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Effect of chronic administration with human thioredoxin‐1 transplastomic lettuce on diabetic mice

Scope Human thioredoxin‐1 (hTrx‐1) is a defensive protein induced by various stresses and exerts antioxidative and anti‐inflammatory effects. Previously, we described a transplastomic lettuce overexpressing hTrx‐1 that exerts a protective effect against oxidative damage in a pancreatic β‐cell line....

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Published in:Food science & nutrition 2021-08, Vol.9 (8), p.4232-4242
Main Authors: Watanabe, Rie, Ashida, Hiroki, Kobayashi‐Miura, Mikiko, Yokota, Akiho, Yodoi, Junji
Format: Article
Language:English
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Summary:Scope Human thioredoxin‐1 (hTrx‐1) is a defensive protein induced by various stresses and exerts antioxidative and anti‐inflammatory effects. Previously, we described a transplastomic lettuce overexpressing hTrx‐1 that exerts a protective effect against oxidative damage in a pancreatic β‐cell line. In this study, we treated diabetic mice (Akita mice) with exogenous hTrx‐1 and evaluated the effects. Methods and results Treatment with drinking water and single applications of exogenous hTrx‐1 did not influence the feeding, drinking behavior, body weight, blood glucose, or glycosylated hemoglobin (HbA1c) levels in Akita mice. However, chronic administration of a 10% hTrx‐1 lettuce‐containing diet was associated with a significant reduction from the baseline of HbA1c levels compared with mice fed a wild‐type lettuce‐containing diet. It also resulted in an increased number of goblet cells in the small intestine, indicating that mucus was synthesized and secreted. Conclusion Our results revealed that the administration of an hTrx‐1 lettuce‐containing diet improves the baseline level of HbA1c in Akita mice. This effect is mediated through goblet cell proliferation and possibly related to protection against postprandial hyperglycemia by mucus, which results in the improvement of blood glucose control. These findings suggest that the hTrx‐1 lettuce may be a useful tool for the continuous antioxidative and antidiabetic efficacies of the hTrx‐1 protein. Administration of an hTrx‐1 lettuce‐containing diet improves the baseline level of HbA1c in Akita mice. This effect is mediated through goblet cell proliferation in the small intestine and possibly related to protection against postprandial hyperglycemia by mucus, which results in the improvement of blood glucose control. These findings suggest that the hTrx‐1 lettuce may be a useful tool for the continuous antioxidative and antidiabetic efficacies of the hTrx‐1 protein.
ISSN:2048-7177
2048-7177
DOI:10.1002/fsn3.2391