Skip navigation

DSpace

機構典藏 DSpace 系統致力於保存各式數位資料(如:文字、圖片、PDF)並使其易於取用。

點此認識 DSpace
DSpace logo
English
中文
  • 瀏覽論文
    • 校院系所
    • 出版年
    • 作者
    • 標題
    • 關鍵字
  • 搜尋 TDR
  • 授權 Q&A
    • 我的頁面
    • 接受 E-mail 通知
    • 編輯個人資料
  1. NTU Theses and Dissertations Repository
  2. 生命科學院
  3. 生化科學研究所
請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/46345
完整後設資料紀錄
DC 欄位值語言
dc.contributor.advisor朱善德
dc.contributor.authorYan-Tzu Chenen
dc.contributor.author陳彥孜zh_TW
dc.date.accessioned2021-06-15T05:04:38Z-
dc.date.available2011-07-28
dc.date.copyright2010-07-28
dc.date.issued2010
dc.date.submitted2010-07-26
dc.identifier.citationAckland ML et al., Epidermal growth factor-induced epithelio-mesenchymal transition in human breast carcinoma cells. Lab Invest. 2003;83(3):435-48.
Barberà MJ, Puig I, Domínguez D et al., Regulation of Snail transcription during epithelial to mesenchymal transition of tumor cells. Oncogene. 2004; 23(44): 7345-54.
Becker KF, Rosivatz E et al., Analysis of the E-cadherin repressor Snail in primary human cancers. Cells Tissues Organs. 2007; 185(1-3): 204-12.
Bellovin DI, Simpson KJ et al., Reciprocal regulation of RhoA and RhoC characterizes the EMT and identifies RhoC as a prognostic marker of colon carcinoma. Oncogene. 2006; 25(52):6959-67.
Berger T, Togawa A, Duncan GS, Elia AJ, You-Ten A, Wakeham A, et al. Lipocalin 2-deficient mice exhibit increased sensitivity to Escherichia coli infection but not to ischemia-reperfusion injury. Proc Natl Acad Sci USA 2006; 103:1834-9.
Cannito S, Novo E et al.,2008, Redox mechanisms switch on hypoxia-dependent epithelial–mesenchymal transition in cancer cells. Carcinogenesis. 2008; 29(12): 2267-78.
Cannito S, Novo E et al., Epithelial-mesenchymal transition: from molecular mechanisms, redox regulation to implications in human health and disease.Antioxid Redox Signal. 2010 Jun 15;12(12):1383-430.
Chakraborty PK, Scharner B et al., Chronic cadmium exposure induces transcriptional activation of the Wnt pathway and upregulation of epithelial-to-mesenchymal transition markers in mouse kidney. Toxicol Lett. 2010 May 15.
Chen KY (2003) 類固醇賀爾蒙對人類子宮內膜細胞明膠酶結合蛋白基因表現之調節。
Comijn J, Berx G et al., The two-handed E box binding zinc finger protein SIP1 downregulates E-cadherin and induces invasion. Mol Cell. 2001; 7(6): 1267-78.
Cowland, J.B. and Borregaard, N. Molecular characterization and pattern of tissue expression of the gene for neutrophil gelatinase-associated lipocalin from humans. Genomics 1997; 45: 17–23
Costa D, Biticchi R, Negrini S, Tasso R, Cancedda R, Descalzi F, Pennesi G, Tavella S.2010. Lipocalin-2 controls the expression of SDF-1 and the number of responsive cells in bone. Cytokine. 2010 ;51(1):47-52.
Cui, W. et al,1996, TGF-β1 inhibits the formation of benign skin tumors, but enhances progression to invasive spindle carcinomas in transgenic mice. Cell 1996; 86: 531–542
Davis, T.R., et al., Basic fibroblast growth factor induces 3T3 fibroblasts to synthesize and secrete a cyclophilin-like protein and beta 2-microglobulin. Biochim Biophys Acta, 1991; 1095(2): 145-52.
