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Fluorescent Probes for Lipid Rafts: From Model Membranes to Living Cells

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Fluorescent Probes for Lipid Rafts: From Model Membranes to Living Cells

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  • Research Article
  • 10.1002/asia.202500436
A Fluorescent Diaminoterephthalate Probe for Monitoring Lipid Droplet Dynamics and Ferroptosis in Mammalian Cells.
  • Jun 16, 2025
  • Chemistry, an Asian journal
  • Shrishti P Pandey + 3 more

Ferroptosis is a Fe2+ induced programmed cell death pathway that has attracted significant attention over the last decade. It is manifested in a marked increase in the polarity of lipid droplets (LDs), as it involves lipid peroxidation. LD dynamics is affected significantly by this process. Design and choice of appropriate lipophilic fluorescent probes are crucial for monitoring these phenomena. This is the motivation for the present endeavor focused on R1, a cell permeable, lipophilic diaminoterephthalate fluorescent probe with a strongly polarity-dependent fluorescence intensity and lifetime. Using confocal laser scanning microscopy (CLSM) and fluorescence lifetime imaging microscopy (FLIM), LD behavior in mammalian cells under ferroptosis-inducing conditions has been observed. R1 has been found to exhibit a marked decrease in fluorescence intensity and lifetime in LDs upon treatment with erastin, thus reflecting the increased polarity brought about by ferroptosis. This sets the field for future use of R1 to investigate ferroptosis-related processes, possibly leading to disease diagnostics and formulation of therapeutic strategies.

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  • Conference Article
  • 10.3390/proceedings1080851
New Fluorescent Molecular Probes for Monitoring of Very Fast Photopolymerization Processes of Monomers
  • Dec 8, 2017
  • Monika Topa + 6 more

Extremely interesting and important applications of luminescent sensors have been found in research testing polymeric materials by fluorescence spectroscopy. [...]

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  • Research Article
  • Cite Count Icon 24
  • 10.1074/jbc.m509197200
Use of Probes with Fluorescence Indicator Distributed throughout the Pharmacophore to Examine the Peptide Agonist-binding Environment of the Family B G Protein-coupled Secretin Receptor
  • Feb 1, 2006
  • Journal of Biological Chemistry
  • Kaleeckal G Harikumar + 3 more

Fluorescence techniques can provide insight into the environment of fluorescence indicators situated at distinct sites within a ligand as it is bound to its receptor. Here, we have developed a series of analogues of the 27-amino acid hormone, secretin, that incorporate a fluorescent Alexa Fluor 488 into the amino terminus, the carboxyl terminus, and positions 13 and 22. Each probe bound with high affinity and was biologically active, stimulating full cAMP responses in receptor-bearing Chinese hamster ovary-SecR cells. Treatment with 10 mum guanosine 5'-(beta,gamma-imido)triphosphate (GppNHp) shifted the agonist-bound receptor into a G protein-uncoupled low affinity state. Fluorescence spectra for the probes in solution and bound to the receptor demonstrated maximal emission at 521 nm after excitation at 481 nm. Collisional quenching of fluorescence with potassium iodide revealed that Alexa at the amino terminus of secretin was more accessible than at the other three positions within the probes. Of note, quenching constants for each probe were higher when bound in the active state than in the G protein-uncoupled, low affinity state of the receptor, with the most marked changes occurring for the two midregion probes. Anisotropy values and fluorescence lifetimes confirmed this, with higher anisotropy and longer lifetimes observed for position 13 and 22 probes bound to the receptor in its uncoupled state than in its active state. These observations suggest that the amino terminus of secretin as docked to the receptor is most exposed to the hydrophilic aqueous milieu, and that the major changes in conformation and exposure to the medium occur in the midregion of secretin. Photoaffinity labeling studies have demonstrated approximation of each of these ligand residues with distinct receptor residues. Combining the fluorescence data with photoaffinity labeling data provides insights into the conformation and dynamics of a natural peptide ligand docked to a Family B G protein-coupled receptor.

