Difference between revisions of "Meningioma"

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Microscopic:  
Microscopic:  
*Clear cells - contain glycogen (PAS +ve).
*Clear cells - contain glycogen (PAS +ve).
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File:HE_clear_cell_meningioma.jpg | Clear cell meningioma, HE (WC/jensflorian)
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Molecular:
Molecular:

Revision as of 11:57, 10 January 2017

Meningioma
Diagnosis in short

Meningioma. HPS stain.

LM whorled appearance, calcification - psammomatous, +/-nuclear pseudoinclusions
Subtypes Grade I (meningothelial, fibrous, transistional, psammomatous, angiomatous, microcystic, secretory, lymphoplasmacyte-rich, metaplastic), Grade II (invasive, clear cell, chordoid), Grade III (papillary, rhabdoid)
LM DDx schwannoma, solitary fibrous tumour, hemangiopericytoma, others
IHC EMA +ve, keratins usu. -ve, CD34 -ve/+ve, S-100 -ve (usu.), PR +ve (-ve in more aggressive ones)
Site see CNS tumours

Syndromes neurofibromatosis 2, nevoid basal cell carcinoma syndrome

Clinical history +/-radiation
Prevalence common
Radiology extra-axial, intradural lesion, dural tail sign (on MRI)
Prognosis usually benign, dependent on grade
Clin. DDx dependent on site - see CNS tumours
Treatment surgical removal

Meningioma a very common tumour in neuropathology.

General

Prevalence

  • Most common primary brain tumour.[1]
  • May be caused by prior radiation.[2]

Prognosis

  • Most are benign - usu. a good prognosis.
    • May be malignant - bad prognosis.

Genetics

Quick overview

Name Histologic criteria Subtypes Image
Classic, WHO I less then 4 mit/10 HPF and no atypia meningeothelial, fibroblastic, transitional, psammomatous, angiomatous, microcytsic, secretory, lymphoplasmacyte-rich, metaplastic
Miningioma (1) transitional type.jpg
Atypical, WHO II brain invasion, 4 or more mit/10 HPF, or 3 of the following: necrosis, increased cellularity, high nuc:cyto ratio, nucleoli, sheeting chordoid, clear cell
Brain invasion meningioma.jpg
Anaplastic, WHO III 20 or more mitoses/10 HPF, morphologiy similiar to carcinoma or sarcoma rhabdoid, papillary
Mitoses anaplastic meningioma.jpg

Gross/Radiology

  • Extra-axial, intradural.
    • Can be extradural - very rare.[6]
  • Dural tail sign (DTS) on MRI.[7][8]
    • Enhancement of dura adjacent to the mass lesion - commonly seen (~70% of cases).[9]
    • May be subclassified radiologically - predictive of grading.[10]
  • +/-Hyperostosis.
    • Associated with invasion into the skull in ~20% of cases.[11]

Microscopic

Features (memory device WCN):

  • Whorled appearance - key feature.
  • Calcification, psammomatous (target-like appearance; (tight) onion skin).
  • +/-Nuclear pseudoinclusions - focal nuclear clearing with a sharp interface to unremarkable chromatin.

Notes:

  • May involute into benign sclerotic tissue.[12]
  • Thick-walled blood vessels -> think schwannoma.

DDx:

Images

www:

Morphologic subtypes

  • Many subtypes exist.[13]
  • The histologic subtypes generally don't have much prognostic significance.
    • Some subtypes are high grade by definition; also see histologic grading.

Grade I

Meningothelial meningioma
  • Most common.

Microscopic:

  • Syncytial, nuclear clearing (pseudoinclusions).
  • Whorls, Onion bulb formations.
  • Few psammoma bodies.

Molecular:

  • AKT E17K mutations.[14]
Fibrous meningioma
  • AKA fibroblastic meningioma.
  • Not collagen... but looks like it.
    • It is really laminin or fibronectin.
  • Spindle cells in parallel bundles.
  • Few to none whorl formations.
Transitional meningioma
  • AKA mixed.
  • Common.
  • Lobular and fasicular growth patterns coexist.
  • Usu. a mixture of meningeothelial and fibromatous meningioma
Psammomatous meningioma

Microscopic:

  • Psammoma bodies dominate over tumor cells.
    • Irregular calcifications (confluent psammoma bodies).
  • Usually found in spinal cord.
Angiomatous meningioma
  • AKA vascular.
  • May bleed like stink.
  • May show extensive edema.
  • Hyalinized vessels dominate over tumor cells.
  • Degenerative nuclear atypia.

