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Hypertrophic nerve changes

MedGen UID:
322038
Concept ID:
C1832776
Finding
HPO: HP:0003382

Term Hierarchy

Conditions with this feature

Dejerine-Sottas disease
MedGen UID:
3710
Concept ID:
C0011195
Disease or Syndrome
Dejerine-Sottas neuropathy is a demyelinating peripheral neuropathy with onset in infancy. It can show autosomal dominant or recessive inheritance. Affected individuals have delayed motor development due to severe distal motor and sensory impairment, resulting in difficulties in gait. Some patients have generalized hypotonia in infancy. Other features may include pes cavus, scoliosis, and sensory ataxia. Nerve conduction velocities are severely decreased (sometimes less than 10 m/s), and sural nerve biopsy shows severe loss of myelinated fibers (summary by Baets et al., 2011).
Roussy-Lévy syndrome
MedGen UID:
64430
Concept ID:
C0205713
Disease or Syndrome
Roussy-Levy syndrome is an autosomal dominant disorder characterized by early onset of prominent ataxia followed by late onset of mild motor involvement. Symptoms progress very slowly, and affected individuals may remain ambulatory throughout life (Auer-Grumbach et al., 1998; Plante-Bordeneuve et al., 1999).
Charcot-Marie-Tooth disease, type IA
MedGen UID:
75727
Concept ID:
C0270911
Disease or Syndrome
For a general phenotypic description and a discussion of genetic heterogeneity of Charcot-Marie-Tooth disease type 1, see CMT1B (118200). CMT1A is the most common form of CMT. The average age of onset of clinical symptoms is 12.2 +/- 7.3 years. Slow nerve conduction velocity (NCV) less than 38 m/s is highly diagnostic and is a 100% penetrant phenotype independent of age (Lupski et al., 1991, 1992).
Charcot-Marie-Tooth disease type 1B
MedGen UID:
124377
Concept ID:
C0270912
Disease or Syndrome
Charcot-Marie-Tooth disease is a sensorineural peripheral polyneuropathy. Affecting approximately 1 in 2,500 individuals, Charcot-Marie-Tooth disease is the most common inherited disorder of the peripheral nervous system (Skre, 1974). Autosomal dominant, autosomal recessive, and X-linked forms have been recognized. Classification On the basis of electrophysiologic properties and histopathology, CMT has been divided into primary peripheral demyelinating (type 1, or HMSNI) and primary peripheral axonal (type 2, or HMSNII) neuropathies. The demyelinating neuropathies classified as CMT type 1 are characterized by severely reduced motor NCVs (less than 38 m/s) and segmental demyelination and remyelination with onion bulb formations on nerve biopsy. The axonal neuropathies classified as CMT type 2 are characterized by normal or mildly reduced NCVs and chronic axonal degeneration and regeneration on nerve biopsy (see CMT2A1; 118210). Distal hereditary motor neuropathy (dHMN) (see 158590), or spinal CMT, is characterized by exclusive motor involvement and sparing of sensory nerves (Pareyson, 1999). McAlpine (1989) proposed that the forms of CMT with very slow nerve conduction be given the gene symbol CMT1A (118220) and CMT1B, CMT1A being the gene on chromosome 17 and CMT1B being the gene on chromosome 1. CMT2 was the proposed symbol for the autosomal locus responsible for the moderately slow nerve conduction form of the disease (axonal). For a phenotypic description and discussion of genetic heterogeneity of the various subtypes of CMT, see CMTX1 (302800), CMT2A1 (118210), CMT3 (DSS; 145900), CMT4A (214400), and CMTDIB (606482). Genetic Heterogeneity of Autosomal Dominant Demyelinating CMT1 Autosomal dominant demyelinating CMT1 is a genetically heterogeneous disorder and can be caused by mutations in different genes; see CMT1A (118220), CMT1C (601098), CMT1D (607678), CMT1E (607734), CMT1F (607734), CMT1G (618279), CMT1H (619764), CMT1I (619742), and CMT1J (620111). See also 608236 for a related phenotype characterized by isolated slowed nerve conduction velocities (NCVs).
Charcot-Marie-Tooth disease type 1C
MedGen UID:
75728
Concept ID:
C0270913
Disease or Syndrome
For a phenotypic description and a discussion of genetic heterogeneity of autosomal dominant Charcot-Marie-Tooth disease type 1, see CMT1B (118200).
Charcot-Marie-Tooth disease type 4A
MedGen UID:
347821
Concept ID:
C1859198
Disease or Syndrome
GDAP1-related hereditary motor and sensory neuropathy (GDAP1-HMSN) is a peripheral neuropathy (also known as a subtype of Charcot-Marie-Tooth disease) that typically affects the lower extremities earlier and more severely than the upper extremities. As the neuropathy progresses, the distal upper extremities also become severely affected. Proximal muscles can also become weak. Age at onset ranges from infancy to early childhood. In most cases, disease progression causes disabilities within the first or second decade of life. At the end of the second decade, most individuals are wheelchair bound. Disease progression varies considerably even within the same family. The neuropathy can be either of the demyelinating type with reduced nerve conduction velocities or the axonal type with normal nerve conduction velocities. Vocal cord paresis is common. Intelligence is normal. Life expectancy is usually normal, but on occasion may be reduced because of secondary complications.

