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Artículo

Settleable atmospheric particulate matter affects cardiorespiratory responses to hypoxia in Nile tilapia (Oreochromis niloticus)

De Angelis, C. F.; Soares, M. P.; Cardoso, I. L.; Filogonio, R.; Taylor, E. W.; McKenzie, D. J.; Souza, I. C.; Wunderlin, Daniel AlbertoIcon ; Monferran, Magdalena VictoriaIcon ; Fernandes, M. N.; Leite, C. A. C.
Fecha de publicación: 07/2022
Editorial: Elsevier Science Inc.
Revista: Comparative Biochemistry And Physiology. Toxicology & Pharmacology
ISSN: 1532-0456
Idioma: Inglés
Tipo de recurso: Artículo publicado
Clasificación temática:
Otras Ciencias de la Tierra y relacionadas con el Medio Ambiente

Resumen

Atmospheric particulate matter (APM) emitted by iron ore processing industries has a complex composition, including diverse metallic particles and nanoparticles. Settleable APM (SePM) causes air to water cross-contamination and has recently been demonstrated to have harmful sublethal impacts on fish, eliciting stress responses, affecting the immune system, and reducing blood oxygen-carrying capacity. These findings imply potential consequences for fish aerobic performance and energy allocation, particularly in their ability to tolerate respiratory challenges such as aquatic hypoxia. To assess that potential limitation, we analyzed metabolic, cardiorespiratory, and morphological alterations after exposing tilapia, Oreochromis niloticus, to an environmentally relevant concentration of SePM (96 h) and progressive hypoxia. The contamination initiated detectable gill damage, reducing respiratory efficiency, increasing ventilatory effort, and compromising fish capacity to deal with hypoxia. Even in normoxia, the resting respiratory frequency was elevated and limited respiratory adjustments during hypoxia. SePM increased O2crit from 26 to 34% of O2 (1.84 to 2.76 mg O2·L−1). Such ventilatory inefficacy implies higher ventilatory cost with relevant alterations in energy allocation. Progression in gill damage might be problematic and cause: infection, blood loss, ion imbalance, and limited cardiorespiratory performance. The contamination did not cause immediate lethality but may threaten fish populations due to limitations in physiological performance. This was the first investigation to evaluate the physiological responses of fish to hypoxia after SePM contamination. We suggest that the present level of environmental SePM deserves attention. The present results demonstrate the need for comprehensive studies on SePM effects in aquatic fauna.
Palabras clave: ATMOSPHERIC PARTICULATE MATTER , ENVIRONMENTAL RISK , INDUSTRY , IRON , METAL/METALLOID , NANOPARTICLE , PHYSIOLOGICAL RESPONSES
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info:eu-repo/semantics/restrictedAccess Excepto donde se diga explícitamente, este item se publica bajo la siguiente descripción: Creative Commons Attribution-NonCommercial-ShareAlike 2.5 Unported (CC BY-NC-SA 2.5)
Identificadores
URI: http://hdl.handle.net/11336/209194
URL: https://linkinghub.elsevier.com/retrieve/pii/S1532045622000886
DOI: http://dx.doi.org/10.1016/j.cbpc.2022.109353
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Articulos(CIBICI)
Articulos de CENTRO DE INV.EN BIOQUI.CLINICA E INMUNOLOGIA
Citación
De Angelis, C. F.; Soares, M. P.; Cardoso, I. L.; Filogonio, R.; Taylor, E. W.; et al.; Settleable atmospheric particulate matter affects cardiorespiratory responses to hypoxia in Nile tilapia (Oreochromis niloticus); Elsevier Science Inc.; Comparative Biochemistry And Physiology. Toxicology & Pharmacology; 257; 7-2022; 1-9
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