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ABSTRACT
Background: Autophagy is a well-preserved mechanism essential in minimizing endoplasmic reticulum stress
(ER)-related cell death. Defects in β-cell autophagy have been linked to type 1 diabetes, particularly deficits in
the secretion of insulin, boosting ER stress sensitivity and possibly promoting pancreatic β-cell death. Quercetin
(QU) is a potent antioxidant and anti-diabetic flavonoid with low bioavailability, and the precise mechanism of
its anti-diabetic activity is still unknown.
Aim
This study aimed to design an improved bioavailable form of QU (liposomes) and examine the impact of its
treatment on the alleviation of type 1 diabetes induced by STZ in rats.
Methods: Seventy SD rats were allocated into seven equal groups 10 rats of each: control, STZ, STZ +3-MA, STZ
+QU-Lip, and STZ +3-MA +QU-Lip. Fasting blood glucose, insulin, c-peptide, serum IL-6, TNF-α, pancreatic
oxidative stress, TRAF-6, autophagy, endoplasmic reticulum stress (ER stress) markers expression and their
regulatory microRNA (miRNA) were performed. As well as, docking analysis for the quercetin, ER stress, and
autophagy were done. Finally, the histopathological and immunohistochemical analysis were conducted.
Significance: QU-Lip significantly decreased glucose levels, oxidative, and inflammatory markers in the pancreas.
It also significantly downregulated the expression of ER stress and upregulated autophagic-related markers.
Furthermore, QU-Lip significantly ameliorated the expression of several MicroRNAs, which both control
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