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- Cannabisin A and B from hemp seed hulls improve glucose homeostasis by re-engaging insulin, leptin, and AMPK pathways via selective PTP1B inhibition.
Hemp compounds restore insulin sensitivity and blood sugar control
Cannabisin A and B from hemp seed hulls improve glucose homeostasis by re-engaging insulin, leptin, and AMPK pathways via selective PTP1B inhibition.
AI Summary
Researchers have discovered two novel compounds called Cannabisin A and Cannabisin B in hemp seed hulls that show remarkable promise for treating type 2 diabetes and metabolic disorders. These compounds work through a dual-action mechanism: they inhibit PTP1B, an enzyme that blocks insulin and leptin signaling, while simultaneously activating AMPK, a key metabolic regulator. This two-pronged approach essentially "re-boots" the body's ability to respond to insulin and control blood sugar levels. The study employed cutting-edge research methods including molecular docking simulations and comprehensive testing in both cell cultures and live diabetic mice.
The results were impressive across multiple testing levels. In laboratory and animal models, both compounds restored glucose uptake in muscle and liver cells, reactivated critical insulin-signaling pathways (IRS-1, AKT, and JAK2/STAT3), and improved blood glucose control in diabetic mice in a dose-dependent manner. The compounds showed efficacy in primary hepatocytes from high-fat diet mice, suggesting relevance to obesity-related diabetes. Importantly, the researchers also conducted in silico analyses using human genetic and transcriptome data, indicating these compounds could be absorbed and metabolized effectively in humans through natural degradation pathways.
What makes this discovery particularly exciting is that these bioactive compounds come from hemp seed hulls, a by-product often discarded during hemp processing, and represent a novel class of natural insulin/leptin sensitizers. The researchers demonstrated that Cannabisin A and B operate as first-in-class dual-target antidiabetic agents, with multi-tissue efficacy and human-relevant characteristics. This positions hemp-derived compounds as potential therapeutic leads for metabolic diseases affecting millions worldwide.
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