Glucokinase Glucokinase (GK GK ; EC 2.7.1.1.) phosphorylates and regulates glucose metabolism in insulin-producing pancreatic beta-cells, hepatocytes, and certain cells of the endocrine and nervous systems allowing it to play a central role in glucose homeostasis glucose homeostasis . Most importantly, it serves as glucose sensor glucose sensor in pancreatic beta-cells mediating glucose-stimulated insulin biosynthesis and release and it governs the capacity of the liver to convert glucose to glycogen. Activating and inactivating mutations of the glucokinase gene cause autosomal dominant hyperinsulinemic hypoglycemia and hypoinsulinemic hyperglycemia in humans, respectively, illustrating the preeminent role of glucokinase in the regulation of blood glucose and also identifying the enzyme as a potential target for developing antidiabetic drugs antidiabetic drugs . Small molecules called glucokinase activators (GKAs) glucokinase activators (GKAs) which bind to an allosteric activator allosteric activator site of the enzyme have indeed been discovered and hold great promise as new antidiabetic agents. GKAs increase the enzyme's affinity for glucose and also its maximal catalytic rate. Consequently, they stimulate insulin biosynthesis and secretion, enhance hepatic glucose uptake, and augment glucose metabolism and related processes in other glucokinase-expressing cells. Manifestations of these effects, most prominently a lowering of blood glucose, are observed in normal laboratory animals and man but also in animal models of diabetes and patients with type 2 diabetes mellitus (T2DM T2DM ) type 2 diabetes mellitus (T2DM) . These compelling concepts and results sustain a strong R&D effort by many pharmaceutical companies to generate GKAs with characteristics allowing for a novel drug treatment of T2DM.
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http://dx.doi.org/10.1007/978-3-642-17214-4_15 | DOI Listing |
The antihyperglycemic activity of extracellular polysaccharopeptides (ePSP) obtained from Trametes versicolor (TV) strain LH-1 has been demonstrated in hepatic cells and diabetic animals. This study further investigated the mechanisms of T. versicolor-ePSP on regulating glucose metabolism, including insulin signaling molecules and glucose metabolism-associated enzymes, in the liver of rats with type 2 diabetes mellitus (T2DM).
View Article and Find Full Text PDFWorld J Diabetes
January 2025
Department of Endocrinology, Beijing Haidian Hospital, Beijing 100080, China.
Background: Treating diabetes in dialysis patients remains a challenge, with many hypoglycemic drugs requiring dose adjustments or avoidance in these patients.
Case Summary: This report describes an 83-year-old female patient with a 30-year history of type 2 diabetes (T2DM) who had struggled to control her blood sugar for more than a year. She had a history of high blood pressure for 30 years, had undergone continuous ambulatory peritoneal dialysis for more than two years, was 163 cm tall, weighed 77 kg, and had a body mass index of 28.
Lakartidningen
January 2025
professor, överläkare, VO internmedicin, sektionen för diabetologi och endokrinologi, Gävle sjukhus; Centrum för forskning och utveckling, Uppsala universitet/Region Gävleborg.
Type 2 diabetes (T2D) is increasing relentlessly globally, affecting ever younger patients. Many T2D patients do not attain glycemic target levels, indicating a clear need for novel antihyperglycemic drugs. Ideally, these should not only control glycemia, but also halt or slow the progressive loss of beta cells.
View Article and Find Full Text PDFBMJ Open
December 2024
Guangzhou University of Traditional Chinese Medicine First Affiliated Hospital, Guangzhou, Guangdong, China
Introduction: A variety of hypoglycaemic drugs are used to treat polycystic ovarian syndrome (PCOS), but their efficacy remains insufficient. Glucokinase activators (GKAs) are a unique class of hypoglycaemic medications with emerging potential, notably in significantly reducing insulin resistance (IR). Nevertheless, the efficacy of GKAs in treating PCOS, particularly in the absence or presence of IR, remains uncertain.
View Article and Find Full Text PDFIn Silico Pharmacol
January 2025
Department of Pharmaceutical Sciences, Dibrugarh University, Dibrugarh, Assam 786004 India.
Unlabelled: Globally, there is an increase in the prevalence of metabolic illnesses, including diabetes mellitus. However, current therapies for diabetes and other metabolic illnesses are not well understood. Pharmacological treatment of type 2 diabetes is challenging, moreover, the majority of antidiabetic medications are incompatible with individuals who have cardiac disease, renal illness, or liver damage.
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