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小鼠肝间质细胞

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  • ¥3960
  • 南京万木春生物
  • 进口/国产
  • WM-24JY596
  • 2025年12月12日
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  • 企业认证

    • 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

    小鼠肝间质细胞
    种属小鼠
    组织来源正常肝组织
    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50ml;双抗5ml
    简介肝脏是人体中最大的腺体 ,也是最大的实质性脏器。肝间质细胞属于成体干细胞 ,已有研究发现它可以向骨、软骨、 肌腱、脂肪、等分化。成体干细胞的向肌细胞的分化使得很多肌肉退行性、遗传性疾病的治疗多了一种更佳的选择。

    the development of effective antitumor therapies. Transplant physicians and immunologists have much to learn from those direct clinical translations of basic science. The 2016 Beaune Seminar in Transplant research brought together researchers from both fields to explore and discuss  nanoparticles (CaP/miR@pMNPs) containing conjugated mannose and sterically shielded with a pH-responsive material. The nanocarrier could respond to the low pH in the tumor microenvironment and expose mannose to promote cellular internalization in TAMs.
    Bone is the most frequent site of breast cancer and prostate cancer metastasis, and one of the most common sites of metastasis for many solid tumors. Once cancer cells colonize in the bone, it imposes a major clinical challenge for the treatment of the disease, and fatality rates increase drastically. Bone, the largest organ in the body, provides a fertile microenvironment enriched with nutrients, growth factors and hormones, a generous reward for cancer cells. Dependent on cancer type, cancer cells can cause osteoblastic (bone forming) or osteolytic lesions to promote the net resorption and/or release of growth factors from the bone extracellular matrix. These processes activate a 'vicious cycle', leading to disruption of bone integrity and promoting cancer cell growth and migration. Cancer cells influence the bone microenvironment favoring their colonization and growth. In order to metastasize to the bone, cancer cells must first migrate from the site of origin, and once established within the bone, they must overcome the dormant inducing effects of resident cells. If successful, cancer cells can then colonize and continually disrupt bone homeostasis that is primarily maintained by osteocytes, the most abundant bone cell type. For example, it has been shown that exercise induces osteocytes to release anabolic factors that inhibit osteoclast resorptive activity, promote dormancy and the release of anti-cancer factors that inhibit breast cancer cell metastasis. In this review, we will summarize recent research findings and provide mechanistic insights related to the role of osteocytes in osteolytic metastasis.

     

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    /significant advances in cancer biology, immunotherapies and their potential impacts for the management of cancer in transplant recipients.Checkpoint inhibitor therapy (CIT) has revolutionized cancer treatment but it has also reached a standstill when an ab sent dialog

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