Tumor oxygenation nanoliposome synergistic hypoxia-inducible-factor-1 inhibitor enhanced Iodine-125 seed brachytherapy for esophageal cancer.

Yao, Xijuan; Lu, Shuting; Feng, Cheng; Suo, Ruiyang; Li, Hang; Zhang, Yi; Chen, Qi; Lu, Jian et al. · Biomaterials · 2022

basic_science · Level V

Where this comes from

Abstract

Iodine-125 (<sup>125</sup>I) brachytherapy has become one of the most effective palliative treatment options for advanced esophageal cancer. However, resistance toward <sup>125</sup>I brachytherapy caused by pre-existing tumor hypoxia and hypoxia-inducible factor 1 (HIF-1) signaling pathway activation represents a significant limitation in esophageal cancer treatment. To circumvent these problems, herein, we proposed an innovative strategy to alleviate radioresistance of brachytherapy by co-encapsulating catalase (CAT) and HIF-1 inhibitor-acriflavine (ACF) into the hydrophilic cavities of liposome, termed as "ACF-CAT@Lipo". Under overexpressed H<sub>2</sub>O<sub>2</sub> stimulation in the tumor region, the fabricated ACF-CAT@Lipo can generate an amount of O<sub>2</sub> and alleviate tumor hypoxia in vitro and in vivo. Furthermore, cooperating with ACF, the expression of hypoxia-related protein (e.g. HIF-1α, VEGF, MMP-2) are obviously decreased. Importantly, the copious oxygenation and the significant inhibition expression of HIF-1α can further improve the radiosensitivity of <sup>125</sup>I brachytherapy and finally realize the eradication of esophageal cancer in vivo. The oxygen enrichment and HIF-1 inhibition function of ACF-CAT@Lipo provides a new strategy to overcome the brachytherapy resistance of esophageal cancer therapy.

Medical subject headings