货号: CL-0042
Price: ¥1400 ¥1400
生长培养基: RPMI-1640[PM150110]+10% FBS[164210]+1% P/S[PB180120]
产品信息
产品名称 | BxPC-3(人原位胰腺腺癌细胞) |
别称 | BxPc-3; BXPC-3; Bx-PC3; BXPC3; BxPC3; BxPc3; Biopsy xenograft of Pancreatic Carcinoma line-3 |
生长特性 | 贴壁细胞 |
细胞形态 | 上皮细胞样 |
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:RPMI-1640[PM150110]+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 | 1:3-1:6 |
推荐换液频率 | 2-3次/周 |
参考资料(来源文献)
背景描述 | BxPC-3细胞不表达囊肿性纤维化跨膜电导调节子(CFTR),CFTR阳性的细胞株是Capan-1。 |
年龄(性别) | 61Y Female |
组织来源 | 胰腺;腺癌 |
细胞类型 | 肿瘤细胞 |
肿瘤类型 | 胰腺癌细胞 |
生物安全等级 | BSL-1 |
致瘤性 | Yes, Tumors developed within 21 days at 100% frequency (5/5) in nude mice inoculated subcutaneously with 1×10<sup>7</sup> cells. |
STR位点信息
STR鉴定图
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Lactobacillus casei combined with Lactobacillus reuteri alleviate pancreatic cancer by inhibiting TLR4 to promote macrophage M1 polarization and regulate gut microbial homeostasis(2023)
作者:Zhu Zemin, Yi Bo, Tang Zikai, Chen Xun, Li Ming, Xu Tao, Zhao Zhijian, Tang Caixi
期刊:BMC CANCER
DOI:10.1186/s12885-023-11557-z
影响因子:3.8
引用产品: MIA PaCa-2 细胞, PANC-1 细胞, AsPC-1 细胞, BxPC-3 细胞, THP-1 细胞, DMEM高糖 培养基, RPMI-1640 培养基, 特级胎牛血清, 马血清, 青霉素-链霉素溶液 (双抗),100×, β-巯基乙醇 (55mM),1000×
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Preparation and Characterization of PLGA-based Magnetic Polymer Nanoparticles for Targeting Pancreatic Adenocarcinoma(2023)
作者:Lu Liangji, Jie Liyong, Zhou Ying, Zhang Jiaojiao, Feng Tingting, Zhu Yue, Chen Teng, Zhu Xiuliang, Ji Jiansong, Wang Zuhua
期刊:CURRENT PHARMACEUTICAL DESIGN
DOI:10.2174/1381612829666230324091555
影响因子:3.1
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Comprehensive pan-cancer analysis of role of GPRASP1, associated with clinical outcomes, immune microenvironment, and immunotherapeutic efficiency in pancreatic cancer(2023)
作者:Jiaxing Du, Yongsheng Chen, Genglong Liu, Qingxing Zeng, Nan Zhou, Dajun Du
期刊:PATHOLOGY RESEARCH AND PRACTICE
影响因子:2.8
引用产品: PANC-1 细胞, MIA PaCa-2 细胞, BxPC-3 细胞, SW 1990 细胞, AsPC-1 细胞
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The DEAD-box RNA helicase, DDX60, Suppresses immunotherapy and promotes malignant progression of pancreatic cancer(2023)
作者:Tiantian Lai, Xiaowen Su, Enhong Chen, Yue Tao, Shuo Zhang, Leisheng Wang, Yong Mao, Hao Hu
期刊:Biochemistry and Biophysics Reports
DOI:10.1016/j.bbrep.2023.101488
影响因子:2.7
引用产品: BxPC-3 细胞
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Synthesis of Copper and Cobalt complexes with a Hydrothermal Method and Their Applications in Antibiological Activity(2023)
作者:Qiongli Luo, Lei Wang, Shuangyan Wu, Mingchang Zhu, Ying Zhang, Lin Lin
期刊:ChemistrySelect
影响因子:2.1
引用产品: BxPC-3 细胞
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ZKSCAN5 activates LAPTM5 expression by recruiting SETD7 to promote metastasis in pancreatic ductal adenocarcinoma.(2023)
作者:Yang Y, Xie W, Qiao X, Yang J, Yao D, Zhu D
期刊:HISTOLOGY AND HISTOPATHOLOGY
影响因子:2.0
引用产品: 青霉素-链霉素溶液(双抗),100×, AsPC-1 细胞, Annexin V-FITC/PI荧光双染细胞凋亡检测试剂盒, CFPAC-1 细胞, Capan-1 细胞, BxPC-3 细胞
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Biomimetic camouflaged nanoparticle-based folfirinox platform for optimizing clinical pancreatic cancer treatment(2022)
作者:Qian Wang, Zihua Wang, Zhangfu Li, Dan Li, Fangfei He, Kun Wang, Jie Tian, Xinming Zhao
期刊:Nano Today
DOI:10.1016/j.nantod.2022.101733
影响因子:19.0
引用产品: BxPC-3 细胞
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Albumin binding revitalizes NQO1 bioactivatable drugs as novel therapeutics for pancreatic cancer(2022)
作者:Lei Dou, Huiqin Liu, Kaixin Wang, Jing Liu, Lei Liu, Junxiao Ye, Rui Wang, Haiteng Deng, Feng Qian
期刊:JOURNAL OF CONTROLLED RELEASE
DOI:10.1016/j.jconrel.2022.07.033
影响因子:11.5
引用产品: MIA PaCa-2 细胞, BxPC-3 细胞, AsPC-1 细胞, SW 1990 细胞
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ZMAT1 acts as a tumor suppressor in pancreatic ductal adenocarcinoma by inducing SIRT3/p53 signaling pathway(2022)
作者:Ma Zuyi, Li Zhenchong, Wang Shujie
期刊:JOURNAL OF EXPERIMENTAL & CLINICAL CANCER RESEARCH
DOI:10.1186/s13046-022-02310-8
影响因子:11.3
引用产品: PANC-1 细胞, BxPC-3 细胞, Capan-2 细胞, SW 1990 细胞, AsPC-1 细胞
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Extracellular matrix modulating enzyme functionalized biomimetic Au nanoplatform-mediated enhanced tumor penetration and synergistic antitumor therapy for pancreatic cancer(2022)
作者:Yang Xiao-Yan, Zhang Jin-Guo, Zhou Qiao-Mei, Yu Jie-Ni, Lu Yuan-Fei, Wang Xiao-Jie, Zhou Jia-Ping, Ding Xin-Fa, Du Yong-Zhong, Yu Ri-Sheng
期刊:JOURNAL OF NANOBIOTECHNOLOGY
DOI:10.1186/s12951-022-01738-6
影响因子:9.4
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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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