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RESEARCH PRODUCT

Odd haemoglobins in odd-toed ungulates: Impact of selected haemoglobin characteristics of the white rhinoceros (Ceratotherium simum) on the monitoring of the arterial oxygen saturation of haemoglobin.

Juliane SchmidtNadja HellmannJulia K. ReinersSabine B. R. Kästner

subject

PhysiologyOxygenMethemoglobinAnalytical Chemistry0403 veterinary scienceHemoglobins0302 clinical medicineHigh oxygenMedicine and Health SciencesOximetryMammalsAnalgesicsMultidisciplinarybiologymedicine.diagnostic_testCeratotherium simumApplied MathematicsSimulation and ModelingQChemical ReactionsREukaryotaDrugs04 agricultural and veterinary sciencesHydrogen-Ion ConcentrationBody FluidsAnalgesics OpioidChemistryBloodSpectrophotometryPhysical SciencesVertebratesMedicineAnatomyAlgorithmsResearch ArticleChemical ElementsChemical Dissociation040301 veterinary sciencesAnimal TypesScienceEquineschemistry.chemical_elementRhinocerosResearch and Analysis MethodsAbsorbance03 medical and health sciencesChemical AnalysismedicineAnimalsHumansPain ManagementGas AnalysisDomestic AnimalsHorsesPerissodactylaPharmacologyChromatographyOrganismsBiology and Life SciencesOxygenationbiology.organism_classificationOxygenOpioidsPulse oximetry030228 respiratory systemchemistryAfricaAmniotesBlood Gas AnalysisZoologyMathematics

description

Background Due to the current poaching crisis in Africa, increasing numbers of white rhinoceroses (Ceratotherium simum) require opioid immobilisation for medical interventions or management procedures. Alarmingly, the results of both blood gas analysis and pulse oximetry regularly indicate severe hypoxaemia. Yet, the recovery of the animals is uneventful. Thus, neither of the techniques seems to represent the real oxygenation level. We hypothesized that unusual haemoglobin characteristics of this species interfere with the techniques developed and calibrated for the use in human patients. Methods Haemoglobin was isolated from blood samples of four adult, white rhinoceroses. Oxygen dissociation curves at pH 7.2 and 7.4 (37°C) were determined based on the absorbance change of haemoglobin in the Soret-region (around 420 nm). Absorbance spectra of oxy- and deoxyhaemoglobin extending into the infrared region were measured. Results Oxygen dissociation curves of rhinoceros haemoglobin showed the typical high oxygen affinity (p50 of 2.75 ± 0.07 and 2.00 ± 0.04 kPa for pH 7.2 and 7.4, respectively) under near-physiological conditions with respect to pH, temperature and DPG. The infrared absorbance spectra of oxy- and deoxyhaemoglobin showed only marginal deviations from standard human spectra, possibly due to the presence of a few percent of methaemoglobin in vitro. Conclusions Our data enables the development of a rhinoceros-specific blood gas analysis algorithm, which allows for species-specific calculation of SaO2 levels in anaesthetized animals. The inconspicuous absorbance spectra do not contribute to the systematic underestimation of SpO2 by pulse-oximetry.

10.1371/journal.pone.0226851https://doaj.org/article/f4be8b7fa76d4357b8499be00199ce04