Hydrophobic analogues of rhodamine B and rhodamine 101: potent fluorescent probes of mitochondria in living C. elegans

Laurie F. Mottram, Safiyyah Forbes, Brian D. Ackley and Blake R. Peterson
Beilstein J. Org. Chem. 2012, 8, 2156–2165. https://doi.org/10.3762/bjoc.8.243

Supporting Information

Supporting Information File 1: Supplementary time-lapse confocal microscopy video showing dynamics of mitochondrial fusion and fission in a living adult C. elegans animal imaged after treatment with HRB (9, 1 nM) for 2 h followed by immobilization on an agarose pad containing polystyrene beads. Frames were acquired every 3.3 seconds, and are animated at 3 frames per second. The animal in the video is oriented such that the ventral side is left and the anterior is toward the top of the frame. The distal (mitotic) gonad arm is on the right half of the animal, whereas the proximal oocytes are on the left. Dynamic motility of mitochondria in the gonad including elongation, collapse, fusion, and fission can be observed.
Format: MOV Size: 6.2 MB Download

Cite the Following Article

Hydrophobic analogues of rhodamine B and rhodamine 101: potent fluorescent probes of mitochondria in living C. elegans
Laurie F. Mottram, Safiyyah Forbes, Brian D. Ackley and Blake R. Peterson
Beilstein J. Org. Chem. 2012, 8, 2156–2165. https://doi.org/10.3762/bjoc.8.243

How to Cite

Mottram, L. F.; Forbes, S.; Ackley, B. D.; Peterson, B. R. Beilstein J. Org. Chem. 2012, 8, 2156–2165. doi:10.3762/bjoc.8.243

Download Citation

Citation data can be downloaded as file using the "Download" button or used for copy/paste from the text window below.
Citation data in RIS format can be imported by all major citation management software, including EndNote, ProCite, RefWorks, and Zotero.

Citations to This Article

Up to 20 of the most recent references are displayed here.

