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RESEARCH PRODUCT

Humoral responses during wound healing in Holothuria tubulosa (Gmelin, 1788)

Manuela MauroVinicius QueirozMárcio R. CustódioDaniela CampobelloMarco ChiaramonteMirella VazzanaVincenzo Arizza

subject

PhysiologySettore BIO/05 - ZoologiaBiochemistryEsteraseCytotoxic activity Echinoderm Enzyme activity Regeneration mechanism Immunity sea cucumber03 medical and health sciencesSea cucumberAnimalsHolothuriaCytotoxic T cellSettore BIO/06 - Anatomia Comparata E CitologiaMolecular Biology030304 developmental biologyWound Healing0303 health sciencesSheepbiologyBody WeightHolothuria tubulosa04 agricultural and veterinary sciencesbiology.organism_classificationEnzyme assayFISIOLOGIABiochemistry040102 fisheriesbiology.protein0401 agriculture forestry and fisheriesAlkaline phosphataseRabbitssense organsWound healingPeroxidase

description

Abstract Wounds in living organisms trigger tissue-repair mechanisms. The sea cucumber (Holoturia tubulosa) is an excellent model species for achieving a better understanding of the humoral and cellular aspects involved in such healing processes. Consequently, this study assesses data on its morphometric, physiological and humoral responses 1, 2, 6, 24 and 48h after wound induction. In particular, morphometric data on the weight, width, length and coelomic-fluid volume of the species were estimated at different times during our experiments. In addition, the humoral aspects related to the enzymatic activity of esterase, alkaline phosphatase and peroxidase, as well as the cytotoxic activity of cell lysates (CL) and cell-free coelomic fluids (CfCf) are evaluated for the first time. Our results reveal a significant decrease in body length and weight, along with time-dependent, significant changes in the esterase, alkaline phosphatase, peroxidase and cytotoxic activity in both the CL and CfCf. The data obtained lead to the pioneering finding that there is an important time-dependent involvement of morphometric (changes in weight and length) and humoral (enzymatic and cytotoxic) responses in wound healing.

https://doi.org/10.1016/j.cbpb.2020.110550