  • Research Article
  • Cite Count Icon 134
  • 10.1021/ac010914j
Design and synthesis of Mg2+-selective fluoroionophores based on a coumarin derivative and application for Mg2+ measurement in a living cell.
  • Feb 9, 2002
  • Analytical Chemistry
  • Yoshio Suzuki + 11 more

Novel Mg2+ fluorescent molecular probes (KMG-20-AM and KMG-27-AM; where AM is an acetoxymethyl group) based on a coumarin possessing a charged beta-diketone structure were designed and synthesized. These fluorescent probes produced a red shift from 425 to 445 nm in the absorption spectra after formation of a complex with Mg2+. The fluorescence spectra of these probes also showed a red shift from 485 to 495 nm and an increasing fluorescence intensity after formation of a complex with Mg2+. The optimum experimental conditions were excitation wavelength of 445 nm and a monitored wavelength of 500 nm, where these probes functioned as an indicator showing an image of increasing fluorescence in the presence of Mg2+. These probes showed a "seesaw-type" fluorescent spectral change with the isosbestic point at 480 nm due to the light excitation at 445 nm, which indicates that ratiometry can be used for the measurement. The molecular probes formed a 1:1 complex with Mg2+ and the dissociation constant (Kd) was 10.0 mM for KMG-20. The association constants of the probes with Mg2- were approximately 3 times higher than that with Ca2+, which showed that the selectivity of Mg2+ versus Ca2+ for these probes was over 200 times higher than that for commercially available Mg2+ fluorescent molecular probes such as mag-fura-2, Magnesium Green. As an application of these probes, intracellular fluorescent imaging of Mg2+ was demonstrated using a fluorescent microscope. After the addition of KMG-20-AM and KMG-27-AM into PC12 cells, a strong fluorescence was observed in the cytoplasm and a weak fluorescence in the nuclei region. After treatment with a high-K+ medium, the fluorescence intensity increased due to increasing intracellular Mg2+. The real image of Mg2+ release from the magnesium store was successfully observed with these Mg2+ fluorescent probes.

  • Research Article
  • Cite Count Icon 35
  • 10.1002/cyto.a.20679
Suitability of various membrane lipophilic probes for the detection of trogocytosis by flow cytometry
  • Dec 2, 2008
  • Cytometry Part A
  • Sandrine Daubeuf + 3 more

Trogocytosis is a recently discovered phenomenon whereby lymphocytes capture fragments of the plasma membrane from antigen presenting cells (APCs). Using APCs labeled with widely used fluorescent lipophilic probes, we previously described a trogocytosis analysis protocol (TRAP) useful to understand the mechanisms and biological consequences of this process and to identify lymphocytes reacting specifically with antigen-bearing APCs. We have compared the suitability of 22 different fluorescent lipophilic probes for use in TRAP assays with cytotoxic T lymphocytes (CTL). The criteria we used were: simple and efficient incorporation in APC membranes, minimal passive diffusion among cells but efficient transfer onto T cells during trogocytosis. Sphingosin-based probes were found to incorporate inefficiently into cells. For others with unsaturated lipid chains, we found a tendency for extensive passive diffusion. In the end, about a third of the probes tested were found to be suitable in TRAP assays, which all carry either C16 or C18 saturated carbon chains, including some that can be excited with a red laser. Moreover, we found it possible to combine TRAP assays based on lipophilic probes with intracellular cytokine detection. We have identified a set of new lipophilic fluorescent probes suitable for TRAP assays in combination with intracellular staining.

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  • Research Article
  • Cite Count Icon 3
  • 10.1515/gps-2022-0085
Construction of mercury ion fluorescence system in water samples and art materials and fluorescence detection method for rhodamine B derivatives
  • Nov 3, 2022
  • Green Processing and Synthesis
  • Zhankun Wang + 3 more

At present, the research on fluorescent molecular probe has become a hot topic in the field of environmental science, chemical materials, medicine, and other fields. Therefore, the detection of industrial mercury-containing wastewater (Hg2+) is of great significance. In this article, the fluorescent probe is used to detect mercury ions, and when compared with the traditional detection method, the fluorescent probe has the advantage of operation such as the effect of simplicity is evident. The experiments first synthesized rhodamine B derivatives and then the synthesized rhodamine B derivative fluorescent molecular probes were constructed and used to detect the mercury ions in water sample and oil paints. It was demonstrated that rhodamine B-derived probes have been constructed by UV and fluorescence spectroscopy. The different metal ions and rhodamine B-derived fluorescent molecular probes were compounded, resulting in the appearance of fluorescence peak centered at 583 nm only after the addition of metallic mercury ions with almost no response from other ions. The mercury ion rhodamine B derivative is more responsive to metallic mercury ions.

