
Cell E&G 是一家專注于高端細胞培養(yǎng)耗材和高分辨率顯微成像產(chǎn)品研發(fā)與生產(chǎn)的企業(yè),公司主要面向細胞生物學(xué)、分子生物學(xué)、干細胞研究、神經(jīng)科學(xué)、腫瘤學(xué)及生物醫(yī)學(xué)成像等領(lǐng)域,為全球科研機構(gòu)、高校實驗室、生物技術(shù)企業(yè)及制藥公司提供高品質(zhì)細胞培養(yǎng)耗材。Cell E&G 采用德國光學(xué)玻璃、無毒醫(yī)用級粘接材料及 γ 射線滅菌工藝生產(chǎn)產(chǎn)品,確保產(chǎn)品具有優(yōu)異的光學(xué)性能、生物相容性和批間一致性,可滿足共聚焦顯微鏡、活細胞成像、熒光顯微鏡、超分辨率顯微鏡及高內(nèi)涵篩選(HCS)等應(yīng)用需求。其產(chǎn)品以高平整度、低自發(fā)熒光、優(yōu)異透光率和穩(wěn)定的細胞培養(yǎng)性能而受到科研用戶廣泛采用。
更多產(chǎn)品信息及報價,請聯(lián)系我們的銷售人員 18648182152(微信同號)
◆ Cell E&G產(chǎn)品線
● 玻底培養(yǎng)皿:采用德國進口 #0 或 #1.5 光學(xué)蓋玻片與高透明聚苯乙烯培養(yǎng)皿結(jié)合制造,具有極高的透光率和優(yōu)異的平整度,可有效降低背景熒光并提升顯微成像質(zhì)量。產(chǎn)品包括 35 mm、50 mm 等多種規(guī)格以及不同玻底直徑(如 13 mm、18 mm),適用于共聚焦顯微鏡、倒置熒光顯微鏡、TIRF、超分辨率顯微鏡及活細胞實時成像。
● 玻底多孔培養(yǎng)板:產(chǎn)品線包括 6 孔、12 孔、24 孔、48 孔及 96 孔玻底培養(yǎng)板,每個培養(yǎng)孔均配備高品質(zhì)德國光學(xué)玻璃底部,可實現(xiàn)多個樣品的同步培養(yǎng)和高分辨率成像。3. Glass 玻底腔室載玻片:該系列采用光學(xué)玻璃與細胞培養(yǎng)腔室一體化設(shè)計,提供單孔、多孔等多種規(guī)格,可直接完成細胞培養(yǎng)、固定、染色及顯微觀察,無需額外轉(zhuǎn)移樣品,有效減少實驗誤差和細胞損失。
● 標準培養(yǎng)皿:Cell E&G 提供多種規(guī)格的標準培養(yǎng)皿,包括 12 × 22 mm 和 35 mm 系列,可選擇無玻璃底、18 mm 開孔、18 mm 培養(yǎng)孔以及配備 #0 或 #1.5 光學(xué)蓋玻片等不同配置,以滿足普通細胞培養(yǎng)、顯微觀察及特殊實驗需求。這些培養(yǎng)皿采用無細胞毒性材料制造,并經(jīng)過 γ 射線滅菌,可直接用于哺乳動物細胞培養(yǎng)和后續(xù)顯微分析。

◆ Cell E&G產(chǎn)品列表
| 品名(英文) | 貨號 | 規(guī)格 | 中文名稱 |
| 35mm Glass Bottom Dish | GBD00001-200 | 35 mm,13 mm孔,#0 German cover glass,200個/盒 | 35mm玻底培養(yǎng)皿(13mm孔,0號蓋玻片) |
| 35mm Glass Bottom Dish | GBD00002-200 | 35 mm,13 mm孔,#1.5 German cover glass,200個/盒 | 35mm玻底培養(yǎng)皿(13mm孔,1.5號蓋玻片) |
| 35mm Glass Bottom Dish | GBD00003-200 | 35 mm,18 mm孔,#0 cover glass,200個/盒 | 35mm玻底培養(yǎng)皿(18mm孔,0號玻片) |
| 35mm Glass Bottom Dish | GBD00004-200 | 35 mm,18 mm孔,#1.5 cover glass,200個/盒 | 35mm玻底培養(yǎng)皿(18mm孔,1.5號玻片) |
| 35mm Petri Dish | PDH00001-200 | 35mm,13mm hole,無蓋玻片,200個/盒 | 35mm細胞培養(yǎng)皿(13mm孔) |
| 35mm Petri Dish | PDH00002-200 | 35mm,18mm hole,無蓋玻片,200個/盒 | 35mm細胞培養(yǎng)皿(18mm孔) |
| 12×22mm Petri Dish | PDP00001-20 | 12×22mm,18mm孔,無蓋玻片,20個/盒 | 小型培養(yǎng)皿(無玻片) |
| 12×22mm Petri Dish | PDP00002-20 | 12×22mm,18mm孔,#1.5蓋玻片,20個/盒 | 小型玻底培養(yǎng)皿 |
◆ Cell E&G參考文獻
47. Kourouklis A et al. "Substrate stiffness and matrix composition coordinately control the differentiation of liver progenitor cells", Biomaterials (2016).
