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Bangs Lab 荧光聚苯乙烯微球作为生物标记物在细胞成像与追踪中的应用

发布者:艾美捷科技    发布时间:2025-10-16     
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Bangs Lab荧光聚苯乙烯微球:

由于我们的荧光团嵌入在微球基质中,因此整个表面都可用于吸附您感兴趣的分子。基础聚合物微球的直径范围为50纳米至15微米,荧光团提供广泛的激发和发射波长,可满足不同的流式细胞仪滤光片组合。查看完整的荧光光谱。


查看产品分类系统。

CAT.#PRODUCT NAMESPEC RANGEFLUORESCENT EX/EM(NM)
FSDG001Fluorescent Polystyrene Microspheres,Dragon Green-0.05um0.040-0.060um480/520
FSDGO02Fluorescent Polystyrene Microspheres,Dragon Green-0.20um0.190-0.210um480/520
FSDG003Fluorescent Polystyrene Microspheres,Dragon Green -0.50um0.470-0.530um480/520
FSDG004Fluorescent Polystyrene Microspheres,Dragon Green-1.0um0.95-1.05um480/520
FSDG005Fluorescent Polystyrene Microspheres,Dragon Green-2.0um1.80-2.20um480/520
FSDG006Fluorescent Polystyrene Microspheres,Dragon Green-4.0um3.80-4.20um480/520
FSDGO07Fluorescent Polystyrene Microspheres,Dragon Green-7.5um7.30-7.70um480/520
FSDG009Fluorescent Polystyrene Microspheres,Dragon Green-15.0um14.50-15.50um480/520
FSEG004Fluorescent Polystyrene Microspheres,Envy Green-1.0um0.95-1.05um525/565
FSEG006Fluorescent Polystyrene Microspheres,Envy Green-4.0um3.80-4.20um525/565
FSEG008Fluorescent Polystyrene Microspheres,Envy Green-10.0um9.50-10.50um525/565
FSFR001Fluorescent Polystyrene Microspheres,Flash Red-0.05um0.040-0.060um660/690
FSFR002Fluorescent Polystyrene Microspheres,Flash Red-0.20um0.190-0.210um660/690
FSFR003Fluorescent Polystyrene Microspheres,Flash Red-0.50um0.470-0.530um660/690
FSFR004Fluorescent Polystyrene Microspheres,Flash Red-1.00um0.95-1.05um660/690
FSFR005Fluorescent Polystyrene Microspheres,Flash Red-2.00um1.80-2.20um660/690
FSFR006Fluorescent Polystyrene Microspheres,Flash Red-4.00um3.80-4.20um660/690
FSFR007Fluorescent Polystyrene Microspheres,Flash Red-7.5um7.30-7.70um660/690
FSPP003Fluorescent Polystyrene Microspheres,Plum Purple-0.50um0.470-0.530um360/420
FSPP004Fluorescent Polystyrene Microspheres,Plum Purple-1.00um0.95-1.05um360/420
FSPP005Fluorescent Polystyrene Microspheres,Plum Purple-2.00um1.80-2.20um360/420
FSSY002Fluorescent Polystyrene Microspheres,Suncoast Yellow-
0.20um
0.190-0.210um540/600
FSSY007Fluorescent Polystyrene Microspheres,Suncoast Yellow-7.5um7.30-7.70um540/600


文献参考:

Lee, M, Reece, P, Marchington, R, Metzger, N, Dholakia, K (2007) Construction and calibration of an optical trap on a fluorescence optical microscope. Nat. Protocols V.2 p3226-3238


Mattheyses, A, Simon, S, Rappoport, J (2010) Imaging with total internal reflection fluorescence microscopy for the cell biologist J Cell Sci 123: 3621-3628


Sun, Z, Martinez-Lemus, L, Trache, A, Trzeciakowski, J, Davis, G, Pohl, U, Meininger,G (2005) Mechanical properties of the interaction between fibronectin and α5β1-integrin on vascular smooth muscle cells studied using atomic force microscopy. Am J Physiol Heart Circ Physiol, 289(6) H2526-H2535


Ogilvie, J, Beaurepaire, E, Alexandrou, A, Joffre, M, (2006) Fourier-transform coherent anti-Stokes Raman scattering microscopy. Optics Letters, Optical Society of America, 31(4), p480-2.


Chen X, Wang J, Versluis M, de Jong N, Villanueva FS.(2013) Ultra-fast bright field and fluorescence imaging of the dynamics of micrometer-sized objects. Review of Scientific Instruments 84,063701


Yang Z, Rutherford B, McDonald R, & Houston JP. (2017) Development of far-red and ultraviolet digital frequency-domain flow cytometry systems. IEEE Journal of Selected Topics in Quantum Electronics, 23(3), 59-63.(Flash Red & Glacial Blue microspheres to determine detection sensitivity in a Far-Red and UV modified instrument)


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