Medicine Platform

细胞组织工程三维培养生物反应器

  • Favorite

Price

  • 1.53/

世联博研(香港)科技有限公司
010-57218832
  • Shipping From  
  • Brand  flexcell
Other Products from This Company
The information on this page regarding the "细胞组织工程三维培养生物反应器" product is provided by 世联博研(香港)科技有限公司. If you would like to know more about the price, model, and manufacturer of "细胞组织工程三维培养生物反应器", please contact the supplier or leave a message.
Inquiries N/A
Shipping
Brand flexcell
Expires Long-term
Last Updated 2025-08-08 22:24

细胞组织工程三维培养生物反应器

产品英文名称:Auto 3D cell&Tissue Culture、 Bioartificial Tissue Fabrication、Mechanical stimulation System
产品中文名称:全自动可牵张拉伸刺激三维组织工程细胞培养、组织构建系统
产品编号:FX-5000TT 产品品牌:flexcell
价格/规格:询价
FLEXCELL Tissue Train® 是个独立的全自动细胞组织三维培养、组织构建计算机智能控制的生物反应器系统,它允许研究者创建三维基质凝胶支架,
在基质里细胞培养、构建生物组织,可为三维细胞、组织提供双轴向应力和单轴向应力,FLEXCELL Tissue Train®
是当今科研界最先进的可拉伸刺激三维细胞培养、生物组织构建系统系统。
系统功能亮点:
  • 三维细胞牵张应力加载刺激:对生长在三维状态下的细胞进行静态的或者周期性的拉应力刺激
    通过Flexcell应力加载系统和弧矩形加载平台对生长在三维环境下的细胞进行单轴向
    或者双轴向的静态或者周期性的应力加载刺激培养
  • 三维细胞培养:使用三维组织培养模具和三维细胞培养板可以进行三维细胞培养在凝胶支架里全自动三维培养
    三维组织培养模具和三维细胞培养板类型丰富:
    1)三维组织培养模具有三维线形培养加载基站模具和三维梯形培养加载基站模具
    2)具有氨基酸包被表面、胶原(I型或IV)包被表面、弹性蛋白包被表面、ProNectin(RGD)包被表面、层粘连蛋白(YIGSR)包被表面的三维培养板。
    科研者根据自己的细胞,有针对性的选择适合包被表面三维培养板
    3)具有可牵拉双轴向和单轴向拉力刺激加载三维组织培养板。
  • 大体积三维生物人工组织培养构建:可构建长度达35mm的生物人工组织
  • 动力模拟实验:可建立特制的各种模拟实验:心率模拟实验、步行模拟实验、跑动模拟实验和其他动力模拟实验
  • 本系统技术先进性:
    1)安全快速的扩增细胞
    2)在细胞特异性基质(圆盘形陶瓷载体培养片) 中进行三维的细胞高密度培养
    3)扩增并获得可用于治疗的有活性的原代细胞
    4)在控制分化状态的条件下扩增干细胞
    5)向植入的一代细胞提供植入支架
    6)长期培养分泌细胞
    7)高效生产重组蛋白和疫苗
    8)生产优质的糖蛋白
    9)三维培养与机械力刺激有机结合
    10)三维凝胶压实自动测量与面积自动计算
  • 可用于多个领域,如研究、生物制药加工;也可为细胞和组织培养工作提供解决方案:
    1)可用于干细胞和胚体扩增及定向分化
    2)可用于细胞和组织治疗的细胞制备
    3)可用于克隆细胞,为器官移植做准备(例如hip stem, heart valve, graft)
    4)可用于制备天然的生物制品(例如糖蛋白、病毒、病毒样颗粒)
  • 观察细胞应力下实时反映:使用Flexcell独有的Flexcell StageFlexer Jr.显微附属设备,可在加力刺激的同时实时观察细胞在三维状态下牵拉刺激的反应
  • 多种基质蛋白包被的尼龙网锚可以加强细胞与网锚的结合

