A new recombinant MS-superoxide dismutase alleviates 5-fluorouracil-induced intestinal mucositis in mice
Xiao-Xia Yan1,2, Hai-Long Li3,4, Yi-Ting Zhang1,2
1Shanghai Institute of Materia Medica, Chinese Academy of Sciences, Shanghai, 201203, China.
Abstract:
Intestinal mucositis is a common side effect of anticancer regimens that exerts a negative impact on chemotherapy. Superoxide dismutase (SOD) is a potential therapy for mucositis but efficient product is not available because the enzyme is degraded following oral administration or induces an immune reaction after intravascular infusion. Multi-modified Stable Anti-Oxidant Enzymes® (MS-AOE®) is a new recombinant SOD with better resistance to pepsin and trypsin. We referred it as MS-SOD to distinguish from other SODs. In this study we investigated its potential to alleviate 5-FU-induced intestinal injury and the mechanisms. An intestinal mucositis model was established in C57/BL6 mice by 5-day administration of 5-FU (50 mg/kg every day, ip). MS-SOD (800 IU/10 g, ig) was given once daily for 9 days. 5-FU caused severe mucositis with intestinal morphological damage, bodyweight loss and diarrhea; MS-SOD significantly decreased the severity. 5-FU markedly increased reactive oxygen species (ROS) and inflammatory cytokines in the intestine which were ameliorated by MS-SOD. Furthermore, MS-SOD modified intestinal microbes, particularly reduced Verrucomicrobia, compared with the 5-FU group. In Caco2 cells, MS-SOD (250-1000 U/mL) dose-dependently decreased tBHP-induced ROS generation. In RAW264.7 cells, MS-SOD (500 U/mL) had no effect on LPS-induced inflammatory cytokines, but inhibited iNOS expression. These results demonstrate that MS-SOD can scavenge ROS at the initial stage of injury, thus play an indirect role in anti-inflammatory and barrier protein protection. In conclusion, MS-SOD attenuates 5-FU-induced intestinal mucositis by suppressing oxidative stress and inflammation, and influencing microbes. MS-SOD may exert beneficial effect in prevention of intestinal mucositis during chemotherapy in clinic.
Insights
Multi-modified Stable Anti-Oxidant Enzymes (MS-SOD) effectively reduces chemotherapy-induced intestinal mucositis by combating oxidative stress and inflammation. This novel superoxide dismutase (SOD) also positively influences gut microbiota, offering a promising therapeutic strategy.
Area of Science:
- Gastroenterology
- Pharmacology
- Biochemistry
Background:
- Intestinal mucositis is a debilitating side effect of chemotherapy, negatively impacting treatment efficacy.
- Existing superoxide dismutase (SOD) therapies face challenges with oral degradation or immunogenicity after infusion.
- A novel recombinant SOD, Multi-modified Stable Anti-Oxidant Enzymes (MS-SOD), exhibits enhanced stability against digestive enzymes.
Purpose of the Study:
- To evaluate the efficacy of MS-SOD in alleviating 5-fluorouracil (5-FU)-induced intestinal mucositis in a mouse model.
- To elucidate the underlying mechanisms by which MS-SOD exerts its protective effects against intestinal injury.
Main Methods:
- An intestinal mucositis model was established in C57/BL6 mice using daily 5-FU administration.
- Mice were treated with orally administered MS-SOD for nine days.
- Assessed intestinal morphology, body weight, diarrhea, reactive oxygen species (ROS), inflammatory cytokines, and gut microbiota composition. In vitro studies used Caco2 and RAW264.7 cells.
Main Results:
- MS-SOD significantly reduced the severity of 5-FU-induced intestinal mucositis, including morphological damage, weight loss, and diarrhea.
- MS-SOD ameliorated increased levels of ROS and inflammatory cytokines in the intestine.
- MS-SOD modulated intestinal microbiota and dose-dependently reduced ROS generation in Caco2 cells, while inhibiting iNOS expression in RAW264.7 cells.
Conclusions:
- MS-SOD effectively scavenges ROS, providing indirect anti-inflammatory and barrier protection.
- MS-SOD attenuates 5-FU-induced intestinal mucositis by suppressing oxidative stress, inflammation, and influencing gut microbes.
- MS-SOD demonstrates potential as a preventive therapy for chemotherapy-induced intestinal mucositis in clinical settings.
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