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Resistência a arginina vasopressina
ORPHA:223CID-10 · N25.1CID-11 · GB90.4ADOENÇA RARA
Esta doença tem causa genética. Recomendamos procurar um médico geneticista para diagnóstico, exames genéticos e aconselhamento familiar.
kidneyInício neonatalHerança AD/AR/XL
Também conhecida comoDiabetes insípidoDiabetes insípido nefrogênicoDiabetes insipidusNDI

O diabetes insípido nefrogênico (NDI) é caracterizado por poliúria com polidipsia, episódios recorrentes de febre, constipação e desidratação hipernatrêmica aguda após o nascimento que pode causar sequelas neurológicas. A poliúria pode exceder 10 litros em crianças.

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Introdução

O que você precisa saber de cara

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EM LINGUAGEM SIMPLES

A resistência a arginina vasopressina, conhecida popularmente como diabetes insípido nefrogênico, é uma doença genética em que os rins produzem urina em excesso por não responderem ao hormônio antidiurético. Desde as primeiras semanas de vida, a criança costuma apresentar sede extrema, perda acentuada de urina, episódios frequentes de febre inexplicada e risco de desidratação grave com sódio alto no sangue. Essa desidratação recorrente pode prejudicar o crescimento físico e causar alterações neurológicas caso o volume de líquidos não seja prontamente reposto. No Brasil, a condição não consta na lista oficial de PCDTs de doenças raras do Ministério da Saúde nem possui medicamentos dispensados especificamente por esse protocolo, demandando acompanhamento especializado pela rede do SUS.

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Informacoes curadas por IA — podem conter imprecisoes

O diabetes insípido nefrogênico (NDI) é caracterizado por poliúria com polidipsia, episódios recorrentes de febre, constipação e desidratação hipernatrêmica aguda após o nascimento que pode causar sequelas neurológicas. A poliúria pode exceder 10 litros em crianças.

Pesquisas ativas
2 ensaios
14 total registrados no ClinicalTrials.gov
Publicações científicas
26 artigos
Último publicado: 2026 Jan-Dec

Escala de raridade

CLASSIFICAÇÃO ORPHANET · BRASIL 2024
1-9 / 1 000 000
Ultra-rara
<1/50k
Muito rara
1/20k
Rara
1/10k
Pouco freq.
1/5k
Incomum
1/2k
Prevalência
0.15
Europe
Início
Infancy
+ neonatal
🏥
SUS: Sem cobertura SUSScore: 0%
CID-10: N25.1
Você se identifica com essa condição?
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Entender a doença

Do básico ao detalhe, leia no seu ritmo

Preparando trilha educativa...

Sinais e sintomas

O que aparece no corpo e com que frequência cada sintoma acontece

Partes do corpo afetadas

📏
Crescimento
6 sintomas
🧠
Neurológico
4 sintomas
🦴
Ossos e articulações
4 sintomas
🫘
Rins
3 sintomas
🫃
Digestivo
3 sintomas

+ 10 sintomas em outras categorias

Características mais comuns

100%prev.
Diabetes insipidus nefrogênico
90%prev.
Hipostenúria
Muito frequente (99-80%)
90%prev.
Hipernatremia
Muito frequente (99-80%)
90%prev.
Desidratação hipernatrêmica
Muito frequente (99-80%)
55%prev.
Déficit de crescimento
Frequente (79-30%)
55%prev.
Polidipsia
Frequente (79-30%)
30sintomas
Muito frequente (4)
Frequente (6)
Ocasional (8)
Muito raro (3)
Sem dados (9)

Os sintomas variam de pessoa para pessoa. Abaixo estão as 30 características clínicas mais associadas, ordenadas por frequência.

