KGN(人卵巢颗粒细胞)

https://789.bio/ec/dP4GVD
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货号: CL-0603

Price: ¥2200 ¥2200

Size:
1×10^6Cells/T25 1×10^6Cells/Vial×2Vials

生长培养基: DMEM/F12[PM150312]+10% FBS[164210]+1% P/S[PB180120]

产品信息

产品名称 KGN(人卵巢颗粒细胞)
生长特性 贴壁细胞
细胞形态 成纤维细胞样
冻存条件 冻存液:55% 基础培养基+40% FBS+5% DMSO
温度:液氮
培养方案A(默认) 生长培养基:DMEM/F12[PM150312]+10% FBS[164210]+1% P/S[PB180120]
培养条件: 气相:空气,95%;CO₂,5%, 温度:37℃
培养方案B(可选) 生长培养基:
培养条件: 气相:, 温度:37℃
推荐传代比例 1:2-1:4
推荐换液频率 2-3次/周

参考资料(来源文献)

背景描述 Granulosa cell tumor. Possible to produce progesterone after HCG addition. Cell growth is slow.
年龄(性别) 69Y Female
组织来源 卵巢,腹膜
细胞类型 肿瘤细胞
肿瘤类型 卵巢癌细胞
生物安全等级 BSL-1

STR位点信息

STR鉴定图

  • N6-methyladenosine demethylase FTO related to hyperandrogenism in PCOS via AKT pathway(2023)

    作者:Yuan-Xue Jing, Hong-Xing Li, Feng Yue, Yan-Mei Li, Xiao Yu, Jia-Jing He, Xue-Hong Zhang

    期刊:GYNECOLOGICAL ENDOCRINOLOGY

    DOI:10.1080/09513590.2023.2276167

    影响因子:2.0

    引用产品: KGN 细胞

  • Therapeutic effects of human umbilical cord mesenchymal stem cell-derived extracellular vesicles on ovarian functions through the PI3K/Akt cascade in mice with premature ovarian failure(2023)

    作者:Nan Li, Xue Fan, Lihong Liu, Yanbing Liu

    期刊:EUROPEAN JOURNAL OF HISTOCHEMISTRY

    DOI:10.4081/ejh.2023.3506

    影响因子:2.0

    引用产品: 人脐带间充质干细胞, KGN 细胞

  • KLF4 overexpression facilitates proliferation and represses apoptosis of granulosa cells in polycystic ovary syndrome(2023)

    作者:Miao Hui, Miao Congxiu, Li Na, Han Jing

    期刊:Molecular & Cellular Toxicology

    DOI:10.1007/s13273-023-00354-1

    影响因子:1.7

    引用产品: KGN 细胞

  • Glioma-Associated Oncogene Family Zinc Finger 2 (GLI2) Activates Wnt Signaling through Transcriptional Inhibition of Neuronal Precursor Cell-Expressed Developmentally Downregulated 4 (NEDD4L) to Promote Androgen-Induced Granulosa Cell Damage(2023)

    作者:Yi Zhang, Jianjun Wang, Yijun Zheng, Ting Zhu, Mingjie Shen, Peizhi He

    期刊:ANNALS OF CLINICAL AND LABORATORY SCIENCE

    DOI:PMID:36889770

    影响因子:0.8

    引用产品: KGN 细胞

  • The Effects of Abscisic Acid Administration in PCOS Rat Model and H2O2-Induced Human Granulosa Cell Damage: A Preliminary Investigation(2023)

    作者:Yidong Xie, Junliang Guo, Yifan Zhao, Xiaohong Li, Li Xiao, Shangwei Li

    期刊:Clinical and Experimental Obstetrics & Gynecology

    DOI:10.31083/j.ceog5006124

    影响因子:0.2

    引用产品: KGN 细胞

  • RNA binding protein IGF2BP1 meditates oxidative stress-induced granulosa cell dysfunction by regulating MDM2 mRNA stability in an m6A-dependent manner(2022)

    作者:Hongbei Mu, Siying Cai, Xiaofei Wang, Huiying Li, Ling Zhang, Huaibiao Li, Wenpei Xiang

    期刊:Redox Biology

    DOI:10.1016/j.redox.2022.102492

    影响因子:10.8

    引用产品: KGN 细胞, 293T [HEK-293T] 细胞

  • The E3 Ubiquitin Ligase SYVN1 Plays an Antiapoptotic Role in Polycystic Ovary Syndrome by Regulating Mitochondrial Fission.(2022)

    作者:Lihua Sun, Hongjuan Ye, Hui Tian, Lirong Xu, Junjie Cai, Caixia Zhang, Rongxiang Wang, Hui Yang, Shuang Zhao, Jiaozhi Zhang, Shaorong Gao

    期刊:Oxidative Medicine and Cellular Longevity

    DOI:10.1155/2022/3639302

    影响因子:7.3

    引用产品: KGN 细胞

  • Single-nucleus RNA Sequencing reveals the mechanism of cigarette smoke exposure on diminished ovarian reserve in mice(2022)

    作者:Fang Li, Ying Wang, Mengting Xu, Nengyin Hu, Jianing Miao, Yanhui Zhao, Lili Wang

    期刊:ECOTOXICOLOGY AND ENVIRONMENTAL SAFETY

    DOI:10.1016/j.ecoenv.2022.114093

    影响因子:7.1

    引用产品: KGN 细胞

  • NUF2 overexpression contributes to epithelial ovarian cancer progression via ERBB3-mediated PI3K-AKT and MAPK signaling axes.(2022)

    作者:Ruobing Leng, Yunfang Meng, Xiaomei Sun, Yingzi Zhao

    期刊:Frontiers in Oncology

    DOI:10.3389/fonc.2022.1057198

    影响因子:5.7

    引用产品: KGN 细胞

  • GIMAP7 induces oxidative stress and apoptosis of ovarian granulosa cells in polycystic ovary syndrome by inhibiting sonic hedgehog signalling pathway(2022)

    作者:Xu Anran, Fan Yuanyuan, Liu Song, Sheng Lianbing, Sun Yanyan, Yang Huijun

    期刊:Journal of Ovarian Research

    DOI:10.1186/s13048-022-01092-z

    影响因子:5.5

    引用产品: KGN 细胞

  • Q1:为什么我看的文献里的细胞培养条件和你们官网的培养条件不一样呢?

    部分细胞是会出现多种培养条件的,我们公司优先选择引种来源的培养条件以及建系者所用培养条件,出现差异的原因是不同实验室在保藏过程中更改了细胞的培养条件,为了避免细胞突然更换培养条件后不适应,建议您优先使用厂家推荐的培养条件培养。

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