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AB176753

Phalloidin-iFluor 488试剂

Phalloidin-iFluor 488 Reagent

5

(14 Reviews)

|

(291 Publications)

Phalloidin-iFluor 488 reagent (ab176753) is used to label F-actin (actin filaments) with high affinity and low background. The readout is on any fluorescent microscope with Ex/Em = 493/517 nm.

- Can be used for fluorescent co-labelling
- Broad sample compatibility - including tissue sections, cell cultures
- Cited in over 290 publications

查看别名

Beta-actin, ACTB

4 Images
Immunocytochemistry/ Immunofluorescence - Phalloidin-iFluor 488 Reagent (AB176753)
  • ICC/IF

Supplier Data

Immunocytochemistry/ Immunofluorescence - Phalloidin-iFluor 488 Reagent (AB176753)

Actin filaments staining in HeLa cells. Actin filaments (green) were stained with CytoPainter Phalloidin-iFluor 488 reagent (ab176753); tubulin filaments were stained with a mouse anti-tubulin antibody/goat anti-mouse IgG (red). Nuclei were stained with Hoechst 33342.

Functional Studies - Phalloidin-iFluor 488 Reagent (AB176753)
  • FuncS

AbReview

Functional Studies - Phalloidin-iFluor 488 Reagent (AB176753)

ab176753 at 1/1000 dilution in PBS whole mount Immunofluorescence of Mouse inner ear sensory epithelia. Tissue was incubated for 2 hours at room temperature.

Image courtesy of Mr. Shahar Taiber

Fluorescence Microscopy - Phalloidin-iFluor 488 Reagent (AB176753)
  • Fluorescence Microscopy

Supplier Data

Fluorescence Microscopy - Phalloidin-iFluor 488 Reagent (AB176753)

Excitation and emission spectra of phalloidin-iFluor 488 reagent.

Functional Studies - Phalloidin-iFluor 488 Reagent (AB176753)
  • FuncS

Unknown

Functional Studies - Phalloidin-iFluor 488 Reagent (AB176753)

Macrophage J774A.1 cell line stained with Phalloidin 488 and DAPI nuclear counterstaining.

Review by Dr. Jose Ramos Vivas

关键信息

靶标

ACTB

target

产品详情

Phalloidin-iFluor 488 Reagent ab176753 is one of a series of phalloidin conjugates that bind to actin filaments, also known as F-actin. The iFluor 488 dye can be easily detected with a fluorescent microscope at Ex/Em = 493/517 nm.

Our phalloidin conjugates are convenient probes for labeling, identifying and quantifying animal or plant actin filaments in formaldehyde-fixed and permeabilized tissue sections, cell cultures or cell-free experiments. They can also be used with paraffin-embedded samples that have been de-paraffinized.

Staining fixed cell or tissue samples with phalloidin conjugates is very simple; it requires a single 20-90 min incubation with the phalloidin, followed by 3 short wash steps. Phalloidin staining can be combined with antibody-based staining by adding the phalloidin conjugate during either the primary or secondary antibody incubation step.

Phalloidin protocol summary

  • - Prepare samples in microplate wells
  • - Remove liquid from samples in the plate
  • - Add Phalloidin-iFluor™ 488 Conjugate solution (100 μL/well)
  • - Stain the cells at room temperature for 20 to 90 minutes
  • - Wash the cells
  • - Examine the specimen under microscope with the appropriate filter

When used in unfixed samples, phalloidin binding leads to a decrease in the disassociation rate of actin subunits from the ends of actin filaments, essentially stabilizing actin filaments through the prevention of filament depolymerisation.

Review other popular phalloidin dye conjugates, including Phalloidin-iFluor 488 (ab176753), Phalloidin-iFluor 647 (ab176759), Phalloidin-iFluor 555 (ab176756), and Rhodamine Phalloidin (ab235138), search the website to see all phallodin conjugates, or read the phalloidin staining protocol.

性能和储存信息

运输条件
Blue Ice
推荐的短期储存条件
-20°C
推荐的长期储存条件
-20°C

补充信息

This supplementary information is collated from multiple sources and compiled automatically.

F-actin also known as filamentous actin is an essential structural protein found within the cytoskeleton of eukaryotic cells. Its alternate names include actin filaments or microfilaments. The protein consists of polymerized monomers of G-actin each with a molecular weight of roughly 42 kDa. F-actin is expressed abundantly in muscle cells and non-muscle cells alike providing structural support and facilitating cellular movements. Actin staining is a common method used in labs to visualize these dynamic structures often employing phalloidin staining a toxin that stabilizes actin filaments conjugated with fluorescent labels such as Phalloidin 594 Phalloidin 647 or Phalloidin 488 for imaging purposes.
Biological function summary

The actin cytoskeleton plays integral roles in maintaining cell shape providing mechanical resistance against deformation and driving important cellular processes such as endocytosis cell division and motility. F-actin forms part of numerous protein complexes interacting with other proteins like myosin to facilitate muscle contraction and cellular transport. Within cells F-actin is dynamic readily polymerizing and depolymerizing in response to cellular signaling making it essential for cytoskeletal remodeling and cellular adaptability.

Pathways

F-actin is central to various signaling cascades underlying processes like cell signaling and intracellular transport. Notably it participates in the Rho family GTPase pathway affecting cell cytoskeleton organization and motility. It also interacts with proteins like cofilin and profilin which regulate actin polymerization and treadmilling dynamics respectively. These interactions highlight F-actin's involvement in complex cellular pathway regulation processes essential for maintaining cellular homeostasis and adaptability.