DDx:

  • Vascular malformatons
  • Hemangioblastoma
Microcystic meningioma

Microscopic:

  • Cystic appearance.
  • Increased cytologic pleomorphism of the elongated cells.

DDx:

  • Clear cell meningioma
  • Hemangioblastoma
Secretory meningioma
  • Associated with brain edema; may have a worse outcome.

Microscopic:[15]

  • Eosinophilic intracytoplasmic inclusions that are CEA +ve and PAS +ve.

Molecular:

  • Combined KLF4 K409Q and TRAF7 mutations.[16]

DDx:

Images:

Lymphoplasmacyte-rich meningioma

Microscopic:

  • Lymphocytes.
  • Plasma cells.

Images:

Metaplastic meningioma
  • Much talked about... but very rare.

Microscopic:

  • Cartilage or bone formation.

Grade II

Brain invasive meningioma
  • Invades the brain.

Images:

Clear cell meningioma

Epidemiology:

  • Usu. spinal cord.[18]

Microscopic:

  • Clear cells - contain glycogen (PAS +ve).

Molecular:

  • SMARCE1 mutations.[19]

Images:

Chordoid meningioma
  • Chordoma-like.

Microscopic:


Image:

Grade III

Papillary meningioma

Microscopic:

  • discohesive meningothelial tumour cells around a fibrovascular core.
  • perivascular pseudorosettes.
Rhabdoid meningioma

Microscopic:

  • Rhabdoid appearance (abundant cytoplasm).
    • Cross-striations.

www:

Histologic grading

Grading:[13]

  • Grade 1:
    • Low mitotic rate (< 4 mitoses/10 HPF - for whatever HPF means, see HPFitis).
    • Excludes clear cell, chordoid, papillary, and rhabdoid subtypes.
  • Grade 2 (either #1, #2 or #3):
    1. Brain-invasive meningioma.
      • Invasion of meningioma into brain.
        • Meninogioma with entraped GFAP +ve tissue.
    2. Atypical meningioma (by histomorphology) - either A or B.
      • A. Intermediate mitotic rate (>= 4 mitoses/10 HPF - for whatever HPF means, see HPFitis.)
      • B. Three of the following five features:
        1. Sheeting architecture.
        2. High NC ratio clusters; clusters of "lymphocyte-like" cells.
        3. Hypercellularity.
        4. Macronucleoli.
        5. Necrosis not caused by treatment, e.g. radiation or embolization.
    3. Clear cell or chordoid subtype.
  • Grade 3 (either of the following):
    • High mitotic rate (>=20 mitoses/10 HPF - for whatever HPF means, see HPFitis.)
    • "Frank anaplasia"; marked nuclear atypia.
    • Papillary or rhabdoid subtype.

Notes:

  • Grade II soft criteria memory device HMNs: hypercellular, macronucleoli, NC ratio increased, necrosis, sheeting.

IHC

  • EMA +ve.[20]
  • Other CKs usually -ve.

Molecular

Non-syndromal meningiomas may show SMO and AKT mutations.[21]

Several inherited diseases are associated with meningiomas:

DDx of meningioma & IHC[26]

A standard work-up

  • Ki-67 >5-10% - predicts re-occurrence.[28]
  • PR (progesterone receptor) +ve in > 80% of meningiomas.[29]
    • Loss of PR staining predicts recurrence.
    • Strong association with tumour grade:[30]
      • Low WHO grade tumours usu. +ve.
      • High WHO grade tumours usu. -ve.

