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Diagnostic strategy for inherited hypomagnesemia
Authors:Tomoko Horinouchi  Kandai Nozu  Naohiro Kamiyoshi  Koichi Kamei  Hiroko Togawa  Yuko Shima  Yoshimichi Urahama  Tomohiko Yamamura  Shogo Minamikawa  Keita Nakanishi  Junya Fujimura  Ichiro Morioka  Takeshi Ninchoji  Hiroshi Kaito  Koichi Nakanishi  Kazumoto Iijima
Affiliation:1.Department of Pediatrics,Kobe University Graduate School of Medicine,Kobe,Japan;2.Division of Nephrology and Rheumatology,National Center for Child Health and Development,Tokyo,Japan;3.Department of Pediatrics,Wakayama Medical University,Wakayama,Japan;4.Department of Nephrology,Komaki City Hospital,Aichi,Japan
Abstract:

Background

Hereditary hypomagnesemia is difficult to diagnose accurately because of its rarity and the variety of causative genes. We established a flowchart for identifying responsible genes for hypomagnesemia, and we confirmed its diagnostic efficacy in patients with suspected inherited hypomagnesemia.

Methods

We established a flowchart and applied it to five index cases with suspected inherited hypomagnesemia. Direct sequence analysis was used to detect the causative gene variants in four cases, and targeted sequencing analysis using next-generation sequencing (NGS) of all causative genes for hypomagnesemia was used in one.

Results

Expected pathogenic variants were detected in the HNF1B, TRPM6, CLDN16, CASR, or SLC12A3 gene in all five cases. The results of all genetic analyses were consistent with the clinical diagnostic results using the flowchart.

Conclusions

Accurate genetic diagnosis is crucial for estimating the prognosis, detecting complications in organs other than the kidneys, and for directing genetic counseling. The developed flowchart for identifying responsible genes for hypomagnesemia was useful for diagnosing inherited hypomagnesemia. In addition, NGS analysis will help to resolve clinical difficulties in making an accurate diagnosis and thus improve the diagnostic strategy for inherited hypomagnesemia.
Keywords:
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