Professional guidelines

PubMed

Niu J, Zhang L, Fan J, Liu J, Ding Q, Guan Y, Wu S, Cui L, Liu M
Neurol Sci 2022 Jun;43(6):3929-3937. Epub 2022 Jan 21 doi: 10.1007/s10072-022-05882-7. PMID: 35061135
Bhattacharjee S
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Recent clinical studies

Etiology

Fardeau C, Alafaleq M, Dhaenens CM, Dollfus H, Koné-Paut I, Grunewald O, Morel JB, Titah C, Saadoun D, Lazeran PO, Meunier I
Clin Genet 2023 Apr;103(4):453-458. Epub 2022 Dec 30 doi: 10.1111/cge.14286. PMID: 36543582
Monarca C, Alessi M, Rizzo MI
Aesthetic Plast Surg 2022 Oct;46(5):2342-2347. Epub 2022 Mar 28 doi: 10.1007/s00266-022-02823-9. PMID: 35348828
Shah S, Morrow JM, Sinclair CDJ, Reilly MM, Thornton JS, Lunn MP, Yousry TA
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Diagnosis

Fardeau C, Alafaleq M, Dhaenens CM, Dollfus H, Koné-Paut I, Grunewald O, Morel JB, Titah C, Saadoun D, Lazeran PO, Meunier I
Clin Genet 2023 Apr;103(4):453-458. Epub 2022 Dec 30 doi: 10.1111/cge.14286. PMID: 36543582
Robinson LR
Muscle Nerve 2022 Dec;66(6):661-670. Epub 2022 Sep 7 doi: 10.1002/mus.27706. PMID: 36070242
Zhang Y, Da Q, Cao S, Yan K, Shi Z, Miao Q, Li C, Hu L, Sun S, Wu W, Wu L, Chen F, Wang L, Gao Y, Huang Z, Shao Y, Chen H, Wei Y, Chen F, Han Y, Xie L, Ji Y
Circulation 2021 Aug 24;144(8):638-654. Epub 2021 Jun 8 doi: 10.1161/CIRCULATIONAHA.120.051094. PMID: 34098726
Ji RR, Berta T, Nedergaard M
Pain 2013 Dec;154 Suppl 1(0 1):S10-S28. Epub 2013 Jun 20 doi: 10.1016/j.pain.2013.06.022. PMID: 23792284Free PMC Article
Nestorova R, Vlad V, Petranova T, Porta F, Radunovic G, Micu MC, Iagnocco A
Med Ultrason 2012 Sep;14(3):217-24. PMID: 22957327

Therapy

Nguyen KML, Nguyen DTD
Tech Vasc Interv Radiol 2020 Dec;23(4):100700. Epub 2020 Oct 5 doi: 10.1016/j.tvir.2020.100700. PMID: 33308584
Sharma A, Sartori M, Zaragoza JJ, Villa G, Lu R, Faggiana E, Brocca A, Di Lullo L, Feriozzi S, Ronco C
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Böhm M, Ewen S, Kindermann I, Linz D, Ukena C, Mahfoud F
Eur J Heart Fail 2014 Jun;16(6):608-13. Epub 2014 Mar 18 doi: 10.1002/ejhf.83. PMID: 24644008
Longhurst JC, Stebbins CL
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Dyck PJ, Lais AC, Ohta M, Bastron JA, Okazaki H, Groover RV
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Prognosis

