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Updated: Feb 12, 2026

Enhancing Tumor Content through Tumor Macrodissection
Published on: February 12, 2022
Sepiapterin Enhances Tumor Radio- and Chemosensitivities by Promoting Vascular Normalization
Christopher S Rabender1, Ninu Bruno2, Asim Alam2
1Department of Radiation Oncology (C.S.R., N.B., A.A., R.B.M.) and Center for Molecular Imaging (G.S., J.Z.), Virginia Commonwealth University, Richmond, Virginia csrabender@vcu.edu.
Abstract:
Previously, we demonstrated that nitric oxide (NO) synthase (NOS) is uncoupled in a wide range of solid tumors and that restoring NOS coupling with the tetrahydrobiopterin precursor sepiapterin (SP) inhibits tumor progression. Endothelial dysfunction characterizes the poorly functional vasculature of solid tumors, and since NO is critical for regulation of endothelial function we asked whether SP, by recoupling NOS, improves tumor vasculature structure and function-enhancing chemotherapeutic delivery and response to radiotherapy. MMTV-neu mice with spontaneous breast tumors were treated with SP by oral gavage and evaluated by multispectral optoacoustic tomographic analysis of tumor HbO2 and by tissue staining for markers of hypoxia, blood perfusion, and markers of endothelial and smooth muscle proteins. Recoupling tumor NOS activity results in vascular normalization observed as reduced tumor hypoxia, improved tumor percentage of HbO2 and perfusion, as well as increased pericyte coverage of tumor blood vessels. The normalized vasculature and improved tumor oxygenation led to a greater than 2-fold increase in radiation-induced apoptosis compared with radiation or SP alone. High-performance liquid chromatography analysis of tumor doxorubicin levels showed a greater than 50% increase in doxorubicin uptake and a synergistic effect on tumor cell apoptosis. This study highlights for the first time the importance of NOS uncoupling and endothelial dysfunction in the development of tumor vasculature and presents a new approach for improving the tumoricidal efficacies of chemotherapy and radiotherapy.
Insights
Restoring nitric oxide synthase (NOS) coupling with sepiapterin (SP) normalizes tumor vasculature, enhancing chemotherapy and radiotherapy efficacy. This approach improves tumor oxygenation and increases cancer cell death.
Area of Science:
- Oncology
- Vascular Biology
- Biochemistry
Background:
- Nitric oxide (NO) synthase (NOS) is uncoupled in solid tumors, leading to endothelial dysfunction and impaired tumor vasculature.
- This dysfunction compromises the delivery of chemotherapeutics and the effectiveness of radiotherapy.
Purpose of the Study:
- To investigate if sepiapterin (SP), a tetrahydrobiopterin precursor, can restore NOS coupling and improve tumor vasculature.
- To evaluate the impact of SP-mediated vascular normalization on chemotherapeutic delivery and radiotherapy response.
Main Methods:
- MMTV-neu mice with spontaneous breast tumors were treated with SP.
- Vascular function and structure were assessed using multispectral optoacoustic tomography and tissue staining for hypoxia, perfusion, and vascular markers.
- Tumor doxorubicin levels and apoptosis were quantified.
Main Results:
- SP treatment normalized tumor vasculature, reducing hypoxia and improving blood oxygenation (HbO2) and perfusion.
- Increased pericyte coverage of tumor blood vessels was observed.
- Combined SP and radiotherapy significantly increased tumor cell apoptosis (over 2-fold).
- SP enhanced doxorubicin uptake by over 50%, showing a synergistic effect on tumor cell apoptosis.
Conclusions:
- NOS uncoupling and endothelial dysfunction are critical in solid tumor vasculature development.
- Restoring NOS coupling with SP normalizes tumor vasculature, improving oxygenation and enhancing chemotherapeutic delivery.
- This vascular normalization strategy significantly improves the efficacy of chemotherapy and radiotherapy for solid tumors.
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