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1.
Osteoarthritis Cartilage ; 22(2): 355-62, 2014 Feb.
Article in English | MEDLINE | ID: mdl-24185113

ABSTRACT

OBJECTIVE: Cartilage injury can lead to post-traumatic osteoarthritis (PTOA). Immediate post-trauma cellular and structural changes are not widely understood. Furthermore, current cellular-resolution cartilage imaging techniques require sectioning of cartilage and/or use of dyes not suitable for patient imaging. In this study, we used multiphoton microscopy (MPM) data with FDA-approved sodium fluorescein to identify and evaluate the pattern of chondrocyte death after traumatic injury. METHOD: Mature equine distal metacarpal or metatarsal osteochondral blocks (OCBs) were injured by 30 MPa compressive loading delivered over 1 s. Injured and control sites were imaged unfixed and in situ 1 h post-injury with sodium fluorescein using rasterized z-scanning. MPM data was quantified in MATLAB, reconstructed in 3-D, and projected in 2-D to determine the damage pattern. RESULTS: MPM images (600 per sample) were reconstructed and analyzed for cell death. The overall distribution of cell death appeared to cluster into circular (n = 7) or elliptical (n = 4) patterns (p = 0.006). Dead cells were prevalent near cracks in the matrix, with only 26.3% (SE = 5.0%, p < 0.0001) of chondrocytes near cracks being viable. CONCLUSION: This study demonstrates the first application of MPM for evaluating cellular-scale cartilage injury in situ in live tissue, with clinical potential for detecting early cartilage damage. With this technique, we were able to uniquely observe two death patterns resulting from the same compressive loading, which may be related to local variability in matrix structure. These results also demonstrate proof-of-concept MPM diagnostic use in detecting subtle and early cartilage damage not detectable in any other way.


Subject(s)
Cartilage, Articular/injuries , Animals , Cartilage, Articular/pathology , Cell Death/physiology , Chondrocytes/pathology , Disease Models, Animal , Early Diagnosis , Feasibility Studies , Horses , Image Processing, Computer-Assisted/methods , Metacarpus/injuries , Metacarpus/pathology , Metatarsal Bones/injuries , Metatarsal Bones/pathology , Microscopy, Fluorescence, Multiphoton/methods , Stress, Mechanical , Weight-Bearing
2.
J Appl Crystallogr ; 45(Pt 5): 936-943, 2012 Oct 01.
Article in English | MEDLINE | ID: mdl-22997474

ABSTRACT

Confocal microscopy, a technique that has been extensively applied in cellular biological studies, may also be applied to the visualization and three-dimensional imaging of protein crystals at high resolution on synchrotron beamlines. Protein crystal samples are examined using a commercially available confocal microscope adapted for cryogenic use. A preliminary test using a custom confocal design adapted for beamline use is also presented. The confocal optics configuration is compatible with nonlinear imaging techniques such as two-photon excited fluorescence imaging and second harmonic generation. The possibilities of this method are explored using two modes: fluorescence and reflection confocal. In fluorescence mode, small amounts of dye are introduced into the crystal through soaking or growth conditions. Under such conditions, protein crystals are easily resolved from salts and amorphous precipitates, which do not generally take up dye. Reflection mode, which does not require dye, still exhibits greater resolution and sensitivity to surface detail than conventional wide-field microscopy as a result of the confocal optics configuration. The inherent three-dimensional nature of the method means that on-axis sample views (along the direction of the X-ray beam) can be reconstructed from an off-axis configuration, simplifying the beamline setup and providing uniquely detailed views of cryogenically cooled crystals.

3.
J Microsc ; 241(2): 119-24, 2011 Feb.
Article in English | MEDLINE | ID: mdl-21118215

ABSTRACT

Many multiphoton imaging applications would benefit from a larger field of view; however, large field of views (>mm) require low magnification objectives which have low light collection efficiencies. We demonstrate a light collection system mounted on a low magnification objective that increases fluorescence collection by as much as 20-fold in scattering tissues. This peripheral detector results in an effective numerical aperture of collection >0.8 with a 3-4 mm field of view.