Devireddy LR, Teodoro JG, Richard FA, Green MR. Induction of apoptosis by a secreted lipocalin that is transcriptionally regulated by IL-3 deprivation. Science 2001; 293:829-34.
Devireddy LR, Gazin C, Zhu X, Green MR. A cell-surface receptor for lipocalin 24p3 selectively mediates apoptosis and iron uptake. Cell 2005; 123:1293-305.
Emadi Baygi M, Soheili ZSet al. Slug/SNAI2 regulates cell proliferation and invasiveness of metastatic prostate cancer cell lines. Tumour Biol. 2010; 31(4): 297-307.
Fernandez CA, Yan L, Louis G, Yang J, Kutok JL Moses MA. The matrix metalloproteinase-9/neutrophil gelatinase-associated lipocalin complex plays a role in breast tumor growth and is present in the urine of breast cancer patients. Clin Cancer Res 2005;11:5390–5.
Flower DR. The lipocalin protein family: structure and function. Biochem J 1996; 318:1-14.
Flower DR, North AC, Sansom CE. The lipocalin protein family: structural and sequence overview. Biochim Biophys Acta 2000; 1482:9-24.
Friedl A, Stoesz SP et al., Neutrophil gelatinase-associated lipocalin in normal and neoplastic human tissues. Cell type-specific pattern of expression. Histochem J. 1999 Jul;31(7):433-41.
Glasser SR, Julian J et al. Development of morphological and functional polarity in primary cultures of immature rat uterine epithelial cells. J Cell Biol. 1988;107(6 Pt 1): 2409-23.
Goetz DH, Holmes MA, Borregaard N, Bluhm ME, Raymond KN, Strong RK.2002. The neutrophil lipocalin NGAL is a bacteriostatic agent that interferes with siderophore mediated iron acquisition. Mol Cell 2002; 10:1033-43.
Grünert S, Jechlinger M, Beug H. Diverse cellular and molecular mechanisms contribute to epithelial plasticity and metastasis. Nat Rev Mol Cell Biol. 2003; 4(8): 657-65.
Guarino M, Micheli P, Pallotti F, Giordano F. Pathological relevance of epithelial and mesenchymal phenotype plasticity. Pathol Res Pract. 1999; 195:379–389.
Guarino M, Rubino B, Ballabio G. The role of epithelial-mesenchymal transition in cancer pathology. Pathology. 2007;39(3):305-18.
Guarino M, Tosoni A, Nebuloni M. Direct contribution of epithelium to organ fibrosis: epithelial-mesenchymal transition. Hum Pathol. 2009; 40(10): 1365-76.
Gwira JA, Wei F et al., Expression of neutrophil gelatinase-associated lipocalin regulates epithelial morphogenesis in vitro. J Biol Chem. 2005; 280(9): 7875-82.
Hajra KM, Chen DY, Fearon ER. The SLUG zinc-finger protein represses E-cadherin in breast cancer. Cancer Res. 2002 ;62(6):1613-8.
Hanai J, Mammoto T, Seth P et al., Lipocalin 2 diminishes invasiveness and metastasis of Ras-transformed cells. J Biol Chem. 2005; 280(14): 13641-7.
Hay ED. Interactions of embryonic cell surface and cytoskeleton with extracellular matrix. Am J Anat 1982; 165: 1–12.
Heijink IH, Postma DS et al., House Dust Mite–Promoted Epithelial-to-Mesenchymal Transition in Human Bronchial Epithelium. American Journal of Respiratory Cell and Molecular Biology. Am J Respir Cell Mol Biol. 2010;42(1):69-79
Hill, J.A., et al., Characterization of leukocyte subpopulations in the peritoneal fluid of women with endometriosis. Fertil Steril 1988; 50(2): p. 216-22.
Hu L, Hittelman W, Lu T, et al. NGAL decreases E-cadherin-mediated cell-cell adhesion and increases cell motility and invasion through Rac1 in colon carcinoma cells. Lab Invest 2009;89:531–48.