Scholarly Works

  • Deng, F.; Zhang, H.; Yang, K.; Yang, Y.; Huang, C.; Ye, H.; Sun, D.; Yi, X.; Liu, L. Rational design of pH probes with large Stokes shift for tracking lysosome-mitochondria interactions. Microchemical Journal 2024, 197, 109772. doi:10.1016/j.microc.2023.109772
  • Kruglov, A. G.; Romshin, A. M.; Nikiforova, A. B.; Plotnikova, A.; Vlasov, I. I. Warm Cells, Hot Mitochondria: Achievements and Problems of Ultralocal Thermometry. International journal of molecular sciences 2023, 24, 16955. doi:10.3390/ijms242316955
  • Wang, B.; Fu, T.; Cheng, C.; Wang, D. Layer-by-layer assembly of polyelectrolytes on hydrophobic particles in aqueous milieu for efficient dye removal. Chemical communications (Cambridge, England) 2023, 59, 12479–12482. doi:10.1039/d3cc04149b
  • Xing, G.-W.; Gao, J.; Wang, H.; Liu, Y.-C. New Fluorophore and Its Applications in Visualizing Polystyrene Nanoplastics in Bean Sprouts and HeLa Cells. Molecules (Basel, Switzerland) 2023, 28, 7102. doi:10.3390/molecules28207102
  • Joshi, B.; Khalil, A. M. E.; Zhang, S.; Memon, F. A. Investigating the Potential of Greener-Porous Graphene for the Treatment of Organic Pollutants in Wastewater. 2023, 9, 97. doi:10.3390/c9040097
  • Joshi, B.; Khalil, A. M. E.; Zhang, S.; Memon, F. A.; Yang, Z. Application of 2D MoS2 Nanoflower for the Removal of Emerging Pollutants from Water. ACS engineering Au 2023, 3, 461–476. doi:10.1021/acsengineeringau.3c00032
  • Uma Maheswari, R. T.; Ajithkumar, V.; Varalakshmi, P.; Rajan, M. CD44 tagged hyaluronic acid - chitosan liposome carrier for the delivery of berberine and doxorubicin into lung cancer cells. International journal of biological macromolecules 2023, 253, 126599. doi:10.1016/j.ijbiomac.2023.126599
  • Kodama, K.; Thao, N. T. T.; Saitoh, T. Effect of air bubbles on the membrane filtration of rhodamine B. Analytical sciences : the international journal of the Japan Society for Analytical Chemistry 2023, 39, 1601–1605. doi:10.1007/s44211-023-00366-w
  • Woodcock, J. W.; Fox, D. M.; Patel, I.; Dunkers, J.; Stranick, S. J.; Gilman, J. W. MDTEB, a new fluorescent label for carbohydrate nanomaterial in vivo studies. Cellulose 2023, 30, 6099–6107. doi:10.1007/s10570-023-05152-5
  • Sharma, R.; Suhendra, N. F.; Lee, H.-i. Hydrogen sulfide detection induced burst release of model drug from polymeric micelles. Sensors and Actuators B: Chemical 2023, 382, 133570. doi:10.1016/j.snb.2023.133570
  • Singh, D.; Regar, R.; Soppina, P.; Soppina, V.; Kanvah, S. Imaging of mitochondria/lysosomes in live cells and C. elegans. Organic & biomolecular chemistry 2023, 21, 2220–2231. doi:10.1039/d3ob00086a
  • Guo, P.; Wang, P.; Liu, L.; Wang, P.; Lin, G.; Qu, Z.; Yu, Z.; Liu, N. Naringin Alleviates Glucose-Induced Aging by Reducing Fat Accumulation and Promoting Autophagy in Caenorhabditis elegans. Nutrients 2023, 15, 907. doi:10.3390/nu15040907
  • Komori, Y.; Sugimoto, S.; Sato, T.; Okawara, H.; Watanabe, R.; Takano, Y.; Kitaoka, S.; Egawa, Y. A New Boron-Rhodamine-Containing Carboxylic Acid as a Sugar Chemosensor. Sensors (Basel, Switzerland) 2023, 23, 1528. doi:10.3390/s23031528
  • Ichikawa, S.; Ishikawa, K.; Miyakawa, H.; Kodama, Y. Live-cell imaging of the chloroplast outer envelope membrane using fluorescent dyes. Plant direct 2022, 6, e462. doi:10.1002/pld3.462
  • Woodcock, J.; Fox, D. M.; Patel, I.; Dunkers, J.; Stranick, S. J.; Gilman, J. MDEB, a new fluorescent label for carbohydrate nanomaterial in vivo studies. Research Square Platform LLC 2022. doi:10.21203/rs.3.rs-1654540/v1
  • Inada, N. A Guide to Plant Intracellular Temperature Imaging using Fluorescent Thermometers. Plant & cell physiology 2022, 64, 7–18. doi:10.1093/pcp/pcac123
  • Yin, H.; Chen, X.-T.; Chi, Q.-N.; Ma, Y.-N.; Fu, X.-Y.; Du, S.-S.; Qi, Y.-K.; Wang, K.-W. The hybrid oncolytic peptide NTP-385 potently inhibits adherent cancer cells by targeting the nucleus. Acta pharmacologica Sinica 2022, 44, 201–210. doi:10.1038/s41401-022-00939-x
  • Gao, Z.; Sharma, K. K.; Andres, A. E.; Walls, B.; Boumelhem, F.; Woydziak, Z. R.; Peterson, B. R. Synthesis of a fluorinated pyronin that enables blue light to rapidly depolarize mitochondria. RSC medicinal chemistry 2022, 13, 456–462. doi:10.1039/d1md00395j
  • Buckle, T.; van Willigen, D. M.; Welling, M. M.; van Leewen, F. W. Reference Module in Biomedical Sciences - Pre-clinical development of fluorescent tracers and translation towards clinical application. Nuclear Medicine and Molecular Imaging; Elsevier, 2022; pp 644–661. doi:10.1016/b978-0-12-822960-6.00045-4
  • Jilani, W.; Bouzidi, A.; Almahri, A.; Guermazi, H.; Yahia, I. The effect of the thickness on structural, optical limiting, and dielectric properties of hybrid coatings rhodamine B dye films on an epoxy polymeric substrate for display applications. Physica Scripta 2021, 96, 125862. doi:10.1088/1402-4896/ac3a50