  • Research Article
  • Cite Count Icon 8
  • 10.1016/0022-1759(89)90064-1
Use of lipophilic fluorescent probes for the isolation of hybrid cells in flow cytometry
  • Mar 1, 1989
  • Journal of Immunological Methods
  • V.V Tertov + 5 more

Use of lipophilic fluorescent probes for the isolation of hybrid cells in flow cytometry

  • Research Article
  • Cite Count Icon 223
  • 10.1016/j.trac.2010.05.005
Molecular fluorescent probes for monitoring pH changes in living cells
  • Jun 22, 2010
  • TrAC Trends in Analytical Chemistry
  • Rui Wang + 3 more

Molecular fluorescent probes for monitoring pH changes in living cells

  • Research Article
  • 10.7536/pc131155
Fluorescent Probes for Hydrogen Sulfide Detection
  • Jun 1, 2014
  • Knowledge Repository of Yantai Institute of Coastal Zone Research, CAS (Yantai Institute of Coastal Zone Research)
  • Min Gao + 2 more

Following carbon monoxide and nitric oxide, hydrogen sulfide (H2S) is found to be the third endogenous gasotransmitter, which provides the regulation significance of physiological and pathological processes in the cardiovascular and nervous systems. Therefore, the selective recognition and detection of H2S are of importance. Fluorescent probe method, among biological detection technologies, is an indispensable technique for the biological species analysis, and that is highlighted by its good selectivity, high sensitivity, noninvasive detection, and real-time monitoring in situ. Recently, the development of fluorescent probes for intracellular H2S detection has been becoming one of the hot topics. Herein, the progress during the last three years of fluorescent molecular probes based on the small molecules for H2S detection are reviewed. These fluorescent probes are classified and concluded according to the different types of chemical reaction with H2S, and then arranged specifically by the fluorophores in different type. The design concepts of molecular structures, detection mechanism and biological applications of these probes are introduced. In addition, the relationship between molecular structures and properties while testing are elucidated. Finally, the challenge and application prospects for the development of hydrogen sulfide fluorescent probes are also discussed.

  • Research Article
  • Cite Count Icon 8
  • 10.1016/j.indcrop.2023.117908
Lignin based water-soluble fluorescent macromolecular probes for the detection of Fe3+ ion
  • Dec 8, 2023
  • Industrial Crops and Products
  • Yufan Wu + 2 more

Lignin based water-soluble fluorescent macromolecular probes for the detection of Fe3+ ion

  • Research Article
  • Cite Count Icon 40
  • 10.1117/1.3594153
Detection of enzyme activity in orthotopic murine breast cancer by fluorescence lifetime imaging using a fluorescence resonance energy transfer–based molecular probe
  • Jan 1, 2011
  • Journal of Biomedical Optics
  • Metasebya Solomon + 6 more

Cancer-related enzyme activity can be detected noninvasively using activatable fluorescent molecular probes. In contrast to "always-on" fluorescent molecular probes, activatable probes are relatively nonfluorescent at the time of administration due to intramolecular fluorescence resonance energy transfer (FRET). Enzyme-mediated hydrolysis of peptide linkers results in reduced FRET and increase of fluorescence yield. Separation of signal from active and inactive probe can be difficult with conventional intensity-based fluorescence imaging. Fluorescence lifetime (FLT) measurement is an alternative method to detect changes in FRET. Thus, we investigate FLT imaging for in vivo detection of FRET-based molecular probe activation in an orthotopic breast cancer model. Indeed, the measured FLT of the enzyme-activatable molecular probe increases from 0.62 ns just after injection to 0.78 ns in tumor tissue after 4 h. A significant increase in FLT is not observed for an always-on targeted molecular probe with the same fluorescent reporter. These results show that FLT contrast is a powerful addition to preclinical imaging because it can report molecular activity in vivo due to changes in FRET. Fluorescence lifetime imaging exploits unique characteristics of fluorescent molecular probes that can be further translated into clinical applications, including noninvasive detection of cancer-related enzyme activity.

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  • Research Article
  • Cite Count Icon 14
  • 10.1016/j.jphotobiol.2022.112512
A highly photostable and versatile two-photon fluorescent probe for the detection of a wide range of intracellular nitric oxide concentrations in macrophages and endothelial cells.
  • Sep 1, 2022
  • Journal of Photochemistry and Photobiology B: Biology
  • Carla Arnau Del Valle + 9 more