Huber et al., M.A. Huber, N. Kraut and H. Beug, Molecular requirements for epithelial–mesenchymal transition during tumor progression, Current Opinion in Cell Biology 2005; 17: 1–11.
Hvidberg V, Jacobsen C, Strong RK, Cowland JB, Moestrup SK, Borregaard N. The endocytic receptor megalin binds the iron transporting neutrophil-gelatinase-associated lipocalin with high affinity and mediates its cellular uptake. FEBS Lett. 2005; 579(3):773-7.
Jiang H, Xia J, Kang J, Ding Y, Wu W. Short hairpin RNA targeting beta-catenin suppresses cell proliferation and induces apoptosis in human gastric carcinoma cells. Scand J Gastroenterol. 2009; 44(12): 1452-62.
Jones, R.K., J.N. Bulmer, and R.F. Searle. Immunohistochemical characterization of stromal leukocytes in ovarian endometriosis: comparison of eutopic and ectopic endometrium with normal endometrium. Fertil Steril, 1996; 66(1): 81-9
Jun Yang, Kiyoshi Mori, Jau Yi Li, and Jonathan Barasch. Iron, lipocalin, and kidney epithelia. Am J Physiol Renal Physiol 2003; 285: F9-F18
Kalluri R, Neilson EG Epithelial–mesenchymal transition and its implications for fibrosis. J Clin Invest 2003; 112:1776–1784
Kamarainen M, Seppala M, Virtanen I, and Andersson L. Expression of glycodelin in MCF-7 breast cancer cells induces differentiation into organized acinar epithelium. Lab Invest 1997; 77: 565–573
Kjeldsen, L. et al., Isolation and primary structure of NGAL, a novel protein associated with human neutrophil gelatinase. J Biol Chem, 1993; 268(14): 10425-32.
Kjeldsen L, Cowland JB. Human neutrophil gelatinase-associated lipocalin and homologous proteins in rat and mouse. Biochim Biophys Acta. 2000; 1482(1-2):272-83.
Koo V et al, 2010, Novel in vitro assays for the characterization of EMT in tumourigenesis. Cell Oncol. 2010;32(1-2):67-76.
Lee HJ, Lee EK, Lee KJ, Hong SW, Yoon Y, Kim JS. Ectopic expression of neutrophil gelatinase-associated lipocalin suppresses the invasion and liver metastasis of colon cancer cells. Int J Cancer. 2006 ; 118(10):2490-7.
Leng X, Lin H, Ding T, et al., Lipocalin 2 is required for BCR-ABL-induced tumorigenesis. Oncogene 2008;27:6110–9.
Lin HH et al.,2007, Apoptosis induced by uterine 24p3 protein in endometrial carcinoma cell line. Toxicology. 2007;234(3):203-15.
Liu Q, Nilsen-Hamilton M. Identification of a new acute phase protein. J Biol Chem. 1995;270(38):22565-70.
Liu Q, Ryon J, et al., Uterocalin: a mouse acute phase protein expressed in the uterus around birth. Mol Reprod. 1997 pr;46(4):507-14
Luetteke NC, Qiu TH, Fenton SE, Troyer KL, Riedel RF, Chang A, Lee DC.,1999. Targeted inactivation of the EGF and amphiregulin genes reveals distinct roles for EGF receptor ligands in mouse mammary gland development. Development. 1999; 126(12):2739-50.
Marcello Guarino MDa. Direct contribution of epithelium to organ fibrosis: epithelial-mesenchymal transition, Human PathologyVolume 40, Issue 10(), Pages 1365-1376
Martin P. Wound healing – aiming for perfect skin regeneration. Science 1997; 276:75–81
McCawley LJ, O'Brien P, Hudson LG. Epidermal growth factor (EGF)- and scatter factor/hepatocyte growth factor (SF/HGF)- mediated keratinocyte migration is coincident with induction of matrix metalloproteinase (MMP)-9. J Cell Physiol. 1998; 176(2): 255-65. Micalizzi DS, Ford HL.,2009, Epithelial-mesenchymal transition in development and cancer. Future Oncol. 2009;5(8):1129-43.
