B16黑色素瘤,B16 melanoma
1)B16 melanomaB16黑色素瘤
1.Methods:The model of B16 melanoma mouse was established.方法:建立B16黑色素瘤小鼠模型;用GM-CSF和IL-4诱导扩增小鼠骨髓来源的树突状细胞,并用透明质酸孵育,Brdu标记;经肿瘤周围皮下回输,以普通DC、生理盐水为对照组;测量瘤体积,计算抑瘤率。
2.Objective To ascertain the spleen-nourishing and qi-enriching herbs effects on the tumor and the liver metastasis in experimental mice grafted with B16 melanoma.以异位接种法在C57BL/6小鼠中建立B16黑色素瘤肝转移模型。
3.To investigate the optimal doses of X-ray irradiation and plasmid injection in the anti-tumor effect of the pEgr-IFN γ gene-radiotherapy in vivo, we observed the anti-tumor effect of the pEgr-IFN γ gene-radiotherapy with different doses of X-ray irradiation and plasmid injection in mice with B16 melanoma and detected the concentration of IFN γ in peripheral blood by ELISA.观察不同剂量X射线照射及瘤内不同量pEgr-IFNγ重组质粒注入,基因-放射治疗在接种B16黑色素瘤小鼠体内抑瘤效应的差异,并用酶联免疫吸附法(ELISA)法检测各组小鼠外周血IFNγ含量。
英文短句/例句

1.Intradermal Model of B16 Melanoma in MiceB16黑色素瘤皮内移植瘤模型的建立
2.Study on the establishment of animal model with B16 melanomaB16黑色素瘤动物模型制备方法探讨
3.The Effects of Adinbitor on Invasion and Migration of B16 Melanoma CellsAdinbitor对B16黑色素瘤细胞侵袭能力的影响
4.Effect of Thalidomide on Tumor Growth in Mouse Melanoma B16 Model;反应停抑制小鼠B16黑色素瘤的实验研究
5.Selection of High and Low Metastases Cell Lines from B16 Melanoma and Its Molecular Mechanism of Invasion and Metastases;B16黑色素瘤高低转移株筛选及其侵袭转移的分子机制
6.The Experimental Study of Proliferation-inhibiting and Differentiation-inducing Effects of Acitretin on Malignant Melanoma B16 Cells;阿维A酸对鼠B16黑色素瘤增殖抑制及诱导分化的实验研究
7.Anticancer Effect of B16 Malignant Melanoma in C57BL/6 Mice by Multiple Hyperthermia多次高温热疗对小鼠B16黑色素瘤疗效的实验研究
8.Secretory expression vector V-pLNCX-s-hri inhibits the growth of mouse B16 melanoma分泌性表达载体V-pLNCX-s-hri对小鼠B16黑色素瘤生长的抑制作用
9.Proliferation and apoptosis of B16 melanoma cells in the sera of mice infected with Toxoplasma gondii弓形虫感染小鼠血清对小鼠B16黑色素瘤细胞增殖和凋亡的影响
10.Retroviral Vector Mediated Humane Ribonuclease Inhibitor Inhibites B16 Melanoma Growth in Vivo;逆转录病毒载体介导人核糖核酸酶抑制因子体内抑制B16黑色素瘤生长
11.Inhibitory Effect of Proanthocyaidins from Lotus Seedpod (LSPC) on B16 Melanoma in Vitro莲房原花青素对黑色素瘤B16细胞的抑制作用
12.Inhibitory Effect of Aspisol on Proliferation of Melanoma B16 Cells赖氨匹林对黑色素瘤B16细胞的增殖抑制作用
13.The Mechanism of Acitretin Combined INF on Malignant Melanoma B16 Cells阿维A酸联合干扰素对小鼠黑色素瘤细胞株B16作用的研究
14.Aim To investigate the differentiation-inducing effect of Cucurmosin on B16 mouse melanoma cells.目的测定南瓜蛋白对小鼠黑色素瘤B16细胞的诱导分化作用。
15.Effects of Lovastatin on Malignant Melanoma B16 Cells with Its Mechanism;洛伐他汀对恶性黑色素瘤B16细胞株的作用及其机制的研究
16.Effects of Space Environment on Biological Characteristics of Melanoma B16-F10 Cells空间环境对小鼠黑色素瘤B16-F10细胞生物学特性的影响
17.Effect of Extract from Bullacta exarata on Murine Melanoma Cell B16黄泥螺提取物对小鼠黑色素瘤细胞B16生长的影响
18.Effect of polyamine analogue BENS on proliferation of melanoma B16-F1 cells多胺类似物BENS对黑素瘤B16-F1细胞生长的影响
相关短句/例句

melanoma[英][,mel?'n??m?][美]['m?l?'nom?]B16黑色素瘤
1.Experimental Study on the effect of inhibiting growth and Apoptosis induced by ginsenoside Rg_3 in B16 melanoma;人参皂苷Rg_3抑制B16黑色素瘤生长和诱导凋亡的实验研究
3)B 16 melanomaB16黑色素瘤
1.Methods The B 16 melanoma mouse model for research was established.方法 建立B16黑色素瘤小鼠模型 ,Ⅰ组瘤体周围皮下注射IL 2 ,Ⅱ组注射IL 2和人参多糖 ,Ⅲ组注射人参多糖 ,通过测量瘤重、瘤体积和抑瘤率观察其抑瘤作用 ;同时取小鼠脾细胞培养 ,1组加IL 2 ,2组加IL 2和人参多糖 ,3组加人参多糖 ,用台盼蓝染色 ,观察多糖类药物对LAK细胞增殖功能的影响。
4)B16 melanoma黑色素瘤B16
1.BACKGROUND & AIM:To investigate the differentiation of mice B16 melanoma induced by proanthocyanidins from lotus seedpod(LSPC)in vivo.背景与目的:探讨莲房原花青素(LSPC)对荷瘤小鼠体内黑色素瘤B16细胞的诱导分化作用。
2.Objective:To investigate the inhibitory effects of proanthocyaidins from lotus seedpod(LSPC)on mice B16 melanoma.目的:研究莲房原花青素(LSPC)对黑色素瘤B16的抑制作用及其机制。
3.OBJECTIVE To investigate the inhibitory effect of proanthocyanidins from Lotus Seedpod (LSPC) on B16 melanoma in vitro.目的研究莲房原花青素(procyanidins from the seedpod of the lotus,LSPC)对体外培养的黑色素瘤B16细胞活性的影响。
5)B16 melanoma小鼠B16黑色素瘤
6)B16 cell黑色素瘤B16细胞
1.The tumor-suppressing effects of rhIL-24 protein on B16 cells in vitro and in vivo;rhIL-24对黑色素瘤B16细胞的体内外抑瘤作用
延伸阅读

颜料黑16分子式:CAS号:性质:又称颜料金属6,颜料黑16。锌蒸气在惰性气氛中控制冷凝生成的金属颜料。主要成分的化学式为Zn,外观为浅蓝灰色粉末,粒子为球形,平均粒度3~8μm,粒度范围1~44μm,表面积0.1~0.28m2/R,吸油量5~20g/l00g,密度7.133g/cm3。通常以含锌物质为原料,经熔融、汽化、控制冷凝、收集、过筛或分级而成。主要用作钢铁表面保护的富锌涂料(防锈漆),也用于回收金和银及作还原剂。