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  • MC3T3-E1 Subclone 14 (小鼠顱頂前骨細(xì)胞亞克隆14) (STR鑒定正確)
  • MC3T3-E1 Subclone 14 (小鼠顱頂前骨細(xì)胞亞克隆14) (STR鑒定正確)
  • MC3T3-E1 Subclone 14 (小鼠顱頂前骨細(xì)胞亞克隆14) (STR鑒定正確)
  • MC3T3-E1 Subclone 14 (小鼠顱頂前骨細(xì)胞亞克隆14) (STR鑒定正確)
  • MC3T3-E1 Subclone 14 (小鼠顱頂前骨細(xì)胞亞克隆14) (STR鑒定正確)
  • MC3T3-E1 Subclone 14 (小鼠顱頂前骨細(xì)胞亞克隆14) (STR鑒定正確)
  • MC3T3-E1 Subclone 14 (小鼠顱頂前骨細(xì)胞亞克隆14) (STR鑒定正確)

MC3T3-E1 Subclone 14 (小鼠顱頂前骨細(xì)胞亞克隆14) (STR鑒定正確)

貨號(hào):CL-0378

規(guī)格:1×10?cells/T25培養(yǎng)瓶

價(jià)格: ¥1600

生長培養(yǎng)基:MEMα10% FBS1% P/S

數(shù)量: - +

  • MC3T3-E1 Subclone 14 (小鼠顱頂前骨細(xì)胞亞克隆14) (STR鑒定正確)
  • MC3T3-E1 Subclone 14 (小鼠顱頂前骨細(xì)胞亞克隆14) (STR鑒定正確)
  • MC3T3-E1 Subclone 14 (小鼠顱頂前骨細(xì)胞亞克隆14) (STR鑒定正確)
  • MC3T3-E1 Subclone 14 (小鼠顱頂前骨細(xì)胞亞克隆14) (STR鑒定正確)
  • MC3T3-E1 Subclone 14 (小鼠顱頂前骨細(xì)胞亞克隆14) (STR鑒定正確)
  • MC3T3-E1 Subclone 14 (小鼠顱頂前骨細(xì)胞亞克隆14) (STR鑒定正確)
  • MC3T3-E1 Subclone 14 (小鼠顱頂前骨細(xì)胞亞克隆14) (STR鑒定正確)

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MC3T3-E1 Subclone 14 (小鼠顱頂前骨細(xì)胞亞克隆14) (STR鑒定正確) ¥1600
MC3T3-E1 Subclone 14細(xì)胞專用培養(yǎng)基
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產(chǎn)品概述
產(chǎn)品信息
名稱 MC3T3-E1 Subclone 14 (小鼠顱頂前骨細(xì)胞亞克隆14) (STR鑒定正確)
別稱 MC3T3-E1 SUBCLONE 14
種屬 小鼠
生長特性 貼壁細(xì)胞
細(xì)胞形態(tài) 成纖維細(xì)胞樣
凍存條件 凍存液:55% 基礎(chǔ)培養(yǎng)基+40%FBS+5%DMSO 溫度:液氮
培養(yǎng)方案A(默認(rèn))
生長培養(yǎng)基:
培養(yǎng)條件:
氣相:空氣,95%;CO2,5%, 溫度:37℃
推薦傳代比例 1:3-1:4
推薦換液頻率 2-3次/周
參考資料(來源文獻(xiàn))
背景描述 從克隆的但是表型各異的MC3T3-E1細(xì)胞系中分離出一系列亞克隆,從含抗壞血酸培養(yǎng)基生長的成骨細(xì)胞中選擇高或低成骨細(xì)胞分化、礦化的亞克隆。MC3T3-E1 Subclone 4和MC3T3-E1 Subclone 14在抗壞血酸和3-4mM無機(jī)磷酸鹽中生長表現(xiàn)出高水平的成骨細(xì)胞分化。它們10天后形成一個(gè)礦化良好的細(xì)胞外基質(zhì)(ECM)。MC3T3-E1 Subclone 24和MC3T3-E1 Subclone 30在抗壞血酸中生長表現(xiàn)出很差的成骨細(xì)胞分化,不形成ECM,可以作為MC3T3-E1 Subclone 4和MC3T3-E1 Subclone 14的陰性對(duì)照。礦化的亞克隆選擇的表達(dá)作為成骨細(xì)胞標(biāo)記的mRNA及唾液酸糖蛋白(BSP)、骨鈣素(OCN)和甲狀旁腺激素/甲狀旁腺激素相關(guān)蛋白受體的mRNA。高或者低的分化潛能的亞克隆在培養(yǎng)中生產(chǎn)出相似數(shù)量的膠原質(zhì),表達(dá)可比較的基本水平的mRNA編碼Osf2/Cbfa1,一種成骨細(xì)胞相關(guān)轉(zhuǎn)錄因子。植入免疫缺陷小鼠以后,高分化性的亞克隆形成與骨類似的形成小骨的編織骨,低分化細(xì)胞只是產(chǎn)生纖維組織。這些細(xì)胞系是研究體外成骨細(xì)胞分化的好模型,尤其是ECM信號(hào)。它們和原代培養(yǎng)顱頂成骨細(xì)胞的行為類似。
年齡(性別) 新生
組織來源 顱頂骨
細(xì)胞類型 自發(fā)永生化細(xì)胞
生物安全等級(jí) BSL-1
致瘤性 Yes, in immunodeficient mice (forms bone-like ossicles).
基因表達(dá)情況 collagen
保藏機(jī)構(gòu) ATCC; CRL-2594
STR鑒定
  • STR位點(diǎn)信息
    18-3 15
    6-7 17
    5-5 17
    X-1 28
    1-2 19
    7-1 26.2
    8-1 16
    1-1 16,17
    19-2 13
    15-3 22.3
    12-1 17
    6-4 18
    4-2 20.3
    3-2 14
    2-1 16
    13-1

