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The Significance of CXCR4 Expression for the Prediction of Lymph Node Metastasis in Breast Cancer Patients 被引量:3
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作者 Yongxing Ding chenghua Li +2 位作者 Qingling Yang changjie chen Zenong cheng 《Chinese Journal of Clinical Oncology》 CSCD 2008年第2期83-86,共4页
OBJECTIVE The chemokine receptor(CXCR4)CXC chemokine receptor 4)plays an important role in cancer metastasis.We therefore studied differential expression of the CXCR4,as well as that of the biomarker HER2,so as to eva... OBJECTIVE The chemokine receptor(CXCR4)CXC chemokine receptor 4)plays an important role in cancer metastasis.We therefore studied differential expression of the CXCR4,as well as that of the biomarker HER2,so as to evaluate whether these biomarkers can be used to predict axillary lymph node metastasis in breast cancer patients. METHODS Immunohistochemistry was used to evaluate the CXCR4 and HER2 expressions and to examine the paraffin sections of the breast cancers at various stages.Positive lymph node expression was found in 80 of the cases,and in 7 there was negative expression. RESULTS Compared to the cases with negative lymph nodes, there was a high expression of CXCR4(26.3% vs.14.3%,P=0.013), and an over-expression of HER2(28.8% vs.14.3%,P=0.011). Moreover,there was a direct correlation between the CXCR4 and HER2 expressions and the tumor staging(P=0.000)and lymph node metastasis(P=0.032).When the two biomarkers,i.e.CXCR4 and HER2,were concurrently labeled,a high expression of one of the biomarkers could be seen in the cases with positive lymph nodes(51.3% vs.28.6%,P<0.003). CONCLUSION The chemokine receptor,CXCR4,is a new-type biomarker in predicting axillary lymph-node metastasis in breast cancers.Compared with the other markers,such as HER2 etc., assessment of CXCR4 can improve the prediction of the presence and extent of lymph node involvement. 展开更多
关键词 breast cancer immunohistochemical staining tumor stage lymphnode status.
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Structure and mechanical properties of windmill palm fiber with different delignification treatments
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作者 changjie chen Pengfei Xu Xinhou Wang 《Journal of Bioresources and Bioproducts》 EI CSCD 2024年第1期102-112,共11页
The removal of lignin from natural cellulose fibers is a crucial step in preparing high-performance materials,such as compressed high-toughness composites.This process can eliminate non-cellulosic impurities,create ab... The removal of lignin from natural cellulose fibers is a crucial step in preparing high-performance materials,such as compressed high-toughness composites.This process can eliminate non-cellulosic impurities,create abundant compressible pores,and expose a greater number of active functional groups.In this study,biomass waste windmill palm fiber was used as the raw mate-rial to prepare holocellulose fibers through various chemical treatments.The structure,chemical composition,Fourier transform infrared spectroscopy analysis,X-ray diffraction analysis,ther-mal properties,and mechanical properties,particularly fatigue performance,were studied.The sodium chlorite treated fiber had the highest crystallinity index(61.3%)and the most complete appearance structure.The sodium sulfite treated fiber had the highest tensile strength(227.34±52.27)MPa.Hydroxide peroxide treatment removed most of the lignin and hemicellulose,increas-ing the cellulose content to 68.83%±0.65%.However,all the chemical treatments decreased the thermal property of the fibers. 展开更多
关键词 Windmill palm fiber Delignification treatment Morphonology Mechanical property Fatigue property
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艾龙脑脱氢酶基因AArBDH1的克隆及功能鉴定
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作者 陈昌婕 苗玉焕 +4 位作者 罗丹丹 王梓欣 郭璐娟 赵婷婷 刘大会 《植物学报》 CAS CSCD 北大核心 2023年第4期560-572,共13页
龙脑是艾(Artemisia argyi)叶中最重要的药效成分之一,具有抗菌、消炎及镇痛等药理活性。其生物合成和代谢受多种酶的影响,其中龙脑脱氢酶是将龙脑氧化为樟脑的关键酶之一。利用气相色谱-质谱联用(GC-MS)技术测定了35份艾种质叶片中龙... 龙脑是艾(Artemisia argyi)叶中最重要的药效成分之一,具有抗菌、消炎及镇痛等药理活性。其生物合成和代谢受多种酶的影响,其中龙脑脱氢酶是将龙脑氧化为樟脑的关键酶之一。利用气相色谱-质谱联用(GC-MS)技术测定了35份艾种质叶片中龙脑和樟脑的含量。结果表明,不同品种艾叶片中龙脑和樟脑含量差异较大,在部分种质中樟脑含量甚至超过了龙脑,说明大量的龙脑被氧化为樟脑后严重降低了艾叶中龙脑的含量。基于全长转录组和同源性比较分析,在艾叶中克隆到1个艾龙脑脱氢酶编码基因AArBDH1。AArBDH1基因含有2个外显子和1个内含子,编码包含289个氨基酸残基的蛋白。qRT-PCR分析表明,在艾不同组织和不同发育时期的叶片中AArBDH1呈差异表达,在茎和30天叶龄的叶片中高表达。以龙脑为底物、NAD+为辅酶的酶促反应表明, AArBDH1能催化龙脑脱氢生成樟脑。该研究为进一步揭示艾叶片中龙脑积累的调控和改进机制提供了理论依据和基因资源。 展开更多
关键词 龙脑 龙脑脱氢酶 樟脑
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