See also

References

  1. Rogers, L.; Barani, I.; Chamberlain, M.; Kaley, TJ.; McDermott, M.; Raizer, J.; Schiff, D.; Weber, DC. et al. (Oct 2014). "Meningiomas: knowledge base, treatment outcomes, and uncertainties. A RANO review.". J Neurosurg: 1-20. doi:10.3171/2014.7.JNS131644. PMID 25343186.
  2. Baldi, I.; Engelhardt, J.; Bonnet, C.; Bauchet, L.; Berteaud, E.; Grüber, A.; Loiseau, H. (Sep 2014). "Epidemiology of meningiomas.". Neurochirurgie. doi:10.1016/j.neuchi.2014.05.006. PMID 25249493.
  3. URL: http://moon.ouhsc.edu/kfung/jty1/neurotest/Q13-Ans.htm. Accessed on: 26 October 2010.
  4. Kimonis, VE.; Mehta, SG.; Digiovanna, JJ.; Bale, SJ.; Pastakia, B.. "Radiological features in 82 patients with nevoid basal cell carcinoma (NBCC or Gorlin) syndrome.". Genet Med 6 (6): 495-502. doi:10.109701.GIM.0000145045.17711.1C. PMID 15545745.
  5. Lee, CW.; Tan, TC. (Feb 2014). "Meningioma associated with Gorlin's syndrome.". J Clin Neurosci 21 (2): 349-50. doi:10.1016/j.jocn.2013.02.033. PMID 24100109.
  6. URL: http://path.upmc.edu/cases/case702.html. Accessed on: 2 February 2012.
  7. Ikeda, D.; Chiocca, EA. (Oct 2012). "Editorial: dural tail sign.". J Neurosurg 117 (4): 643-4. doi:10.3171/2012.2.JNS12266. PMID 22839655.
  8. Wen, M.; Jung, S.; Moon, KS.; Pei, J.; Lee, KH.; Jin, SG.; Li, SY.; Ryu, HH. (Dec 2014). "Immunohistochemical profile of the dural tail in intracranial meningiomas.". Acta Neurochir (Wien) 156 (12): 2263-73. doi:10.1007/s00701-014-2216-4. PMID 25238986.
  9. Aoki, S.; Sasaki, Y.; Machida, T.; Tanioka, H.. "Contrast-enhanced MR images in patients with meningioma: importance of enhancement of the dura adjacent to the tumor.". AJNR Am J Neuroradiol 11 (5): 935-8. PMID 2120998.
  10. Qi, ST.; Liu, Y.; Pan, J.; Chotai, S.; Fang, LX. (Oct 2012). "A radiopathological classification of dural tail sign of meningiomas.". J Neurosurg 117 (4): 645-53. doi:10.3171/2012.6.JNS111987. PMID 22839654.
  11. Goyal, N.; Kakkar, A.; Sarkar, C.; Agrawal, D.. "Does bony hyperostosis in intracranial meningioma signify tumor invasion? A radio-pathologic study.". Neurol India 60 (1): 50-4. doi:10.4103/0028-3886.93589. PMID 22406780.
  12. URL: http://radiographics.rsna.org/content/23/3/785.long. Accessed on: 3 November 2010.
  13. 13.0 13.1 Perry, Arie; Brat, Daniel J. (2010). Practical Surgical Neuropathology: A Diagnostic Approach: A Volume in the Pattern Recognition series (1st ed.). Churchill Livingstone. pp. 194. ISBN 978-0443069826.
  14. Sahm, F.; Bissel, J.; Koelsche, C.; Schweizer, L.; Capper, D.; Reuss, D.; Böhmer, K.; Lass, U. et al. (Nov 2013). "AKT1E17K mutations cluster with meningothelial and transitional meningiomas and can be detected by SFRP1 immunohistochemistry.". Acta Neuropathol 126 (5): 757-62. doi:10.1007/s00401-013-1187-5. PMID 24096618.
  15. URL: http://moon.ouhsc.edu/kfung/jty1/Com04/Com405-1-Diss.htm. Accessed on: 12 October 2011.
  16. Reuss, DE.; Piro, RM.; Jones, DT.; Simon, M.; Ketter, R.; Kool, M.; Becker, A.; Sahm, F. et al. (Mar 2013). "Secretory meningiomas are defined by combined KLF4 K409Q and TRAF7 mutations.". Acta Neuropathol 125 (3): 351-8. doi:10.1007/s00401-013-1093-x. PMID 23404370.
