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Fluorescence Microscopy Fluorescent molecule = fluorochrome - absorbs light of specific wavelength - when excited by absorption, the fluorochrome emits light of longer wavelength Every fluorochrome has an

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Page 1: Fluorescence Microscopy Fluorescent molecule = fluorochrome - absorbs light of specific wavelength - when excited by absorption, the fluorochrome emits

Fluorescence Microscopy

Fluorescent molecule = fluorochrome- absorbs light of specific wavelength- when excited by absorption, the fluorochrome emits light of longer

wavelength

Every fluorochrome has an absorption and emission spectra.

Page 2: Fluorescence Microscopy Fluorescent molecule = fluorochrome - absorbs light of specific wavelength - when excited by absorption, the fluorochrome emits

Fluorescence Microscopy

Fluorochrome

Structurally unstable when excited

Page 3: Fluorescence Microscopy Fluorescent molecule = fluorochrome - absorbs light of specific wavelength - when excited by absorption, the fluorochrome emits

Fluorescence Microscopy

Page 4: Fluorescence Microscopy Fluorescent molecule = fluorochrome - absorbs light of specific wavelength - when excited by absorption, the fluorochrome emits

EXCITATION SPECTRAF

r equ

enc

y o

f Eve

nt

Fr e

que

ncy

of E

vent

WAVELENGTH

EMISSION SPECTRA Fluorochrome DAPI FITC Rhodamine

Page 5: Fluorescence Microscopy Fluorescent molecule = fluorochrome - absorbs light of specific wavelength - when excited by absorption, the fluorochrome emits

Fluorescence Microscopy

Components:Light sourceExcitation filterEmission filter

Dichroic mirror-reflects short -passes long

SPECIMEN

EYE PIECE

Page 6: Fluorescence Microscopy Fluorescent molecule = fluorochrome - absorbs light of specific wavelength - when excited by absorption, the fluorochrome emits

Texas Red-Acetylated TUBULIN

FITCACTIN

Frog Neuromuscular Junction

By Stephanie Moeckel-Cole

Page 7: Fluorescence Microscopy Fluorescent molecule = fluorochrome - absorbs light of specific wavelength - when excited by absorption, the fluorochrome emits

Flurochromes can be used in combination to mark different structures and/or molecules.

“Multicolor "DiOlistic" labeling of the nervous system using lipophilic dye combinations.” Gan WB, Grutzendler J, Wong WT, Wong RO, Lichtman JW.

Page 8: Fluorescence Microscopy Fluorescent molecule = fluorochrome - absorbs light of specific wavelength - when excited by absorption, the fluorochrome emits

Labeled neurons in brain with different combination of fluorochromes.

Fluorchromes:

DiO

DiI

DiD

Page 9: Fluorescence Microscopy Fluorescent molecule = fluorochrome - absorbs light of specific wavelength - when excited by absorption, the fluorochrome emits

FLUORESCENCE MICROSCOPY

PROBLEM: Photobleaching (fading)

Photobeaching: Fluorochrome loses ability to fluoresce, absorb and emit light, due to damage or covalent modification.

http://microscopyu.com/articles/fluorescence/fluorescenceintro.html

Page 10: Fluorescence Microscopy Fluorescent molecule = fluorochrome - absorbs light of specific wavelength - when excited by absorption, the fluorochrome emits

Fluorochrome

PHOTOBLEACHING

Page 11: Fluorescence Microscopy Fluorescent molecule = fluorochrome - absorbs light of specific wavelength - when excited by absorption, the fluorochrome emits

http://microscopyu.com/articles/fluorescence/fluorescenceintro.html

(a-f) Images collected at 2 minute intervals.

Page 12: Fluorescence Microscopy Fluorescent molecule = fluorochrome - absorbs light of specific wavelength - when excited by absorption, the fluorochrome emits

Quantum Dots : semiconductor nanoparticles, such as cadmium selenide, that emitted light after light excitation.

Advantages: brighter, no photobleaching, broad excitation

Disadvantages: potential toxicity for in vivo imaging

Alivisatos et al.; Quantum dots as cellular probes.; Annu Rev Biomed Eng. 2005;7:55-76.

