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Hereditary diffuse leukoencephalopathy with spheroids(GPSC; ALSP)

MedGen UID:
777989
Concept ID:
C3711381
Disease or Syndrome
Synonym: LEUKOENCEPHALOPATHY, ADULT-ONSET, WITH AXONAL SPHEROIDS AND PIGMENTED GLIA
SNOMED CT: Hereditary diffuse leukoencephalopathy with axonal spheroids (702427005); Adult-onset leukodystrophy with neuroaxonal spheroids (702427005); Hereditary diffuse leukoencephalopathy with spheroids (702427005); HDLS - hereditary diffuse leukoencephalopathy with spheroids (702427005)
 
Gene (location): CSF1R (5q32)
 
Monarch Initiative: MONDO:0030796
OMIM®: 164770; 221820
OMIM® Phenotypic series: PS221820

Disease characteristics

Excerpted from the GeneReview: CSF1R-Related Disorder
The spectrum of CSF1R-related disorder ranges from early-onset disease (age <18 years) to late-onset disease (age ≥18 years). Early-onset disease is associated with hypotonia, delayed acquisition of developmental milestones, and non-neurologic manifestations (such as skeletal abnormalities); both early- and late-onset disease have similar neurodegenerative involvement. Most affected individuals eventually become bedridden with spasticity, rigidity, and loss of the ability to walk. They lose speech and voluntary movement and appear to be generally unaware of their surroundings. The last stage of disease progresses to a vegetative state with presence of primitive reflexes, such as visual and tactile grasp, mouth-opening reflex, and sucking reflex. Death most commonly results from pneumonia or other infections. About 500 individuals with CSF1R-related disorder have been reported to date. [from GeneReviews]
Authors:
Jaroslaw Dulski  |  Christina Sundal  |  Zbigniew K Wszolek   view full author information

Additional description

From MedlinePlus Genetics
Adult-onset leukoencephalopathy with axonal spheroids and pigmented glia (ALSP) is a neurological condition characterized by changes to certain areas of the brain. A hallmark of ALSP is leukoencephalopathy, which is the alteration of a type of brain tissue called white matter. White matter consists of nerve fibers (axons) covered by a substance called myelin that insulates and protects them. The axons extend from nerve cells (neurons) and transmit nerve impulses throughout the body. Areas of damage to this brain tissue (white matter lesions) can be seen with magnetic resonance imaging (MRI). Another feature of ALSP is swellings called spheroids in the axons of the brain, which are a sign of axon damage. Also common in ALSP are abnormally pigmented glial cells. Glial cells are specialized brain cells that protect and maintain neurons. Damage to myelin and neurons is thought to contribute to many of the neurological signs and symptoms in people with ALSP.

Symptoms of ALSP usually begin in a person's forties and worsen over time. Personality changes, including depression and a loss of social inhibitions, are among the earliest symptoms of ALSP. Affected individuals may develop memory loss and loss of executive function, which is the ability to plan and implement actions and develop problem-solving strategies. Loss of this function impairs skills such as impulse control, self-monitoring, and focusing attention appropriately. Some people with ALSP have mild seizures, usually only when the condition begins. As ALSP progresses, it causes a severe decline in thinking and reasoning abilities (dementia).

Over time, motor skills are affected, and people with ALSP may have difficulty walking. Many develop a pattern of movement abnormalities known as parkinsonism, which includes unusually slow movement (bradykinesia), involuntary trembling (tremor), and muscle stiffness (rigidity). The pattern of cognitive and motor problems are variable, even among individuals in the same family, although almost all affected individuals ultimately become unable to walk, speak, and care for themselves.

