肿瘤冻融抗原,Freeze-thaw tumor cell lysates
1)Freeze-thaw tumor cell lysates肿瘤冻融抗原
英文短句/例句

1.Anti-tumor Mechanism of Dendritic Cells from Mouse Bone Marrow Monocytes Induced by OK-432 Combined with Freeze-thaw Tumor Cell LysatesOK432联合肿瘤冻融抗原诱导的小鼠树突状细胞瘤苗抑瘤机制探讨
2.Anti-tumor Effects of Dendritic Cells Induced by OK-432 Combined with Freeze-thaw Tumor Cell Lysates on Forestomach Carcinoma-bearing Mice;OK-432联合肿瘤冻融抗原诱导的树突状细胞瘤苗对小鼠前胃癌的抑瘤作用
3.Antitumor Effects of the Fusion Protein Transmembrane Superantigen SEA;跨膜型超抗原SEA融合蛋白的抗肿瘤作用研究
4.Antitumor activity induced by human cryopreserved dendritic cell transfected with viral antigen gene冻融人外周血树突状细胞基因疫苗体外抗肿瘤活性研究
5.Influence of cryosurgery on T cellular immunity in patients with malignancies冷冻消融对肿瘤患者细胞免疫的影响
6.Research Progress of Cryoablation to Renal Tumors冷冻消融术治疗肾脏肿瘤的研究进展
7.Research of Antitumor Effect of Gene Gun-mediated DNA Vaccine pVAX1-2PFc GB Immunization in Balb/c Mice;基因枪介导pVAX1-2PFcGB融合肿瘤抗原基因疫苗小鼠体内抑瘤活性研究
8.tation antigen (TSTA)肿瘤特异性移植抗原
9.Induction of Tumor-associated Antigen-specific Protective and Therapeutic Antitumor Immunity Using a Novel Chemo-antigen DNA Vaccine;肿瘤趋化抗原DNA疫苗的抗肿瘤实验研究
10.The Study of Anti-tumor Activity of Tumor Antigen Induced Cord Blood Cells;肿瘤抗原诱导的脐血细胞抗肿瘤活性的研究
11.In vitro anti-tumor activity of altered tumor-associated antigen CEA_(610D) peptide修饰的肿瘤抗原肽CEA_(610D)疫苗的体外抗肿瘤作用
12.The Antitumor Effect and Mechanism Research of Fusion Hybrid of Dendritic Cells and Myeloma Cell SP_2/0 Expressing CD44v6;CD44v6修饰DC融合瘤苗抗肿瘤作用和机理研究
13.Anti-tumor Immune Response in Vitro Induced by Fusion of Tca8113 Cells with Macrophage;巨噬细胞融合瘤苗的制备及其体外抗肿瘤反应
14.The Preparation and Characterization of Monoclonal Antibodies Against Colon Tumor-associated Antigens;抗结肠肿瘤相关抗原单克隆抗体的制备及鉴定
15.The Expression of Tumor Associated Antigen MAGE-1 and It s Function of Anti-tumor;基因重组肿瘤相关抗原MAGE-1的表达及其抗肿瘤研究
16.Anti-Tumor Immunity Induced by Activated Dendritic Cells with Tumor Antigen from HIFU-Treated Tumors;HIFU治疗后肿瘤抗原对树突状细胞的活化及其抗肿瘤效应
17.Antitumor Effect of DC Vaccine Modified by Reconstruct HSP70-4T1 Peptides Complex in Vitro and in Vivo;重组HSP70-4T1肿瘤抗原肽修饰树突状细胞的抗肿瘤作用
18.Preparation and antitumor immunity of long circulating Nano-Liposome encapsulated tumor specific antigen肿瘤特异性抗原长循环纳米脂质体的制备及其抗肿瘤免疫效应
相关短句/例句

tumor lysate肿瘤冻融物
3)Freeze-thaw antigen冻融抗原
1.Freeze-thaw antigens were extracted from two kinds of cervical cancer cell lines(HeLa and SiHa)by freeze-thaw method,and the.目的研究HeLa、SiHa两种宫颈癌细胞株冻融抗原负载的树突状细胞(dendritic cells,DC)诱导细胞毒性T淋巴细胞(CTL)体外抗原特异性杀伤宫颈癌细胞的能力。
4)frozen-thawed antigen冻融抗原
1.OBJECTIVE:To investigate the effects of dendritic cells(DCs) pulsed with WT1 peptides or frozen-thawed antigen of HL60 cells on stimulating the cytotoxic T lymphocytes(CTLs) to get specific anti-tumor activity in vitro.目的研究分别负载WT1多肽抗原及HL60细胞冻融抗原的树突状细胞(DCs)产生的特异性细胞毒性T淋巴细胞(CTLs)对HL60细胞的杀伤效应。
2.Objective To investigate the effects of dendritic cell pulsed with U937 cel frozen-thawed antigen on inducing the cytotoxic T lymphocyte(CTL)to get specific anti-tumor activity in vitro.目的 探讨树突状细胞 (DC)负载白血病细胞株U937冻融抗原 ,体外诱导细胞毒性T细胞 (CTL) ,使其对U937细胞产生特异性杀伤作用。
5)lysate antigen冻融抗原
1.The using hepatocellular carcinoma cell lysate antigen to produce DCs Vaccination;肝癌细胞冻融抗原制备树突状细胞瘤苗的研究
2.To investigate the specific antileukemia effect of dendritic cells (DC) pulsed with chronic myelogenous leukemic lysate antigen (CLA), dendritic cells from patients with chronic myelogenous leukemia (CML) were pulsed by CLA, and then cocultured with cytokine induced killer (CIK) cells from CML patients (CIK+CLA DC group).为研究慢性粒细胞白血病 (CML)细胞冻融抗原 (CLA)致敏的树突状细胞 (DC)对特异性抗白血病的作用 ,将CML患者外周血单个核细胞来源的DC在体外用CLA致敏 ,再与CML患者的经细胞因子诱导的杀伤细胞(CIK)共同培养。
6)cancer antigen肿瘤抗原
延伸阅读

冻融作用  在寒冷气候下,由于岩土中水冻结和融化等引起的若干作用的总称。包括:①冻结和融化,蒸发和凝结,升华和凝华,即岩土中水的相变;②岩土中水分、盐分和土颗粒的迁移;③土的冻胀和冻土融沉;④土的冻裂等。    随着季节的交替,冻融作用会反复发生。在此过程中,细小土粒和矿物的微裂隙中的水膜的楔开压力也随着发生变化,从而导致细小土粒和矿物的破坏,使粒径变小,这种作用称为冷生水化风化。它不同于通常所说的寒冻风化。后者是由岩石大裂隙和空隙中冰的楔开压力产生的。在非冻土区,石英的最终风化粒径比长石大。但在冻土区,由于冷生水化风化,石英的最终风化粒径(0.05~ 0.01毫米)比长石的最终风化粒径(0.1~0.05毫米)为小。反复冻融时发生的另一种物理-化学作用,是胶体和粘粒凝聚成微集合体,使土的粒径增大。上述两种不同方向的作用形成一个相同的结果,使遭受反复冻融作用的岩土的粉粒含量大为增加。同时,形成一系列特殊的冷生地貌,即冰缘地貌。