Diabetes insipidus nefrogênicoNephrogenic diabetes insipidus
Muito frequente100%
HipostenúriaHyposthenuria
Muito frequente (99-80%)90%
HipernatremiaHypernatremia
Muito frequente (99-80%)90%
Desidratação hipernatrêmicaHypernatremic dehydration
Muito frequente (99-80%)90%
Déficit de crescimentoFailure to thrive
Frequente (79-30%)55%

Linha do tempo da pesquisa

Publicações por ano — veja quando o interesse científico cresceu
Anos de pesquisa1desde 2026
Total histórico26PubMed
Últimos 10 anos23publicações
Pico202510 papers
Linha do tempo
2026Hoje · 2026🧪 1995Primeiro ensaio clínico📈 2025Ano de pico
Publicações por ano (últimos 10 anos)

Encontrou um erro ou informação desatualizada? Sugira uma correção →

Genética e causas

O que está alterado no DNA e como passa nas famílias

Genes associados

2 genes identificados com associação a esta condição. Padrão de herança: Autosomal dominant, Autosomal recessive, X-linked recessive.

Curadoria gene-doença

fontes oficiais
AVPR2 AQP2
AVPR2Vasopressin V2 receptorDisease-causing germline mutation(s) inRestrito
VIAS BIOLÓGICAS (5)
G alpha (s) signalling eventsVasopressin regulates renal water homeostasis via AquaporinsVasopressin-like receptorsCargo recognition for clathrin-mediated endocytosisDefective AVP does not bind AVPR2 and causes neurohypophyseal diabetes insipidus (NDI)
MECANISMO DE DOENÇA

Nephrogenic syndrome of inappropriate antidiuresis

Characterized by an inability to excrete a free water load, with inappropriately concentrated urine and resultant hyponatremia, hypoosmolarity, and natriuresis.

OUTRAS DOENÇAS (3)
nephrogenic syndrome of inappropriate antidiuresisdiabetes insipidus, nephrogenic, X-linkednephrogenic diabetes insipidus
HGNC:897UniProt:P30518
AQP2Aquaporin-2Disease-causing germline mutation(s) inTolerante
VIAS BIOLÓGICAS (1)
Vasopressin regulates renal water homeostasis via Aquaporins
MECANISMO DE DOENÇA

Diabetes insipidus, nephrogenic, 2, autosomal

A disorder caused by the inability of the renal collecting ducts to absorb water in response to arginine vasopressin. Characterized by excessive water drinking (polydipsia), excessive urine excretion (polyuria), persistent hypotonic urine, and hypokalemia. Inheritance can be autosomal dominant or recessive.

OUTRAS DOENÇAS (2)
diabetes insipidus, nephrogenic, autosomalnephrogenic diabetes insipidus
HGNC:634UniProt:P41181

Variantes genéticas (ClinVar)

487 variantes patogênicas registradas no ClinVar.

🧬 AQP2: NM_000486.6(AQP2):c.6G>A (p.Trp2Ter) ()
🧬 AQP2: NM_000486.6(AQP2):c.398T>A (p.Val133Glu) ()
🧬 AQP2: NM_000486.6(AQP2):c.576dup (p.Val193fs) ()
🧬 AQP2: NM_000486.6(AQP2):c.37_148del (p.Val13fs) ()
🧬 AQP2: NM_000486.6(AQP2):c.448G>A (p.Asp150Asn) ()
Ver todas no ClinVar

Diagnóstico

Os sinais que médicos procuram e os exames que confirmam

Carregando...

Tratamento e manejo

Remédios, cuidados de apoio e o que precisa acompanhar

Pipeline de tratamentos
Pipeline regulatório — de medicamentos já aprovados a drogas em pesquisa exploratória.
2Fase 22
1Fase 12
·Pré-clínico10
Medicamentos catalogadosEnsaios clínicos· 0 medicamentos · 14 ensaios
Carregando informações de tratamento...

Onde tratar no SUS

Hospitais de referência no Brasil e o protocolo oficial do SUS (PCDT)

🇧🇷 Atendimento SUS — Resistência a arginina vasopressina

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Selecione um estado ou use sua localização para ver resultados.

Dados de DATASUS/CNES, SBGM, ABNeuro e Ministério da Saúde. Sempre confirme a disponibilidade diretamente com o estabelecimento.

Pesquisa ativa

Ensaios clínicos abertos e novidades científicas recentes

Onde estão os ensaios

Com ensaio aberto em 2 países. O ponto verde marca onde há vaga agora.