Nakaya Y, Sukowati EW, Wu Y, Sheng G. Sheng. RhoA and microtubule dynamics control cell-basement membrane interaction in EMT during gastrulation. Nat Cell Biol 2008; 10: 765–775.
Nelson AM, Zhao W, Gilliland KL, Zaenglein AL, Liu W, Thiboutot DM.2008. Neutrophil gelatinase-associated lipocalin mediates 13-cis retinoic acid-induced apoptosis of human sebaceous gland cells. J Clin Invest 2008; 118:1468-78.
Newcomer M and Ong D, Plasma retinol binding protein: structure
and function of the prototypic lipocalin. Biochim Biophys Acta. 2000; 482: 57–64
Nuntagowat C, Leelawat K, Tohtong R. NGAL knockdown by siRNA in human cholangiocarcinoma cells suppressed invasion by reducing NGAL/MMP-9 complex formation. Clin Exp Metastasis. 2010; 27(5): 295-305.
Oft, M. et al,. TGF-β1 and Ha-Ras collaborate in modulating the phenotypic plasticity and invasiveness of epithelial tumor cells. Genes 1996;10: 2462–2477
Pandey S, Lopez C, Jammu A. Oxidative stress and activation of proteasome protease during serum deprivation-induced apoptosis in rat hepatoma cells; inhibition of cell death by melatonin. Apoptosis. 2003; 8(5): 497-508.
Radisky DC, Bissell MJ, 2007.NF-kappaB links oestrogen receptor signalling and EMT. Nat Cell Biol. 2007; 9(4): 361-3.
Ranganathan K, Kavitha R, Sawant SS, et al., Cytokeratin expression in oral submucous fibrosis--an immunohistochemical study. J Oral Pathol Med. 2006;35(1):25-32.
Ratana Lim, Nuzhat Ahmed et al., Neutrophil gelatinase-associated lipocalin (NGAL) an early-screening biomarker for ovarian cancer: NGAL is associated with epidermal growth factor-induced epithelio-mesenchymal transition. Int. J. Cancer 2007; 120: 2426–2434
Rhyu DY, Yang Yet al., Role of reactive oxygen species in TGF-beta1-induced mitogen-activated protein kinase activation and epithelial-mesenchymal transition in renal tubular epithelial cells. J Am Soc Nephrol. 2005;16(3):667-75.
Richardson DR. 24p3 and its receptor: dawn of a new iron age?Cell. 2005; 123(7): 1175-7.
Soni SS, Ronco C et al., Early diagnosis of acute kidney injury: the promise of novel biomarkers. Blood Purif. 2009;28(3):165-74.
Taneyhill LA, Coles EG, Bronner-Fraser M.Snail2 directly represses cadherin6B during epithelial-to-mesenchymal transitions of the neural crest.Development. 2007; 134:1481–1490.
Thiery JP, Sleeman JP. Complex networks orchestrate epithelial- mesenchymal transitions. Nat Rev Mol Cell Biol. 2006; 7(2): 131-42.
Triebel, S., et al., A 25 kDa alpha 2-microglobulin-related protein is a
component of the 125 kDa form of human gelatinase. FEBS Lett, 1992; 314(3): 386-8.
Tong Z, Wu X, et al., Neutrophil gelatinaseassociated lipocalin as a survival factor. Biochem J 2005; 391:441-8.
Tong Z, Kunnumakkara AB, Wang H, Matsuo Y, Diagaradjane P, Harikumar KB et al., Neutrophil gelatinase-associated lipocalin: a novel suppressor of invasion and angiogenesis in pancreatic cancer. Cancer Res. 2008; 68(15):6100-8.
Valenick LV, Hsia HC, Schwarzbauer JE. Fibronectin fragmentation promotes alpha4beta1 integrin-mediated contraction of a fibrin-fibronectin provisional matrix. Exp Cell Res. 2005 ; 309(1): 48-55.
