J Med Life Sci > Volume 8(1); 2011 > Article
Journal of Medicine and Life Science 2011;8(1):46-49.
DOI: https://doi.org/10.22730/jmls.2011.8.1.46    Published online December 30, 2011.
말(馬) 말초혈액으로부터의 수지상세포 분화 및 배양
정일구, 고은주, 김미형, 임윤규, 주홍구
제주대학교 수의과학대학 수의약리학실험실
Differentiation and culture of dendritic cells from equine peripheral blood mononuclear cells
Il-Gu Jeung, Eun-Ju Ko, Mi-Hyoung Kim, Yoon-Kyu Lim, Hong-Gu Joo
College of Veterinary Medicine, Jeju National University, Jeju, Korea
Correspondence:  Hong-Gu Joo, Email: jooh@jejunu.ac.kr
Abstract
Dendritic cells(DCs) derived from myeloid cells are the most potent antigen-presenting cells. In the mouse, it is possible to differentiate a number of DCs from bone marrow. However, the horse has trouble in sacrificing with economic problems. To our knowledge, the culture of equine DCs has not been performed yet in our country. Furthermore, the cytokine set for culture of equine DCs has not been established in this area. Thus, we tried some sets of cytokines and milogen for this purpose. Mononuclear cells were isolated from blood by Ficoll histopaque, versene solution and an adhesion process and then cultured for 4 days. Specific morphology and viability of DC were determined by visual observation using an optical microscope. Human Granulocyte Macrophage-Colony Stimulating Factor(GM-CSF) and equine interleukin(lL)-4 were certainly effective for culturing equine DCs. Antigen-stimulatory ability of equine DCs was confirmed by Mixed Leukocyte Reaction using 3H-thymidine incorporation assay. To verify antigen-uptake capability of DC, we used fluorescein isothiocyanate-dextran and analyzed by using FACSCalibur flow cytometer(BD Biosciences). It was evident from our results that human GM-CSF could be used as an alternative cytokine for equine GM-CSF due to its genetic homogeneity. Taken together, this study demonstrated that human GM-CSF and equine IL-4 were effective to diflerentiate and proliferate DCs from peripheral blood mononuclear cells and enhanced its viability. The information from this study may provide the study of horse immunity with new insights and basic technology.
Key Words: equine dendritic cells; differentiation; antigen stimulating ability; antigen uptake


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