TISSUE TRAIN®AND 3D CULTURE SYSTEM 应用文献

  1. Abraham T, Kayra D, McManus B, Scott A. Quantitative assessment of forward and backward second harmonic three dimensional images of collagen Type I matrix remodeling in a stimulated cellular
    environment. J Struct Biol 180(1):17-25, 2012. doi: 10.1016/j.jsb.2012.05.004. Epub 2012 May 15.
  2. Ahearne M, Bagnaninchi PO, Yang Y, El Haj AJ. Online monitoring of collagen fibre alignment in tissue-engineered tendon by PSOCT. J Tissue Eng Regen Med 2(8):521-524, 2008.
  3. Allison DA, Wight TN, Ripp NJ, Braun KR, Grande-Allen KJ. Endogenous overexpression of hyaluronan synthases within dynamically cultured collagen gels: Implications for vascular and valvular disease.Biomaterials 29:2969-2976, 2008.
  4. Charoenpanich A, Wall ME, Tucker CJ, Andrews DM, Lalush DS, Loboa EG.Microarray analysis of human adipose-derived stem cells in three-dimensional collagen culture: osteogenesis inhibits bone morphogenic protein and Wnt signaling pathways, and cyclic tensile strain causes upregulation of proinflammatory cytokine regulators and angiogenic factors. Tissue Eng Part A 17(21-22):2615-2627, 2011. Epub 2011 Jul 18.
  5. Clause KC, Tinney JP, Liu LJ, Gharaibeh B, Huard J, Kirk JA, Shroff SG, Fujimoto KL, Wagner WR, Ralphe JC, Keller BB, Tobita K. A three-dimensional gel bioreactor for assessment of cardiomyocyte induction in skeletal muscle-derived stem cells. Tissue Eng Part C Methods 16(3):375-385, 2010.
  6. Clause KC, Tinney JP, Liu LJ, Keller BB, Tobita K. Engineered early embryonic cardiac tissue increases cardiomyocyte proliferation by cyclic mechanical stretch via p38-MAP kinase phosphorylation. Tissue Engineering Part A 15(6):1373-1380, 2009.
  7. Clause KC, Tinney JP, Liu JL, Keller BB, Huard J, Tobita K. p38MAP-kinase regulates cardiomyocyte proliferation and contractile properties of engineered early embryonic cardiac tissue [abstract]. Weinstein Cardiovascular Development Research Conference, Indianapolis, IN, 2007.
  8. Clause KC, Tinney JP, Liu JL, Gharaibeh B, Fujimoto LK, Wagner WR, Ralphe JC, Keller BB, Huard J, Tobita K. Functioning engineered cardiac tissue from skeletal muscle derived stem cells [abstract]. 4th Annual Symposium of AHA Council on Basic Cardiovascular Sciences, Keystone CO, 2007.
  9. Ferdous Z, Lazaro LD, Iozzo RV, H??k M, Grande-Allen KJ.Influence of cyclic strain and decorin deficiency on 3D cellularized collagen matrices. Biomaterials 29(18):2740-2748, 2008. Epub 2008 Apr 3.
  10. Garvin J, Qi J, Maloney M, Banes AJ. Novel system for engineering bioartificial tendons and application of mechanical load. Tissue Eng 9(5):967-979, 2003.
  11. Henshaw DR, Attia E, Bhargava M, Hannafin JA. Canine ACL fibroblast integrin expression and cell alignment in response to cyclic tensile strain in three-dimensional collagen gels. J Orthop Res 24(3):481-490, 2006.
  12. Jobling AI, Gentle A, Metlapally R, McGowan BJ, McBrien NA. Regulation of scleral cell contraction by transforming growth factor-β and stress: competing roles in myopic eye growth. J Biol Chem 284(4):2072-2079, 2009. Epub 2008 Nov 14.
  13. Lee CH, Shin HJ, Cho IH, Kang YM, Kim IA, Park KD, Shin JW. Nanofiber alignment and direction of mechanical strain affect the ECM production of human ACL fibroblast. Biomaterials 26(11):1261-1270, 2005.
  14. Nieponice A, Maul TM, Cumer JM, Soletti L, Vorp DA. Mechanical stimulation induces morphological and phenotypic changes in bone marrow-derived progenitor cells within a three-dimensional fibrin matrix. J Biomed Mater Res A 81(3):523-530, 2007.
