logo
AAT Bioquest

Bodi Fluor FL-C12 [equivalent to BODIPY™ FL C12]

Product Image
Product Image
Gallery Image 1
Ordering information
Price
Catalog Number
Unit Size
Quantity
Add to cart
Additional ordering information
Telephone1-800-990-8053
Fax1-800-609-2943
Emailsales@aatbio.com
InternationalSee distributors
Bulk requestInquire
Custom sizeInquire
ShippingStandard overnight for United States, inquire for international
Request quotation
Physical properties
Molecular weight418.34
SolventDMSO
Spectral properties
Excitation (nm)502
Emission (nm)511
Storage, safety and handling
H-phraseH303, H313, H333
Hazard symbolXN
Intended useResearch Use Only (RUO)
R-phraseR20, R21, R22
StorageFreeze (< -15 °C); Minimize light exposure
UNSPSC12171501

OverviewpdfSDSpdfProtocol


Molecular weight
418.34
Excitation (nm)
502
Emission (nm)
511
Bodi Fluor FL-C12, a green fluorescent fatty acid, serves as a synthetic precursor for a wide array of fluorescent phospholipids. Unlike conventional fluorophores such as pyrene, DPH, and NBD, Bodi Fluor dyes exhibit minimal sensitivity to environmental conditions, maintaining consistent fluorescence in both aqueous and lipid mediums. The structural asymmetry of Bodi Fluor dyes allows for the derivation of a variety of fluorescent lipid analogs. Additionally, Bodi Fluor lipid droplet dyes effectively translocate across cellular membranes, specifically accumulating in polar lipids to selectively stain lipid droplets. This characteristic renders them applicable for the staining of both live and fixed cells in cellular biology research.

Calculators


Common stock solution preparation

Table 1. Volume of DMSO needed to reconstitute specific mass of Bodi Fluor FL-C12 [equivalent to BODIPY™ FL C12] to given concentration. Note that volume is only for preparing stock solution. Refer to sample experimental protocol for appropriate experimental/physiological buffers.

0.1 mg0.5 mg1 mg5 mg10 mg
1 mM239.04 µL1.195 mL2.39 mL11.952 mL23.904 mL
5 mM47.808 µL239.04 µL478.08 µL2.39 mL4.781 mL
10 mM23.904 µL119.52 µL239.04 µL1.195 mL2.39 mL

Molarity calculator

Enter any two values (mass, volume, concentration) to calculate the third.

Mass (Calculate)Molecular weightVolume (Calculate)Concentration (Calculate)Moles
/=x=

Spectrum


Open in Advanced Spectrum Viewer
spectrum

Spectral properties

Excitation (nm)502
Emission (nm)511

Images


References


View all 50 references: Citation Explorer
Identification of Leishmania donovani PEX5-PTS1 Interaction Inhibitors through Fluorescence Polarization-Based High-Throughput Screening.
Authors: Phan, Trong-Nhat and Park, Kyu-Ho Paul and Shum, David and No, Joo Hwan
Journal: Molecules (Basel, Switzerland) (2024)
Contact-FP: A Dimerization-Dependent Fluorescent Protein Toolkit for Visualizing Membrane Contact Site Dynamics.
Authors: Miner, Gregory E and Smith, Sidney Y and Showalter, Wendy K and So, Christina M and Ragusa, Joey V and Powers, Alex E and Zanellati, Maria Clara and Hsu, Chih-Hsuan and Marchan, Michelle F and Cohen, Sarah
Journal: Contact (Thousand Oaks (Ventura County, Calif.)) (2024): 25152564241228911
Fluorescent fatty acid conjugates for live cell imaging of peroxisomes.
Authors: Korotkova, Daria and Borisyuk, Anya and Guihur, Anthony and Bardyn, Manon and Kuttler, Fabien and Reymond, Luc and Schuhmacher, Milena and Amen, Triana
Journal: Nature communications (2024): 4314
Lysosome targeting fluorescent probe for NAAA imaging and its applications in the drug development for anti-inflammatory.
Authors: Zhou, Limin and Tian, Manman and Zhang, Baojing and Cao, Xudong and Huo, Xiaokui and Yang, Fangyu and Cao, Peng and Feng, Lei and Ma, Xiaochi and Tian, Xiangge
Journal: International journal of biological macromolecules (2024): 130307
Illuminating the Cryptococcus neoformans Species Complex: Unveiling Intracellular Structures with Fluorescent-Protein-Based Markers.
Authors: Shi, Ran and Lin, Xiaorong
Journal: Genetics (2024)
Assay of Reactive Oxygen/Nitrogen Species (ROS/RNS) in Arabidopsis Peroxisomes Through Fluorescent Protein Containing a Type 1 Peroxisomal Targeting Signal (PTS1).
Authors: Corpas, Francisco J and Palma, José M
Journal: Methods in molecular biology (Clifton, N.J.) (2023): 149-160
Exploration of chlorophyll fluorescence characteristics gene regulatory in rice (Oryza sativa L.): a genome-wide association study.
Authors: Liu, Sicheng and Xiong, Zhuang and Zhang, Zuolin and Wei, Youbo and Xiong, Dongliang and Wang, Fei and Huang, Jianliang
Journal: Frontiers in plant science (2023): 1234866
Assessment of the Peroxisomal Redox State in Living Cells Using NADPH- and NAD+/NADH-Specific Fluorescent Protein Sensors.
Authors: Costa, Cláudio F and Li, Hongli and Hussein, Mohamed A F and Yang, Yi and Lismont, Celien and Fransen, Marc
Journal: Methods in molecular biology (Clifton, N.J.) (2023): 183-197
Fluorescent Fusion Protein Expression in Plant Cells.
Authors: Huang, Shuxian and Yonglun, Zeng
Journal: Methods in molecular biology (Clifton, N.J.) (2023): 119-127
A Medicago truncatula Cell Biology Resource: Transgenic Lines Expressing Fluorescent Protein-Based Markers of Membranes, Organelles, and Subcellular Compartments.
Authors: Ivanov, Sergey and Daniels, Dierdra A and Harrison, Maria J
Journal: Molecular plant-microbe interactions : MPMI (2023): 256-259