As erythrocytes are continuously exposed to plenty of metabolites and toxicants, the aim of the present work is to show whether erythrocytes from different sources may exhibit different susceptibility to hemolysis induced by two classes of xenobiotics, Cnidaria venoms, acting via pore forming mechanism on cell membrane, and Cd2+, inducing cell damage mainly via lipid peroxidation. To this end, the hemolytic power of crude venom from stinging cells of the anthozoan Aiptasia mutabilis and from the scyphozoan Pelagia noctiluca has been tested, along with Cd2+ (5 to 20 mM), on erythrocytes (0.05% v/v) obtained from either rabbit, or dog, or chicken, or human source. Our results show a more significant susceptibility of rabbit erythrocytes to hemolysis induced by both crude venom and Cd2+ than erythrocytes from other sources. This difference seems to rely neither on the different specimens used to extract crude venom, nor on the different mechanism of toxicants. In this light, the present study may contribute: i) to confirm hemolytic test as a suitable biological assay to verify erythrocytes resistance to toxicants; ii) to show variability in hemolytic response to xenobiotics; iii) to propose rabbit erythrocytes as more sensitive to the lytic action of xenobiotics, adding more knowledge about clinical practice and drug development in these animals.

Susceptibility of erythrocytes from different sources to xenobiotics-induced lysis

Rosalia Crupi;Rossana Morabito;Alessia Remigante;Enrico Gugliandolo;Salvatore Cuzzocrea;
2019-01-01

Abstract

As erythrocytes are continuously exposed to plenty of metabolites and toxicants, the aim of the present work is to show whether erythrocytes from different sources may exhibit different susceptibility to hemolysis induced by two classes of xenobiotics, Cnidaria venoms, acting via pore forming mechanism on cell membrane, and Cd2+, inducing cell damage mainly via lipid peroxidation. To this end, the hemolytic power of crude venom from stinging cells of the anthozoan Aiptasia mutabilis and from the scyphozoan Pelagia noctiluca has been tested, along with Cd2+ (5 to 20 mM), on erythrocytes (0.05% v/v) obtained from either rabbit, or dog, or chicken, or human source. Our results show a more significant susceptibility of rabbit erythrocytes to hemolysis induced by both crude venom and Cd2+ than erythrocytes from other sources. This difference seems to rely neither on the different specimens used to extract crude venom, nor on the different mechanism of toxicants. In this light, the present study may contribute: i) to confirm hemolytic test as a suitable biological assay to verify erythrocytes resistance to toxicants; ii) to show variability in hemolytic response to xenobiotics; iii) to propose rabbit erythrocytes as more sensitive to the lytic action of xenobiotics, adding more knowledge about clinical practice and drug development in these animals.
2019
Inglese
no
ELETTRONICO
Vol.33
1_supplement
415
415
1
Experimental Biology 2019
Orlando,Florida(USA)
6-9 Apri l2019
no
Internazionale
Nessuno
xenobiotics,Cnidaria venoms,erythrocytes, lytic action
no
info:eu-repo/semantics/article
7
14.a Contributo in Rivista::14.a.6 Abstract in rivista
266
none
Crupi, Rosalia; Morabito, Rossana; Remigante, Alessia Grazia Dominga; Gugliandolo, Enrico; Britti, Domenico; Cuzzocrea, Salvatore; Angela Marino, And...espandi
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11570/3140388
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