the renal biopsy - university of southampton...renal biopsy x2 divided and placed into 3 containers...

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The Renal Biopsy Technical Aspects Bart E Wagner BSc CSc FIBMS Chief Biomedical Scientist Electron Microscopy Section Histopathology Department Northern General Hospital Sheffield South Yorkshire UK S5 7AU [email protected] Tel+44(0)114-27 14154 Basic Renal EM workshop Southampton September 30 th 2011 Histopathology Department Northern General Hospital

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Page 1: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

The Renal Biopsy

Technical Aspects

Bart E Wagner BSc CSc FIBMS

Chief Biomedical Scientist

Electron Microscopy Section

Histopathology Department

Northern General Hospital

Sheffield

South Yorkshire

UK

S5 7AU

[email protected]

Tel+44(0)114-27 14154

Basic Renal EM workshop

Southampton

September 30th 2011

Histopathology DepartmentNorthern General Hospital

Page 2: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Needle biopsy done with ultrasound guidance under local anaesthesia

Page 3: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Stereo

microscope

awaiting receipt

of renal biopsy

for assessment

of renal cortex

(glomeruli)

Page 4: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Renal biopsy placed immediately in isotonic solution and examined for presence of renal cortical tissue –

biopsies can be left in isotonic saline for up to ten minutes without any anoxic damage.

Page 5: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

View of renal biopsy core as seen using stereo microscope

Page 6: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

View of renal biopsy core as seen using stereo microscope

Perinephric

tissue

Capsule

Cortex

Arcuate

arteries

Medulla

Page 7: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Renal biopsy x2

Divided and placed into 3

containers

• Formalin for Histology – Whole of first core

• Glutaraldehyde for Electron Microscopy – Capsule plus 2 – 3 mm of cortex

from second core

• Michel’s medium for Immunofluorescence – Remainder of second core

Page 8: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

The Renal Biopsy

Histology

Page 9: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Biopsy placed in formalin - labelled - request form filled in – assigned laboratory number.

Page 10: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Cassettes labelled with laboratory number

Page 11: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Specimens described, dissected, and placed in cassette

– work done on downdraft table to remove formalin fumes

Page 12: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Tissue processing machine

Page 13: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Cassettes with tissue in, placed in wax processing machine.

Page 14: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Reagents pumped into processing chamber

Page 15: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Paraffin processing schedule

• Formalin

• Formalin

• 70% Alcohol

• 95% Alcohol

• 99% Alcohol

• 99% Alcohol

• 99% Alcohol

• 99% Alcohol

• Xylene

• Xylene

• Xylene

• Molten Wax

• Molten Wax

• Molten Wax

Page 16: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Paraffin processing schedule

• Formalin

• Formalin

• 70% Alcohol

• 95% Alcohol

• 99% Alcohol

• 99% Alcohol

• 99% Alcohol

• 99% Alcohol

• Xylene

• Xylene

• Xylene

• Molten Wax

• Molten Wax

• Molten Wax

Fixation

Dehydration

Transitional solvent

Infiltration

Page 17: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Wax embedding centre

Page 18: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

•Tissue removed from

cassette.

•Placed in mould

•Filled with molten wax

•Cassette placed on top

• Filled up with wax

•Allowed to set.

Page 19: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

•Tissue blocks cooled on ice tray

•Sectioned on microtome using disposal blades – most biopsies at 4 microns, renal biopsies at 2 microns

•Sections floated out on warm water bath – just below melting point of wax

•Sections picked up on labelled glass slide

Page 20: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Paraffin sections being cut on rotary microtome

Page 21: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Paraffin sections being cut on rotary microtome – using disposable blade

Page 22: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Paraffin sections floating on water at 56 degrees C

Page 23: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Section taken off water bath and picked up on labelled glass slide

Page 24: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Automated Haematoxylin and Eosin (H&E) staining machine

Page 25: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

H&E staining

• Heat: to melt wax and stick section onto glass slide. 4.0 min

• Xylene: to remove wax from section. 1.5 min

• Alcohol: to remove xylene from section. 1.5 min

• Water: to remove alcohol. 0.5 min

• Haematoxylin: to stain nuclei. 3.0 min

• Water: to remove excess stain. 0.5 min

• Acid/alcohol to remove stain from cytoplasm. 0.5 min

• Water: to remove acid/alcohol and blue nuclei. 2.0 min

• Eosin: to stain cytoplasm. 1.0 min

• Water: to remove excess stain. 0.5 min

• Alcohol: to remove water. 2.5 min

• Xylene: to remove alcohol standing

Page 26: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Sections progressing through reagents

Page 27: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Automated coverslipping machine

Page 28: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Coverslip placed on mountant (DPX) on slide

DPX is a mixture of Distyrene, a Plasticizer, and Xylene

Page 29: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Stained sections married up with original request form

Checked for quality.

Page 30: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

H&E of part of a normal looking glomerulus

Page 31: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Other histochemical stains routinely

used for renal histology

• Masson Trichrome – assesment of interstitial fibrosis

• Methenamine Silver Technique (Grocott-Gomori) – assessment of glomerular

basement membrane

• Elastic Stain – assessment of arterial vasculopathy

• Congo or Sirius Red – demonstration of amyloid

• Periodic Acid Schiff’s (PAS) stain – demonstration of arteriolar hyalinosis, and

basement membranes

Page 32: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Masson trichrome – interstitium stained green

Page 33: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Silver stain – normal glomerulus

Page 34: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Silver stain – spikes (in between subepithelial deposits)

Page 35: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Silver stain – reduplication of glomerular basement membrane

Page 36: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Congo Red – amyloid stain

Congo Red with crossed

polarising filters

Dichroic birefringence

Page 37: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Elastic Van Gieson - Vascular elastic duplication