ALSP was previously thought to be two separate conditions, hereditary diffuse leukoencephalopathy with spheroids (HDLS) and familial pigmentary orthochromatic leukodystrophy (POLD), both of which cause very similar white matter damage and cognitive and movement problems. POLD was thought to be distinguished by the presence of pigmented glial cells and an absence of spheroids; however, people with HDLS can have pigmented cells, too, and people with POLD can have spheroids. HDLS and POLD are now considered to be part of the same disease spectrum, which researchers have recommended calling ALSP.  https://medlineplus.gov/genetics/condition/adult-onset-leukoencephalopathy-with-axonal-spheroids-and-pigmented-glia

Professional guidelines

PubMed

Konno T, Yoshida K, Mizuta I, Mizuno T, Kawarai T, Tada M, Nozaki H, Ikeda SI, Onodera O, Wszolek ZK, Ikeuchi T
Eur J Neurol 2018 Jan;25(1):142-147. Epub 2017 Oct 19 doi: 10.1111/ene.13464. PMID: 28921817Free PMC Article

Recent clinical studies

Etiology

Williams T, Houlden H, Murphy E, John N, Fox NC, Schott JM, Adams M, Davagananam I, Chataway J, Lynch DS
Pract Neurol 2020 Aug;20(4):280-286. Epub 2020 May 20 doi: 10.1136/practneurol-2020-002530. PMID: 32434903
Abe T, Kawarai T, Fujita K, Sako W, Terasawa Y, Matsuda T, Sakai W, Tsukamoto-Miyashiro A, Matsui N, Izumi Y, Kaji R, Harada M
Magn Reson Med Sci 2017 Oct 10;16(4):297-303. Epub 2016 Dec 26 doi: 10.2463/mrms.mp.2016-0016. PMID: 28025469Free PMC Article
Granberg T, Hashim F, Andersen O, Sundal C, Karrenbauer VD
Eur J Neurol 2016 Apr;23(4):817-22. Epub 2016 Jan 12 doi: 10.1111/ene.12948. PMID: 26756564
Kinoshita M, Kondo Y, Yoshida K, Fukushima K, Hoshi K, Ishizawa K, Araki N, Yazawa I, Washimi Y, Saitoh B, Kira J, Ikeda S
Intern Med 2014;53(1):21-7. doi: 10.2169/internalmedicine.53.0863. PMID: 24390523
Sundal C, Lash J, Aasly J, Øygarden S, Roeber S, Kretzschman H, Garbern JY, Tselis A, Rademakers R, Dickson DW, Broderick D, Wszolek ZK
J Neurol Sci 2012 Mar 15;314(1-2):130-7. Epub 2011 Nov 1 doi: 10.1016/j.jns.2011.10.006. PMID: 22050953Free PMC Article

Diagnosis

Song C, Wu F, Liu Y, Wu X, Zhao Y
Neurology 2023 Mar 28;100(13):629-630. Epub 2022 Dec 12 doi: 10.1212/WNL.0000000000201684. PMID: 36973072Free PMC Article
Mickeviciute GC, Valiuskyte M, Plattén M, Wszolek ZK, Andersen O, Danylaité Karrenbauer V, Ineichen BV, Granberg T
J Intern Med 2022 Mar;291(3):269-282. Epub 2021 Dec 22 doi: 10.1111/joim.13420. PMID: 34875121
Shi T, Li J, Tan C, Chen J
Medicine (Baltimore) 2019 May;98(22):e15802. doi: 10.1097/MD.0000000000015802. PMID: 31145310Free PMC Article
Makary MS, Awan U, Kisanuki YY, Slone HW
Neuroradiol J 2019 Apr;32(2):139-142. Epub 2019 Jan 7 doi: 10.1177/1971400918822136. PMID: 30614382Free PMC Article
Stabile C, Taglia I, Battisti C, Bianchi S, Federico A
Neurol Sci 2016 Sep;37(9):1565-9. Epub 2016 Jun 23 doi: 10.1007/s10072-016-2634-6. PMID: 27338940

Therapy

Sundal C, Fujioka S, Van Gerpen JA, Wider C, Nicholson AM, Baker M, Shuster EA, Aasly J, Spina S, Ghetti B, Roeber S, Garbern J, Tselis A, Swerdlow RH, Miller BB, Borjesson-Hanson A, Uitti RJ, Ross OA, Stoessl AJ, Rademakers R, Josephs KA, Dickson DW, Broderick D, Wszolek ZK
Parkinsonism Relat Disord 2013 Oct;19(10):869-77. Epub 2013 Jun 17 doi: 10.1016/j.parkreldis.2013.05.013. PMID: 23787135Free PMC Article