🟢 Recrutando agora

1 pesquisa recrutando participantes. Converse com seu médico sobre a possibilidade de participar.

Outros ensaios clínicos

14 ensaios clínicos encontrados, 2 ativos.

Distribuição por fase
Ver todos no ClinicalTrials.gov
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Publicações mais relevantes

🥈Melhor nível de evidência: Observacional
Timeline de publicações
26 papers (10 anos)
#1

CANDID Study: Clinical and Molecular Characterization of Congenital Arginine Vasopressin-Resistance and the Use of a Novel Diagnostic Biomarker in Indian Children.

Indian journal of pediatrics2026 Feb

To present authors' experience with congenital arginine vasopressin resistance (AVP-R) in children up to 12-y-old at a tertiary care center in Northern India. An ambispective analysis was conducted, focusing on clinical, biochemical, genetic evaluations, treatments, renal and neurological outcomes. Data from 11 patients (two females) were included, with an average delay of 18 mo between symptom onset and diagnosis. The majority of children presented with failure to thrive (90.9%), polyuria (90.9%), and hyperosmolality (63.6%) at the time of diagnosis. Nearly one-fourth of the cohort experienced acute kidney injury. Random copeptin levels (340.7 ± 59.56 pmol/L) were significantly higher than the diagnostic cutoff suggested in the literature, and molecular diagnosis confirmed AVPR2 mutations in 90% of the cases. The subjects were followed for a median of 2.1 y (range: 1-4.7 y). During this period, there was a median increase of + 0.79 in BMI/weight-for-height SDS and a 30.55% reduction in urine output. However, 63.63% of the children continued to experience failure to thrive. None of the subjects developed renal structural abnormalities or chronic kidney disease (CKD) ≥ stage 2 by the final follow-up. Neurological evaluation revealed attention deficit hyperactivity disorder and gross developmental delay in two children and one child respectively. This study provides the first comprehensive analysis of congenital AVP-R in a low-middle-income setting.

#2

Use, efficacy, and safety of desmopressin for congenital nephrogenic diabetes insipidus in children: a nationwide survey.

Endocrine journal2026 Jan 27

Congenital nephrogenic diabetes insipidus (CNDI) is characterized by resistance of the distal nephrons and collecting ducts to arginine vasopressin (AVP). High doses of 1-deamino-8-D-arginine vasopressin (DDAVP), a V2-receptor-selective agonist, are effective in some cases. The present study aimed to demonstrate the use, efficacy, and safety of DDAVP and the characteristics of patients who responded to this treatment. The present, retrospective, multicentric, observational survey of patients with CNDI receiving DDAVP was based on a previous, nationwide survey conducted by the Japanese Society for Pediatric Endocrinology (JSPE) and collected data on the use (formulation, dosage, and treatment duration), efficacy (change in urine output and height SDS), and safety of DDAVP. In the initial survey, 43 of 123 JSPE council members (35.0%) observed the patients. The secondary survey of 13 patients found DDAVP to be effective in five patients (38.5%), as evidenced by a 12.6-31.6% decrease in urine output. The maximum urine osmolality on a water deprivation test and urine osmolality after vasopressin injection were lower in patients who were unresponsive to DDAVP than in those who were responsive to the drug (106 vs. 206 mOsm/H2O/kg, 140 vs. 525 mOsm/H2O/kg). The AVPR2 variants identified in the DDAVP-responsive group were p.Ala37Pro, p.Leu44Phe, p.Arg104Cys, and p.Tyr128Ser. DDAVP was effective against CNDI with residual V2R function. The water deprivation test with vasopressin injection and genetic testing may be useful for predicting responsiveness to DDAVP. Diabetes insipidus (DI) is a disorder characterized by excretion of large volumes of hypotonic urine. The underlying cause is either a deficiency of the hormone arginine vasopressin (AVP) in the pituitary gland/hypothalamus [central DI or Arginine Vasopressin Deficiency (AVP-D)], or resistance to the actions of AVP in the kidneys [nephrogenic DI or Arginine Vasopressin Resistance (AVP-R)]. In most circumstances, DI is also characterized by excessive consumption of water (polydipsia). A third condition called primary polydipsia can clinically show overlapping features with DI. Both DI and primary polydipsia are collectively referred to as ‘polyuria-polydipsia syndromes. Like other endocrine disorders, an accurate diagnosis of DI can be challenging. This is mainly because the results obtained from diagnostic testing can show significant overlap among the different forms of DI and primary polydipsia. When a case of DI is suspected, the initial step involves the confirmation of the presence of hypotonic polyuria, which is the hallmark of DI. Once hypotonic polyuria is established, the next step is to identify the type of polyuria-polydipsia disorder (central DI vs. nephrogenic DI vs. primary polydipsia). This can be determined either through the water deprivation test or through the copeptin stimulation tests using osmotic and non-osmotic AVP stimulants. Lastly, a detailed history and physical examination must be performed, and appropriate laboratory and imaging studies must be undertaken to identify the underlying etiology of DI. This chapter describes the diagnostic steps to be pursued to identify the presence of DI, distinguish the various forms of polyuria-polydipsia disorders, identify the underlying disorders responsible for the DI, the challenges faced with diagnostic testing for DI in clinical practice, and future prospects in the field of DI diagnosis. For complete coverage of all related areas of Endocrinology, please visit our on-line FREE web-text, WWW.ENDOTEXT.ORG.

