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    Quantitative analysis of collagen and elastic fibers in the transversalis fascia in direct and indirect inguinal hernia

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    Date
    2002
    Author
    Rodrigues, Junior AJ
    Rodrigues, CJ
    Type
    Article
    Language
    en
    Metadata
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    Abstract
    PURPOSE: Our previous studies demonstrated structural and quantitative age-related changes of the elastic fibers in transversalis fascia, which may play a role in inguinal hernia formation. To verify whether there were differences in the extracellular matrix between direct and indirect inguinal hernia, we studied the amount of collagen and elastic fibers in the transversalis fascia of 36 male patients with indirect inguinal hernia and 21 with direct inguinal hernia. MATERIAL AND METHODS: Transversalis fascia fragments were obtained during surgical intervention and underwent histological quantitative analysis of collagen by colorimetry and analysis of elastic fibers by histomorphometry. RESULTS: We demonstrated significantly lower amounts of collagen and higher amounts of elastic fibers in transversalis fascia from patients with direct inguinal hernia compared to indirect inguinal hernia patients. The transversalis fascia from direct inguinal hernia patients showed structural changes of the mature and elaunin elastic fibers, which are responsible for elasticity, and lower density of oxytalan elastic fibers, which are responsible for resistance. These changes promoted loss of resiliency of the transversalis fascia. CONCLUSION: These results improve our understanding of the participation of the extracellular matrix in the genesis of direct inguinal hernia, suggesting a relationship with genetic defects of the elastic fiber and collagen synthesis.
    URI
    http://www.scielo.br/scielo.php?pid=S0041-87812002000600004&script=sci_arttext
    http://erepository.uonbi.ac.ke:8080/xmlui/handle/123456789/37085
    Citation
    Rev. Hosp. Clin. vol.57 no.6 São Paulo 2002
    Publisher
    University of Nairobi.
     
    Department of Mathematics, University of Nairobi
     
    Collections
    • Faculty of Science & Technology (FST) [4284]

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