Page 13: Fluorescence Microscopy Fluorescent molecule = fluorochrome - absorbs light of specific wavelength - when excited by absorption, the fluorochrome emits

FLUORESCENCE MICROSCOPY

PROBLEM: Image degradation (blurring effect) due to light scattering

http://www.microscopyu.com/articles/confocal/confocalintrobasics.html

Page 14: Fluorescence Microscopy Fluorescent molecule = fluorochrome - absorbs light of specific wavelength - when excited by absorption, the fluorochrome emits

CONFOCAL MICROSCOPYLight source: laser

illumination with coherent light

http://hyperphysics.phy-astr.gsu.edu/hbase/optmod/qualig.html#c4

Page 15: Fluorescence Microscopy Fluorescent molecule = fluorochrome - absorbs light of specific wavelength - when excited by absorption, the fluorochrome emits

CONFOCAL MICROSCOPYCollects light from one plane of the sample at a time

Excludes out of focus light scatter

Page 16: Fluorescence Microscopy Fluorescent molecule = fluorochrome - absorbs light of specific wavelength - when excited by absorption, the fluorochrome emits

REGULAR FLUORESCENCE CONFOCAL MICRSCOPE MICROSCOPE

Page 17: Fluorescence Microscopy Fluorescent molecule = fluorochrome - absorbs light of specific wavelength - when excited by absorption, the fluorochrome emits

CONFOCAL MICROSCOPYCollect series of images from different focal planes

Can assemble the image series to yield a 3-d image

Page 18: Fluorescence Microscopy Fluorescent molecule = fluorochrome - absorbs light of specific wavelength - when excited by absorption, the fluorochrome emits

Transmission Electron Microscopy (TEM)

Very thin section

Beam of electrons (=0.005 nm)

Electromagnetic lenses

Stain with metalsStain: electron dense: darkUnstained: light

Nerve- osmium=myelinhttp://www.utsa.edu/tsi/assign/histo/Images/histst1.gif

Page 19: Fluorescence Microscopy Fluorescent molecule = fluorochrome - absorbs light of specific wavelength - when excited by absorption, the fluorochrome emits

www.itg.uiuc.edu/ms/techniques/

Page 20: Fluorescence Microscopy Fluorescent molecule = fluorochrome - absorbs light of specific wavelength - when excited by absorption, the fluorochrome emits

Scanning Electron Microscopy (SEM)

Surface structureSectioning not required

Metal coating of specimenElectron scatteringPrimary electronsSecondary electronsDetector

http://www.chm.bris.ac.uk/pt/diamond/jamespthesis/chapter2_files/image002.gif

Page 21: Fluorescence Microscopy Fluorescent molecule = fluorochrome - absorbs light of specific wavelength - when excited by absorption, the fluorochrome emits

Pollen

Ant Head

Page 22: Fluorescence Microscopy Fluorescent molecule = fluorochrome - absorbs light of specific wavelength - when excited by absorption, the fluorochrome emits

FREEZE FRACTUREPurpose: to analyze the distribution and

density of integral membrane proteins in cell membranes

Freeze a fragment of tissue

Fracture using a sharp metal blade -fracture plane passes through lipid

bilayers of a cell membrane

Observe with SEM

Page 23: Fluorescence Microscopy Fluorescent molecule = fluorochrome - absorbs light of specific wavelength - when excited by absorption, the fluorochrome emits

FREEZE FRACTURE

CYTOPLASM

EXTRACELLULAR SPACE

Cell Membrane: Lipid Bilayer

CYTOPLASM

EXTRACELLULAR SPACE

FRACTURE

Page 24: Fluorescence Microscopy Fluorescent molecule = fluorochrome - absorbs light of specific wavelength - when excited by absorption, the fluorochrome emits

P face: inner face of inner membrane.

FREEZE FRACTURE

CYTOPLASM

EXTRACELLULAR SPACE

E face: inner face of the outer membrane.

CYTOPLASM

EXTRACELLULAR SPACE

Cell Membrane

Page 25: Fluorescence Microscopy Fluorescent molecule = fluorochrome - absorbs light of specific wavelength - when excited by absorption, the fluorochrome emits
Page 26: Fluorescence Microscopy Fluorescent molecule = fluorochrome - absorbs light of specific wavelength - when excited by absorption, the fluorochrome emits

Intestinal Epithelium

MicrovilliZonula adherens

Page 27: Fluorescence Microscopy Fluorescent molecule = fluorochrome - absorbs light of specific wavelength - when excited by absorption, the fluorochrome emits

Neuromuscular Junction

Synaptic site:

Active Zone: release site of synaptic vesicles

Heuser and Reese

Page 28: Fluorescence Microscopy Fluorescent molecule = fluorochrome - absorbs light of specific wavelength - when excited by absorption, the fluorochrome emits

