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1.
Kidney Int Rep ; 8(8): 1638-1647, 2023 Aug.
Article in English | MEDLINE | ID: mdl-37547535

ABSTRACT

Introduction: The diagnosis and management of proteinuric kidney diseases such as focal segmental glomerulosclerosis (FSGS) are challenging. Genetics holds the promise to improve clinical decision making for these diseases; however, it is often performed too late to enable timely clinical action and it is not implemented within routine outpatient nephrology visits. Methods: We sought to test the implementation and feasibility of clinical rapid genome sequencing (GS) in guiding decision making in patients with proteinuric kidney disease in real-time and embedded in the outpatient nephrology setting. Results: We enrolled 10 children or young adults with biopsy-proven FSGS (9 cases) or minimal change disease (1 case). The mean age at enrollment was 16.2 years (range 2-30). The workflow did not require referral to external genetics clinics but was conducted entirely during the nephrology standard-of-care appointments. The total turn-around-time from enrollment to return-of-results and clinical decision averaged 21.8 days (12.4 for GS), which is well within a time frame that allows clinically relevant treatment decisions. A monogenic or APOL1-related form of kidney disease was diagnosed in 5 of 10 patients. The genetic findings resulted in a rectified diagnosis in 6 patients. Both positive and negative GS findings determined a change in pharmacological treatment. In 3 patients, the results were instrumental for transplant evaluation, donor selection, and the immunosuppressive treatment. All patients and families received genetic counseling. Conclusion: Clinical GS is feasible and can be implemented in real-time in the outpatient care to help guiding clinical management. Additional studies are needed to confirm the cost-effectiveness and broader utility of clinical GS across the phenotypic and demographic spectrum of kidney diseases.

2.
J Am Soc Nephrol ; 34(6): 1105-1119, 2023 06 01.
Article in English | MEDLINE | ID: mdl-36995132

ABSTRACT

SIGNIFICANCE STATEMENT: Congenital obstructive uropathy (COU) is a prevalent human developmental defect with highly heterogeneous clinical presentations and outcomes. Genetics may refine diagnosis, prognosis, and treatment, but the genomic architecture of COU is largely unknown. Comprehensive genomic screening study of 733 cases with three distinct COU subphenotypes revealed disease etiology in 10.0% of them. We detected no significant differences in the overall diagnostic yield among COU subphenotypes, with characteristic variable expressivity of several mutant genes. Our findings therefore may legitimize a genetic first diagnostic approach for COU, especially when burdening clinical and imaging characterization is not complete or available. BACKGROUND: Congenital obstructive uropathy (COU) is a common cause of developmental defects of the urinary tract, with heterogeneous clinical presentation and outcome. Genetic analysis has the potential to elucidate the underlying diagnosis and help risk stratification. METHODS: We performed a comprehensive genomic screen of 733 independent COU cases, which consisted of individuals with ureteropelvic junction obstruction ( n =321), ureterovesical junction obstruction/congenital megaureter ( n =178), and COU not otherwise specified (COU-NOS; n =234). RESULTS: We identified pathogenic single nucleotide variants (SNVs) in 53 (7.2%) cases and genomic disorders (GDs) in 23 (3.1%) cases. We detected no significant differences in the overall diagnostic yield between COU sub-phenotypes, and pathogenic SNVs in several genes were associated to any of the three categories. Hence, although COU may appear phenotypically heterogeneous, COU phenotypes are likely to share common molecular bases. On the other hand, mutations in TNXB were more often identified in COU-NOS cases, demonstrating the diagnostic challenge in discriminating COU from hydronephrosis secondary to vesicoureteral reflux, particularly when diagnostic imaging is incomplete. Pathogenic SNVs in only six genes were found in more than one individual, supporting high genetic heterogeneity. Finally, convergence between data on SNVs and GDs suggest MYH11 as a dosage-sensitive gene possibly correlating with severity of COU. CONCLUSIONS: We established a genomic diagnosis in 10.0% of COU individuals. The findings underscore the urgent need to identify novel genetic susceptibility factors to COU to better define the natural history of the remaining 90% of cases without a molecular diagnosis.


Subject(s)
Hydronephrosis , Ureteral Obstruction , Vesico-Ureteral Reflux , Humans , DNA Copy Number Variations , Ureteral Obstruction/complications , Ureteral Obstruction/genetics , Vesico-Ureteral Reflux/diagnosis , Vesico-Ureteral Reflux/genetics , Kidney Pelvis/pathology
3.
Pediatr Transplant ; 25(4): e13992, 2021 Jun.
Article in English | MEDLINE | ID: mdl-33813776

ABSTRACT

BACKGROUND: Medullary sponge kidney (MSK) disease predisposes patients to recurrent nephrolithiasis, which affects one in every 5000 people in the United States. METHODS: We report a rare case of a pediatric recipient of a living donor MSK transplant and discuss considerations when discussing risks and benefits of accepting MSK allografts for this population. RESULTS: The recipient was admitted due to concerns for nephrolithiasis, hydronephrosis, and urinary tract infection at 1-month post-transplant. The hydronephrosis was resolved by surgical removal of an encrusted ureteral stent; this was followed by supplementation with oral medications to prevent future episodes of nephrolithiasis. The recipient did not have any further episodes after this as seen at a 1-year follow-up. The donor has remained well through this period. CONCLUSIONS: With increasing organ shortages, the use of variety of donors may need to be considered to enlarge the organ pool.


