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1.
Curr Top Med Chem ; 19(22): 2049-2057, 2019.
Article in English | MEDLINE | ID: mdl-31364515

ABSTRACT

BACKGROUND: Scorpion venom causes renal injury and affects vascular ion-channels function. Centruroides margaritatus scorpion is found in Colombia and is frequently the cause of envenomation accidents; however, its renal impact has never been investigated. OBJECTIVE: To evaluate the effects of C. margaritatus venom (CmV) on renal parameters using isolated rat kidney and renal cell culture models. METHODS: Wistar rats (n = 5, weighing 240-300 g) were first perfused with Krebs-Henseleit solution containing 6 g 100 mL-1 bovine serum albumin. After 30 minutes, the kidneys were perfused with CmV to a final concentration of 10 µgmL-1; evaluation was performed by measuring Perfusion Pressure (PP), Renal Vascular Resistance (RVR), Urinary Flow (UF), Glomerular Filtration Rate (GFR), and percentage of electrolyte tubular transport. Moreover, kidney histological analyses and cell cytotoxicity in renal tubule epithelial cells (MDCK) and proximal tubular cells (LLC-MK2) were assessed. RESULTS: CmV increased PP and RVR 60 min after perfusion. On the other hand, UF, GFR, and the percentages of sodium, potassium and chloride tubular transport decreased after experimental envenomation. UF dropped after 120 min, while GFR and percentage of electrolyte tubular transport diminished after 60, 90 and 120 min. CmV was not toxic to MDCK cell line but reduced the viability of LLC-MK2 cells at concentrations ranging from 6.25 to 200 µgmL-1. Histological analyses disclosed hydropic degeneration, edema, and protein deposits. Flow cytometry disclosed that cell death occurred predominantly by necrosis. CONCLUSION: Our results suggest that C. margaritatus venom can trigger renal impairment, mainly in the proximal kidney tubule.


Subject(s)
Kidney/drug effects , Scorpion Venoms/pharmacology , Animals , Apoptosis/drug effects , Cell Survival/drug effects , Cells, Cultured , Colombia , Dogs , Dose-Response Relationship, Drug , Kidney/pathology , Madin Darby Canine Kidney Cells/drug effects , Madin Darby Canine Kidney Cells/pathology , Male , Rats , Rats, Wistar , Scorpions , Structure-Activity Relationship
2.
Toxicon ; 58(6-7): 502-8, 2011 Nov.
Article in English | MEDLINE | ID: mdl-21878348

ABSTRACT

Natural intoxication of livestock by ingestion of Ipomoea asarifolia leaves has been reported to occur widely in Brazil. Previous studies carried out by our research group provided strong evidence that a lectin could be involved with the toxic properties of I. asarifolia. To reinforce this hypothesis, a lectin-enriched fraction (LEF) was isolated from I. asarifolia leaves and its toxic effects were assessed. Leaves of I. asarifolia were excised from plants growing widely in the field, mechanically wounded and maintained in a chamber at 25 ± 3 °C for 72h in the dark, under near 100% relative humidity. The leaf proteins were extracted, ammonium sulfate precipitated, chromatographed on DEAE-cellulose and Phenyl-Sepharose to produce LEF that under SDS-PAGE showed a molecular mass of 44.0 kDa and after N-terminal amino acid analysis a primary sequence composed of AGYTPVLDIGAEVLAAGEPY. The in vivo toxicity of LEF assessed by intraorbital injection in mice showed induced severe uncoordinated movements without death. LEF reduced the muscular contraction in a dose depend way and at 29.8 µg/mL (CE(50)) it produces 50% inhibition of contraction, suggesting that LEF blunts autonomic neurotransmission. Isolated rat kidneys were perfused with LEF and no effects on the perfusion pressure or renal vascular resistance were observed, but urinary flow and glomerular filtration rate increased. Moreover, the percentage of tubular transport of Na(+), K(+) and Cl(-) decreased. Histological examination of the kidneys perfused with LEF exhibited little alterations. These toxic effects observed above were concomitant with the increase of LEF hemagglutination activity, which strongly suggest that one of the toxic principles of I. asarifolia is a lectin present in its leaves.


Subject(s)
Ipomoea/toxicity , Plant Lectins/toxicity , Amino Acid Sequence , Animals , Glomerular Filtration Rate/drug effects , Hemagglutination/drug effects , Ipomoea/chemistry , Kidney/drug effects , Kidney/pathology , Male , Mice , Molecular Sequence Data , Plant Extracts/toxicity , Plant Leaves/chemistry , Plant Leaves/toxicity , Plant Lectins/chemistry , Plant Lectins/isolation & purification , Rats , Rats, Wistar
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