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Evaluation of an automated system for hemoglobin measurement in animals.
1992
Callan M.B. | Giger U. | Oakley D.A. | Scotti M.V. | Shofer F.S.
In veterinary medicine, PCV determined by centrifugation of blood in a microhematocrit tube is the most common clinical test used to initially assess and monitor anemic and polycythemic animals. In contrast, blood hemoglobin (Hb) concentration, rather than PCV, is generally determined in human patients. One automated system photometrically measures blood Hb concentration after conversion of Hb to azide methemoglobin without dilution and was found to be a simple and accurate instrument for use in human medicine. We evaluated the system for its accuracy in measuring blood Hb concentration in animals by comparing it with standard techniques and for its suitability in veterinary practice. Blood samples, anticoagulated with potassium EDTA, from 78 healthy animals (33 dogs, 17 cats, 13 horses, and 15 cows) and 58 dogs and 4 cats with various blood abnormalities (10 anemia, 11 polycythemia, 21 lipemia, 16 leukocytosis, and 6 icterus) were analyzed. In all species, blood Hb concentration of healthy animals determined by the system was comparable to that measured by standard cyanmethemoglobin methods (ie, an automated counter; rI = 0.987 to 0.998 and a hemoglobin kit, rI = 0.946 to 0.993). The aforementioned system also yielded similar values to those obtained by use of standard methods in anemic, polycythemic, and icteric dogs and cats. Moreover, the system reads the absorbance at 2 wavelengths to correct for turbidity, and therefore, accurately measured Hb concentration in blood samples with severe lipemia (triglycerides concentration > 500 mg/dl) and marked leukocytosis (> 50,000 WBC/microl), whereas other standard Hb techniques are known to give falsely high results. We conclude that the automated system compares favorably to standard methods, and is a simple and accurate instrument to quickly measure Hb concentration in animals.
Afficher plus [+] Moins [-]Studies on the types of hemoglobin and albumin in German shepherds.
1994
Park K.M. | Kang J.W. | Han B.K.
Effects of garlic on the cadmium accumulation in the tissue on the hematological picture in dogs.
1994
Lee B.J. | Sung E.J. | Lee M.S. | Jang I.H. | Lee H.B.
Regulation of circulating Mg2+ in the rat by metabolic inhibition
1999
Kim, J.S. | Kim, S.J. | Kim, J.S. (Chonbuk National University, Chonju (Korea Republic). College of Veterinary Medicine)
Magnesium (Mg2+) plays an important role in the regulation of a range of intracellular processes. Regulation of extracellular Mg2+ contents was studied in the anesthetized Sprague-Dwley (SD) rats. Animals were injected intraperitoneally with sodium nitrite (NaNO2), and circulating Mg2+([Mg2+]c) was observed in animals injected with NaNO2 at a dose of 10mg/kg or higher. Pretreatment with methylene blue preventd the NaNO2-induced increse in [Mg2+]c.[Mg2+]c displayed an inverse linear correlation with hemoglobin and exponential correlation during NaNO2 injection. Injection of KCN or rotenone also induced an increase in [Mg2+]c. An increase in [Mg2+]c was observed when respiration rate was reduced from 100/min (140ml/min) to 10/min (14ml/min) during 30 min. These results indicate that changes in [Mg2_]c inversely reflect alteration of ATP in a model of metabolic inhibition
Afficher plus [+] Moins [-]Expression of alpha-hemoglobin stabilizing protein and cellular prion protein in a subclone of murine erythroleukemia cell line MEL
2008
Otsuka, Y.(Hokkaido Univ., Sapporo (Japan)) | Ito, D. | Katsuoka, K. | Arashiki, N. | Komatsu, T. | Inaba, M.
alpha-Hemoglobin stabilizing protein (AHSP) functions as the erythroid-specific molecular chaperon for alpha-globin. AHSP gene expression has been reported to be downregulated in hematopoietic tissues of animals suffering from prion diseases though the mechanism remains to be clarified. Herein, we demonstrate that MELhipod8 cells, a subclone of murine erythroleukemia (MEL) cells, have prion protein (PrPsup(C)) on the cell surface and have highly inducible expression of the AHSP and alpha- and beta-globin genes, resembling the expression pattern of the PrP and AHSP genes in bipotential erythroid- and megakaryocyte-lineage cells followed by erythroid differentiation in normal erythropoiesis. Moreover, MELhipod8 cells exhibit greater effective erythroid differentiation with a population of hemoglobinized normoblast-like cells than that observed for the parental MEL cells. These findings suggest that MELhipod8 cells could provide a mechanism for downregulation of the AHSP gene in prion diseases.
Afficher plus [+] Moins [-]Purification and characterization of hemagglutinin of Clostridium botulinum type C strain Stockholm
1986
Suzuki, N. (Hokkaido Univ., Sapporo (Japan). Faculty of Veterinary Medicine) | Syuto, B. | Kubo, S.
Studies on hemoglobin type in Cheju native horse
1991
Hyun, H.S. | Kim, W.K. | Han, B.K. (Chonnam National Univ., Kwangju (Korea Republic). Coll. of Veterinary Medicine)
Effect of age, season and sex on the blood properties in the Cheju horse
1990
Han, B.K. | Hyun, H.S. (Chonnam National University, Kwangju (Korea Republic). College of Veterinary Medicine) | Chang, D.G. (Cheju Junior College, Cheju (Korea Republic))
Nickel toxicity and its interaction with zinc, copper and lead in growing chicks
1985
Park, J.H. (Korea Advanced Inst. of Science and Technology, Seoul (Korea R.)) | Kim, C.S. (Tankook Univ., Seoul (Korea R.))
Nickel toxicity and interactions of nickel with zinc, copper and lead were studied in growing chicks fed supplement diet. Feed intake and growth rate of the chick were reduced by 250 mg nickel as a sulfate salt per kg of feed. The toxicity of nickel was decreased by zinc or copper supplementation, but not lead. High nickel feed increased nickel level in kidney and decreased zinc levels in tibia and plasma. However, low zinc levels in tibia and in plasma were reversed by zinc supplementation. Hemoglobin, packed cell volume, and aortic elastin content were increased in chicks fed nickel
Afficher plus [+] Moins [-]Studies on catalase type in Cheju native horse
1991
Hyun, H.S. | Kim, W.K. (Chonnam National Univ., Kwangju (Korea Republic). Coll. of Veterinary Medicine) | Chang, D.G. (Cheju Junior Coll., Cheju (Korea Republic))