    16.1

    11-2 16
    17-2 16
  • STR鑒定圖
參考文獻(xiàn)
文獻(xiàn)列表
  • A clinical-stage Nrf2 activator suppresses osteoclast differentiation via the iron-ornithine axis(2024/04/02)

    作者:Yimin Dong, Honglei Kang, Renpeng Peng

    期刊:Cell Metabolism

    DOI:10.1016/j.cmet.2024.03.005

    影響因子 :29.000

    引用產(chǎn)品:CL-0378

  • A novel photothermally controlled multifunctional scaffold for clinical treatment of osteosarcoma and tissue regeneration(2020/06/01)

    作者:Liang Ma, Xiaobo Feng, Hang Liang

    期刊:Materials Today

    DOI:10.1016/j.mattod.2019.12.005

    影響因子 :24.200

    引用產(chǎn)品:CL-0360 CL-0378

  • Local bone metabolism balance regulation via double-adhesive hydrogel for fixing orthopedic implants(2021/10/19)

    作者:Wei Jiang, Fushan Hou, Yong Gu

    期刊:Bioactive Materials

    DOI:10.1016/j.bioactmat.2021.10.017

    影響因子 :18.900

    引用產(chǎn)品:CL-0378

  • A bone-targeted engineered exosome platform delivering siRNA to treat osteoporosis(2021/09/17)

    作者:Yongzhi Cui, Yuanyuan Guo, Li Kong

    期刊:Bioactive Materials

    DOI:10.1016/j.bioactmat.2021.09.015

    影響因子 :18.900

    引用產(chǎn)品:CL-0190 CL-0378 CL-0598

  • An injectable self-adaptive polymer as a drug carrier for the treatment of nontraumatic early-stage osteonecrosis of the femoral head(2022/03/12)

    作者:Ning Kong, Hang Yang, Run Tian

    期刊:Bone Research

    DOI:10.1038/s41413-022-00196-y

    影響因子 :12.700

    引用產(chǎn)品:CL-0378 CP-H166

  • An oxidized dextran-composite self-healing coated magnesium scaffold reduces apoptosis to induce bone regeneration(2023/12/07)

    作者:Zewen Shi, Fang Yang, Yiwei Hu

    期刊:CARBOHYDRATE POLYMERS

    DOI:10.1016/j.carbpol.2023.121666

    影響因子 :11.200

    引用產(chǎn)品:CL-0378

  • Electron transfer correlated antibacterial activity of biocompatible graphene Nanosheets-TiO2 coatings(2020/05/22)

    作者:Minggang Yang, Hui Liu, Caijie Qiu

    期刊:Carbon

    DOI:10.1016/j.carbon.2020.05.036

    影響因子 :10.900

    引用產(chǎn)品:CL-0378

  • ?ngstrom-scale gold particles loaded with alendronate via alpha-lipoic acid alleviate bone loss in osteoporotic mice(2024/04/30)