Vargha R, Bender TO et al., Effects of epithelial-to-mesenchymal transition on acute stress response in human peritoneal mesothelial cells. Nephrol Dial Transplant. 2008; 23(11): 3494-500.
Wu, M.Y. and H.N. Ho, The role of cytokines in endometriosis. Am J Reprod Immunol. 2003; 49(5): 285-96.
Xu SY, Carlson M, Engström A, Garcia R, Peterson CG, Venge P. Purification and characterization of a human neutrophil lipocalin (HNL) from the secondary granules of human neutrophils. J. Clin. Lab. Invest. 1994; 54: 365–376.
Xu S, Venge P. Lipocalins as biochemical markers of disease. Biochim Biophys Acta. 2000;1482(1-2):298-307. Review.
Yusuf F, Brand-Saberi B. The eventful somite: patterning, fate determination and cell division in the somite, 2006 Dec;211 Suppl 1:21-30.
Yang J, Goetz D, Li JY et al., An iron delivery pathway mediated by a lipocalin. Mol Cell. 2002; 10(5): 1045-56.
Yang J, Bielenberg DR, Rodig SJ, et al. Lipocalin 2 promotes breast cancer progression. Proc Natl Acad Sci U S A 2009; 106: 3913–8.
Yang J, Moses MA.2009, Lipocalin 2: a multifaceted modulator of human cancer. Cell Cycle. 2009; 8(15): 2347-52.
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/46345-
dc.description.abstractLcn2是疏水性分子結合蛋白家族中的一員,在哺乳類的系統中屬於分泌性蛋白,可做自泌或旁泌的生理反應,已知Lcn2為一種急性反應蛋白(actue phase protein),在細胞受到多種不同環境壓力時會被誘導分泌。由於在細胞遭受環境壓力時可能會由表皮細胞轉換成間質細胞(Epithelial-mesenchymal transition, EMT)的現象,許多文獻也指出Lcn2與EMT之間可能有互動關係。為了解Lcn2是否參與在生殖系統中EMT過程,因此根據Glasser等人的方法,建立初級培養小鼠子宮內膜上皮細胞培養系統,並以cytokeratin抗體鑑定之。採用長時間營養缺乏的環境壓力培養條件來誘導Lcn2蛋白的產生,探討Lcn2是否會使小鼠子宮內膜上皮細胞發生EMT,以及誘發EMT對子宮內膜上皮細胞的生理現象是否造成影響。實驗結果顯示在環境的壓力下可以誘導初級小鼠子宮內膜上皮細胞表現Lcn2蛋白,且Lcn2蛋白可以促進初級小鼠子宮內膜上皮細胞轉化成間質細胞,造成上皮細胞標誌-細胞角蛋白(cytokeratin)表現量減少,間質細胞標誌-纖維連接蛋白(fibronectin)表現量增加,導致細胞由聚集狀態轉變為紡錘狀及分散分布,此一變化可能會增加細胞的移動能力和侵襲能力,推測Lcn2可能參與子宮內膜病變的生成。zh_TW
dc.description.abstractLcn2, a member of the lipocalin family, is as a secretory protein in mammalian system as well as has autocrine and paracrine physical functions. A well known, Lcn2 is an acute phase protein and is induced by stress conditions in cells. Owing to the stress, epithelial to mesenchymal transition (EMT) could occur and the substantial evidences encourage us to figure out the relationship between Lcn2 and EMT in primary endometrial epithelium cell. To establish primary culture system of mouse endometrial epithelium cell is our matter of immediate urgency. According to the method of Glasser et al, after trypsin digestion, we haversted primary endometrial epithelium cells and the cells have been identified with cytokeratin antibody. Using nutrition deprivation as a stress condition, we could induce highly Lcn2 expression in this endometrial epithelium cell. To elucidate whether Lcn2 triggers the EMT in endometrial epithelium cell then initiates the influence of the cell function in reproductive system is our goal. As the Lcn2 expression in high level, the cell morphology would change from round-up to spindle-like then