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  2. Hepatocyte - Wikipedia

    en.wikipedia.org/wiki/Hepatocyte

    For these purposes, hepatocytes are usually isolated from animal or human [8] whole liver or liver tissue by collagenase digestion, which is a two-step process. In the first step, the liver is placed in an isotonic solution, in which calcium is removed to disrupt cell-cell tight junctions by the use of a calcium chelating agent.

  3. Liver cytology - Wikipedia

    en.wikipedia.org/wiki/Liver_cytology

    Cytology is the name given to the branch of biology that deals with the formation, structure and functionality of the cells. [1] Liver cytology specializes in the study of liver cells. The main liver cells are called hepatocytes; however, there are other cells that can be observed in a liver sample such as Kupffer cells (macrophages). [2]

  4. PYGL - Wikipedia

    en.wikipedia.org/wiki/PYGL

    Glycogen phosphorylase, liver form (PYGL), also known as human liver glycogen phosphorylase (HLGP), is an enzyme that in humans is encoded by the PYGL gene on chromosome 14. [ 1 ] [ 2 ] This gene encodes a homodimeric protein that catalyses the cleavage of alpha-1,4-glucosidic bonds to release glucose-1-phosphate from liver glycogen stores.

  5. Lobules of liver - Wikipedia

    en.wikipedia.org/wiki/Lobules_of_liver

    In histology (microscopic anatomy), the lobules of liver, or hepatic lobules, are small divisions of the liver defined at the microscopic scale. The hepatic lobule is a building block of the liver tissue , consisting of a portal triad, hepatocytes arranged in linear cords between a capillary network, and a central vein .

  6. Glycogenin-1 - Wikipedia

    en.wikipedia.org/wiki/Glycogenin-1

    The function of liver glycogen is to maintain glucose homeostasis, generating glucose via glycogenolysis to compensate for the decrease of glucose levels that can occur between meals. Thanks to the presence of the glucose-6-phosphatase enzyme, the hepatocytes are capable of turning glycogen to glucose, releasing it into blood to prevent ...

  7. Inclusion (cell) - Wikipedia

    en.wikipedia.org/wiki/Inclusion_(cell)

    Glycogen is an important energy source of the cell; therefore, it will be available on demand. The enzymes responsible for glycogenolysis degrade glycogen into individual molecules of glucose and can be utilized by multiple organs of the body. [4] [2] Lipids: Lipids, which are stored as triglycerides, are the common form of inclusions.

  8. Liver - Wikipedia

    en.wikipedia.org/wiki/Liver

    Histology, the study of microscopic anatomy, shows two major types of liver cell: parenchymal cells and nonparenchymal cells. About 70–85% of the liver volume is occupied by parenchymal hepatocytes. Nonparenchymal cells constitute 40% of the total number of liver cells but only 6.5% of its volume. [27]

  9. Polysaccharide - Wikipedia

    en.wikipedia.org/wiki/Polysaccharide

    Only the glycogen stored in the liver can be made accessible to other organs. In the muscles , glycogen is found in a low concentration of one to two percent of the muscle mass. The amount of glycogen stored in the body—especially within the muscles , liver , and red blood cells [ 18 ] [ 19 ] [ 20 ] —varies with physical activity, basal ...

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