Abnormal regulation or mutations in actin-related proteins can lead to conditions such as cancer and cardiomyopathies. For example during metastasis cancer cells exploit the dynamic nature of F-actin for enhanced migratory capacity. In cardiac muscle cells actin interacts with other proteins like tropomyosin and mutations in these genes can disrupt normal heart function leading to cardiomyopathies. As such F-actin not only represents a critical component of the cellular structure but also serves as a pivotal target for understanding disease mechanisms and potential therapeutic intervention points.

产品实验方案

For this product, it's our understanding that no specific protocols are required. You can visit:

靶点信息

Actin is a highly conserved protein that polymerizes to produce filaments that form cross-linked networks in the cytoplasm of cells (PubMed : 25255767, PubMed : 29581253). Actin exists in both monomeric (G-actin) and polymeric (F-actin) forms, both forms playing key functions, such as cell motility and contraction (PubMed : 29581253). In addition to their role in the cytoplasmic cytoskeleton, G- and F-actin also localize in the nucleus, and regulate gene transcription and motility and repair of damaged DNA (PubMed : 29925947). Part of the ACTR1A/ACTB filament around which the dynactin complex is built. The dynactin multiprotein complex activates the molecular motor dynein for ultra-processive transport along microtubules (By similarity).
See full target information ACTB

文献 (291)

Recent publications for all applications. Explore the full list and refine your search

International journal of biological sciences 20:367-386 PubMed38164187

2024

Rebalancing TGF-β/PGE breaks RT-induced immunosuppressive barriers by enhancing tumor-infiltrated dendritic cell homing.

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Ziqi Zhou,Qianqian Zhou,Jing Zhao,Xiaorong Hou,Junfang Yan,Xiansong Sun,Zhiwei Yang,Jiabin Ma,Fuquan Zhang,Linsheng Zhan,Ke Hu

Cell communication and signaling : CCS 21:364 PubMed38129926

2023

Capsaicin orchestrates metastasis in gastric cancer via modulating expression of TRPV1 channels and driving gut microbiota disorder.

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Rui Deng,Suyun Yu,Xingqiu Ruan,Huan Liu,Gangfan Zong,Peng Cheng,Ruizhi Tao,Wenxing Chen,Aiyun Wang,Yang Zhao,Zhonghong Wei,Yin Lu

Journal of nanobiotechnology 21:459 PubMed38037135

2023

Biomimetic composite hydrogel promotes new bone formation in rat bone defects through regulation of miR-19b-3p/WWP1 axis by loaded extracellular vesicles.

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Rongkang Guo,Chaohan Wu,Fan Liu,Tianhua Dong,Tao Zhang

Scientific reports 13:20587 PubMed37996563

2023

Bioactive glasses promote rapid pre-osteoblastic cell migration in contrast to hydroxyapatite, while carbonated apatite shows migration inhibiting properties.

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Karoliina Kajander,Saara V Sirkiä,Pekka K Vallittu,Terhi J Heino,Jorma A Määttä

PeerJ 11:e16025 PubMed37904849

2023

Identification of key genes and validation of key gene aquaporin 1 on Wilms' tumor metastasis.

Applications

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Hong Liu,Chen Jin,Xia Yang,Nan Xia,Chunzhi Guo,Qian Dong

Non-coding RNA 9: PubMed37987362

2023

Organotypic 3D Cell-Architecture Impacts the Expression Pattern of miRNAs-mRNAs Network in Breast Cancer SKBR3 Cells.

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María de Los Ángeles Gastélum-López,Maribel Aguilar-Medina,Cristina García Mata,Jorge López-Gutiérrez,Geovanni Romero-Quintana,Mercedes Bermúdez,Mariana Avendaño-Felix,César López-Camarillo,Carlos Pérez-Plascencia,Adriana S Beltrán,Rosalío Ramos-Payán

Science advances 9:eadf1332 PubMed37878712

2023

Human cerebrospinal fluid affects chemoradiotherapy sensitivities in tumor cells from patients with glioblastoma.

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Brett W Stringer,Manam Inushi De Silva,Zarina Greenberg,Alejandra Noreña Puerta,Robert Adams,Bridget Milky,Michael Zabolocki,Mark van den Hurk,Lisa M Ebert,Christine Fairly Bishop,Simon J Conn,Ganessan Kichenadasse,Michael Z Michael,Rebecca J Ormsby,Santosh Poonoose,Cedric Bardy

Nature communications 14:6559 PubMed37880248

2023

Microglial cannabinoid receptor type 1 mediates social memory deficits in mice produced by adolescent THC exposure and 16p11.2 duplication.

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Yuto Hasegawa,Juhyun Kim,Gianluca Ursini,Yan Jouroukhin,Xiaolei Zhu,Yu Miyahara,Feiyi Xiong,Samskruthi Madireddy,Mizuho Obayashi,Beat Lutz,Akira Sawa,Solange P Brown,Mikhail V Pletnikov,Atsushi Kamiya

Gels (Basel, Switzerland) 9: PubMed37888407

2023

Cryosectioning of Hydrogels as a Reliable Approach to Increase Yield and Further Tune Mechanical Properties.

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África Martínez-Blanco,Sergio Noé,Lourdes Carreras-Vidal,Jorge Otero,Núria Gavara

ACS omega 8:36933-36947 PubMed37841171

2023

Developing Bovine Brain-Derived Extracellular Matrix Hydrogels: a Screen of Decellularization Methods for Their Impact on Biochemical and Mechanical Properties.

Applications

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Duygu Turan Sorhun,Alican Kuşoğlu,Ece Öztürk
View all publications

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