<p><i>Piper aduncum</i>, a medicinal plant, was evaluated for control of monogenean and effects on the welfare of <i>Colossoma macropomum</i> using a crude ethanolic extract and its major constituent dillapiole. Treatments of 40 and 60&#xa0;mg·L<sup>−1</sup> of the ethanolic extract were tested in in vitro and <i>in vivo</i> experiments with water and methanol controls. Dillapiole was evaluated at 28 and 33&#xa0;mg·L<sup>−1</sup> with water and Tween-20 controls and a basal acclimated group. Parasitological, immunophysiological, biochemical, and histological analyses were performed on 50&#xa0;g fish. Both extract concentrations significantly reduced parasite load versus controls, yielding antiparasitic efficacies of 85.89% and 99.21% for 40 and 60&#xa0;mg·L<sup>−1</sup>, respectively. Control fish showed increases in hematocrit and hemoglobin, whereas fish treated with 60&#xa0;mg·L<sup>−1</sup> extract exhibited hyperglycemia, elevated cortisol, and reductions in total protein and Ca<sup>2</sup>⁺ and K⁺ ion levels, indicating physiological stress at higher extract concentrations. In water controls, thrombocyte and leukocyte elevations correlated with heavy parasitism; these responses were attenuated in extract-treated groups. Dillapiole at 28 and 33&#xa0;mg·L<sup>−1</sup> produced significant parasite reductions with efficacies of 52.44% and 80.24%, respectively. Dillapiole treatments induced increased thrombocytes, leukocytes, and differential counts, suggesting stimulation of immune responses that favored recovery after therapeutic baths. Histological assessment showed milder tissue alterations in dillapiole-treated fish compared to controls. Results indicate that both <i>P. aduncum</i> extract and dillapiole effectively control monogenoid infestations in <i>C. macropomum</i>, combining antiparasitic action with moderate, concentration-dependent physiological impacts. These findings support further development of <i>P. aduncum</i>-based therapies for sustainable monogenoid management in tropical aquaculture globally.</p>

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Efficacy of dillapiole and crude extract of Piper aduncum against monogeneans in Colossoma macropomum

  • Marieta Nascimento de Queiroz,
  • Paulo Adelino de Medeiros,
  • Zelina Estevam dos Santos Torres,
  • Adrian Martin Pohlit,
  • Valdelira Lia Araújo Fernandes,
  • Gustavo da Silva Claudiano,
  • Eduardo Akifumi Ono,
  • Elizabeth Gusmão Affonso

摘要

Piper aduncum, a medicinal plant, was evaluated for control of monogenean and effects on the welfare of Colossoma macropomum using a crude ethanolic extract and its major constituent dillapiole. Treatments of 40 and 60 mg·L−1 of the ethanolic extract were tested in in vitro and in vivo experiments with water and methanol controls. Dillapiole was evaluated at 28 and 33 mg·L−1 with water and Tween-20 controls and a basal acclimated group. Parasitological, immunophysiological, biochemical, and histological analyses were performed on 50 g fish. Both extract concentrations significantly reduced parasite load versus controls, yielding antiparasitic efficacies of 85.89% and 99.21% for 40 and 60 mg·L−1, respectively. Control fish showed increases in hematocrit and hemoglobin, whereas fish treated with 60 mg·L−1 extract exhibited hyperglycemia, elevated cortisol, and reductions in total protein and Ca2⁺ and K⁺ ion levels, indicating physiological stress at higher extract concentrations. In water controls, thrombocyte and leukocyte elevations correlated with heavy parasitism; these responses were attenuated in extract-treated groups. Dillapiole at 28 and 33 mg·L−1 produced significant parasite reductions with efficacies of 52.44% and 80.24%, respectively. Dillapiole treatments induced increased thrombocytes, leukocytes, and differential counts, suggesting stimulation of immune responses that favored recovery after therapeutic baths. Histological assessment showed milder tissue alterations in dillapiole-treated fish compared to controls. Results indicate that both P. aduncum extract and dillapiole effectively control monogenoid infestations in C. macropomum, combining antiparasitic action with moderate, concentration-dependent physiological impacts. These findings support further development of P. aduncum-based therapies for sustainable monogenoid management in tropical aquaculture globally.