Subject(s)
Donor Selection/methods , Kidney Failure, Chronic/surgery , Kidney Transplantation/methods , Living Donors , Medullary Sponge Kidney , Adolescent , Humans , Male , Transplantation, Homologous/methods
4.
Kidney360 ; 2(4): 611-618, 2021 04 29.
Article in English | MEDLINE | ID: mdl-35373052

ABSTRACT

Background: Multisystem inflammatory syndrome in children (MIS-C) is a recently identified entity in association with COVID-19. AKI has been widely reported in patients with primary COVID-19 infection. However, there is a paucity of literature regarding renal injury in MIS-C. We aim to characterize AKI in MIS-C in this cohort identified at a major children's hospital in New York City during the COVID-19 pandemic. Methods: We conducted a retrospective cohort study of children 0-20 years old admitted to Morgan Stanley Children's Hospital (MSCH) between April 18th and September 23rd, 2020. Patients were included if they met criteria for MIS-C on the basis of CDC guidelines. All patients were evaluated for the presence of AKI, and AKI was staged according to KDIGO criteria. Results: Of the 57 children who met inclusion criteria, 46% (26 of 57) were found to have AKI. The majority of patients (58%; 15 of 26) were classified as KDIGO stage 1. AKI was present upon admission in 70% of those identified. All patients had resolution of AKI at discharge, with 61% achieving recovery by day 2. One patient required dialysis. When compared with those without renal injury, the AKI cohort was older (P<0.001) and had higher median peak values of CRP (P<0.001), IL-6 (P=0.02), ferritin (P<0.001), and procalcitonin (P=0.02). More patients with AKI had left ventricular systolic dysfunction (P<0.001) and lymphopenia (P=0.01) when compared with those without AKI. No differences in body mass index or sex were found. Conclusions: Although children with MIS-C may develop AKI, our study suggests that most experience mild disease, swift resolution, and promising outcome. Older age, increased inflammation, and left ventricular systolic dysfunction may be risk factors. Our study highlights the substantial differences in epidemiology and outcomes between AKI associated with pediatric MIS-C versus primary COVID-19 infection.


Subject(s)
Acute Kidney Injury , COVID-19 , Acute Kidney Injury/epidemiology , Adolescent , Adult , COVID-19/complications , Child , Child, Preschool , Humans , Infant , Infant, Newborn , Pandemics , Renal Dialysis , Retrospective Studies , SARS-CoV-2 , Systemic Inflammatory Response Syndrome , Young Adult
6.
N Engl J Med ; 380(2): 142-151, 2019 01 10.
Article in English | MEDLINE | ID: mdl-30586318

ABSTRACT

BACKGROUND: Exome sequencing is emerging as a first-line diagnostic method in some clinical disciplines, but its usefulness has yet to be examined for most constitutional disorders in adults, including chronic kidney disease, which affects more than 1 in 10 persons globally. METHODS: We conducted exome sequencing and diagnostic analysis in two cohorts totaling 3315 patients with chronic kidney disease. We assessed the diagnostic yield and, among the patients for whom detailed clinical data were available, the clinical implications of diagnostic and other medically relevant findings. RESULTS: In all, 3037 patients (91.6%) were over 21 years of age, and 1179 (35.6%) were of self-identified non-European ancestry. We detected diagnostic variants in 307 of the 3315 patients (9.3%), encompassing 66 different monogenic disorders. Of the disorders detected, 39 (59%) were found in only a single patient. Diagnostic variants were detected across all clinically defined categories, including congenital or cystic renal disease (127 of 531 patients [23.9%]) and nephropathy of unknown origin (48 of 281 patients [17.1%]). Of the 2187 patients assessed, 34 (1.6%) had genetic findings for medically actionable disorders that, although unrelated to their nephropathy, would also lead to subspecialty referral and inform renal management. CONCLUSIONS: Exome sequencing in a combined cohort of more than 3000 patients with chronic kidney disease yielded a genetic diagnosis in just under 10% of cases. (Funded by the National Institutes of Health and others.).


Subject(s)
Exome , Genetic Predisposition to Disease , Mutation , Renal Insufficiency, Chronic/genetics , Sequence Analysis, DNA/methods , Adult , Aged , Cohort Studies , Genetic Variation , Humans , Male , Middle Aged , Renal Insufficiency, Chronic/ethnology , Young Adult
7.
Pediatr Clin North Am ; 66(1): 227-234, 2019 02.
Article in English | MEDLINE | ID: mdl-30454745

ABSTRACT

Nephrogenic diabetes insipidus (NDI) results from the inability of the late distal tubules and collecting ducts to respond to vasopressin. The lack of ability to concentrate urine results in polyuria and polydipsia. Primary and acquired forms of NDI exist in children. Congenital NDI is a result of mutation in AVPR2 or AQP2 genes. Secondary NDI is associated with electrolyte abnormalities, obstructive uropathy, or certain medications. Management of NDI can be difficult with only symptomatic treatment available, using low-solute diet, diuretics, and prostaglandin inhibitors.


Subject(s)
Diabetes Insipidus, Nephrogenic/diagnosis , Diabetes Insipidus, Nephrogenic/therapy , Child , Diabetes Insipidus, Nephrogenic/etiology , Diagnosis, Differential , Diet, Sodium-Restricted , Diuretics/therapeutic use , Humans , Molecular Chaperones/therapeutic use , Prostaglandin Antagonists/therapeutic use
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