STAINING

Histochemistry or Cytochemistry: dyes bind to certain types of molecules

Charged dyes bind to molecules of opposite charge

Page 29: Fluorescence Microscopy Fluorescent molecule = fluorochrome - absorbs light of specific wavelength - when excited by absorption, the fluorochrome emits

Charged dyes bind to molecules of opposite charge

Acidic Dye ---> dye - Eosin

Extracellular fibers, cytoplasmic filaments, and others

Basic Dye ---> dye + Toluidine Blue

Alcian Blue

Cresyl Violet

Hematoxylin

Nuclei acids, glycosaminoglycans, ribosomes

Page 30: Fluorescence Microscopy Fluorescent molecule = fluorochrome - absorbs light of specific wavelength - when excited by absorption, the fluorochrome emits

Hematoxylin and EosinIntestine

Page 31: Fluorescence Microscopy Fluorescent molecule = fluorochrome - absorbs light of specific wavelength - when excited by absorption, the fluorochrome emits

Staining Techniques

There are many dyes.

http://medinfo.ufl.edu/~dental/denhisto/stains.html

Examples:Sudan black

-Lipids

Weigert Stain-Reticular fibers

Myelinated axons- blue

ihcworld.com/imagegallery/displayimage.php?al...

Page 32: Fluorescence Microscopy Fluorescent molecule = fluorochrome - absorbs light of specific wavelength - when excited by absorption, the fluorochrome emits

Staining Techniques

Histochemical Stains: involve chemical reactions

Feulgen reaction -DNA

Periodic Acid Shiff (PAS)

-neutral and acidic

polysaccharides

- glycogen, mucous, basal

laminae

http://bioquant-com.bioquantusers.org/products.php?page=ls&content=gallery&sub=feulgen

Page 33: Fluorescence Microscopy Fluorescent molecule = fluorochrome - absorbs light of specific wavelength - when excited by absorption, the fluorochrome emits

Goblet cells PAS stainIntestinal Villus

Page 34: Fluorescence Microscopy Fluorescent molecule = fluorochrome - absorbs light of specific wavelength - when excited by absorption, the fluorochrome emits

Carbohydrate-rich Basal Laminae stain with PAS stain

Page 35: Fluorescence Microscopy Fluorescent molecule = fluorochrome - absorbs light of specific wavelength - when excited by absorption, the fluorochrome emits

Staining Techniques

Localization (staining) of an enzyme

AB + T AT + BENZYME

generate visible product

provide substrate

Page 36: Fluorescence Microscopy Fluorescent molecule = fluorochrome - absorbs light of specific wavelength - when excited by absorption, the fluorochrome emits

Staining Techniques

AB + T AT + B

Acetylcholinesterase- neuromuscular junction

ACETYLCHOLINESTERASE

Other stains for ATPases, alkaline phosphatases, and others

Page 37: Fluorescence Microscopy Fluorescent molecule = fluorochrome - absorbs light of specific wavelength - when excited by absorption, the fluorochrome emits

A technique to localize specific molecules in an organ, tissue or cell.

IMMUNOCYTOCHEMISTRY

Page 38: Fluorescence Microscopy Fluorescent molecule = fluorochrome - absorbs light of specific wavelength - when excited by absorption, the fluorochrome emits

An organism creates antibodies to foreign molecules, ANTIGENS.

An antigen may have different regions, EPITOPES, that are recognized as foreign

by an organism.

First, a bit of immunology……….

Page 39: Fluorescence Microscopy Fluorescent molecule = fluorochrome - absorbs light of specific wavelength - when excited by absorption, the fluorochrome emits
Page 40: Fluorescence Microscopy Fluorescent molecule = fluorochrome - absorbs light of specific wavelength - when excited by absorption, the fluorochrome emits
Page 41: Fluorescence Microscopy Fluorescent molecule = fluorochrome - absorbs light of specific wavelength - when excited by absorption, the fluorochrome emits

Polyclonal antibodies

-A collection of distinct types of antibody molecules that recognize the same antigen (antibodies A + B + C) but often several different epitopes

Page 42: Fluorescence Microscopy Fluorescent molecule = fluorochrome - absorbs light of specific wavelength - when excited by absorption, the fluorochrome emits

Monoclonal antibodies-A single type of antibody molecule that recognizes only

one epitope on an antigen (antibody A OR B OR C)