    作者:Weihang Gao, Jiaojiao Li, Jingyu Shi

    期刊:JOURNAL OF NANOBIOTECHNOLOGY

    DOI:10.1186/s12951-024-02466-9

    影響因子 :10.200

    引用產(chǎn)品:CL-0378

  • Title A horn Peptide-Thermoresponsive Hydrogel for Angiogenesis and Bone Regeneration(2024/03/29)

    作者:Nannan Xue, Pei Liu, Wenjian Zhao

    期刊:Advanced Healthcare Materials

    DOI:10.1002/adhm.202304400

    影響因子 :10.000

    引用產(chǎn)品:CL-0378

  • Bioinspired self-healing injectable nanocomposite hydrogels based on oxidized dextran and gelatin for growth-factor-free bone regeneration(2023/08/06)

    作者:Wuchao Ma, Meilian Yang, Chao Wu, Shaoyun Wang, Ming Du

    期刊:INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES

    DOI:10.1016/j.ijbiomac.2023.126145

    影響因子 :8.200

    引用產(chǎn)品:CL-0378

  • Surface functionalization of calcium magnesium phosphate cements with alginate sodium for enhanced bone regeneration via TRPM7/PI3K/Akt signaling pathway(2024/03/22)

    作者:Changtian Gong, Jian Yang, Xiping Zhang

    期刊:INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES

    DOI:10.1016/j.ijbiomac.2024.130998

    影響因子 :8.200

    引用產(chǎn)品:CL-0378

  • Inhibition of Nrf2 degradation alleviates age-related osteoporosis induced by 1,25-Dihydroxyvitamin D deficiency(2021/12/08)

    作者:Renlei Yang, Jiao Zhang, Jie Li

    期刊:Free Radical Biology And Medicine

    DOI:10.1016/j.freeradbiomed.2021.12.010

    影響因子 :8.101

    引用產(chǎn)品:CL-0378

  • Novel Antiosteoporotic Peptides Purified from Protein Hydrolysates of Taihe black-boned silky fowl: By larval Zebrafish Model and Molecular docking(2023/04/19)

    作者:Yang Qiu, Jianyue Ying, Fujie Yan

    期刊:FOOD RESEARCH INTERNATIONAL

    DOI:10.1016/j.foodres.2023.112850

    影響因子 :8.100

    引用產(chǎn)品:CL-0378

  • The osteogenesis and the biologic mechanism of thermo-responsive injectable hydrogel containing carboxymethyl chitosan/sodium alginate nanoparticles towards promoting osteal wound healing(2022/10/18)

    作者:Zewen Shi, Fang Yang, Qian Pang

    期刊:INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES

    DOI:10.1016/j.ijbiomac.2022.10.142

    影響因子 :8.025

    引用產(chǎn)品:CL-0378

  • Fabrication of Submicro-Nano Structures on Polyetheretherketone Surface by Femtosecond Laser for Exciting Cellular Responses of MC3T3-E1 Cells/Gingival Epithelial Cells(2023/03/17)

    作者:Dong Xie, Chenhui Xu, Cheng Ye

    期刊:International Journal of Nanomedicine

    DOI:10.2147/IJN.S303411

    影響因子 :8.000

    引用產(chǎn)品:CL-0378

  • High Strength and Shape Memory Spinal Fusion Device for Minimally Invasive Interbody Fusions(2024/05/31)

    作者:Min Liu, Bo Liu, Ziyang Liu

    期刊:International Journal of Nanomedicine

    DOI:10.2147/IJN.S460339

    影響因子 :8.000

    引用產(chǎn)品:CL-0378

  • Effects of the combination of Epimedii Folium and Ligustri Lucidi Fructus on apoptosis and autophagy in SOP rats and osteoblasts via PI3K/AKT/mTOR pathway(2024/03/01)

    作者:Yuman Li, Ping Yu, Yingying Gao

    期刊:BIOMEDICINE & PHARMACOTHERAPY

    DOI:10.1016/j.biopha.2024.116346

    影響因子 :7.500

    引用產(chǎn)品:CL-0378

  • Activation of TGR5 promotes osteoblastic cell differentiation and mineralization(2018/10/16)

    作者:Qingfeng Wang, Guoqiang Wang, Bin Wang

    期刊:Biomedicine & Pharmacotherapy

    DOI:10.1016/j.biopha.2018.08.093

    影響因子 :7.500

    引用產(chǎn)品:CL-0378

  • Corylifol A protects against ovariectomized-induced bone loss and attenuates RANKL‐induced osteoclastogenesis via ROS reduction, ERK inhibition, and NFATc1 activation(2023/01/14)

