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Effects of TFAR19 gene on the growth and biorheological properties of mouse erythroleukemia cell line MEL 被引量:2

Effects of TFAR19 gene on the growth and biorheological properties of mouse erythroleukemia cell line MEL
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摘要 Using the method of gene transfection with liposome, we obtained the mouse erythro-leukemia cell line MEL-TF19, which stably carries TFAR19, a novel apoptosis-related gene. The expression of TFAR19 was detected by Western blot. Growth curve and flow cytometry analysis showed that after being transfected with TFAR19 gene, the growth of MEL-TF19 is suppressed and its apoptosis is accelerated because of the serum deprivation. Our biorheological study indi-cated that in the apoptotic process, compared with MEL cells, MEL-TF19 cells exhibit larger os-motic fragility, lower cell surface charge density, increased elastic modulus K1 which is inversely proportional to cells?maximal deformation ability, obviously diminished surface viscosity m, with elastic modulus K2 having no distinct changes. The above results provided some bases for recog-nizing the function of TFAR19 completely from the viewpoint of biorheology. Using the method of gene transfection with liposome, we obtained the mouse erythro-leukemia cell line MEL-TF19, which stably carries TFAR19, a novel apoptosis-related gene. The expression of TFAR19 was detected by Western blot. Growth curve and flow cytometry analysis showed that after being transfected with TFAR19 gene, the growth of MEL-TF19 is suppressed and its apoptosis is accelerated because of the serum deprivation. Our biorheological study indi-cated that in the apoptotic process, compared with MEL cells, MEL-TF19 cells exhibit larger os-motic fragility, lower cell surface charge density, increased elastic modulus K1 which is inversely proportional to cells?maximal deformation ability, obviously diminished surface viscosity m, with elastic modulus K2 having no distinct changes. The above results provided some bases for recog-nizing the function of TFAR19 completely from the viewpoint of biorheology.
出处 《Science China(Life Sciences)》 SCIE CAS 2003年第3期293-301,共9页 中国科学(生命科学英文版)
基金 supported by the Key Project of the National Natural Science Foundation of China(Grant No.39830110) the Doctoral Foundation(Grant No.20010001082).
关键词 TFAR19 apoptosis MEL micropipette biorheological character. TFAR19, apoptosis, MEL, micropipette, biorheological character.
作者简介 Correspondence should be addressed to Wen Zongyao (email: rheol@mail.bjmu.edu.cn)
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