Subject(s)
Microscopy, Fluorescence/methods , Pathology/methods , Abdominal Neoplasms/pathology , Animals , Brain/cytology , Carcinoma/pathology , Mice , Spinal Cord/cytology
4.
Biophys J ; 85(5): 3066-73, 2003 Nov.
Article in English | MEDLINE | ID: mdl-14581207

ABSTRACT

We present a new method for creating patches of fluid lipid bilayers with conjugated biotin and other compounds down to 1 microm resolution using a photolithographically patterned polymer lift-off technique. The patterns are realized as the polymer is mechanically peeled away in one contiguous piece in solution. The functionality of these surfaces is verified with binding of antibodies and avidin on these uniform micron-scale platforms. The biomaterial patches, measuring 1 micro m-76 microm on edge, provide a synthetic biological substrate for biochemical analysis that is approximately 100x smaller in width than commercial printing technologies. 100 nm unilamellar lipid vesicles spread to form a supported fluid lipid bilayer on oxidized silicon surface as confirmed by fluorescence photobleaching recovery. Fluorescence photobleaching recovery measurements of DiI (1,1'-dioctadecyl-3,3,3',3'-tetramethylindocarbocyanine perchlorate (DiIC(18)(3))) stained bilayer patches yielded an average diffusion coefficient of 7.54 +/- 1.25 microm(2) s(-1), equal to or slightly faster than typically found in DiI stained cells. This diffusion rate is approximately 3x faster than previous values for bilayers on glass. This method provides a new means to form functionalized fluid lipid bilayers as micron-scale platforms to immobilize biomaterials, capture antibodies and biotinylated reagents from solution, and form antigenic stimuli for cell stimulation.


Subject(s)
Avidin/chemistry , Biomimetic Materials/chemistry , Biosensing Techniques/instrumentation , Biotin/chemistry , Coated Materials, Biocompatible/chemistry , Immunoassay/instrumentation , Lipid Bilayers/chemistry , Phosphatidylethanolamines/chemistry , Adsorption , Biomimetic Materials/chemical synthesis , Biosensing Techniques/methods , Coated Materials, Biocompatible/chemical synthesis , Enzymes, Immobilized , Fluorescence Recovery After Photobleaching , Immunoassay/methods , Lipid Bilayers/chemical synthesis , Materials Testing , Membranes, Artificial , Nanotechnology/instrumentation , Nanotechnology/methods , Phospholipids/chemistry , Photography/methods , Silicon , Surface Properties
5.
Opt Lett ; 27(17): 1513-5, 2002 Sep 01.
Article in English | MEDLINE | ID: mdl-18026490

ABSTRACT

We investigate femtosecond-pulse propagation through large-core microstructured fibers. Although these fibers are highly multimode, excitation of the fundamental mode is readily achieved, and coupling to higher-order modes is weak even when the fiber is bent or twisted. For prechirped input pulses with energies as large as 3 nJ, pulses as short as 140 fs were produced at the output of the fiber. Such a system could prove to be extremely useful for applications such as in vivo multiphoton microscopy and endoscopy that require delivery of femtosecond pulses and collection of fluorescence.

6.
Curr Opin Chem Biol ; 5(5): 603-8, 2001 Oct.
Article in English | MEDLINE | ID: mdl-11578936

ABSTRACT

From its conception a decade ago, multiphoton microscopy has evolved from a photonic novelty to an indispensable tool for gleaning information from subcellular events within organized tissue environments. Its relatively deep optical penetration has recently been exploited for subcellularly resolved investigations of disease models in living transgenic mice. Its enhanced spectral accessibility enables aberration-free imaging of fluorescent molecules absorbing in deep-UV energy regimes with simultaneous imaging of species having extremely diverse emission spectra. Although excited fluorescence is the primary signal for multiphoton microscopy, harmonic generation by multiphoton scattering processes are also valuable for imaging species with large anharmonic modes, such as collagen structures and membrane potential sensing dyes.


Subject(s)
Microscopy, Confocal/methods , Biological Science Disciplines/methods , Collagen/analysis , Humans , Microscopy, Confocal/instrumentation , Photons , Scattering, Radiation , Sensitivity and Specificity , Skin/chemistry
7.
J Neurosci ; 21(3): 858-64, 2001 Feb 01.
Article in English | MEDLINE | ID: mdl-11157072

