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Luna 2 全自动细胞计数仪

人阅读 发布时间:2020-05-07 23:41

全自动细胞计数仪

 

全自动细胞计数仪,体积小巧,功能强大,使用方便。只需插入样品,即可完成剩下的工作:自动对焦,可调节光强,并在15秒内完成计数。可为您提供最优化的明场细胞计数体验。 只需按下“计数”,即可完成剩下的工作——将焦点调节至最清晰,调整光照强度,捕捉高分辨率图像,并进行图像分析以生成准确的细胞数目、活率数据。您可以创建自定义的具体种类的细胞计数参数,或直接使用适用于大多数细胞系的默认计数参数,抑或使用优化的针对人外周血单核细胞PBMC参数。活细胞标有绿色圆圈,死细胞标有红色圆圈,便于验证每个计数的准确性。可方便地放于细胞培养罩或台面上,轻松简化您的工作流程。

 

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一、全自动细胞计数仪的优势:

 

 

15秒内自动计数

全自动对焦液态镜头以及先进的软件,生成细胞浓度和细胞活率数据只需要15秒。

 

 

准确的细胞活率

始终能够精确地从细胞碎片中区分出活细胞和死细胞。

 

 

高级去团簇化分析

对于成团细胞而言完全不构成问题。高级去团簇化分析算法可检测出团簇中的各单个细胞。

 

 

计数结果记录与保存

可用内置打印机打印数据或者通过USB导出高分辨率图像、数据以及完整的数据报告。

 

 

二、全自动细胞计数仪的特点:

 

细胞计数是研究中的基本的质量控制步骤。

这很简单,也很直观。但也最容易出错,耗时过长且主观性极强。

全自动化细胞计数仪配备了高品质的光学元件和完善的软件,拥有惊人的计数速度,精度及可靠性。

只需要您按下“计数”按钮,便可轻易完成细胞计数。

化繁为简,只要按一下“计数”就能得到理想结果

 

 
从PBMC到细菌

我们的计数仪与多种细胞类型兼容。

 

 

可自由设定参数

调整细胞检测参数以计数和检测特定细胞类型。

 

 
便捷的工作流程

只需准备您的样品,让我们的仪器做剩下的事情。

 

 
计数监

计数的细胞带有标记功能,因此您可以立即检查结果。

 

 

准确的细胞计数结果

 

随着研究中对实验室间和实验室内可重复性的日益重视,获得准确细胞计数的看似简单的行为现在比以往任何时候都更为重要。我们基于图像的自动细胞计数仪充当您的眼睛,显微镜,图像分析软件和计算机,可产生始终如一的准确和可靠的细胞计数。我们先进的解簇算法可区分簇或团块中的单个单元格。甚至昂贵的流式细胞仪也无法准确地计数块状细胞,无法将每个簇记录为单个颗粒。我们的细胞计数器可产生准确且可重复的细胞计数,并具有很高的线性度和较低的技术变异性。

 

三、全自动细胞计数仪的操作步骤:

 

 

混匀

总体积20ul:10ul样品加10ul台盼蓝

 

 

加样

倾斜45度,自动均匀

 

 

一键计数

 

 

检查及导出

 

 

四、全自动细胞计数仪的技术参数:

 

 

五、全自动细胞计数仪的订货信息:

 

 

六、全自动细胞计数仪文献:

 

1.Saloustros E, Liu S, Mertz EL, Bhattacharyya N, Starost MF, Salpea P, Nesterova M, Collins M, Leikin S, Stratakis CA. Celecoxib treatment of fibrous dysplasia (FD) in a human FD cell line and FD-like lesions in mice with protein kinase A (PKA) defects. Mol Cell Endocrinol 2016; doi:10.1016/j.mce.2016.08.004.

2.Zhang H, Yu N, Zhou Y, Ma H, Wang J, Ma X, Liu J, Huang J, An Y. Construction and characterization of osteogenic and vascular endothelial cell sheets from rat adipose-derived mesenchymal stem cells. Tissue Cell 2016;doi:10.1016/j.tice.2016.07.004.

3.Cho YS, Hong MW, Jeong HJ, Lee SJ, Kim YY, Cho YS. The fabrication of well-interconnected polycaprolactone/hydroxyapatite composite scaffolds, enhancing the exposure of hydroxyapatite using the wire-network molding technique. J Biomed Mater Res 2016; DOI: 10.1002/jbm.b.33769.

4.Sultana N, Lazi A, Sun T. PEDOT: PSS-containing nano hydroxyapatite/chitosan conductive bionanocomposite scaffold: fabrication and evaluation. J Nanomaterials. 2016;.

5.Tanaka G, Inoue KI, Shimizu T, Akimoto K, Kubota K. Dual pharmacological inhibition of glutathione and thioredoxin systems synergizes to kill colorectal carcinoma stem cells. Cancer Med 2016; 10.1002/cam4.844.

6.Podgórna K, Jankowska K, Szczepanowicz K. Polysaccharide gel nanoparticles modifies by the Layer-by-Layer technique for biomedical applications. Colloids Surf APhysicochemEng Asp 2016; doi:10.1016/j.colsurfa.2016.07.067.

7.Mahmoud A, Elif GE, Gül Ö. Copper (II) oxide nanoparticles induced nephrotoxicity in vitro conditions. ApplIn Vitro Toxicol 2016; doi:10.1089/aivt.2016.0008.

8.Abudayyak M, Gurkaynak TA, Özhan G. In vitro toxicological assessment of cobalt ferrite nanoparticles in several mammalian cell types. Biol Trace Element Res 2016; 10.1007/s12011-016-0803-3.

