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  2. Glucose uptake - Wikipedia

    en.wikipedia.org/wiki/Glucose_uptake

    Method of glucose uptake differs throughout tissues depending on two factors; the metabolic needs of the tissue and availability of glucose.The two ways in which glucose uptake can take place are facilitated diffusion (a passive process) and secondary active transport (an active process which on the ion-gradient which is established through the hydrolysis of ATP, known as primary active ...

  3. Glycolysis - Wikipedia

    en.wikipedia.org/wiki/Glycolysis

    d -Glucose + 2 [NAD] + + 2 [ADP] + 2 [P] i 2 × Pyruvate 2 × + 2 [NADH] + 2 H + + 2 [ATP] + 2 H 2 O Glycolysis pathway overview The use of symbols in this equation makes it appear unbalanced with respect to oxygen atoms, hydrogen atoms, and charges. Atom balance is maintained by the two phosphate (P i) groups: Each exists in the form of a hydrogen phosphate anion, dissociating to contribute ...

  4. Renal glucose reabsorption - Wikipedia

    en.wikipedia.org/wiki/Renal_glucose_reabsorption

    Renal glucose reabsorption is the part of kidney (renal) physiology that deals with the retrieval of filtered glucose, preventing it from disappearing from the body through the urine. If glucose is not reabsorbed by the kidney, it appears in the urine, in a condition known as glycosuria. This is associated with diabetes mellitus. [1]

  5. Renal physiology - Wikipedia

    en.wikipedia.org/wiki/Renal_physiology

    Glucose: If glucose is not reabsorbed by the kidney, it appears in the urine, in a condition known as glycosuria. This is associated with diabetes mellitus. [2] reabsorption (almost 100%) via sodium-glucose transport proteins [3] and GLUT (basolateral). – – – Oligopeptides, proteins, and amino acids: All are reabsorbed nearly completely. [4]

  6. Glucose transporter - Wikipedia

    en.wikipedia.org/wiki/Glucose_transporter

    It is responsible for the low level of basal glucose uptake required to sustain respiration in all cells. Levels in cell membranes are increased by reduced glucose levels and decreased by increased glucose levels. GLUT1 expression is upregulated in many tumors. GLUT2: Is a bidirectional transporter, allowing glucose to flow in 2 directions.

  7. Paracellular transport - Wikipedia

    en.wikipedia.org/wiki/Paracellular_transport

    Paracellular transport also has the benefit that absorption rate is matched to load because it has no transporters that can be saturated. In most mammals, intestinal absorption of nutrients is thought to be dominated by transcellular transport, e.g., glucose is primarily absorbed via the SGLT1 transporter and other glucose transporters .

  8. Splay (physiology) - Wikipedia

    en.wikipedia.org/wiki/Splay_(physiology)

    Splay is usually used in reference to glucose; [1] other substances, such as phosphate, have virtually no splay at all. The splay in the glucose titration curve is likely a result of both anatomical and kinetic difference among nephrons. [7] A particular nephron's filtered load of glucose may be mismatched to its capacity to reabsorb glucose.

  9. Carbohydrate metabolism - Wikipedia

    en.wikipedia.org/wiki/Carbohydrate_metabolism

    After separation from glucose, galactose travels to the liver for conversion to glucose. [12] Galactokinase uses one molecule of ATP to phosphorylate galactose. [2] The phosphorylated galactose is then converted to glucose-1-phosphate, and then eventually glucose-6-phosphate, which can be broken down in glycolysis. [2]