Patents

  • SZWARCMAN DANIEL; SOBOL ZIV. Control of illumination spectra for LCD displays. US 11275265 B2, March 15, 2022.
  • KUKS EVGENIA LIEL (JENY); SCHWARZ RONY; SELLA ERAN; SZWARCMAN DANIEL. Color conversion with solid matrix films and green rhodamines. US 10808127 B2, Oct 20, 2020.
  • KUKS EVGENIA LIEL (JENY); SCHWARZ RONY; SELLA ERAN; SZWARCMAN DANIEL. Color conversion with solid matrix films. US 10533091 B2, Jan 14, 2020.
  • SZWARCMAN DANIEL; COHEN ELAD; ARMON MOR SHMUEL; KUKS EVGENIA LEIL (JENY); SCHWARZ RONY; EISUROVICH ELENA; ARONOV DANIEL; SELLA ERAN. Red-enhanced white LCD displays comprising sol-gel-based color conversion films. US 10519314 B2, Dec 31, 2019.
  • SZWARCMAN DANIEL; COHEN ELAD; ARMON MOR SHMUEL; KUKS EVGENIA LIEL (JENY); SCHWARZ RONY; EISUROVICH ELENA; ARONOV DANIEL; SELLA ERAN. Protective layers produced by UV curing processes. US 10495917 B2, Dec 3, 2019.
  • SZWARCMAN DANIEL; COHEN ELAD; ARMON MOR SHMUEL; KUKS EVGENIA LIEL (JENY); SCHWARZ RONY; EISUROVICH ELENA; ARONOV DANIEL; SELLA ERAN. Protective layers produced by sol gel processes. US 10473968 B2, Nov 12, 2019.
  • SZWARCMAN DANIEL; COHEN ELAD; ARMON MOR SHMUEL; KUKS EVGENIA LIEL (JENY); SCHWARZ RONY; EISUROVICH ELENA; ARONOV DANIEL; SELLA ERAN. Red enhancement in white LED displays using UV-cured color conversion films. US 10472520 B2, Nov 12, 2019.
  • SZWARCMAN DANIEL; COHEN ELAD; ARMON MOR SHMUEL; KUKS EVGENIA LIEL (JENY); SCHWARZ RONY; EISUROVICH ELENA; ARONOV DANIEL; SELLA ERAN. Color conversion films produced by UV curing processes. US 10473979 B2, Nov 12, 2019.
  • SCHWARZ RONY; KUKS EVGENIA LIEL (JENY); SELLA ERAN. Rhodamine based salts. US 10465110 B2, Nov 5, 2019.
  • KUKS EVGENIA LIEL (JENY); SCHWARZ RONY; SELLA ERAN; ARMON MOR SHMUEL; SZWARCMAN DANIEL. Photoluminescent compounds and uses thereof. US 10240042 B2, March 26, 2019.
  • SKULACHEV MAXIM; KORSHUNOVA GALINA; SHISKINA ANNA; PETROV ANTON. A SET OF MITOCHONDRIA-TARGETED COMPOUNDS. WO 2019002936 A3, March 21, 2019.
  • ARMON MOR SHMUEL; COHEN ELAD; KUKS EVGENIA LIEL (JENY); SCHWARZ RONY; SELLA ERAN; SZWARCMAN DANIEL. Modifications of the sol-gel films and production processes thereof. US 10227492 B2, March 12, 2019.
  • KUKS EVGENIA LIEL (JENY); SCHWARZ RONY; SELLA ERAN; ARMON MOR SHMUEL; SZWARCMAN DANIEL. Rhodamine derivatives dyes and uses thereof. US 10100197 B2, Oct 16, 2018.
  • SZWARCMAN DANIEL; COHEN ELAD; ARMON MOR SHMUEL; KUKS EVGENIA LIEL (JENY); SCHWARZ RONY; EISUROVICH ELENA; ARONOV DANIEL; SELLA ERAN. Color conversion in LCD displays with silica nanoparticles. US 10072153 B2, Sept 11, 2018.
  • SZWARCMAN DANIEL; KUKS EVGENIA LIEL. Color conversion films with plasmon enhanced fluorescent dyes. US 10059876 B2, Aug 28, 2018.
  • KUKS EVGENIA LIEL; SCHWARZ RONY; SELLA ERAN; ARMON MOR SHMUEL; SZWARCMAN DANIEL. Rhodamine derivatives dyes, color-conversion-layer and uses thereof. US 10059843 B2, Aug 28, 2018.
  • KUKS EVGENIA LIEL (JENY); SCHWARZ RONY; SELLA ERAN; ARMON MOR SHMUEL; SZWARCMAN DANIEL. RHODAMINE DERIVATIVES DYES AND USES THEREOF. WO 2018042409 A1, March 8, 2018.
  • KUKS EVGENIA LIEL JENY; SCHWARZ RONY; SELLA ERAN; SZWARCMAN DANIEL. COLOR CONVERSION WITH SOLID MATRIX FILMS. US 20180037738 A1, Feb 8, 2018.
  • SZWARCMAN DANIEL; COHEN ELAD; ARMON MOR SHMUEL; KUKS EVGENIA LIEL (JENY); SCHWARZ RONY; EISUROVICH ELENA; ARONOV DANIEL; SELLA ERAN. Color conversion in LCD displays. US 9868859 B2, Jan 16, 2018.
Other Beilstein-Institut Open Science Activities