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不同剂量胰岛素、胰高血糖素和甲状腺素处理对奶牛乳腺上皮细胞FcRn mRNA表达的影响 被引量:3

The Expression of FcRn mRNA in Mammary Gland Epithelial Cells of Holstein Cows Treated with Different Concentrations of Thyroxine,Insulin,and Glucagon in Vitro
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摘要 【目的】采用real-time PCR方法检测体外激素处理对奶牛乳腺上皮细胞FcRn(neonatal Fc receptor,FcRn)mRNA表达的影响。【方法】在乳腺上皮细胞培养液中添加不同浓度胰高血糖素(0.01、0.1和1μmol.L-1)、胰岛素(0.005、0.1和0.5μmol.L-1)、甲状腺素T4(0.01、0.1和1μmol.L-1),体外培养并收集细胞,提取细胞mRNA后,利用real-time PCR检测FcRn mRNA的相对丰度。【结果】在一定添加剂量范围内,随着添加剂量的增加,甲状腺素和胰高血糖素能够显著地促进FcRn mRNA表达量升高(P<0.05),胰岛素在添加量为0.005μmol.L-1和0.5μmol.L-1时FcRn mRNA的表达量低,但在0.1μmol.L-1添加时表达量显著升高(P<0.05)。【结论】添加外源胰岛素、胰高血糖素和甲状腺素能够影响FcRn mRNA的表达,为进一步研究乳腺内FcRn受体变化以及影响因素提供了依据。 【Objective】The mRNA expression of FcRn was studied in Holstein Cows mammary gland epithelial cells treated with hormone by real-time PCR.【Method】 FcRn mRNA expression of in vitro cultured mammary epithelial cells treated with different concentrations of thyroxine hormone(0.01,0.1,1 μmol?L-1),insulin(0.005,0.1,0.5 μmol?L-1) and glucagon(0.01,0.1,1 μmol?L-1),respectively,was determined.【Result】The results showed that the mRNA abundance of FcRn increased with the higher dose of thyroxine and glucagon significantly(P0.05) in a certain range.However,the mRNA expression of FcRn was significantly lower when treated with 0.005 μmol?L-1 and 0.5 μmol?L-1 insulin than 0.1μmol?L-1(P0.05).【Conclusion】Thyroxine,insulin and glucagon can obviously change the level of FcRn mRNA,which provide a basis for further research of the change and influence of FcRn.
出处 《中国农业科学》 CAS CSCD 北大核心 2011年第20期4279-4283,共5页 Scientia Agricultura Sinica
基金 国家自然科学基金项目(30871837)
关键词 荷斯坦奶牛 乳腺上皮细胞 激素 real-time PCR mRNA Holstein Cows mammary epithelial cells hormone real-time PCR mRNA
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参考文献25