  17. URL: http://moon.ouhsc.edu/kfung/jty1/Com04/Com405-1-Diss.htm. Accessed on: 3 January 2012.
  18. Perry, Arie; Brat, Daniel J. (2010). Practical Surgical Neuropathology: A Diagnostic Approach: A Volume in the Pattern Recognition series (1st ed.). Churchill Livingstone. pp. 200. ISBN 978-0443069826.
  19. Smith, MJ.; Wallace, AJ.; Bennett, C.; Hasselblatt, M.; Elert-Dobkowska, E.; Evans, LT.; Hickey, WF.; van Hoff, J. et al. (Dec 2014). "Germline SMARCE1 mutations predispose to both spinal and cranial clear cell meningiomas.". J Pathol 234 (4): 436-40. doi:10.1002/path.4427. PMID 25143307.
  20. Perry, Arie; Brat, Daniel J. (2010). Practical Surgical Neuropathology: A Diagnostic Approach: A Volume in the Pattern Recognition series (1st ed.). Churchill Livingstone. pp. 13. ISBN 978-0443069826.
  21. Clark, VE.; Erson-Omay, EZ.; Serin, A.; Yin, J.; Cotney, J.; Ozduman, K.; Avşar, T.; Li, J. et al. (Mar 2013). "Genomic analysis of non-NF2 meningiomas reveals mutations in TRAF7, KLF4, AKT1, and SMO.". Science 339 (6123): 1077-80. doi:10.1126/science.1233009. PMID 23348505.
  22. Fontaine, B.; Rouleau, GA.; Seizinger, BR.; Menon, AG.; Jewell, AF.; Martuza, RL.; Gusella, JF. (1991). "Molecular genetics of neurofibromatosis 2 and related tumors (acoustic neuroma and meningioma).". Ann N Y Acad Sci 615: 338-43. PMID 2039155.
  23. Smith, MJ.; O'Sullivan, J.; Bhaskar, SS.; Hadfield, KD.; Poke, G.; Caird, J.; Sharif, S.; Eccles, D. et al. (Mar 2013). "Loss-of-function mutations in SMARCE1 cause an inherited disorder of multiple spinal meningiomas.". Nat Genet 45 (3): 295-8. doi:10.1038/ng.2552. PMID 23377182.
  24. van den Munckhof, P.; Christiaans, I.; Kenter, SB.; Baas, F.; Hulsebos, TJ. (Feb 2012). "Germline SMARCB1 mutation predisposes to multiple meningiomas and schwannomas with preferential location of cranial meningiomas at the falx cerebri.". Neurogenetics 13 (1): 1-7. doi:10.1007/s10048-011-0300-y. PMID 22038540.
  25. Aavikko, M.; Li, SP.; Saarinen, S.; Alhopuro, P.; Kaasinen, E.; Morgunova, E.; Li, Y.; Vesanen, K. et al. (Sep 2012). "Loss of SUFU function in familial multiple meningioma.". Am J Hum Genet 91 (3): 520-6. doi:10.1016/j.ajhg.2012.07.015. PMID 22958902.
  26. Hahn HP, Bundock EA, Hornick JL (February 2006). "Immunohistochemical staining for claudin-1 can help distinguish meningiomas from histologic mimics". Am. J. Clin. Pathol. 125 (2): 203–8. doi:10.1309/G659-FVVB-MG7U-4RPQ. PMID 16393681. http://ajcp.ascpjournals.org/content/125/2/203.full.pdf.
  27. Grunberg, SM. (1991). "The role of progesterone receptors in meningioma.". Cancer Treat Res 58: 127-37. PMID 1683782.
  28. Croul, SE. 8 November 2010.
  29. Takei, H.; Buckleair, LW.; Powell, SZ. (Feb 2008). "Immunohistochemical expression of apoptosis regulating proteins and sex hormone receptors in meningiomas.". Neuropathology 28 (1): 62-8. doi:10.1111/j.1440-1789.2007.00852.x. PMID 18021195.
  30. Tao, Y.; Liang, G.; Li, Z.; Wang, Y.; Wu, A.; Wang, H.; Lu, Y.; Liu, Z. et al. (May 2012). "Clinical features and immunohistochemical expression levels of androgen, estrogen, progesterone and Ki-67 receptors in relationship with gross-total resected meningiomas relapse.". Br J Neurosurg. doi:10.3109/02688697.2012.685780. PMID 22616825.