Paper Link
46. Márkus R et al. "Multinucleated Giant Hemocytes Are Effector Cells in Cell-Mediated Immune Responses of Drosophila", Journal of Innate Immunity (2015).
Paper Link
45. Li H et al. "Extending prematuration with cAMP modulators enhances the cumulus contribution to oocyte antioxidant defence and oocyte quality via gap junctions", Human Reproduction (2016).
Paper Link
44. Fang Z et al. "Long non-coding RNA MALAT-1 modulates metastatic potential of tongue squamous cell carcinomas partially through the regulation of small proline rich proteins", BMC Cancer (2016).
Paper Link
43. Shashikanth N et al. "Kinetic Measurements Reveal Enhanced Protein-Protein Interactions at Intercellular Junctions", Scientific reports (2016).
Paper Link
42. Razali W et al. "Wide-field time-gated photoluminescence microscopy for fast ultrahigh-sensitivity imaging of photoluminescent probes", Journal of Biophotonic (2016).
Paper Link
41. Ganguly A et al. " Perturbation of nucleo-cytoplasmic transport affects size of nucleus and nucleolus in human cells", Febs Press (2016).
Paper Link
40. Liang D et al. "The autophagy inhibitor chloroquine targets cancer stem cells in triple negative breast cancer by inducing mitochondrial damage and impairing DNA break repair", Cancer Letters (2016).
Paper Link
39. Singh N et al. "Insights into the mechanism of human papillomavirus E2-induced procaspase-8 activation and cell death", Scientific reports (2016).
Paper Link
38. Wu Y et al. " In-situ coupling between kinase activities and protein dynamics within single focal adhesions", Scientific reports (2016).
Paper Link
37. Gosnell M et al. "Quantitative non-invasive cell characterisation and discrimination based on multispectral autofluorescence features", Scientific Report (2016).
Paper Link
36. Singh N et al. "Molecular basis of death effector domain chain assembly and its role in caspase-8 activation", The Faseb Journal (2016).
Paper Link
35. Ko?er SS et al. ""Shaping" of cell signaling via AKAP-tethered PDE4D: Probing with AKAR2-AKAP5 biosensor", Journal of molecular signaling (2012).
Paper Link
34. Gomez-Godinez V et al. "Laser-induced shockwave paired with FRET: A method to study cell signaling", Microscopy research and technique (2015).
Paper Link
33. Zhuo Y et al. "Subcellular and Dynamic Coordination between Src Activity and Cell Protrusion in Microenvironment", Scientific reports (2015).
Paper Link
32. Ouyang M et al. "Genetically Encoded Fluorescent Biosensors for Live-Cell Imaging of MT1-MMP Protease Activity", Fluorescent Protein-Based Biosensors. Humana Press (2014).
Paper Link
31. Zeng H-T et al. "Prematuration with cyclic adenosine monophosphate modulators alters cumulus cell and oocyte metabolism and enhances developmental competence of in vitro-matured mouse oocytes", Biology of reproduction (2014).
Paper Link
30. Tabdili H et al. "Cadherin point mutations alter cell sorting and modulate GTPase signaling", Journal of cell science (2012).
Paper Link
29. Ouyang M et al. "Simultaneous visualization of protumorigenic Src and MT1-MMP activities with fluorescence resonance energy transfer", Cancer research (2010).
Paper Link
27. Sutton-McDowall ML et al. "Metabolic differences in bovine cumulus-oocyte complexes matured in vitro in the presence or absence of follicle-stimulating hormone and bone morphogenetic protein 15", Biology of reproduction (2012).
Paper Link
26. Liao X et al. "Visualization of Src and FAK activity during the differentiation process from HMSCs to osteoblasts", PLoS ONE (2012).
Paper Link
25.Sudiman J et al. "Bone morphogenetic protein 15 in the pro-mature complex form enhances bovine oocyte developmental competence", PLoS ONE (2014).
Paper Link
24. Csordás G et al. "In vivo immunostaining of hemocyte compartments in Drosophila for live imaging", PLoS ONE (2014).
Paper Link
23. Xiang X et al. "A FRET-based biosensor for imaging SYK activities in living cells", Cellular and molecular bioengineering (2011).
Paper Link
22. Richani D et al. "Effect of epidermal growth factor-like peptides on the metabolism of in vitro-matured mouse oocytes and cumulus cells", Biology of reproduction (2014).
Paper Link
21. Lin L-J et al. "The antagonistic roles of PDGF and integrin αvβ3 in regulating ROS production at focal adhesions", Biomaterials (2013).