  • 1Raghavan M, Bjorkman P J. Fc receptors and their interactions with immunoglobulins. Annual Review of Cell and Developmental Biology, 1996, 12: 181-220.
  • 2张春林,王加启,卜登攀,魏宏阳,杨永新,董晓丽,刘光磊,周凌云,赵国琦.新生儿Fc受体研究进展[J].生物技术通报,2009,25(9):13-17. 被引量:4
  • 3Jones E A, Waldmann T A. The mechanism of intestinal uptake and transcellular transport of IgG in the neonatal rat. Journal of Clinical Investigation, 1972, 51(11): 2916-2927.
  • 4Roopenian D C, Christianson G J, Sproule T J, Brown A C, Akilesh S, Jung N, Petkova S, Avanessian L, Choi E Y, Shaffer D J, Eden P A, Anderson C L. The MHC class I-like IgG receptor controls perinatal IgG transport, IgG homeostasis, and fate of IgG-Fc-coupled drugs. The Journal of Immunology, 2003, 170: 3528-3533.
  • 5Cianga P, Medesan C, Richardson J A, Ghetie V, Ward E S. Identification and function of neonatal Fc receptor in mammary gland of lactating mice. European Journal of Immunology, 1999, 29: 2515-2523. 3.0.CO;2-D target="_blank">.
  • 6Kim J, Mohanty S, Ganesan L P, Hua K, Jarjoura D, Hayton W L, Robinson J M, Anderson C L. FcRn in the yolk sac endoderm of mouse is required for IgG transport to fetus. The Journal of Immunology, 2009, 182(5): 2583-2589.
  • 7Ward E S, Zhou J C, Ghetie V, Ober R J. Evidence to support the cellular mechanism involved in serum IgG homeostasis in humans. International Immunology, 2003, 15: 187-195.
  • 8Mayer B, Zolnai A, Frenyó L V, Jancsik V, Szentirmay Z, Hammarstr?m L, Kacskovics I. Redistribution of the sheep neonatal Fc receptor in the mammary gland around the time of parturition in ewes and its localization in the small intestine of neonatal lambs. Immunology, 2002, 107: 288-296.
  • 9Mayer B, Doleschall M, Bender B, Bartyik J, B?sze Z, Frenyó L V, Kacskovics I. Expression of the neonatal Fc receptor (FcRn) in the bovine mammary gland. Journal of Dairy Research, 2005, 72: 107-112.
  • 10Barrington G M, Besser T E, Gay C C, Davis W C, Reeves J J, McFadden T B. Effects of prolactin on in vitro expression of the bovine mammary immunoglobulin G1 receptor. Journal of Dairy Science, 1997, 80: 94-100.

二级参考文献47

  • 1Raghavan M,Bjorkman PJ.Annu Rev Cell Dev Biol,1996,12:181-220.
  • 2Jones EA,Waldmann TA.J Clin Invest,1972,51(11):2916-2927.
  • 3Wallace KH,Rees AR.Biochem,1980,188(1):9-16.
  • 4Junghans RP,Anderson CL.Proc Natl Acad Sci USA,1996,93:5512-5516.
  • 5Simister NE,Mostov KE.Nature,1989,337:184-187.
  • 6Kacskovics I,et al.J Immunol,2000,164:1889-1897.
  • 7Mayer B,et al.Immunology,2002,107:288-296.
  • 8Medesan C,et al.Eur J Immunol,1996,26:2533-2536.
  • 9Kim JK,et al.Eur J Immunol,1994,24:2429-2434.
  • 10Raghavan M,et al.Biochemistry,1995,34:14649-14657.

共引文献16

同被引文献82

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  • 2王耀辉,杨成明,王旭开,刘光耀,石伟彬,张晔.胰岛素对VEC增殖过程中FKBP12基因表达的影响[J].第三军医大学学报,2004,26(18):1673-1676. 被引量:1
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  • 5ERDMANN B, BRETER H. Irregular distribution of mammary-derived growth inhibitor in the bovine mammary epithelium[J]. Cell Tissue Res, 1993, 272 (2) : 383-389.
  • 6ACCORNERO P, MARTIGNANI E, MIRETTI S, et al. Epidermal growth factor and hepatocyte growth factor receptors collaborate to induce multiple biologi- cal responses in bovine mammary epithelial cells[J]. J Dairy Sci, 2009, 92(8): 3667-3675.
  • 7FREEMAN M E, KANYICSKA B, LERANT A, et al. Prolactin: structure, function, and regulation of secretion[J]. PhysiolRev, 2000, 80(4): 1523-1631.
  • 8LEE H J, ORMANDY C J. Interplay between pro- gesterone and prolactin in mammary development and implications for breast eancer[J]. Mol Cell Endocri nol, 2012, 357(1-2): 101-107.
  • 9SHEEHY P A, NICHOLAS K R, WYNN P C. An investigation of the role of insulin in bovine milk protein gene expression in mammary explant culture[J]. Asian-Aus J Anim Sci, 2000, Supplement (13): 272-275.
  • 10MENZIES K K, LEFEVRE C, MACMILLAN K L, et al. Insulin regulates milk protein synthesis at mul tiple levels in the bovine mammary gland[J]. Funct Integrat Genom, 2009, 9(2) : 197-217.

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