The use of medicinal plants with anti-diabetic properties continues because of the high cost of diabetes mellitus treatment. In the Bicol region of the Philippines, one local source is the leaves of Ficus pseudopalma Blanco (Philippine fig), which is utilized as an ingredient of their cuisine, and the decoction of its leaves is believed to have a blood-glucose lowering effect. The aim of this study was to evaluate the blood-glucose lowering effect of F. pseudoplama using sugar/carbohydrate-loaded and normoglycemic mice. The results showed that the hot-water extract of the leaves significantly suppressed the increase of blood glucose levels after glucose, maltose and starch loading. On the other hand, the extract did not show any hypoglycemic activity in either fasted or non-fasted mice as compared to the positive control drugs. These results suggest that F. pseudopalma is potentially useful for the management of blood glucose levels in the postprandial condition, as believed in the Bicol region of the Philippines.
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http://dx.doi.org/10.1007/s11418-012-0733-0 | DOI Listing |
Chin J Integr Med
January 2025
Department of Ultrasound in Medicine, the Second Affiliated Hospital of Zhejiang University School of Medicine, Hangzhou, 310009, China.
Objective: To evaluate the therapeutic effects of Kuanxiong Aerosol (KXA) on ischemic stroke with reperfusion and elucidate the underlying pharmacological mechanisms.
Methods: In vivo pharmacological effects on ischemic stroke with reperfusion was evaluated using the transient middle cerebral artery occlusion (t-MCAO) mice model. To evaluate short-term outcome, 30 mice were randomly divided into vehicle group (n=15) and KXA group (n=15).
Langenbecks Arch Surg
January 2025
Department of Surgery, Division of HBP Surgery & Liver Transplantation, Korea University College of Medicine, Seoul, Korea.
Purpose: Pancreatectomy patients often experience challenging fluctuations in blood glucose levels; therefore, they require a reliable monitoring system. This study aimed to determine the accuracy and acceptability of a continuous glucose monitoring (CGM) system compared with the intermittent capillary glucose test in patients who have undergone pancreatectomy.
Methods: Thirty non-diabetic pancreatectomy patients participated.
Vet Med Sci
January 2025
Department of Statistics, Faculty of Science, University of Muğla Sıtkı Koçman, Muğla, Turkey.
Background: There is a lack of data on the validation and diagnostic performance of the Freestyle Optium Neo-H (Freestyle) and Centrivet GK (Centrivet) devices for the diagnosis of hypoglycaemia, hyperglycaemia and hyperketonaemia in goats.
Objectives: The aim of the present study was to validate the Freestyle and Centrivet for the analysis of whole blood beta-hydroxybutyric acid (BHBA) and to validate the Freestyle for the analysis of whole blood glucose concentrations using the reference method (RM) in goat blood collected from the jugular and ear veins.
Methods: Venous blood samples were utilised to assess glucose and BHBA concentrations using the Freestyle, Centrivet and RM.
Nanomaterials (Basel)
December 2024
Guangdong Provincial Key Laboratory of Electronic Functional Materials and Devices, Huizhou University, Huizhou 516001, China.
Non-enzymatic glucose detection is an effective strategy to control the blood glucose level of diabetic patients. A novel hierarchical core-shell structure of nickel hydroxide shell coated copper hydroxide core based on copper foam (Ni(OH)@Cu(OH)-CF) was fabricated and derived from NiO@CuO-CF for glucose sensing. Cyclic voltammetry and amperometry experiments have demonstrated the efficient electrochemical catalysis of glucose under alkaline conditions.
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December 2024
Beijing Institute of Brain Disorders, Capital Medical University, Beijing 100054, China.
Neurovascular coupling (NVC) refers to the process of local changes in cerebral blood flow (CBF) after neuronal activity, which ensures the timely and adequate supply of oxygen, glucose, and substrates to the active regions of the brain. Recent clinical imaging and experimental technology advancements have deepened our understanding of the cellular mechanisms underlying NVC. Pathological conditions such as stroke, subarachnoid hemorrhage, cerebral small vascular disease, and vascular cognitive impairment can disrupt NVC even before clinical symptoms appear.
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