Paper Link
20. Poh Y-C et al. "The use of Optical Magnetic Twisting Cytometry and Flourescence Resonance Energy Transfer to quantify force-induced protein dissociation in the nucleus of a living cell", nature ProtocolExchange (2012).
Paper Link
19. Chung EY et al. "Activatable and Cell-Penetrable Multiplex FRET Nanosensor for Profiling MT1-MMP Activity in Single Cancer Cells", Nano letters (2015).
Paper Link
18. Bhave M et al. "Golgi enlargement in Arf-depleted yeast cells is due to altered dynamics of cisternal maturation", Journal of cell science (2014).
Paper Link
17. Seong J et al. "Detection of focal adhesion kinase activation at membrane microdomains by fluorescence resonance energy transfer", Nature communications (2011).
Paper Link
16. Lu S et al. "Quantitative FRET imaging to visualize the invasiveness of live breast cancer cells", PLoS ONE (2013).
Paper Link
15. Purdey MS et al. "Localised hydrogen peroxide sensing for reproductive health", SPIE Optics+ Optoelectronics. International Society for Optics and Photonics (2015).
Paper Link
14. Liao X et al. "The Effect of Differentiation Induction on FAK and Src Activity in Live HMSCs Visualized by FRET", PLoS ONE (2013).
Paper Link
13. Lu S et al. "Computational analysis of the spatiotemporal coordination of polarized PI3K and Rac1 activities in micro-patterned live cells", PLoS ONE (2011).
Paper Link
12. Kind KL et al. "Oxygen-regulated gene expression in murine cumulus cells", Reproduction, Fertility and Development (2015).
Paper Link
11. Lei L et al. "The role of mechanical tension on lipid raft dependent PDGF-induced TRPC6 activation", Biomaterials (2014).
Paper Link
10. Barry AK et al. "Local VE-cadherin mechanotransduction triggers long-ranged remodeling of endothelial monolayers", Journal of cell science (2015).
Paper Link
9. Sutton-McDowall ML et al. "Redox and anti-oxidant state within cattle oocytes following in vitro maturation with bone morphogenetic protein 15 and follicle stimulating hormone", Molecular reproduction and development (2015).
Paper Link
8. Ouyang M et al. "N-cadherin regulates spatially polarized signals through distinct p120ctn and β-catenin-dependent signalling pathways", Nature communications (2013).
Paper Link
7. Sun J et al. "Antagonism between binding site affinity and conformational dynamics tunes alternative cis-interactions within Shp2", Nature communications (2013).
Paper Link
6.Eichorst JP et al. "Red-shifted fluorescent proteins monitor enzymatic activity in live HT-1080 cells with fluorescence lifetime imaging microscopy (FLIM)", Journal of microscopy (2012).
Paper Link
5. Sun J et al. "Simplicity of Design Principles underlying Tunable cis-Interactions within Shp2 Revealed by FRET", (2013).
Paper Link
4. Lu S et al. "Decipher the dynamic coordination between enzymatic activity and structural modulation at focal adhesions in living cells", Scientific reports (2014).
Paper Link
3. Sun J, "The intramolecular domain interactions and phosphatase activation mechanisms of Shp2", Diss. University of Illinois, Urbana-Champaign (2011).
Paper Link
2. Sudiman J, "Optimisation of oocyte in vitro maturation using oocyte secreted factors", Diss. (2014).
Paper Link
1. Seong J, "Fluorescence resonance energy transfer-based subcellular visualization of FAK/Src activation by chemical and mechanical environment", Diss. University of Illinois, Urbana-Champaign (2013).
Paper Link
關(guān)鍵字: Cell E&G;Cell E&G代理;Cell E&G玻底培養(yǎng)皿;Cell E&G培養(yǎng)皿;
維百奧(北京)生物科技有限公司成立于2014年,經(jīng)營范圍包括: 技術(shù)服務(wù)、技術(shù)開發(fā)、技術(shù)咨詢、技術(shù)交流、技術(shù)轉(zhuǎn)讓、技術(shù)推廣;儀器儀表制造;儀器儀表銷售;儀器儀表修理;化工產(chǎn)品生產(chǎn)(不含許可類化工產(chǎn)品);化工產(chǎn)品銷售(不含許可類化工產(chǎn)品);專用化學(xué)產(chǎn)品制造(不含危險化學(xué)品);專用化學(xué)產(chǎn)品銷售(不含危險化學(xué)品);計算機系統(tǒng)服務(wù);數(shù)據(jù)處理和存儲支持服務(wù);軟件開發(fā);工程技術(shù)服務(wù)(規(guī)劃管理、勘察、設(shè)計、監(jiān)理除外);新材料技術(shù)推廣服務(wù);進出口代理;貨物進出口;技術(shù)進出口。(除依法須經(jīng)批準的項目外,憑營業(yè)執(zhí)照依法自主開展經(jīng)營活動)(不得從事國家和本市產(chǎn)業(yè)政策禁止和限制類項目的經(jīng)營活動。)