Fardeau C, Alafaleq M, Dhaenens CM, Dollfus H, Koné-Paut I, Grunewald O, Morel JB, Titah C, Saadoun D, Lazeran PO, Meunier I
Clin Genet 2023 Apr;103(4):453-458. Epub 2022 Dec 30 doi: 10.1111/cge.14286. PMID: 36543582
Robinson LR
Muscle Nerve 2022 Dec;66(6):661-670. Epub 2022 Sep 7 doi: 10.1002/mus.27706. PMID: 36070242
Onen MR, Moore K, Cikla U, Ucer M, Schmidt B, Field AS, Baskaya MK
World Neurosurg 2018 Apr;112:e763-e771. Epub 2018 Jan 31 doi: 10.1016/j.wneu.2018.01.150. PMID: 29382617
Riku S, Kato S
Neuropathology 2003 Dec;23(4):335-44. doi: 10.1046/j.1440-1789.2003.00520.x. PMID: 14719551
Dyck PJ, Lais AC, Ohta M, Bastron JA, Okazaki H, Groover RV
Mayo Clin Proc 1975 Nov;50(11):621-37. PMID: 1186294

Clinical prediction guides

Fardeau C, Alafaleq M, Dhaenens CM, Dollfus H, Koné-Paut I, Grunewald O, Morel JB, Titah C, Saadoun D, Lazeran PO, Meunier I
Clin Genet 2023 Apr;103(4):453-458. Epub 2022 Dec 30 doi: 10.1111/cge.14286. PMID: 36543582
Monarca C, Alessi M, Rizzo MI
Aesthetic Plast Surg 2022 Oct;46(5):2342-2347. Epub 2022 Mar 28 doi: 10.1007/s00266-022-02823-9. PMID: 35348828
Zhang Y, Da Q, Cao S, Yan K, Shi Z, Miao Q, Li C, Hu L, Sun S, Wu W, Wu L, Chen F, Wang L, Gao Y, Huang Z, Shao Y, Chen H, Wei Y, Chen F, Han Y, Xie L, Ji Y
Circulation 2021 Aug 24;144(8):638-654. Epub 2021 Jun 8 doi: 10.1161/CIRCULATIONAHA.120.051094. PMID: 34098726
Onen MR, Moore K, Cikla U, Ucer M, Schmidt B, Field AS, Baskaya MK
World Neurosurg 2018 Apr;112:e763-e771. Epub 2018 Jan 31 doi: 10.1016/j.wneu.2018.01.150. PMID: 29382617
Dziedzic T, Wojciechowski J, Nowak A, Marchel A
Childs Nerv Syst 2015 Jul;31(7):1025-31. Epub 2015 Mar 15 doi: 10.1007/s00381-015-2680-z. PMID: 25771924

Recent systematic reviews

Lenartowicz KA, Goyal A, Mauermann ML, Wilson TJ, Spinner RJ
World Neurosurg 2021 Oct;154:120-131.e8. Epub 2021 Jul 17 doi: 10.1016/j.wneu.2021.07.042. PMID: 34284162
Ruschel LG, Agnoletto GJ, Aragão A, Duarte JS, de Oliveira MF, Teles AR
Neurosurg Rev 2021 Apr;44(2):1071-1081. Epub 2020 Apr 13 doi: 10.1007/s10143-020-01294-3. PMID: 32281018
Boehm KS, Al-Taha M, Morzycki A, Samargandi OA, Al-Youha S, LeBlanc MR
Ann Plast Surg 2019 Sep;83(3):352-358. doi: 10.1097/SAP.0000000000001682. PMID: 30562201
Verdurmen KM, Eijsvoogel NB, Lempersz C, Vullings R, Schroer C, van Laar JO, Oei SG
Int J Gynaecol Obstet 2016 Nov;135(2):129-134. Epub 2016 Aug 4 doi: 10.1016/j.ijgo.2016.05.010. PMID: 27634052

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