#3

Diagnosis of arginine vasopressin deficiency in a patient with 10 years of polyuria and polydipsia following an Epstein-Barr virus infection.

BMJ case reports2025 Jan 19

Polyuria-polydipsia syndrome is composed of arginine vasopressin deficiency, arginine vasopressin resistance and primary polydipsia and are characterised by severe polyuria with hypotonic urine. The water deprivation test is commonly used to indirectly assess the vasopressin response to water deprivation. We report a woman in her 20s who demonstrated severe polyuria (11-12 L/day) on submitting a 24-hour urine sample for analysis. She subsequently mentioned having had polyuria and polydipsia for 10 years after an Epstein-Barr virus infection. A water deprivation test with copeptin measurement confirmed arginine vasopressin deficiency. Treatment with desmopressin transformed her life. Further investigation revealed possible concurrent subclinical mixed connective tissue disease. We suspect Epstein-Barr virus infection to be the cause of the arginine vasopressin deficiency and possibly the trigger for the subclinical mixed connective tissue disease. This case also highlights the utility of copeptin measurements in differentiating the various polyuria-polydipsia syndromes.

#4

International expert consensus statement on the diagnosis and management of congenital nephrogenic diabetes insipidus (arginine vasopressin resistance).

Nature reviews. Nephrology2025 Feb

Congenital nephrogenic diabetes insipidus (NDI; also known as arginine vasopressin resistance) is a rare inherited disorder of water homeostasis, caused by insensitivity of the distal nephron to arginine vasopressin. Consequently, the kidney loses its ability to concentrate urine, which leads to polyuria, polydipsia and the risk of hypertonic dehydration. The diagnosis and management of NDI are very challenging and require an integrated, multidisciplinary approach. Here, we present 36 recommendations for diagnosis, treatment and follow-up in both children and adults, as well as emergency management, genetic counselling and family planning, for patients with NDI. These recommendations were formulated and graded by an international group of experts in NDI from paediatric and adult nephrology, urology and clinical genetics from the European Rare Kidney Disease Reference Network and the European Society of Paediatric Nephrology, as well as patient advocates, and were validated by a voting panel in a Delphi process. The goal of these recommendations is to provide guidance to health care professionals who care for patients with NDI and to patients and their families. In addition, we emphasize the need for further research on different aspects of this potentially life-threatening disorder to support the development of evidence-based guidelines in the future.

#5

Phenotype and renal outcomes of patients with congenital arginine vasopressin-resistance.