    作者:Yinglong Xu, Dezhi Song, Xixi Lin

    期刊:FREE RADICAL BIOLOGY AND MEDICINE

    DOI:10.1016/j.freeradbiomed.2023.01.017

    影響因子 :7.400

    引用產(chǎn)品:CL-0378

  • Amorphous Calcium Magnesium Phosphate Nanocomposites with Superior Osteogenic Activity for Bone Regeneration(2021/11/24)

    作者:Jiang Yingying, Tan Shuo, Hu Jianping

    期刊:Regenerative Biomaterials

    DOI:10.1093/rb/rbab068

    影響因子 :6.700

    引用產(chǎn)品:CL-0378

  • Osteo-angiogenic activity of a micro/nano hierarchical SrSi-codoped hydroxyapatite coating on zirconium alloy(2024/05/13)

    作者:Xiaoning Xu, Kaige Wang, Xinrong Tan

    期刊:Journal of Materials Research and Technology-JMR&T

    DOI:10.1016/j.jmrt.2024.05.067

    影響因子 :6.400

    引用產(chǎn)品:CL-0378

  • Covalent immobilization of VEGF on allogeneic bone through polydopamine coating to improve bone regeneration(2022/10/12)

    作者:Jianhao Huang, Jingwei Lu, Ziying Liu

    期刊:Frontiers in Bioengineering and Biotechnology

    DOI:10.3389/fbioe.2022.1003677

    影響因子 :6.064

    引用產(chǎn)品:CL-0378

  • Canagliflozin promotes osteoblastic MC3T3-E1 differentiation via AMPK/RUNX2 and improves bone microarchitecture in type 2 diabetic mice(2022/12/16)

    作者:Peiyang Song, Tianyi Chen, Shunli Rui

    期刊:Frontiers in Endocrinology

    DOI:10.3389/fendo.2022.1081039

    影響因子 :6.055

    引用產(chǎn)品:CL-0378

  • 3D-Printed Scaffolds of Porous Amorphous Calcium Phosphate Nanospheres Loaded with Quercetin for Promoting Bone Repair via Synergistic Osteogenesis and Immunoregulation(2024/04/24)

    作者:Rui Xu, Jie Yin, Lan Li

    期刊:ACS Applied Nano Materials

    DOI:10.1021/acsanm.4c01020

    影響因子 :5.900

    引用產(chǎn)品:CL-0378

  • Bilayer Membrane Composed of Mineralized Collagen and Chitosan Cast Film Coated With Berberine-Loaded PCL/PVP Electrospun Nanofiber Promotes Bone Regeneration(2021/7/19)

    作者:Yuhan Zhang, Ting Wang, Juan Li

    期刊:Frontiers in Bioengineering and Biotechnology

    DOI:10.3389/fbioe.2021.684335

    影響因子 :5.700

    引用產(chǎn)品:CL-0378 PM150421

  • IGF2BP2, an RNA-binding protein regulates cell proliferation and osteogenic differentiation by stabilizing SRF mRNA(2022/11/27)

    作者:Zimo Zhou, Senxiang Chen, Tong Wu, Yifeng Chen, Yuxiao Cao, Ying Huang, Da Liu

    期刊:JOURNAL OF CELLULAR PHYSIOLOGY

    DOI:10.1002/jcp.30919

    影響因子 :5.600

    引用產(chǎn)品:CL-0378 PM150421B

  • Dipeptidyl peptidase 3 is essential for maintaining osteoblastic differentiation under a high-glucose environment by inhibiting apoptosis, oxidative stress and inflammation through the modulation of the Keap1-Nrf2 pathway(2023/06/03)

    作者:Xiaofeng Li, Xiangyou Yu, Shenglin He

    期刊:INTERNATIONAL IMMUNOPHARMACOLOGY

    DOI:10.1016/j.intimp.2023.110404

    影響因子 :5.600

    引用產(chǎn)品:CL-0378

  • Er-xian decoction drug-containing serum promotes Mc3t3-e1 cell proliferation and osteogenic differentiation via regulating BK channel(2022/11/01)