9.Gergics P, Christian HC, Choo MS, Ajmal A, Camper SA. Gene expression in mouse thyrotrope adenoma: transcription elongation factor stimulates proliferation. Endocrinology 2016; doi: 10.1210/en.2016-1183.

10.Kazemi Z, Bergmayr C, Prchal-Murphy M, Javaheri T, Themann M, Pham HTT, Strohmaier W, Sexl V, Freissmuth M, Zebedin-Brandl E. Repurposing treprostinil for enhancing hematopoietic progenitor cell transplantation. Mol Pharmacol 2016; DOI: 10.1124/mol.116.103267.

11.Gho CG, Schomann T, de Groot SC, Frijns JHM, Rivolta MN, Neumann MHA, Huisman MA. Isolation, expansion and neural differentiation of stem cells from human plucked hair: a further step towards autologous nerve recovery. Cytotechnology 2015; DOI: 10.1007/s10616-015-9938-x.

12.Burridge PW, Holmström A, Wu JC. Chemically defined culture and cardiomyocyte differentiation of human pluripotent stem cells. CurrProtoc Hum Genet 2015; doi: 10.1002/0471142905.hg2103s87.

13.Du J, Kang Y, Zhao Y, Zheng W, Zhang Y, Lin Y, Wang Z, Wang Y, Luo Q, Wu K, Wang F. Synthesis, characterization, and in vitro antitumor activity of ruthenium(II) polypyridyl complexes tethering EGFR-inhibiting 4-anilinoquinazolines. Inorg Chem 2016;55:4595-4605.

14.Sakuma T, Nakade S, Sakane Y, Suzuki KI, Yamamoto T. MMEJ-assisted gene knock-in using TALENs and CRISPR-Cas9 with the PITCh systems. Nat Protocols 2016;11:118-133.

15.Marelli MM, Marzagalli M, Moretti RM, Beretta G, Casati L, Comitato R, Gravina GL, Festuccia C, Limonta P. Vimin E δ-tocotrienol triggers endoplasmic reticulum stress-mediated apoptosis in human melanoma cells. Sci Rep 2016;6:30502.

16.Muter J, Brighton PJ, Lucas ES, Lacey L,Shmygol A, Quenby S, Blanks AM, Brosen JJ. Progesterone-dependent induction of phospholipase C-related catalytically inactive protein 1 (PRIP-1) in decidualizing human endometrial stromal cells. Endocrinology 2016;157:2883-2893.

17.Ishibashi D, Nakagaki T, Ishikawa T, Atarashi R, Watanabe K, Cruz FA, Hamada T, Nishida N. Structure-based drug discovery for prion disease using a novel binding simulation. EBioMedicine 2016;9:238-249. 

18.Nishimura K, Watanabe S, Hayashida R, Sugishima S, Iwasaka T, Kaku T. Binucleated HeLa cells are formed by cytokinesis failure in starvation and keep the potential of proliferation. Cytotechnology 2016;68:1123-1130.

19.Szczepanowicz K, Jantas D, Piotrowski M, Staroń J, Leśkiewicz M, Regulska M, Lasoń W, Warszyński P. Encapsulation of curcumin in polyelectrolyte nanocapsules and their neuroprotective activity. Nanotechnology 2016;27:355101.

20.Sugo N, Yamamoto N. Visualization of HDAC9 spatiotemporal subcellular localization in primary neuron cultures. Methods Mol Biol 2016;1436:119-127.

21.Andree KC, Barradas AMC, Nguyen AT, Mentink A, Stojanovic I, Baggerman J, van Dalum J, van Rijn CJM, Terstappen LWMM. Capture of tumor cells on anti-EpCAM-functionalized poly(acrylic acid)-coated surfaces. ACS Appl Mater Interfaces 2016;8:14349-14356.

22.Wrotek S, Jędrzejewski T, Piotrowski J, Kozak W. N-acetyl-L-cysteine exacerbates generation of IL-10 in cells stimulated with endotoxin in vitro and produces antipyresis via IL-10 dependent pathway in vivo. Immunol Lett 2016;177:1-5.

23.Mahmoud A, Ezgi Ö, Merve A, Özhan G. In vitro toxicological assessment of magnesium oxide nanoparticle exposure in several mammalian cell types. Int J Toxicol 2016;35:429-437.

24.Feng WM, Guo HH, Xue T, Wang X, Tang CW, Bao Y, Gong H, Cui G. Polyelectrolyte multilayer assembled from IL-10 plasmid DNA and TGF-β siRNA facilitates chronic pancreatitis treatment. RSC Adv 2016;6:60171-60179.

25.Jo DH, Hong JW, Kim JH, Han SW, Kim JH. Gold nanocrystals with well-defined crystallographic {111} facets suppress pathological neovascularization. J Biomed Nanotechnol 2016;12:1520-1526.

26.Kowalczewska M, Piotrowski J,Jędrzejewski T, Kozak W. Polysaccharide peptides from Coriolus versicolor exert differential immunomodulatory effects on blood lymphocytes and breast cancer cell line MCF-7 in vitro. Immunol Lett 2016;174:37-44.

27.Kim SH, Kim EC, Kim WJ, Lee MH, Kim SY, Kim TJ. Coptis Japonica makino extract suppresses angiogenesis through regulation of cell cycle-related proteins. BiosciBiotechnol Biochem 2016;80:1095-1106.

28.Cataldo LR, Mizgier ML, Busso D, Olmos P, Galgani JE, Valenzuela R, Mezzano D, Aranda E, Cortés VA, Santos JL. Serotonin- and dopamine-related gene expression in db/db mice islets and in MIN6 β-cells treated with palmitate and oleate. J Diabet Res. 2016;2016:3793781.

 


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