Preview

Problems of Endocrinology

Advanced search

Congenital hypopituitarism with monosomy of chromosome 18

https://doi.org/10.14341/probl12761

Abstract

Congenital hypopituitarism is a rare disease. It can be caused by isolated inborn defects of the pituitary, gene mutations (PROP1, PIT1), and chromosomal abnormalities.
Deletions of chromosome 18 (De Grouchy syndrome types 1 and 2) are a group of rare genetic diseases with a frequency of 1:50,000. Hypopituitarism in these syndromes is detected in from 13 to 56% of cases and depends on the size and location of the deleted segment.
We have described a series of clinical cases of patients with congenital hypopituitarism due to deletions in chromosome 18. All children had a characteristic dysmorphic features and delayed mental and speech development. Within first months of life, patients developed muscular hypotension, dysphagia, and respiratory disorders. The patients had various congenital malformations in combination with hypopituitarism (isolated growth hormone deficiency and multiple pituitaryhormone deficiencies). In the neonatal period, there were the presence of hypoglycemia in combination with cholestasis.
Hormone replacement therapy led to rapid relief of symptoms.
Сhromosomal microarray analysis in 2 patients allowed us to identify exact location of deleted area and deleted genes and optimize further management for them.

About the Authors

A. V. Bolmasova
Endocrinology research center; Kulakov Federal Reseаrch Center for Obstetrics, Gynecology and Perinatology
Russian Federation

Anna V. Bolmasova, MD, PhD

Dmitry Ulyanov street 11, Moscow

eLibrary SPIN: 7843-1604


Competing Interests:

Авторы декларируют отсутствие явных и потенциальных конфликтов интересов, связанных с публикацией настоящей статьи.



M. A. Melikyan
Endocrinology research center
Russian Federation

Maria A. Melikyan, MD, PhD

eLibrary SPIN: 4184-4383

Moscow


Competing Interests:

Авторы декларируют отсутствие явных и потенциальных конфликтов интересов, связанных с публикацией настоящей статьи.



Z. Sh. Gadzhieva
Endocrinology research center
Russian Federation

Zamira Sh. Gadzhieva, PhD-student

eLibrary SPIN:4850-0285

Moscow


Competing Interests:

Авторы декларируют отсутствие явных и потенциальных конфликтов интересов, связанных с публикацией настоящей статьи.



A. A. Puchkova
Kulakov Federal Reseаrch Center for Obstetrics, Gynecology and Perinatology
Russian Federation

Anna A. Puchkova, MD, PhD

eLibrary SPIN: 2421-2646

Moscow


Competing Interests:

Авторы декларируют отсутствие явных и потенциальных конфликтов интересов, связанных с публикацией настоящей статьи.



A. V. Degtyareva
Kulakov Federal Reseаrch Center for Obstetrics, Gynecology and Perinatology; The First Sechenov Moscow State Medical University
Russian Federation

Anna V. Degtyareva, MD, PhD professor

eLibrary SPIN: 2361-9978

Moscow


Competing Interests:

Авторы декларируют отсутствие явных и потенциальных конфликтов интересов, связанных с публикацией настоящей статьи.



V. A. Peterkova
Endocrinology research center
Russian Federation

Valentina A. Peterkova, MD, PhD professor

eLibrary SPIN: 4009-2463

Moscow


Competing Interests:

Авторы декларируют отсутствие явных и потенциальных конфликтов интересов, связанных с публикацией настоящей статьи.



References

1. de Grouchy J, Lamy M, Thieffry S, et al. Dysmorphie complexe avec oligophrenie: Deletion des bras courts d’un chromosome 17-18. C R Acad Sci. 1963;258:1028.

2. Cody JD, Sebold C, Malik A, et al. Recurrent interstitial deletions of proximal 18q: A new syndrome involving expressive speech delay. Am J Med Genet Part A. 2007;143A(11):1181-1190. doi: https://doi.org/10.1002/ajmg.a.31729

3. Cody JD, Hasi M, Soileau B, et al. Establishing a reference group for distal 18q-: clinical description and molecular basis. Hum Genet. 2014;133(2):199-209. doi: https://doi.org/10.1007/s00439-013-1364-6

4. Turleau C. Monosomy 18p. Orphanet J Rare Dis. 2008;3(1):4. doi: https://doi.org/10.1186/1750-1172-3-4

5. Hasi-Zogaj M, Sebold C, Heard P, et al. A review of 18p deletions. Am J Med Genet Part C Semin Med Genet. 2015;169(3):251-264. doi: https://doi.org/10.1002/ajmg.c.31445

