and evaluated this possibility using a novel medaka fish model.
Methods:
The fli::GFP transgenic medaka fish model has a fluorescently visible systemic vasculature. We fed the fish with SFN with and without histidine to compare blood flow and vascular structure among the differently fed models. The vascular cross-sectional area of each fish was measured to determine vascular diameter changes.
Results:
Our results demonstrated that SFN-fed medaka developed a narrower vascular diameter. In addition, this narrowing was counteracted by addition of histidine to the medaka diet. We observed no positive effect of histidine on regeneration of cut vessels or on cell growth of endothelial cells and HCC cell lines.
Conclusion:
We proved the efficacy of the medaka model to assess vascular changes after administration of specific chemicals. And our results suggest that SFN causes vascular damage by narrowing peripheral vessel diameter, and that histidine effectively counteracts these changes to maintain blood flow.
Insights
Histidine counteracts sorafenib-induced vascular damage by preventing peripheral vessel narrowing, maintaining blood flow in hepatocellular carcinoma (HCC) patients and potentially reducing hand-foot syndrome (HFS) side effects.
Area of Science:
- Biomedical research
- Pharmacology
- Vascular biology
Background:
- Sorafenib (SFN) is a chemotherapeutic for hepatocellular carcinoma (HCC) that can cause vascular damage, leading to side effects like hand-foot syndrome (HFS) and treatment discontinuation.
- Dried bonito broth (DBB) has been shown to prevent HFS and prolong SFN administration, likely due to its amino acid content.
- The specific mechanism by which DBB components mitigate SFN-induced vascular damage remains unclear.
Purpose of the Study:
- To investigate the potential of histidine, a major amino acid in DBB, to counteract sorafenib-induced vascular damage.
- To evaluate the efficacy of a novel medaka fish model for assessing chemical-induced vascular changes.
Main Methods:
- Utilized a fli::GFP transgenic medaka fish model with fluorescently visible vasculature.
- Administered sorafenib (SFN) with and without histidine to assess effects on blood flow and vascular structure.
- Measured vascular cross-sectional area to quantify changes in vessel diameter.
Main Results:
- Sorafenib (SFN) administration resulted in a significant narrowing of vascular diameter in medaka fish.
- The addition of histidine to the diet counteracted this SFN-induced vascular narrowing.
- Histidine did not show positive effects on vessel regeneration or endothelial/HCC cell growth.
Conclusions:
- The medaka fish model is effective for evaluating chemical-induced vascular alterations.
- Sorafenib (SFN) induces vascular damage by constricting peripheral vessels.
- Histidine effectively counteracts SFN-induced vascular narrowing, thereby maintaining peripheral blood flow.
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