ReadyProbes™ Reagent F-Actin Phalloidin Conjugates
Invitrogen™

ReadyProbes™ Reagent F-Actin Phalloidin Conjugates

ActinRed™ and ActinGreen™ ReadyProbes™ reagents assist with bright, selective F-actin labeling in fixed cells and tissues. The ready-to-use dropper or dual-use bottle enables dropwise dispensing or direct pipetting for fast, flexible cytoskeleton imaging.
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货号颜色激发波长范围
R37112橙红色540/565
R37110绿色495/518
货号 R37112
价格(CNY)
1,630.00
Each
颜色:
橙红色
激发波长范围:
540/565
价格(CNY)
1,630.00
Each

ActinGreen 488 ReadyProbes Reagent is a selective, high-affinity F-actin probe conjugated to our bright, photostable, green-fluorescent Alexa Fluor 488 dye. ActinGreen 488 reagent is a room temperature-stable solution of Alexa Fluor 488 ActinGreen (Cat. No. A12379) packaged in a dropper bottle. ActinRed 555 ReadyProbes Reagent is a comparable F-actin stain conjugated to the red-orange fluorescent dye tetramethylrhodamine (TRITC). ActinRed 555 reagent is a room temperature-stable solution of Rhodamine F-actin probe (Cat. No. R415) packaged in a dropper bottle.

ActinRed 568 ReadyProbes Reagent is our high-affinity F-actin probe conjugated to our bright, red-fluorescent Alexa Fluor 568 dye. This dye is packaged in an easy to use dropper-optional bottle, allowing end-users to choose either to pipet out of the tube using the classic cap, or utilize the dropper bottle tip for typical ReadyProbes workflows.

ActinRed 647 ReadyProbes Reagent leverages our high-affinity F-actin probe conjugated to our bright Far-Red Alexa Fluor 647 Plus dye, offering enhanced brightness vs. classic Alexa Fluor 647 F-actin probe conjugates, in an easy to use format. ActinRed 647 ReadyProbes Reagent should be stored from 2-8°C for long-term, and also offers the option to leverage pipetting, if desired, via the dropper-optional cap.

These ready-to-use solutions combine superior brightness with exceptional F-actin staining. ReadyProbes actin has several advantages over antibodies for actin labeling, including virtually identical binding properties with actin from different species of plants and animals and low non-specific binding.

仅供科研使用。不可用于诊断程序。
规格
颜色橙红色
描述ActinRed™ 555 ReadyProbes™ Reagent (Rhodamine phalloidin)
检测方法荧光
染料类型TRITC(四甲基异硫氰酸罗达明)
发射可见光
激发540
激发波长范围540/565
适用于(设备)共聚焦显微镜、EVOS™、Floid™ 细胞成像系统、荧光显微镜、流式细胞仪、Floid™ 细胞成像系统
形式液体
产品线ActinRed,ReadyProbes
数量2支滴瓶
技术荧光强度
标签类型Fluorescent Dye
产品类型鬼笔环肽
亚细胞定位细胞骨架
Unit SizeEach
内容与储存
2 x 2.5 mL 滴瓶

储存于 ≤25°C 下。

常见问题解答 (FAQ)

Can I use the ReadyProbes reagents for flow cytometry?

This is not recommended. The ReadyProbes reagents were developed for imaging applications whereas the Ready Flow reagents were optimized for flow cytometry.

Find additional tips, troubleshooting help, and resources within our Cell Analysis Support Center.

引用和文献 (42)

引用和文献
Abstract
Fabrication of high specificity hollow mesoporous silica nanoparticles assisted by Eudragit for targeted drug delivery.
Authors:She X, Chen L, Velleman L, Li C, Zhu H, He C, Wang T, Shigdar S, Duan W, Kong L,
Journal:
PubMed ID:25617610
'Hollow mesoporous silica nanoparticles (HMSNs) are one of the most promising carriers for effective drug delivery due to their large surface area, high volume for drug loading and excellent biocompatibility. However, the non-ionic surfactant templated HMSNs often have a broad size distribution and a defective mesoporous structure because of the ... More
Collaborative Enhancement of Endothelial Targeting of Nanocarriers by Modulating Platelet-Endothelial Cell Adhesion Molecule-1/CD31 Epitope Engagement.
Authors:Chacko AM, Han J, Greineder CF, Zern BJ, Mikitsh JL, Nayak M, Menon D, Johnston IH, Poncz M, Eckmann DM, Davies PF, Muzykantov VR,
Journal:
PubMed ID:26153796
Nanocarriers (NCs) coated with antibodies (Abs) to extracellular epitopes of the transmembrane glycoprotein PECAM (platelet endothelial cell adhesion molecule-1/CD31) enable targeted drug delivery to vascular endothelial cells. Recent studies revealed that paired Abs directed to adjacent, yet distinct epitopes of PECAM stimulate each other's binding to endothelial cells in vitro ... More
Electrochemical behavior of bioactive coatings on cp-Ti surface for dental application.
Authors:Marques ID, Barão VA, da Cruz NC, Yuan JC, Mesquita MF, Ricomini-Filho AP, Sukotjo C, Mathew MT,
Journal:
PubMed ID:26834277
The surface characteristics and electrochemical properties of bioactive coatings produced by plasma electrolytic oxidation (PEO) with calcium, phosphorous, silicon and silver on commercially pure titanium were evaluated. PEO treatment produced a porous oxide layer, which improved the surface topography, and enriched the surface chemistry with bioactive elements, responsible for mimicking ... More
In situ measurement of magnetization relaxation of internalized nanoparticles in live cells.
Authors:Soukup D, Moise S, Céspedes E, Dobson J, Telling ND,
Journal:
PubMed ID:25562356
Magnetization relaxation mechanisms strongly influence how magnetic nanoparticles respond to high-frequency fields in applications such as magnetic hyperthermia. The dominant mechanism depends on the mobility of the particles, which will be affected in turn by their microenvironment. In this study AC susceptometry was used to follow the in situ magnetic ... More
Controlled electromechanical cell stimulation on-a-chip.
Authors:Pavesi A, Adriani G, Rasponi M, Zervantonakis IK, Fiore GB, Kamm RD,
Journal:
PubMed ID:26135970
Stem cell research has yielded promising advances in regenerative medicine, but standard assays generally lack the ability to combine different cell stimulations with rapid sample processing and precise fluid control. In this work, we describe the design and fabrication of a micro-scale cell stimulator capable of simultaneously providing mechanical, electrical, ... More