6. Cody JD, Hasi M, Soileau B, et al. Establishing a reference group for distal 18q-: clinical description and molecular basis. Hum Genet. 2014;133(2):199-209. doi: https://doi.org/10.1007/s00439-013-1364-6

7. Cody JD, Heard PL, Crandall AC, et al. Narrowing critical regions and determining penetrance for selected 18qphenotypes. Am J Med Genet Part A. 2009;149A(7):1421-1430. doi: https://doi.org/10.1002/ajmg.a.32899

8. Daviss WB, O’Donnell L, Soileau BT, et al. Mood disorders in individuals with distal 18q deletions. Am J Med Genet Part B Neuropsychiatr Genet. 2013;162(8):879-888. doi: https://doi.org/10.1002/ajmg.b.32197

9. Cody JD, Sebold C, Heard P, et al. Consequences of chromsome18q deletions. Am J Med Genet Part C Semin Med Genet. 2015;169(3):265-280. doi: https://doi.org/10.1002/ajmg.c.31446

10. Nagaeva EV, Shiryaeva TYu, Peterkova VA, et al. Russian national consensus. Diagnostics and treatment of hypopituitarism in children and adolescences. Problems of Endocrinology. 2018;64(6):402-411. (In Russ.) doi: https://doi.org/10.14341/probl10091

11. Tateossian H, Morse S, Parker A, et al. Otitis media in the Tgif knockout mouse implicates TGFβ signalling in chronic middle ear inflammatory disease. Hum Mol Genet. 2013;22(13):2553-2565. doi: https://doi.org/10.1093/hmg/ddt103

12. Myers KA, Warman Chardon J, Huang L, Boycott KM. Deletion of AFG3L2 associated with spinocerebellar ataxia type 28 in the context of multiple genomic anomalies. Am J Med Genet Part A. 2014;164(12):3209-3212. doi: https://doi.org/10.1002/ajmg.a.36771

13. Cody JD, Semrud-Clikeman M, Hardies LJ, et al. Growth hormone benefits children with 18q deletions. Am J Med Genet Part A. 2005;137A(1):9-15. doi: https://doi.org/10.1002/ajmg.a.30848

14. Daviss WB, O’Donnell L, Soileau BT, et al. Mood disorders in individuals with distal 18q deletions. Am J Med Genet Part B Neuropsychiatr Genet. 2013;162(8):879-888. doi: https://doi.org/10.1002/ajmg.b.32197

15. Hasi M, Soileau B, Sebold C, et al. The role of the TCF4 gene in the phenotype of individuals with 18q segmental deletions. Hum Genet. 2011;130(6):777-787. doi: https://doi.org/10.1007/s00439-011-1020-y


Supplementary files

1. Figure 1a. Photo of Patient 1 at the age of 3.5 years
Subject
Type Исследовательские инструменты
View (283KB)    
Indexing metadata ▾
2. Figure 1b. Photo of patient 1, age 9
Subject
Type Исследовательские инструменты
View (311KB)    
Indexing metadata ▾
3. Figure 2. Growth chart of Patient 1.
Subject
Type Исследовательские инструменты
View (297KB)    
Indexing metadata ▾
4. Figure 3. Photo of Patient 2 at the age of 4.5 liters
Subject
Type Исследовательские инструменты
View (419KB)    
Indexing metadata ▾
5. Figure 4. Growth chart of Patient 2
Subject
Type Исследовательские инструменты
View (311KB)    
Indexing metadata ▾
6. Figure 5a. Photo of Patient 3 at the age of 2 years 3 months
Subject
Type Исследовательские инструменты
View (204KB)    
Indexing metadata ▾
7. Figure 5b. Photo of patient 3, age 2 years 8 months
Subject
Type Исследовательские инструменты
View (141KB)    
Indexing metadata ▾
8. Figure 6. Growth chart of Patient 3.
Subject
Type Исследовательские инструменты
View (300KB)    
Indexing metadata ▾
9. Figure 7. Patient growth chart 4.
Subject
Type Исследовательские инструменты
View (276KB)    
Indexing metadata ▾

Review

For citations:


Bolmasova A.V., Melikyan M.A., Gadzhieva Z.Sh., Puchkova A.A., Degtyareva A.V., Peterkova V.A. Congenital hypopituitarism with monosomy of chromosome 18. Problems of Endocrinology. 2021;67(4):57-67. https://doi.org/10.14341/probl12761

Views: 8858


ISSN 0375-9660 (Print)
ISSN 2308-1430 (Online)