    作者:Ming-Shi Ren, Hui-Hui Xie, Yu Ding, Zi-Han Li, Bo Liu

    期刊:JOURNAL OF ETHNOPHARMACOLOGY

    DOI:10.1016/j.jep.2022.115887

    影響因子 :5.400

    引用產(chǎn)品:CL-0378

  • Apocynin exerts cytoprotective effects on dexamethasone-induced osteoblasts by inhibiting oxidative stress through the Nrf2 signalling pathway(2023/09/25)

    作者:Xinglong Zhang, Ran Pang, Kai Zhang

    期刊:JOURNAL OF CELLULAR AND MOLECULAR MEDICINE

    DOI:10.1111/jcmm.17974

    影響因子 :5.300

    引用產(chǎn)品:CL-0378

  • The effect of calcitonin gene-related peptide functionalized TiO2 nanotubes on osteoblast and osteoclast differentiation in vitro(2020/05/05)

    作者:Min Lai, Xufeng Yan, Ke Shen

    期刊:Colloids And Surfaces A-Physicochemical And Engineering Aspects

    DOI:10.1016/j.colsurfa.2020.124899

    影響因子 :5.200

    引用產(chǎn)品:CL-0190 CL-0378

  • Lactobacillus plantarum 45 activates SHP2 through inhibition of oxidative stress to regulate osteoblast and osteoclast differentiation(2024/04/03)

    作者:Yaming Yang, Zheng Yan, Qi Xie

    期刊:Aging-US

    DOI:10.18632/aging.205708

    影響因子 :5.200

    引用產(chǎn)品:CL-0378

  • Effects of a novel self-assembling peptide scaffold on bone regeneration and controlled release of two growth factors(2021/12/07)

    作者:Hongchuan Tian,?Ai Guo,?Kai Li

    期刊:Journal Of Biomedical Materials Research Part A

    DOI:10.1002/jbm.a.37342

    影響因子 :4.900

    引用產(chǎn)品:CL-0378

  • Study on complications of osteoporosis based on network pharmacology(2022/09/29)

    作者:Zhijing Song, Haoling Zhang, Yuhang Jiang

    期刊:Frontiers in Genetics

    DOI:10.3389/fgene.2022.941098

    影響因子 :4.772

    引用產(chǎn)品:CL-0378

  • Study of Injectable Hydrogel Based on ALN/Nha Promoting Osteogenesis And Inhibiting Osteoclasts in Osteoporotic Bone Defects Repair(2024/01/12)

    作者:Lu Yang, Xingyu Chen, Long Chen

    期刊:MACROMOLECULAR BIOSCIENCE

    DOI:10.1002/mabi.202300416

    影響因子 :4.600

    引用產(chǎn)品:CL-0378

  • A novel fluorescent probe for detecting hydrogen sulfide in osteoblasts during lipopolysaccharide-mediated inflammation under periodontitis(2021/10/11)

    作者:Xiaoya Lu , Hanchuang Zhu , Yi Chen

    期刊:Scientific Reports

    DOI:10.1038/s41598-021-99761-4

    影響因子 :4.600

    引用產(chǎn)品:CL-0378

  • Resveratrol Protects Osteoblasts Against Dexamethasone-Induced Cytotoxicity Through Activation of AMP-Activated Protein Kinase(2022/10/31)

    作者:Liang Wang, Qiushi Li, Haibo Yan

    期刊:Drug Design Development and Therapy

    DOI:10.2147/DDDT.S266502

    影響因子 :4.319

    引用產(chǎn)品:CL-0378

  • Elucidating the role of the GC/GR/GLUT1 axis in steroid-induced osteonecrosis of the femoral head: A proteomic approach(2024/03/20)

    作者:Hongbin Luo, Jie Wei, Songye Wu

    期刊:BONE

    DOI:10.1016/j.bone.2024.117074

    影響因子 :4.100

    引用產(chǎn)品:CL-0378

  • Hydroxyapatite formation in biomimetic synthesis with the interface of a pDA@SIS membrane(2022/05/03)

    作者:Qiuhong Zhu, Hua Jiao, Xiaoliang Zhao

    期刊:RSC Advances

    DOI:10.1039/D2RA00910B

    影響因子 :4.036

    引用產(chǎn)品:CL-0378

  • Microstructured titanium functionalized by naringin inserted multilayers for promoting osteogenesis and inhibiting osteoclastogenesis(2021/08/10)

    作者:Ke Shen, Xiaojing Zhang, Qiang Tang

    期刊:Journal Of Biomaterials Science-Polymer Edition

    DOI:10.1080/09205063.2021.1949098

    影響因子 :3.600

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    期刊:Biomaterials Advances

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