Page 38: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Periodic Acid Schiff’s (PAS) stain

Atrophic tubules, obsolete glomerulus

Normal tubules

Page 39: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

2002

Page 40: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

1992

Page 41: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Stevens and Lowe

Page 296

Page 42: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Stevens and Lowe

Page 297

Page 43: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Stevens and

Lowe

Page 298

Page 44: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Stevens and

Lowe

Page 299

Page 45: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Neonatal kidney – Cortex and medulla - H&E

Page 46: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

The Renal Biopsy

Immunofluorescence

Page 47: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Immunofluorescence

• Tissue preserved in Michel’s medium

• Tissue rapidly frozen onto a holder

• Sections cut using a cryostat and picked up on glass slides

• Sections covered with fluorescent labelled antisera

• Sections examined using a fluorescent microscope

Page 48: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Immunofluorescence

Antibodies used

• Immunoglobulins

• IgG

• IgM

• IgA

• Light chains (K & L)

• Lymphoctytes

• CD8

• CD4

• CD3

•Complements

•C3

•C1q

•C4D

Lymphocyte markers and C4D

only used on transplant kidney

biopsies

Serum amyloid component P

used to demonstrate glomeruli

and if in excess used to assess

for presence of fibrillar amyloid

Page 49: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Cryostat (microtome within freezer) for production of frozen sections

Page 50: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Tissue in mounting media

freezing onto holder in cryostat

Lung nodule - ?cancer

Same principle applies to

renal biopsy frozen

section production

Page 51: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Frozen section being cut

Page 52: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Frozen section sitting on knife before being picked up on glass slide

Page 53: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Direct

immunofluorescence

technique

Fluoresceine label

Antibody

Antigen in section

Page 54: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Immunofluorescence

IgG along glomerular basement membrane

Page 55: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

The Renal Biopsy

Electron Microscopy

Page 56: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Tissue fixed in buffered glutaraldehyde

Page 57: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Glutaraldehyde

Page 58: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Tissue described and chopped into an appropriate orientation and size

Page 59: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Can retrieve tissue from wax block

Can process centrifuged,

glutaraldehyde fixed blood

Page 60: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Tissue sampled and placed in processing baskets

Page 61: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Tissue placed in small baskets, and attached to processing machine

Page 62: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Resin processing machine

Page 63: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

EM tissue processor – at end of run

Page 64: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

EM tissue processing schedule

• Buffered Glutaraldehyde Protein fixative

• Distilled water Rinse

• Osmium Tetroxide Unsaturated lipid and phospholipid fixative

• Distilled water Rinse

• 70% Alcohol

• 95% Alcohol

• 99% Alcohol Dehydration

• Acetone Transitional solvent

• Resin/acetone mix

• Pure resin monomer Infiltration of tissue

• Embedded in fresh resin Polymerisation at 60 degrees

Page 65: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Osmium tetroxide

Page 66: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Different moulds for resin blocks

Page 67: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Ultramicrotome

Page 68: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Resin blocks in chucks (holders)

Page 69: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Ultramicrotome in use by BE Wagner

Page 70: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Glass knife maker

Page 71: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Diamond knife Glass knifes - with trough and without

Page 72: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron
Page 73: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Sections at 0.6 microns being cut on glass knife – sections picked up and placed on glass slide

Page 74: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Sections picked up off surface of water

Sections cut using diamond histoknife

Page 75: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Section transferred to drop of water on glass slide

Page 76: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Section flattened using heat

Page 77: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Sections stained with toluidine blue on hot plate

Page 78: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Toluidine blue stain washed off slide using hot tap water

Page 79: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Toluidine blue stained section – sections referred to as tol blues, thicks, or semi-thins

Best block selected, then trimmed down smaller for thin-sectioning.

Skin biopsy

Page 80: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Toluidine blue stained section of renal biopsy tubules

Page 81: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron
Page 82: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Thin sections cut on diamond knife – cut at interference colour gold (85nm)

Page 83: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron
Page 84: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Thin sections picked up on copper grids (held using jewellers forceps) , sections manipulated with eyebrow

hair fixed at end of black metal rod. All manipulation done whilst looking down stereo microscope.

Page 85: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Thin-section mounted on copper grid

Page 86: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Low magnification image including grid bars

Page 87: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Section on grid

Not to scale

Stereo

microscopy

Transmission electron

microscopy

Page 88: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

3mm

Section

on grid.

To same

scale.

Page 89: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Toluidine blue stained section on glass

slide and thin section on copper grid

Page 90: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Grids stained in Uranyl acetate and Lead citrate

Page 91: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Grids in alcoholic uranyl acetate

Page 92: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Phillips 400 transmission

electron microscope.

AMT 16 megapixel digital

camera

Page 93: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Section imaged using phosphorescent screen

and computer monitor

Electrons travel

down the

microscope column,

through the section

and then hit either

the phosphorescent

screen or the digital

camera detector

Page 94: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron
Page 95: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Production of electron micrographs

Page 96: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

A selection of electron microscopy and general pathology text books

Page 97: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Teaching set of electron micrographs

Page 98: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Negative, block and slide filing system

Page 99: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Electron micrograph using large format Kodak negative

Page 100: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Electron micrograph using large format Kodak negative

Page 101: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Electron micrograph using 16megapixel AMT digital camera

Page 102: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Electron micrograph using 16megapixel AMT digital camera

Page 103: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Electron micrograph using 16megapixel AMT digital camera

Page 104: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Electron micrograph using 16megapixel AMT digital camera

Page 105: The Renal Biopsy - University of Southampton...Renal biopsy x2 Divided and placed into 3 containers • Formalin for Histology –Whole of first core • Glutaraldehyde for Electron

Electron micrograph using 16megapixel AMT digital camera