ABSTRACT

In Alzheimer's disease, amyloid-beta peptide aggregates in the extracellular space to form senile plaques. The process of plaque deposition and growth has been modeled on the basis of in vitro experiments in ways that lead to divergent predictions: either a diffusion-limited growth model in which plaques grow by first-order kinetics, or a dynamic model of continual deposition and asymmetrical clearance in which plaques reach a stable size and stop growing but evolve morphologically over time. The models have not been tested in vivo because plaques are too small (by several orders of magnitude) for conventional imaging modalities. We now report in vivo multiphoton laser scanning imaging of thioflavine S-stained senile plaques in the Tg2576 transgenic mouse model of Alzheimer's disease to test these biophysical models and show that there is no detectable change in plaque size over extended periods of time. Qualitatively, geometric features remain unchanged over time in the vast majority of the 349 plaques imaged and re-imaged. Intervals as long as 5 months were obtained. Nonetheless, rare examples of growth or shrinkage of individual plaques do occur, and new plaques appear between imaging sessions. These results indicate that thioflavine S-positive plaques appear and then are stable, supporting a dynamic feedback model of plaque growth.


Subject(s)
Alzheimer Disease/pathology , Microscopy/methods , Plaque, Amyloid/metabolism , Plaque, Amyloid/pathology , Animals , Benzothiazoles , Disease Models, Animal , Disease Progression , Feedback , Fluorescent Dyes , Image Processing, Computer-Assisted , Male , Mice , Mice, Transgenic , Microscopy/instrumentation , Thiazoles/metabolism
8.
J Neurosci ; 20(7): 2523-33, 2000 Apr 01.
Article in English | MEDLINE | ID: mdl-10729332

ABSTRACT

Calcium is essential for synaptic transmission and the control of the intrinsic firing properties of neurons; this makes Ca(2+) channels a prime target for neuromodulators. A combination of multiphoton microscopy and voltage-clamp recording was used to determine the localization of voltage-dependent Ca(2+) accumulation in the two pyloric dilator (PD) neurons of the pyloric network in the spiny lobster, Panulirus interruptus, and its modulation by dopamine. We monitored [Ca(2+)](i) in fine distal branches in the neuropil >350 microm below the surface of the ganglion during controlled voltage steps in voltage clamp. Ca(2+) accumulation originated mostly from small, fairly rare, spatially restricted varicosities on distal neuritic arborizations. Ca(2+) diffused from these point sources into adjacent regions. Varicosities with similar morphology in the PD neuron have been shown previously to be sites of synaptic contacts. We have demonstrated in earlier studies that dopamine inhibits activity and greatly reduces synaptic transmission from the PD neuron. In approximately 60% of the varicosities, the voltage-activated Ca(2+) accumulation was reduced by exogenous dopamine (DA) (10(-4) M). DA decreased the peak amplitude of Ca(2+) accumulation but had no effect on the rise and decay time. We conclude that DA reduces chemical synaptic transmission from the PD neurons at least in part by decreasing Ca(2+) entry at neurotransmitter release sites.


Subject(s)
Calcium/metabolism , Dopamine/pharmacology , Motor Neurons/metabolism , Animals , Microscopy , Motor Neurons/drug effects , Nephropidae , Neuropil/metabolism , Synaptic Transmission
9.
Biophys J ; 76(4): 1835-46, 1999 Apr.
Article in English | MEDLINE | ID: mdl-10096882

ABSTRACT

The secretion process of the mucosal mast cell line RBL-2H3 was imaged using infrared three photon excitation (3PE) of serotonin (5-hydroxytryptamine, 5-HT) autofluorescence, a measurement previously difficult because of the technical intractability of deep UV optics. Images of prestimulation 5-HT distributions were analyzed in loaded cell populations (those incubated in a 5-HT-rich medium overnight) and in unloaded populations and were found to be strictly quantifiable by comparison with bulk population high-performance liquid chromatography measurements. Antigenically stimulated cells were observed to characteristically ruffle and spread as granular 5-HT disappeared with no detectable granule movement. Individual cells exhibited highly heterogeneous release kinetics, often with quasi-periodic bursts. Neighboring granule disappearances were correlated, indicative of either spatially localized signaling or granule-granule interactions. In one-half of the granule release events, weak residual fluorescence was visible suggestive of leftover 5-HT still bound to the granule matrix. The terminal stages of secretion (>300 s) consisted primarily of unresolved granules and remainder 5-HT leakage from already released granules.