Nitric oxide (NO) is involved in many biological processes affecting the cardiovascular, nervous and immune systems. Intracellular NO can be monitored using fluorescent probes in combination with fluorescence imaging techniques. Most of the currently available NO fluorescent molecular probes are excited via one-photon excitation using UV or Vis light, which results in poor penetration and high photodamage to living tissues. Here, we report a two-photon fluorescent molecular probe, DANPY-NO, able to detect NO in live cells. The probe consists of an o-phenylenediamine linked to a naphthalimide core; and operates via photoinduced electron transfer. DANPY-NO exhibits good sensitivity (LOD of 77.8nM) and high selectivity towards NO, and is stable over a broad range of pHs. The probe targeted acidic organelles within macrophages and endothelial cells, and demonstrated enhanced photostability over a commercially available NO probe. DANPY-NO was used to selectively detect endogenous NO in RAW264.7ϒ NO- macrophages, THP-1 human leukemic cells, primary mouse (bone marrow-derived) macrophages and endothelial cells. The probe was also able to detect exogenous NO in endothelial cells and distinguish between increasing concentrations of NO. The NO detection was evidenced using confocal laser scanning and two-photon microscopies, and flow cytometry. Further evidence was obtained by recording the changes in the intracellular fluorescence emission spectrum of the probe. Importantly, the probe displayed negligible toxicity to the analysed biological samples. The excellent sensitivity, selectivity, stability and versatility of DANPY-NO confirm its potential for in vitro and in vivo imaging of NO.

  • Research Article
  • Cite Count Icon 10
  • 10.1021/acs.jafc.2c05659
Naphthalimide-Based Fluorescent Probe for Profiling of Aldehydes during Oxidation of Unsaturated Lipids.
  • Oct 26, 2022
  • Journal of Agricultural and Food Chemistry
  • Mengyi Lin + 1 more

A lipophilic naphthalimide hydrazine fluorescent probe was successfully developed in this study for profiling aldehyde oxidation products. Dodecyl amine was applied to afford lipophilicity of the fluorescent probe for lipids. Investigation of fluorescence properties of the probe and condensation products with typical aldehydes including MDA and hexanal revealed significant enhancement of fluorescence intensity after condensation due to the inhibition of photo-induced electron transfer. MDA and hexanal could be differentiated by the probe through emission of different fluorescence colors (blue, MDA; green, hexanal). Eight major oxidation components including seven aldehydes were detected by the fluorescent probe coupled with high-performance liquid chromatography-mass spectrometry during aerobic oxidation of typical unsaturated lipids. Formation of these aldehyde oxidation products was rationalized through the radical oxidation mechanism. Detection of representative aldehyde products demonstrated the generality in the application of this fluorescent probe for profiling of aldehydes after lipid oxidation.

  • Research Article
  • Cite Count Icon 82
  • 10.1042/bst0310397
Polyamines and novel polyamine conjugates interact with DNA in ways that can be exploited in non-viral gene therapy.
  • Apr 1, 2003
  • Biochemical Society Transactions
  • I.S Blagbrough + 2 more

As a part of our continuing studies on 'Polyamines and their role in human disease' we are investigating how polyamines, and especially how novel polyamine conjugates, interact with DNA. We are studying how these conjugates interact with circular plasmids in order to produce nanometre-sized particles suitable for transfecting cells. Our considerations of structure--activity relationships (SAR) within naturally occurring and synthetic polyamines have shown the significance of the inter-atomic distances between the basic nitrogen atoms. As these atoms are typically fully protonated under physiological conditions, they exist in equilibrium as polyammonium ions. The covalent addition of a lipid moiety, typically one or two alkyl or alkenyl chains, or a steroid, allows much greater efficiency in DNA condensation and in the cellular transfection achieved. Thus efficient DNA condensation and subsequently drug delivery (i.e. with DNA as the drug) can be brought about using novel polyamine conjugates. Taking further advantage of the functionalization of specific steroids (e.g. cholesterol and certain bile acids), we have designed and prepared novel fluorescent molecular probes as tools to throw light on the problematic steps in non-viral gene delivery which still impede efficient gene therapy. Thus, the current aims of our research are to understand, design and prepare small-molecule lipopolyamines for non-viral gene therapy (NVGT). The rational design and practical preparation of non-symmetrical polyamine carbamates and amides, based on steroid templates of cholesterol and the bile acid lithocholic acid as the lipid moiety, provides fluorescent molecular probes that condense DNA. These novel lipopolyamine conjugates mimic the positive charge distribution found in the triamine spermidine and the tetra-amine spermine alkaloids. After optimizing their SAR, these fluorescent probes will be useful in monitoring gene delivery in NVGT.

  • Research Article
  • Cite Count Icon 20
  • 10.31635/ccschem.020.202000479
Fluorescent Visualization of Nucleolar G-Quadruplex RNA and Dynamics of Cytoplasm and Intranuclear Viscosity
  • Dec 24, 2020
  • CCS Chemistry
  • Le Yu + 5 more

The nucleolus, the locus of ribosome biogenesis, was found to be the predominant intracellular target of a new fluorescent probe, V-P1. In solution, the probe demonstrated both a selectivity to RNA...

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