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Fish Shellfish Immunol ; 117: 24-35, 2021 Oct.
Article in English | MEDLINE | ID: mdl-34274420

ABSTRACT

In molluscs, migration of hemocytes and epithelial cells is believed to play central roles in wound healing. Here, we assessed cellular and molecular mechanisms of wound healing in Pacific abalone, a marine gastropod. Light and electron microscopy in the wounds showed early accumulation of putative hemocytes, collagen deposition by fibroblasts, and further coverage of this tissue by migration of adjacent epithelial cells. Cell labelling technique allowed us to track hemocytes, which migrated to wound surface within 24 h. The migrated cells first expressed PCNA and SoxF weakly, and then the epithelial cells expressed abundant PCNA and SoxB1, SoxB2, and SoxC. These findings imply that abalone SoxF is involved in hemocyte migration or their differentiation into fibroblasts, and suggest that the migrated epithelia acquire stem cell-like property and undergo active proliferation. This study is the first to show direct evidence of hemocyte migration to wounds and expression of Sox genes in molluscan wound healing.


Subject(s)
Gastropoda/genetics , Gastropoda/immunology , Hemocytes/immunology , SOX Transcription Factors/genetics , Wound Healing/genetics , Animals , Cell Movement , Gene Expression , Proliferating Cell Nuclear Antigen/genetics
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