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Published on: May 31, 2019
Diagnosing Microcystin Intoxication of Canines: Clinicopathological Indications, Pathological Characteristics, and
Amanda J Foss1, Mark T Aubel2, Brandi Gallagher3
1GreenWater Laboratories, Palatka, FL 32177, USA. amandafoss@greenwaterlab.com.
Abstract:
In the summer of 2018, six dogs exposed to a harmful algal bloom (HAB) of Microcystis in Martin County Florida (USA) developed clinicopathological signs of microcystin (MC) intoxication (i.e., acute vomiting, diarrhea, severe thrombocytopenia, elevated alanine aminotransferase, hemorrhage). Successful supportive veterinary care was provided and led to survival of all but one patient. Confirmation of MC intoxication was made through interpretation of clinicopathological abnormalities, pathological examination of tissues, microscopy (vomitus), and analytical MC testing of antemortem/postmortem samples (vomitus, blood, urine, bile, liver, kidney, hair). Gross and microscopic examination of the deceased patient confirmed massive hepatic necrosis, mild multifocal renal tubular necrosis, and hemorrhage within multiple organ systems. Microscopy of a vomitus sample confirmed the presence of Microcystis. Three analytical MC testing approaches were used, including the MMPB (2-methyl-3-methoxy-4-phenylbutyric acid) technique, targeted congener analysis (e.g., liquid chromatography tandem-mass spectrometry of MC-LR), and enzyme-linked immunosorbent assay (ELISA). Total Adda MCs (as MMPB) were confirmed in the liver, bile, kidney, urine, and blood of the deceased dog. Urinalysis (MMPB) of one surviving dog showed a high level of MCs (32,000 ng mL-1) 1-day post exposure, with MCs detectable >2 months post exposure. Furthermore, hair from a surviving dog was positive for MMPB, illustrating another testable route of MC elimination in canines. The described cases represent the first use of urine as an antemortem, non-invasive specimen to diagnose microcystin toxicosis. Antemortem diagnostic testing to confirm MC intoxication cases, whether acute or chronic, is crucial for providing optimal supportive care and mitigating MC exposure.
Insights
Six dogs survived harmful algal bloom (HAB) exposure and microcystin (MC) intoxication after receiving supportive care. Urine and hair analysis proved effective for diagnosing MC toxicosis in surviving dogs.
Area of Science:
- Veterinary Toxicology
- Environmental Health
- Analytical Chemistry
Background:
- Harmful algal blooms (HABs) caused by cyanobacteria, such as Microcystis, produce potent toxins like microcystins (MCs).
- MC intoxication in dogs can lead to severe clinicopathological signs and potentially fatal outcomes.
- Accurate and timely diagnosis is essential for effective veterinary intervention and treatment.
Purpose of the Study:
- To document clinicopathological findings in dogs exposed to a Microcystis HAB.
- To evaluate various analytical methods for diagnosing microcystin toxicosis in canine patients.
- To identify novel antemortem diagnostic specimens for MC intoxication.
Main Methods:
- Clinicopathological assessment of six dogs exposed to a Microcystis bloom.
- Histopathological examination of tissues from a deceased canine patient.
- Microscopic analysis of vomitus samples for Microcystis presence.
- Analytical testing of antemortem and postmortem samples (blood, urine, bile, liver, kidney, hair) using MMPB, LC-MS/MS, and ELISA.
Main Results:
- Dogs exhibited vomiting, diarrhea, thrombocytopenia, elevated liver enzymes, and hemorrhage.
- Massive hepatic necrosis and multifocal renal tubular necrosis were observed in the deceased dog.
- Microcystis organisms were identified in vomitus.
- Analytical testing confirmed microcystins in multiple tissues and fluids, including urine and hair.
- Urine analysis detected MCs 1 day post-exposure and for over 2 months in a surviving dog.
Conclusions:
- Supportive care led to the survival of five out of six dogs with MC intoxication.
- Urine analysis represents a novel, non-invasive antemortem diagnostic tool for microcystin toxicosis in dogs.
- Hair analysis provides another avenue for detecting MC elimination in canines.
- Antemortem diagnostic confirmation is critical for managing MC exposure and improving patient outcomes.
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