Subject(s)
Mast Cells/metabolism , Microscopy, Fluorescence/methods , Serotonin/metabolism , Animals , Biological Transport, Active , Biophysical Phenomena , Biophysics , Cell Degranulation , Cell Line , Cytoplasmic Granules/metabolism , Kinetics , Mast Cells/ultrastructure , Photons , Rats
10.
Science ; 276(5321): 2039-42, 1997 Jun 27.
Article in English | MEDLINE | ID: mdl-9197266

ABSTRACT

Individual plastids of vascular plants have generally been considered to be discrete autonomous entities that do not directly communicate with each other. However, in transgenic plants in which the plastid stroma was labeled with green fluorescent protein (GFP), thin tubular projections emanated from individual plastids and sometimes connected to other plastids. Flow of GFP between interconnected plastids could be observed when a single plastid or an interconnecting plastid tubule was photobleached and the loss of green fluorescence by both plastids was seen. These tubules allow the exchange of molecules within an interplastid communication system, which may facilitate the coordination of plastid activities.


Subject(s)
Chloroplasts/metabolism , Chloroplasts/ultrastructure , Luminescent Proteins/metabolism , Plant Leaves/ultrastructure , Amino Acid Sequence , Base Sequence , Cytoplasm/metabolism , Green Fluorescent Proteins , Microscopy/methods , Microscopy, Fluorescence , Molecular Sequence Data , Plants, Genetically Modified , Plants, Toxic , Recombinant Fusion Proteins/metabolism , Nicotiana
11.
Plant J ; 11(3): 613-21, 1997 Mar.
Article in English | MEDLINE | ID: mdl-9107047

ABSTRACT

To determine how to utilize the green fluorescent protein (GFP) as a marker for subcellular localization and as a label for plant mitochondria in vivo, transgenic suspension cells and tobacco plants expressing GFP with and without a mitochondrial localization signal were generated. The first GFP form used, GFP1, is easily observable in cells with low autofluorescence, such as suspension cells or trichomes, but masked in green tissue. For the visualization of GFP in cells and tissues with high autofluorescence, such as leaf, the use of a very strong promoter (35S35SAMV), a highly expressed modified mGFP4 coding region and a brighter mutant form of GFP (S65T) was necessary. Confocal or two-photon laser scanning microscopy reveal a distinct subcellular localization of the fluorescence in cells expressing GFP or coxIVGFP. In cells expressing untargeted GFP, fluorescence accumulates in the nucleoplasm but is also distributed throughout the cytoplasm. It is excluded from vacuoles, nucleoli and from round bodies that are likely to be leucoplasts. In contrast, fluorescence is localized specifically to mitochondria in cells expressing coxIVGFP fusion protein as shown by co-localization with a mitochondrial-specific dye. This permits the direct observation of mitochondria and mitochondrial movements in living plant cells and tissues throughout plant development. Three-dimensional reconstruction of individual cells can give additional information about the distribution and numbers of mitochondria.


Subject(s)
Luminescent Proteins/biosynthesis , Mitochondria/metabolism , Recombinant Fusion Proteins/biosynthesis , Cells, Cultured , Genes, Reporter , Genetic Markers , Green Fluorescent Proteins , Luminescent Proteins/analysis , Microscopy, Confocal/methods , Mutagenesis, Site-Directed , Plants, Genetically Modified/metabolism , Plants, Toxic , Point Mutation , Polymerase Chain Reaction , Recombinant Fusion Proteins/analysis , Rhizobium , Nicotiana/metabolism , Transfection/methods
12.
Science ; 275(5299): 530-2, 1997 Jan 24.
Article in English | MEDLINE | ID: mdl-8999797

ABSTRACT

Tryptophan and serotonin were imaged with infrared illumination by three-photon excitation (3PE) of their native ultraviolet (UV) fluorescence. This technique, established by 3PE cross section measurements of tryptophan and the monoamines serotonin and dopamine, circumvents the limitations imposed by photodamage, scattering, and indiscriminate background encountered in other UV microscopies. Three-dimensionally resolved images are presented along with measurements of the serotonin concentration ( approximately 50 mM) and content (up to approximately 5 x 10(8) molecules) of individual secretory granules.


Subject(s)
Cytoplasmic Granules/chemistry , Microscopy, Fluorescence/methods , Photons , Serotonin/analysis , Animals , Cell Survival , Dopamine/analysis , Lasers , Microscopy, Fluorescence/instrumentation , Photochemistry , Rats , Tryptophan/analysis , Tumor Cells, Cultured , Ultraviolet Rays
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