Prognosis

Mangeat G, Ouellette R, Wabartha M, De Leener B, Plattén M, Danylaité Karrenbauer V, Warntjes M, Stikov N, Mainero C, Cohen-Adad J, Granberg T
J Neuroimaging 2020 Sep;30(5):674-682. Epub 2020 May 26 doi: 10.1111/jon.12725. PMID: 32453488
Makary MS, Awan U, Kisanuki YY, Slone HW
Neuroradiol J 2019 Apr;32(2):139-142. Epub 2019 Jan 7 doi: 10.1177/1971400918822136. PMID: 30614382Free PMC Article
Sundal C, Baker M, Karrenbauer V, Gustavsen M, Bedri S, Glaser A, Myhr KM, Haugarvoll K, Zetterberg H, Harbo H, Kockum I, Hillert J, Wszolek Z, Rademakers R, Andersen O
Eur J Neurol 2015 Feb;22(2):328-333. Epub 2014 Oct 13 doi: 10.1111/ene.12572. PMID: 25311247Free PMC Article
Sundal C, Fujioka S, Van Gerpen JA, Wider C, Nicholson AM, Baker M, Shuster EA, Aasly J, Spina S, Ghetti B, Roeber S, Garbern J, Tselis A, Swerdlow RH, Miller BB, Borjesson-Hanson A, Uitti RJ, Ross OA, Stoessl AJ, Rademakers R, Josephs KA, Dickson DW, Broderick D, Wszolek ZK
Parkinsonism Relat Disord 2013 Oct;19(10):869-77. Epub 2013 Jun 17 doi: 10.1016/j.parkreldis.2013.05.013. PMID: 23787135Free PMC Article
Sundal C, Lash J, Aasly J, Øygarden S, Roeber S, Kretzschman H, Garbern JY, Tselis A, Rademakers R, Dickson DW, Broderick D, Wszolek ZK
J Neurol Sci 2012 Mar 15;314(1-2):130-7. Epub 2011 Nov 1 doi: 10.1016/j.jns.2011.10.006. PMID: 22050953Free PMC Article

Clinical prediction guides

Mangeat G, Ouellette R, Wabartha M, De Leener B, Plattén M, Danylaité Karrenbauer V, Warntjes M, Stikov N, Mainero C, Cohen-Adad J, Granberg T
J Neuroimaging 2020 Sep;30(5):674-682. Epub 2020 May 26 doi: 10.1111/jon.12725. PMID: 32453488
Kempthorne L, Yoon H, Madore C, Smith S, Wszolek ZK, Rademakers R, Kim J, Butovsky O, Dickson DW
Acta Neuropathol Commun 2020 May 19;8(1):72. doi: 10.1186/s40478-020-00947-0. PMID: 32430064Free PMC Article
Abe T, Kawarai T, Fujita K, Sako W, Terasawa Y, Matsuda T, Sakai W, Tsukamoto-Miyashiro A, Matsui N, Izumi Y, Kaji R, Harada M
Magn Reson Med Sci 2017 Oct 10;16(4):297-303. Epub 2016 Dec 26 doi: 10.2463/mrms.mp.2016-0016. PMID: 28025469Free PMC Article
Granberg T, Hashim F, Andersen O, Sundal C, Karrenbauer VD
Eur J Neurol 2016 Apr;23(4):817-22. Epub 2016 Jan 12 doi: 10.1111/ene.12948. PMID: 26756564
Riku Y, Ando T, Goto Y, Mano K, Iwasaki Y, Sobue G, Yoshida M
J Neuropathol Exp Neurol 2014 Dec;73(12):1183-90. doi: 10.1097/NEN.0000000000000139. PMID: 25383640

Recent systematic reviews

Mickeviciute GC, Valiuskyte M, Plattén M, Wszolek ZK, Andersen O, Danylaité Karrenbauer V, Ineichen BV, Granberg T
J Intern Med 2022 Mar;291(3):269-282. Epub 2021 Dec 22 doi: 10.1111/joim.13420. PMID: 34875121
Adams SJ, Kirk A, Auer RN
J Clin Neurosci 2018 Feb;48:42-49. Epub 2017 Nov 6 doi: 10.1016/j.jocn.2017.10.060. PMID: 29122458

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