Multiple Types of Epithelia. Structure of the Intestinal Epithelial Cell.

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Multiple Types of Epithelia
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Transcript of Multiple Types of Epithelia. Structure of the Intestinal Epithelial Cell.

Page 1: Multiple Types of Epithelia. Structure of the Intestinal Epithelial Cell.

Multiple Types of Epithelia

Page 2: Multiple Types of Epithelia. Structure of the Intestinal Epithelial Cell.

Structure of the Intestinal Epithelial Cell

Page 3: Multiple Types of Epithelia. Structure of the Intestinal Epithelial Cell.

Acidification of an Extracellular Medium

Page 4: Multiple Types of Epithelia. Structure of the Intestinal Epithelial Cell.

Transport of Glucose from the Intestinal Lumen into the Blood

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ORAL REHYDRATION THERAPY

1) REQUIRES BOTH NaCl AND GLUCOSE; NEITHER ALONE WORKS

THE Na+/ GLUCOSE SYMPORT PROTEIN MUST TRANSPORT Na+AND GLUCOSE TOGETHER

2) TRANSPORT OF NaCl AND GLUCOSE ACROSS THE INTESTINAL EPITHELIUM CAUSES OSMOTIC FLOW OF WATER FROM THE INTESTINAL LUMEN INTO THE BLOOD, LEADING TO REHYDRATION

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Schematic overview of the types of molecules that bind cells to each other and to the extracellular matrix

Page 7: Multiple Types of Epithelia. Structure of the Intestinal Epithelial Cell.

Major families of cell-adhesion molecules

(CAMs).

Page 8: Multiple Types of Epithelia. Structure of the Intestinal Epithelial Cell.

Adhesion molecules in junctions involved in cell-cell adhesion

Page 9: Multiple Types of Epithelia. Structure of the Intestinal Epithelial Cell.

Structure of the Intestinal Epithelial Cell

Page 10: Multiple Types of Epithelia. Structure of the Intestinal Epithelial Cell.

Desmosomes

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Desmosomes

Page 12: Multiple Types of Epithelia. Structure of the Intestinal Epithelial Cell.

Gap Junctions

Page 13: Multiple Types of Epithelia. Structure of the Intestinal Epithelial Cell.

Gap Junctions

Page 14: Multiple Types of Epithelia. Structure of the Intestinal Epithelial Cell.

Tight Junction in Thin Section

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Model of a Tight Junction Between Two Epithelial Cells

Page 16: Multiple Types of Epithelia. Structure of the Intestinal Epithelial Cell.

Freeze Fracture Image of a Tight Junctionin the Plasma Membrane of One of the Two

Adjacent Epithelial Cells

Page 17: Multiple Types of Epithelia. Structure of the Intestinal Epithelial Cell.

The structure of fibrous collagen

Page 18: Multiple Types of Epithelia. Structure of the Intestinal Epithelial Cell.

Type IV collagen - a key component of the basal lamina

Page 19: Multiple Types of Epithelia. Structure of the Intestinal Epithelial Cell.

Type IV collagen - a key component of the basal lamina

Page 20: Multiple Types of Epithelia. Structure of the Intestinal Epithelial Cell.

Model of the basal lamina

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The association of the plasma membrane of skeletal muscle with the basal lamina

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Organization of the basal lamina in different tissues

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Structure of laminin, a large heterotrimeric multiadhesive matrix protein found in all basal laminae

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Three-dimensional structure of the type III repeat of fibronectin that contains the RGD

integrin-binding sequence

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Structure of the glycosaminoglycan Heparan sulfate

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Structure of the glycosaminoglycan Hyaluron (Hyaluronic Acid)

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The cell-surface proteoglycan syndecan-4

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Modulation of activity of fibroblast growth factor

(FGF) by heparan sulfate proteoglycans 

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Structure of the FGF - FGR Receptor Complex

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