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- 详细信息
- 文献和实验
- 技术资料
- 英文名:
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- 库存:
现货库存
- 供应商:
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- 肿瘤类型:
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- 细胞类型:
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- 品系:
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- 组织来源:
ATCC/DSMZ/ECACC
- 相关疾病:
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- 物种来源:
人或动物
- 免疫类型:
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- 细胞形态:
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- 是否是肿瘤细胞:
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- 器官来源:
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- 运输方式:
常温或干冰
- 年限:
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- 生长状态:
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- 规格:
T25
| 种属 | 小鼠 |
| 组织来源 | 正常股动脉组织 |
| 传代比例 | 1:2传代 |
| 完全培养基配置 | 基础培养基500ml ;生长添加剂5ml ;胎牛血清25ml ;双抗5ml |
| 简介 | 股动脉是下肢动脉的主干 ,由髂外动脉延续而来。在腹股沟韧带中点的深面入股三角。在股三角内 ,股动脉先位于股 静脉的外侧 ,逐渐从外侧跨到股静脉的前方 ,下行入收肌管 ,再穿收肌腱裂孔至腘窝 ,易名腘动脉。股动脉在腹股沟 中点处位置表浅 ,可摸到搏动 ,是临床上急救压迫止血和进行穿刺的部位。股动脉动脉内皮细胞组成了动脉内壁 ,并 持续受到血流剪切应力的影响。内皮细胞在切应力的作用下 ,分泌不同的内皮因子并进而影响血管收缩和生长。主动 脉内皮细胞也调节细胞黏附分子的表达来控制和精确调节炎症反应和组织纤维化。体外培养的原代股动脉内皮细胞可 有效地帮助研究者研究内皮功能失调的机理 ,动脉粥样化等疾病的发病机理以及发展新的治疗方法。 |
The mice with a disruption of Rank or Rankl exhibit normal mammary development during puberty, but their mammary epithelium fails to proliferate and form lobuloalveolar structures during pregnancy, resulting in the death of newborns. Hormone replacement therapy is associated with an increased risk of breast cancer. Importantly, specific deletion of RANK in mammary epithelium cells prevents both the onset and progression of medroxyprogesterone acetate (MPA) -driven mammary cancer and impairs self-renewal of breast cancer stem cells. Furthermore, RANK is highly expressed in several cancer cells. Functionally, it has been shown that RANKL can stimulate the directed migration of mammary epithelial cells as well as prostate cancer and melanoma cells toward a source of RANKL. In an in vivo metastasis model, OPG reduced the tumor burden in bones and ameliorated clinical paralysis, but did not affect the frequency of the spread of metastases into other tissues. These findings show that the RANK/RANKL system is crucial for mammary development, breast tumorigenesis and bone metastasis.
supporting a co-existence phase in which the immune system and the tumor reach a stalemate. Our results suggest that further investigation of the consequences of immune cell conversion, using detailed, data-driven models, will be critical for greater understanding of TIME immunotherapy approaches poised to form the foundation of next-generation DDRi and immunotherapy combinations.Interventional oncology is a subspecialty field of interventional radiology that addresses the diagnosis and treatment of cancer and cancer-related problems by
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文献和实验/dynamics.Therapeutic targeting of tumor vulnerabilities is emerging as a key area of research. This review is focused on exploiting the vulnerabilities of tumor cells and the immune cells in the tumor immune microenvironment (TIME), including tumor hypoxia, tumor acidity, the
内皮细胞分布于整个循环系统,从心脏到最小的毛细血管。在这个步骤中,气管的活力很非常重要。取出器官和开始消化之间的时间越短将提高细胞更有活力的产出及不在含氧量低的条件下太久。小鼠的数量需要:小鼠应该是5~6周大小。年龄大的小鼠内皮细胞的产出会少些。最少5个小鼠可以得到很好的产出。 一、材料和试剂 1. 内皮细胞生长添加剂(ECGS)(Sigma,catalognumber:E2759) 2. 胶原酶I(Invitrogen,Catalognumber:17100-017
摘要: 目的 探讨脑微血管内皮细胞的体外培养方法并进行细胞超微结构研究及组织型纤溶酶原激活物(TPA ) 活性测定。 方法 取新生小鼠脑组织, 通过匀浆、过筛、胶原酶消化、差速粘附等技术对鼠脑微血管内皮细胞进行原代培养, 待细胞铺满瓶底时, 用01125%胰酶20102%EDTA 消化, 离心收集内皮细胞, 进行传代培养。原代、传代各取8 例, 吸取培养液用酶联免疫吸附试验测试TPA 活性。 结果 经Ð 因子相关抗原免疫组织化学鉴定、细胞超微结构观察, 证明培养的是血管内皮细胞。培养
小鼠内皮细胞一氧化氮合酶(eNOS)ELISA试剂盒 说明书
上海西唐生物科技有限公司 021-55229872, 65333639 www.westang.com 小鼠内皮细胞一氧化氮合酶 ( eNOS )ELISA 试剂盒 ( 用于血清、血浆、细胞培养上清液和其它生物体液内 ) 原理 本实验采用双抗体夹心 ABC-ELISA 法。用抗小鼠 eNOS 单抗包被于酶标板上,标准品和样品中的 eNOS与单抗结合,加入生物
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