  15. Nourse MB, Halpin DE, Scatena M, Mortisen DJ, Tulloch NL, Hauch KD, Torok-Storb B, Ratner BD, Pabon L, Murry CE. VEGF induces differentiation of functional endothelium from human embryonic stem cells: implications for tissue engineering. Arterioscler Thromb Vasc Biol 30(1):80-89, 2010. Epub 2009 Oct 29.
  16. Qi J, Chi L, Bynum D, Banes AJ. Gap junctions in IL-1β-mediated cell survival response to strain. J Appl Physiol 110(5):1425-1431, 2011. Epub 2011 Jan 6.
  17. Qi J, Chi L, Faber J, Koller B, Banes AJ. ATP reduces gel compaction in osteoblast-populated collagen ??
    gels. J Appl Physiol 102(3):1152-60, 2007.
  18. Qi J, Chi L, Maloney M, Yang X, Bynum D, Banes AJ. Interleukin-1β increases elasticity of human
    bioartificial tendons. Tissue Eng 12(10):2913-2925, 2006.
  19. Qi J, Fox AM, Alexopoulos LG, Chi L, Bynum D, Guilak F, Banes AJ. IL-1β decreases the elastic
    modulus of human tenocytes. J Appl Physiol 101(1):189-95, 2006.
  20. Qi J, Chi L, Wang J, Sumanasinghe R, Wall M, Tsuzaki M, Banes AJ. Modulation of collagen gel
    compaction by extracellular ATP is MAPK and NF-κB pathways dependent. Exp Cell Res
    315(11):1990-2000, 2009. Epub 2009 Feb 23.
  21. Rathbone SR, Glossop JR, Gough JE, Cartmell SH. Cyclic tensile strain upon human mesenchymal stem cells in 2D and 3D culture differentially influences CCNL2, WDR61 and BAHCC1 gene expression levels. J Mech Behav Biomed Mater 11:82-91, 2012. Epub 2012 Feb 3.
  22. Sumanasinghe RD, Bernacki SH, Loboa EG. Osteogenic differentiation of human mesenchymal stem cells in collagen matrices: effect of uniaxial cyclic tensile strain on bone morphogenetic protein (BMP-2) mRNA expression. Tissue Eng 12(12):3459-3465, 2006.
  23. Taylor SE, Vaughan-Thomas A, Clements DN, Pinchbeck G, Macrory LC, Smith RK, Clegg PD. Gene expression markers of tendon fibroblasts in normal and diseased tissue compared to monolayer and three dimensional culture systems. BMC Musculoskelet Disord 10:27, 2009.
  24. Tobita K, Liu LJ, Janczewski AM, Tinney JP, Nonemaker JM, Augustine S, Stolz DB, Shroff SG, Keller BB. Engineered early embryonic cardiac tissue retains proliferative and contractile properties of developing embryonic myocardium. Am J Physiol Heart Circ Physiol 291(4):H1829-37, 2006.
  25. Triantafillopoulos IK, Banes AJ, Bowman KF Jr, Maloney M, Garrett WE Jr, Karas SG. Nandrolone decanoate and load increase remodeling and strength in human supraspinatus bioartificial tendons. Am J Sports Med 32(4):934-943, 2004.
  26. Tulloch NL, Muskheli V, Razumova MV, Korte FS, Regnier M, Hauch KD, Pabon L, Reinecke H, Murry CE.Growth of engineered human myocardium with mechanical loading and vascular coculture. Circ Res 109(1):47-59, 2011. Epub 2011 May 19.
  27. Wen W, Chau E, Jackson-Boeters L, Elliott C, Daley TD, Hamilton DW. TGF-?1 and FAK regulate periostin expression in PDL fibroblasts. J Dent Res 89(12):1439-1443, 2010. Epub 2010 Oct 12.
Company Name 世联博研(香港)科技有限公司
Location
Business Scope
Contact Information
Medicine Platform
 
Disclaimer:
All product information on this page, including prices, is provided by the supplier. The supplier is solely responsible for the authenticity, accuracy, and legality of the information. Medicine Platform offers no guarantees and assumes no liability for any resulting transactions or disputes.
Reminder:
We recommend you contact the supplier to confirm the final price and request samples to verify quality. Be cautious with unusually low prices, which may indicate fraud. Please verify all details before proceeding with a transaction.