Department of Materials Science and Engineering, College of Chemistry and Materials Science, Jinan University, 511443, Guangzhou, China.
Guangdong Engineering Research Center of Chinese Medicine & Disease Susceptibility, Jinan University, 510632, Guangzhou, China.
Nat Commun. 2023 Aug 22;14(1):5083. doi: 10.1038/s41467-023-40794-w.
Radiation colitis is the leading cause of diarrhea and hematochezia in pelvic radiotherapy patients. This work advances the pathogenesis of radiation colitis from the perspective of ferroptosis. An oral Pickering emulsion is stabilized with halloysite clay nanotubes to alleviate radiation colitis by inhibiting ferroptosis. Ceria nanozyme grown in situ on nanotubes can scavenge reactive oxygen species, and deferiprone was loaded into the lumen of nanotubes to relieve iron stress. These two strategies effectively inhibit lipid peroxidation and rescue ferroptosis in the intestinal microenvironment. The clay nanotubes play a critical role as either a medicine to alleviate colitis, a nanocarrier that targets the inflamed colon by electrostatic adsorption, or an interfacial stabilizer for emulsions. This ferroptosis-based strategy was effective in vitro and in vivo, providing a prospective candidate for radiotherapy protection via rational regulation of specific oxidative stress.
放射性肠炎是盆腔放疗患者腹泻和血便的主要原因。本研究从铁死亡角度探讨了放射性肠炎的发病机制。采用埃洛石纳米管稳定的口服 Pickering 乳液通过抑制铁死亡来缓解放射性肠炎。原位生长在纳米管上的氧化铈纳米酶可以清除活性氧,同时将去铁酮载入纳米管腔以缓解铁应激。这两种策略可有效抑制肠道微环境中的脂质过氧化并挽救铁死亡。粘土纳米管起着至关重要的作用,既是一种缓解结肠炎的药物,通过静电吸附靶向炎症结肠的纳米载体,也是乳液的界面稳定剂。该基于铁死亡的策略在体外和体内均有效,为通过合理调节特定氧化应激来进行放疗防护提供了有前景的候选药物。