Clinical and genetic analysis of distal renal tubular acidosis in three Chinese children
Objective: Primary distal renal tubular acidosis (dRTA) is a rare genetic disease characterized by distal tubular dysfunction leading to metabolic acidosis and alkaline urine. Growth retardation is a major concern in these children. The disease is caused by defects in at least three genes (SLC4A1, A...
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Taylor & Francis Group
2018-10-01
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Online Access: | http://dx.doi.org/10.1080/0886022X.2018.1487858 |
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doaj-e6fcc9c066de4baf946eb27c803f6c7d2020-11-25T01:07:37ZengTaylor & Francis GroupRenal Failure0886-022X1525-60492018-10-0140152052610.1080/0886022X.2018.14878581487858Clinical and genetic analysis of distal renal tubular acidosis in three Chinese childrenJiaojiao Liu0Qian Shen1Guomin Li2Yihui Zhai3Xiaoyan Fang4Hong Xu5Children’s Hospital of Fudan UniversityChildren’s Hospital of Fudan UniversityChildren’s Hospital of Fudan UniversityChildren’s Hospital of Fudan UniversityChildren’s Hospital of Fudan UniversityChildren’s Hospital of Fudan UniversityObjective: Primary distal renal tubular acidosis (dRTA) is a rare genetic disease characterized by distal tubular dysfunction leading to metabolic acidosis and alkaline urine. Growth retardation is a major concern in these children. The disease is caused by defects in at least three genes (SLC4A1, ATP6V0A4, and ATP6V1B1) involved in urinary distal acidification. Several series of dRTA patients from different ethnic backgrounds have been genetically studied, but genetic studies regarding Chinese population is rare. Our aim was to investigate the clinical features and genetic basis of primary dRTA in Chinese children. Methods: Three unrelated patients with dRTA participated in our study. Next-generation sequencing was performed, and the findings were validated using the Sanger sequencing method. Results: All patients exhibited hyperchloraemic metabolic acidosis, abnormally high urine pH, hypokalemia, and nephrocalcinosis. Growth retardation was observed in all patients. During the follow-up (range 1–4 years), alkali replacement therapy corrected the systemic metabolic acidosis, and two patients demonstrated normal growth. rhGH therapy was administered to patient-3 at the age of 6 years, and his growth rate was significantly improved (growth velocity 9.6 cm/yr). In total, 5 mutations were identified in our cohort of three patients, and four mutations were novel. Conclusions: We report the clinical and molecular characteristics of dRTA patients from China. The four novel mutations detected in our study extend the spectrum of gene mutations associated with primary dRTA. Furthermore, our study confirms the effect of early treatment in improving growth for dRTA patient and provides insight into the effects of rhGH on dRTA patients who were diagnosed late and exhibiting a persistent growth delay despite appropriate therapy.http://dx.doi.org/10.1080/0886022X.2018.1487858ATP6V0A4ATP6V1B1SLC4A1distal renal tubular acidosisgrowthrecombinant human growth hormone |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Jiaojiao Liu Qian Shen Guomin Li Yihui Zhai Xiaoyan Fang Hong Xu |
spellingShingle |
Jiaojiao Liu Qian Shen Guomin Li Yihui Zhai Xiaoyan Fang Hong Xu Clinical and genetic analysis of distal renal tubular acidosis in three Chinese children Renal Failure ATP6V0A4 ATP6V1B1 SLC4A1 distal renal tubular acidosis growth recombinant human growth hormone |
author_facet |
Jiaojiao Liu Qian Shen Guomin Li Yihui Zhai Xiaoyan Fang Hong Xu |
author_sort |
Jiaojiao Liu |
title |
Clinical and genetic analysis of distal renal tubular acidosis in three Chinese children |
title_short |
Clinical and genetic analysis of distal renal tubular acidosis in three Chinese children |
title_full |
Clinical and genetic analysis of distal renal tubular acidosis in three Chinese children |
title_fullStr |
Clinical and genetic analysis of distal renal tubular acidosis in three Chinese children |
title_full_unstemmed |
Clinical and genetic analysis of distal renal tubular acidosis in three Chinese children |
title_sort |
clinical and genetic analysis of distal renal tubular acidosis in three chinese children |
publisher |
Taylor & Francis Group |
series |
Renal Failure |
issn |
0886-022X 1525-6049 |
publishDate |
2018-10-01 |
description |
Objective: Primary distal renal tubular acidosis (dRTA) is a rare genetic disease characterized by distal tubular dysfunction leading to metabolic acidosis and alkaline urine. Growth retardation is a major concern in these children. The disease is caused by defects in at least three genes (SLC4A1, ATP6V0A4, and ATP6V1B1) involved in urinary distal acidification. Several series of dRTA patients from different ethnic backgrounds have been genetically studied, but genetic studies regarding Chinese population is rare. Our aim was to investigate the clinical features and genetic basis of primary dRTA in Chinese children. Methods: Three unrelated patients with dRTA participated in our study. Next-generation sequencing was performed, and the findings were validated using the Sanger sequencing method. Results: All patients exhibited hyperchloraemic metabolic acidosis, abnormally high urine pH, hypokalemia, and nephrocalcinosis. Growth retardation was observed in all patients. During the follow-up (range 1–4 years), alkali replacement therapy corrected the systemic metabolic acidosis, and two patients demonstrated normal growth. rhGH therapy was administered to patient-3 at the age of 6 years, and his growth rate was significantly improved (growth velocity 9.6 cm/yr). In total, 5 mutations were identified in our cohort of three patients, and four mutations were novel. Conclusions: We report the clinical and molecular characteristics of dRTA patients from China. The four novel mutations detected in our study extend the spectrum of gene mutations associated with primary dRTA. Furthermore, our study confirms the effect of early treatment in improving growth for dRTA patient and provides insight into the effects of rhGH on dRTA patients who were diagnosed late and exhibiting a persistent growth delay despite appropriate therapy. |
topic |
ATP6V0A4 ATP6V1B1 SLC4A1 distal renal tubular acidosis growth recombinant human growth hormone |
url |
http://dx.doi.org/10.1080/0886022X.2018.1487858 |
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