Diabetes

Natural product-derived regenerative therapy for reversing diabetes:Geniposide, isolated from Gardenia, increases the expression of Sox17, Sox2, Pdx-1, and Ngn3, decreases mTOR expression, promotes regeneration of insulin-producing ß cells, increases insulin secretion, promotes glucose homeostasis and reverses T1D and T2D via down regulation of its target gene, 17/August/2017, 9.57 pm

Natural product-derived regenerative therapy for reversing diabetes:Geniposide, isolated from Gardenia, increases the expression of Sox17, Sox2, Pdx-1, and Ngn3, decreases mTOR expression, promotes regeneration of insulin-producing ß cells, increases insulin secretion, promotes glucose homeostasis and reverses T1D and T2D via down regulation of its target gene, 17/August/2017, 9.57 pm 960 720 Dr Boomi's Genom-2-Discovery Center

Introduction: What they say A study from the Longevity Institute, School of Gerontology, Department of Biological Sciences, University of Southern California, 3715 McClintock Avenue, Los Angeles, California, USA; and Koch Institute at MIT, 500 Main Street,…

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Molecular-therapy for Regenerating the lost pancreatic β-cells in Diabetic patients:  N-Acetyl Cysteine (NAC) increases the expression of IGF1R, INSR, and IRS2, and promotes an insulin-sensitized state via up-regulation of  its target gene Lin28, 17/August/2017, 12.38 am

Molecular-therapy for Regenerating the lost pancreatic β-cells in Diabetic patients:  N-Acetyl Cysteine (NAC) increases the expression of IGF1R, INSR, and IRS2, and promotes an insulin-sensitized state via up-regulation of  its target gene Lin28, 17/August/2017, 12.38 am 960 720 Dr Boomi's Genom-2-Discovery Center

Introduction: What they say:   A study from the Stem Cell Transplantation Program, Division of Pediatric Hematology/Oncology, Boston Children’s Hospital and Dana-Farber Cancer Institute, Boston, Massachusetts, USA shows that “The Lin28/let-7 axis regulates glucose metabolism.” This study…

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Natural product-derived therapy for glucose homeostasis and TIIDM: Mangiferin , isolated from Mangoes, increases Barr2 expression, augments the functional activity of CAMKII, increases insulin secretion, promotes glucose homeostasis, prevents progression to TIIDM and ameliorates obesity-associated metabolic deficits via down regulation of its target gene, 6/August/2017, 10.28 pm

Natural product-derived therapy for glucose homeostasis and TIIDM: Mangiferin , isolated from Mangoes, increases Barr2 expression, augments the functional activity of CAMKII, increases insulin secretion, promotes glucose homeostasis, prevents progression to TIIDM and ameliorates obesity-associated metabolic deficits via down regulation of its target gene, 6/August/2017, 10.28 pm 960 720 Dr Boomi's Genom-2-Discovery Center

Introduction: What they say A study from the Molecular Signaling Section, Laboratory of Bioorganic Chemistry, National Institute of Diabetes and Digestive and Kidney Diseases, Bethesda, Maryland 20892, USA shows that…

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Electrical stimulation-based therapy for TIIDM: Electrical stimulation augments the expression of FGF19 and FGF1,   attenuates hepatic glucose production, decreases hepatic acetyl CoA content, brings down the levels of plasma ACTH, and corticosterone, augments insulin sensitivity, promotes weight loss and alleviates TIIDM via up regulation of its target gene, 5/August/2017, 11.41 pm

Electrical stimulation-based therapy for TIIDM: Electrical stimulation augments the expression of FGF19 and FGF1,   attenuates hepatic glucose production, decreases hepatic acetyl CoA content, brings down the levels of plasma ACTH, and corticosterone, augments insulin sensitivity, promotes weight loss and alleviates TIIDM via up regulation of its target gene, 5/August/2017, 11.41 pm 960 720 Dr Boomi's Genom-2-Discovery Center

Introduction: What they say A study from Diabetes and Obesity Center of Excellence, Department of Medicine, University of Washington, Seattle, Washington, USA shows that Central injection of FGF1 induces sustained…

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Natural product therapy for body weight control, energy homeostasis and TIIDM:  A therapeutic mix encompassing  Indole-3-Carbinol (13C) and Ankaflavin decreases CADM1 and its downstream target genes that promote glucose-induced insulin secretion, improves insulin sensitivity, increases energy utilization, promotes weight loss and protects from diet-induced obesity and TIIDM via up regulation of its target gene, 8/August/2017, 1.00 am

Natural product therapy for body weight control, energy homeostasis and TIIDM:  A therapeutic mix encompassing  Indole-3-Carbinol (13C) and Ankaflavin decreases CADM1 and its downstream target genes that promote glucose-induced insulin secretion, improves insulin sensitivity, increases energy utilization, promotes weight loss and protects from diet-induced obesity and TIIDM via up regulation of its target gene, 8/August/2017, 1.00 am 960 720 Dr Boomi's Genom-2-Discovery Center

Introduction: What they say A study from the Max Delbrück Center for Molecular Medicine, Berlin, Germany shows that “Regulation of body weight and energy homeostasis by neuronal cell adhesion molecule1.”…

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Molecular Hydrogen-based therapy for TIIDM: Hydrogen rich water augments the expression of FGF19 and FGF1,   attenuates hepatic glucose production, decreases hepatic acetyl CoA content, brings down the levels of plasma ACTH, and corticosterone, augments insulin sensitivity, promotes weight loss and alleviates TIIDM via up regulation of its target gene, 8/August/2017, 12.41 am

Molecular Hydrogen-based therapy for TIIDM: Hydrogen rich water augments the expression of FGF19 and FGF1,   attenuates hepatic glucose production, decreases hepatic acetyl CoA content, brings down the levels of plasma ACTH, and corticosterone, augments insulin sensitivity, promotes weight loss and alleviates TIIDM via up regulation of its target gene, 8/August/2017, 12.41 am 960 720 Dr Boomi's Genom-2-Discovery Center

Introduction: What they say A study from Diabetes and Obesity Center of Excellence, Department of Medicine, University of Washington, Seattle, Washington, USA shows that Central injection of FGF1 induces sustained…

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