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1.
Journal of Veterinary Science ; : 72-78, 2019.
Article in English | WPRIM | ID: wpr-758881

ABSTRACT

White blood cells (WBCs) and storage period are the main factors of transfusion reactions. In the present study, cytokine/chemokine concentrations after leukoreduction (LR) and irradiation (IR) in stored canine whole blood were measured. Red blood cell storage lesion caused by IR and LR were also compared. Blood samples from 10 healthy Beagles were divided into four groups (no treatment, LR-, IR-, and LR + IR-treated). Leukocytes were removed by filtration in the LR group and gamma radiation (25 Gy) was applied in the IR group. Immunologic factors (WBCs, interleukin-6 [IL-6], C-X-C motif chemokine ligand 8 [CXCL-8], and tumor necrosis factor-alpha) and storage lesion factors (blood pH, potassium, and hemolysis) were evaluated on storage days 0, 7, 14, 21, and 28. Compared to the treated groups, IL-6 and CXCL-8 concentrations during storage were significantly higher in the control (no treatment) group. LR did not show changes in cytokine/chemokine concentrations, and storage lesion presence was relatively mild. IR significantly increased CXCL-8 after 14 days of storage, but IR of leukoreduced blood did not increase CXCL-8 during 28 days of storage. Storage lesions such as hemolysis, increased potassium, and low pH were observed 7 days after IR and storage of blood, regardless of LR. IR of leukoreduced blood is beneficial to avoid immune reactions; however, storage lesions should be considered upon storage.


Subject(s)
Blood Preservation , Down-Regulation , Erythrocytes , Filtration , Gamma Rays , Hemolysis , Hydrogen-Ion Concentration , Immunologic Factors , Interleukin-6 , Leukocyte Reduction Procedures , Leukocytes , Necrosis , Potassium , Transfusion Reaction
2.
Immune Network ; : 269-274, 2017.
Article in English | WPRIM | ID: wpr-22198

ABSTRACT

Acute lymphocytic leukemia (ALL) is uncommon lymphoid malignancy in dogs, and its diagnosis is challenging. A 14-year-old spayed female mixed breed dog was transferred to a veterinary medical teaching hospital for an immediate blood transfusion. The dog showed lethargy, pale mucous membranes, and a weak femoral pulse. Complete blood count revealed non-regenerative anemia and severe leukopenia with thrombocytopenia. ALL was tentatively diagnosed based on the predominance of immature lymphoblasts on blood film examination. For confirmation of lymphoid malignancy, PCR for antigen receptor rearrangement (PARR) on a peripheral blood sample and flow cytometry analysis were performed after blood transfusion. Flow cytometry analysis revealed that lymphocyte subsets were of normal composition, but PARR detected a T-cell malignancy. The dog was diagnosed with ALL and survived 1 wk after diagnosis. In conclusion, after blood transfusion, flow cytometry was not a reliable diagnostic method for an ALL dog, whereas PARR could detect lymphoid malignancy. Our results suggest that PARR should be the first-line diagnostic tool to detect canine lymphoid malignancy after a blood transfusion.


Subject(s)
Adolescent , Animals , Dogs , Female , Humans , Anemia , Blood Cell Count , Blood Transfusion , Diagnosis , Flow Cytometry , Hospitals, Teaching , Lethargy , Leukopenia , Lymphocyte Subsets , Methods , Mucous Membrane , Polymerase Chain Reaction , Precursor Cell Lymphoblastic Leukemia-Lymphoma , Receptors, Antigen , T-Lymphocytes , Thrombocytopenia
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