IPLab:Lab 2:Metaplasia: Difference between revisions

From Pathology Education Instructional Resource
Jump to navigation Jump to search
Line 8: Line 8:
== Images ==
== Images ==
<gallery heights="250px" widths="250px">
<gallery heights="250px" widths="250px">
File:IPLab2Metaplasia1.jpg|This is a low-power photomicrograph showing the full cortical and medullary thickness of the kidney. Note that there is a dilated calyx containing some red blood cells in the center of the section (arrow). The cortex is markedly thin and has severe lesions of degeneration and atrophy, although these are hard to appreciate at this low magnification.
File:IPLab2Metaplasia1b.jpg|Gross photograph of this kidney with a stone (arrow) in the renal pelvis.
File:IPLab2Metaplasia2.jpg|This high-power photomicrograph demonstrates the transitional epithelium lining the renal calyx (1) and the junction (transition zone) to a thicker hyperplastic epithelium (2). Note the inflammatory cells and increased vascular response in the stromal tissue (3) lying beneath the normal transitional epithelium.
File:IPLab2Metaplasia2b.jpg|This is a low-power photomicrograph showing the full cortical and medullary thickness of the kidney. Note that there is a dilated calyx containing some red blood cells in the center of the section (arrow). The cortex is markedly thin and has severe lesions of degeneration and atrophy, although these are hard to appreciate at this low magnification.
File:IPLab2Metaplasia3.jpg|A higher-power view shows the junction of normal epithelium (1) with hyperplastic transitional epithelium (2). Note the inflammatory cells in the subepithelial tissue.
File:IPLab2Metaplasia3b.jpg|This higher-power photomicrograph demonstrates the transitional epithelium lining the renal calyx (1) and the junction (transition zone) to a thicker hyperplastic epithelium (2). Note the inflammatory cells and increased vascular response in the stromal tissue (3) lying beneath the epithelium.
File:IPLab2Metaplasia4.jpg|This is a higher-power photomicrograph of the junction of normal epithelium (1) with hyperplastic transitional epithelium (2).
File:IPLab2Metaplasia4b.jpg|A higher-power view shows more normal epithelium (1) with a transition to hyperplastic and metaplastic epithelium (2). Note the inflammatory cells in the subepithelial tissue.
File:IPLab2Metaplasia5.jpg|In areas adjacent to the normal transitional epithelium, there are areas of epithelium (arrows) where the epithelial cells have the character of normal squamous epithelium as found in the dermis. However, squamous epithelium is not normal in the renal pelvis. This adaptive change is referred to as squamous metaplasia.
File:IPLab2Metaplasia5b.jpg|In some areas the epithelium takes on morphologic characteristics of squamous epithelium (arrows) as found in the dermis. However, squamous epithelium is not normal in the renal pelvis. This adaptive change is referred to as squamous metaplasia.
File:IPLab2Metaplasia6.jpg|A high-power photomicrograph of the squamous epithelium shows inflammatory cells in the subepithelial tissue and the formation of keratinized epithelium (arrows).
File:IPLab2Metaplasia7.jpg|This is a photomicrograph of the trachea from a smoker. Note that the columnar ciliated epithelium has been replaced by squamous epithelium.
</gallery>
</gallery>



Revision as of 21:00, 19 June 2020

Clinical Summary

This 30-year-old black male was born with a meningocele which was repaired in childhood. Despite repair of the meningocele, this patient continued to have a neurogenic bladder.

Six months previous to this admission, the patient passed a single renal calculus but intravenous pyelogram (IVP) showed left nephrolithiasis (a 1 cm stone in the lower lobe). For 6 months the patient had to be catheterized each day for 6 hours. However, he continued to complain of hesitancy and urgency and suffered occasional urinary tract infections.

On this admission, a culture of the patient's urine specimen grew Gram-negative bacilli (Proteus species). Cystoscopy showed heavy trabeculation of the bladder with early diverticula and the left ureteral orifice showed squamous metaplasia. The lower pole of the left kidney was removed surgically, following which the patient recovered and was discharged on antibiotics.

Images

Virtual Microscopy

Kidney: Metaplasia

<peir-vm>IPLab2Metaplasia</peir-vm>

Normal Kidney

<peir-vm>UAB-Histology-00114</peir-vm>

Study Questions

  • <spoiler text="What is a neurogenic bladder and what complications may result from this condition?">A neurogenic bladder is any condition or dysfunction of the urinary bladder caused by a lesion of the central or peripheral nervous system. Complications primarily include stasis, infection, and stone formation.</spoiler>
  • <spoiler text="What factors in this case predisposed to nephrolithiasis?">Stasis and infection.</spoiler>
  • <spoiler text="Does this metaplastic process predispose to neoplasia?">No.</spoiler>

Additional Resources

Reference

Journal Articles

Images