the cell dispersion would happen. Meanwhile, double immunostaining showed cytokeratin expression was diminished and fibronectin expression was increased, and an additive effects on cell migration and cell invasion. These results demonstrate that Lcn2 could be induced by environmental stress and trigger the EMT in primary mouse endometrial epithelium cell. These data shield some light on the participation of Lcn2 in the pathologies of endometrial system.en
dc.description.provenanceMade available in DSpace on 2021-06-15T05:04:38Z (GMT). No. of bitstreams: 1
ntu-99-R97b46033-1.pdf: 13497499 bytes, checksum: c0798fda0a2b717898ca3125b7ae411f (MD5)
Previous issue date: 2010
en
dc.description.tableofcontents摘要................................ i
Abstract.............................. ii
縮寫表............................... iii
目錄................................ v
圖表目錄............................. vii
前言................................ 1
材料與方法............................ 9
小鼠子宮內膜上皮細胞初級培養....................... 9
免疫螢光染色......................... 10
細胞總體RNA萃取.......................... 11
反轉錄反應........................... 11
聚合酵素連鎖反應........................ 12
洋菜膠電泳........................... 13
即時定量聚合酵素連鎖反應.................... 14
細胞蛋白質萃取......................... 14
蛋白質定量............................. 15
十二指硫酸鈉-聚丙烯安膠體電泳................. 15
西方墨點............................ 16
創傷癒合分析.......................... 17
細胞移動力分析........................ 17
細胞侵襲力分析.. ....................... 18
結果................................ 19
建立子宮內膜上皮細胞初級培養..................... 19
子宮內膜上皮細胞之生長情形......................... 19
子宮內膜上皮細胞於環境壓力下Lcn2表現量.............. 20
長期培養子宮內膜上皮細胞的細胞形態變化............. 21
子宮內膜上皮細胞中EMT細胞標誌的變化.............. 21
Lcn2對細胞EMT的影響.......................... 22
Lcn2對於細胞移動(migration)能力及侵襲(invasion)能力的影響.................. 23
討論................................ 25
參考文獻.............................. 48
附錄................................ 57
附錄一 RT-PCR primer 序列.................... 57
dc.language.isozh-TW
dc.title分泌性蛋白Lcn2對初級小鼠子宮內膜上皮細胞生理機制的影響zh_TW
dc.titleThe Effects of Secretory Lcn2 Protein on Mouse Primary Endometrial Epithelium.en
dc.typeThesis
dc.date.schoolyear98-2
dc.description.degree碩士
dc.contributor.oralexamcommittee曾婉芳,余榮熾,張?仁
dc.subject.keywordLcn2,小鼠子宮內膜上皮細胞,表皮細胞轉換至間質細胞,細胞角蛋白,纖維連接蛋白,zh_TW
dc.subject.keywordLcn2,mouse endometrial epithelium,epithelial to mesenchymal transition (EMT),cytokeratin,fibronectin,en
dc.relation.page57
dc.rights.note有償授權
dc.date.accepted2010-07-27
dc.contributor.author-college生命科學院zh_TW
dc.contributor.author-dept生化科學研究所zh_TW
顯示於系所單位:生化科學研究所

文件中的檔案:
檔案 大小格式 
ntu-99-1.pdf
  目前未授權公開取用
13.18 MBAdobe PDF
顯示文件簡單紀錄


系統中的文件,除了特別指名其著作權條款之外,均受到著作權保護,並且保留所有的權利。

社群連結
聯絡資訊
10617臺北市大安區羅斯福路四段1號
No.1 Sec.4, Roosevelt Rd., Taipei, Taiwan, R.O.C. 106
Tel: (02)33662353
Email: ntuetds@ntu.edu.tw
意見箱
相關連結
館藏目錄
國內圖書館整合查詢 MetaCat
臺大學術典藏 NTU Scholars
臺大圖書館數位典藏館
本站聲明
© NTU Library All Rights Reserved