Protein-losing enteropathy with congenital kidney stones in a 2-month-old boy: a rare case report and literature review.

IF 2 4区 医学 Q3 GENETICS & HEREDITY BMC Medical Genomics Pub Date : 2024-11-27 DOI:10.1186/s12920-024-02046-8
Jiahui Fang, Zhuoheng Li, Lin Zhang, Qiaojian Liu, Jie Mao, Jintao Duan
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Abstract

Background: Protein-losing enteropathy (PLE) is a rare condition featured by severe loss of proteins through the gastrointestinal tract. Rare PLE cases complicated with congenital kidney stones have been reported. This case study aimed to illustrate our experiences on the diagnosis and treatment of PLE and congenital kidney stones in a neonate.

Case presentation: A 10-day-old boy fed on breast milk presented to our department because of severe diarrhea, which showed no significant attenuation after free amino acid milk formula. Gastrointestinal endoscopy revealed absence of brush border of surface villi. Genetic testing was strongly recommended given intractable early-onset diarrhea, severe malnutrition and hypoalbuminemia. Then the patient was diagnosed with PLE based on the clinical manifestations and identification of DGAT1 gene by whole-exome sequencing. The patient underwent percutaneous suprapubic cystostomy to remove the urine, and ultrasonography examination showed kidney stones.

Conclusions: We reported a rare newborn with PLE and congenital kidney stones carrying DGAT1 mutations.

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一名 2 个月大的男婴患蛋白丢失性肠病并伴有先天性肾结石:罕见病例报告和文献综述。
背景:蛋白质丢失性肠病(PLE)是一种罕见的疾病,其特征是蛋白质通过胃肠道严重丢失。罕见的蛋白质丢失性肠病并发先天性肾结石的病例已有报道。本病例研究旨在说明我们在诊断和治疗新生儿缺铁性贫血和先天性肾结石方面的经验:病例介绍:一名10天大的母乳喂养男婴因严重腹泻来我科就诊,服用游离氨基酸奶粉后腹泻症状无明显缓解。消化道内窥镜检查显示,表面绒毛的刷状缘缺失。鉴于顽固性早发性腹泻、严重营养不良和低白蛋白血症,我们强烈建议进行基因检测。随后,根据临床表现和通过全外显子组测序鉴定出的 DGAT1 基因,患者被诊断为 PLE。患者接受了经皮耻骨上膀胱造口术以排出尿液,超声波检查显示其患有肾结石:我们报告了一名罕见的携带DGAT1基因突变的PLE合并先天性肾结石新生儿。
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来源期刊
BMC Medical Genomics
BMC Medical Genomics 医学-遗传学
CiteScore
3.90
自引率
0.00%
发文量
243
审稿时长
3.5 months
期刊介绍: BMC Medical Genomics is an open access journal publishing original peer-reviewed research articles in all aspects of functional genomics, genome structure, genome-scale population genetics, epigenomics, proteomics, systems analysis, and pharmacogenomics in relation to human health and disease.
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