Abstract
Fibrin molecules polymerize to double-stranded fibrils by intermolecular end-to-middle domain pairing of complementary polymerization sites, accompanied by fibril branching to form a clot network. Mass/length measurements on scanning transmission electron microscopic images of fibrils comprising branch points showed two types of junctions. Tetramolecular junctions occur when two fibrils converge, creating a third branch with twice the mass/length of its constituents. Newly recognized trimolecular junctions have three fibril branches of equal mass/length, and occur when an extraneous fibrin molecule initiates branching in a propagating fibril by bridging across two unpaired complementary polymerization sites. When trimolecular junctions predominate, clots exhibit nearly perfect elasticity.
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CITATION STYLE
Mosesson, M., DiOrio, J., Siebenlist, K., Wall, J., & Hainfeld, J. (1993). Evidence for a second type of fibril branch point in fibrin polymer networks, the trimolecular junction. Blood, 82(5), 1517–1521. https://doi.org/10.1182/blood.v82.5.1517.bloodjournal8251517
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