Nephrology, dialysis, transplantation : official publication of the European Dialysis and Transplant Association - European Renal Association2025 Oct 23

The clinical phenotype and long-term outcomes of patients with congenital arginine vasopressin-resistance (AVP-R) have not been well evaluated. This study investigated the clinical features, treatment modalities, and renal outcomes of patients with AVP-R. Twenty-seven patients (male: female = 21:6, mean age = 22 ± 17 years) with genetically confirmed AVP-R from 18 unrelated Taiwanese families were included. Genomic DNA extracted from blood leukocytes was analyzed for AVPR2 and AQP2 mutations. Clinical presentations, laboratory findings, management, and follow-up data, including analyses of renal function changes, were evaluated. Seventeen patients from 12 X-linked recessive families harbored 11 different AVPR2 mutations, including three novel small deletions and two large deletion mutations. Eight patients from five autosomal recessive (AR) families harbored three different AQP2 mutations (Q57P, G100V, V168Rfs*32), and two patients from one autosomal dominant (AD) family harbored a novel AQP2 R253Dfs*82 mutation. The median ages at onset of polyuria and polydipsia and at clinical diagnosis of AVP-R were 0.7 (2 months-2.5 years) and 11.7 years (0.7-21.5 years), respectively. Three quarters of patients were treated with oral hydrochlorothiazide alone or combined with amiloride, and one third received indomethacin. Intrafamilial phenotypic heterogeneity was observed in one family harboring the AVPR2 F178 L mutation. Seven patients exhibited persistent non-obstructive hydroureteronephrosis. At a median follow-up of 16.6 years (2.2-25.7 years), seven patients (26%) had progressed to chronic kidney disease (CKD, stage III-V), of whom three (AVPR2 mutation = 2, AD AQP2 R253Dfs*82 = 1) were dependent on dialysis. An earlier age of onset, higher serum osmolality, larger daily urine volume, and hydroureteronephrosis at first presentation were independent risk factors for CKD progression. Non-obstructive hydroureteronephrosis is a common complication of congenital AVP-R. CKD frequently develops in patients with phenotypically severe congenital AVP-R, independent of AVPR2 or AQP2 mutation.

Publicações recentes

Ver todas no PubMed

📚 EuropePMC12 artigos no totalmostrando 20

2026

Use, efficacy, and safety of desmopressin for congenital nephrogenic diabetes insipidus in children: a nationwide survey.

Endocrine journal
2025

Phenotype and renal outcomes of patients with congenital arginine vasopressin-resistance.

Nephrology, dialysis, transplantation : official publication of the European Dialysis and Transplant Association - European Renal Association
2025

Late Diagnosis of X-Linked Arginine Vasopressin Resistance Presenting With Flow Uropathy in Adulthood.

JCEM case reports
2025

A Novel Pathogenic Variant of the AVPR2 Gene Leading to Arginine Vasopressin Resistance Since the Neonatal Period.

Genes
2025

Ifosfamide-Induced Partial Arginine Vasopressin Resistance Responsive to Vasopressin/Desmopressin and Amiloride.

Cureus
2025

Managing Ifosfamide-Induced Arginine Vasopressin Resistance: Diagnostic and Treatment Strategies.

Cureus
2025

Prognostic Implications of Diabetes Insipidus in Heart Failure Hospitalizations: Insights from the U.S. National Readmissions Database 2016-2021.

Journal of clinical medicine
2025

Idiopathic Arginine Vasopressin Deficiency With Mild and Reversible Hypercalcemia.

Ochsner journal
2026

CANDID Study: Clinical and Molecular Characterization of Congenital Arginine Vasopressin-Resistance and the Use of a Novel Diagnostic Biomarker in Indian Children.

Indian journal of pediatrics
2025

Diagnosis of arginine vasopressin deficiency in a patient with 10 years of polyuria and polydipsia following an Epstein-Barr virus infection.

BMJ case reports
2024

Propofol-induced transient arginine vasopressin deficiency.

Endocrinology, diabetes &amp; metabolism case reports
2025

International expert consensus statement on the diagnosis and management of congenital nephrogenic diabetes insipidus (arginine vasopressin resistance).

Nature reviews. Nephrology
2025

Approach to the Patient With Suspected Hypotonic Polyuria.

The Journal of clinical endocrinology and metabolism
2024

Bartter Syndrome Presenting as Arginine-Vasopressin Resistance: A Report of 2 Cases.

The American journal of case reports
2024

Biological Variation Estimates for Plasma Copeptin and Clinical Implications.

The journal of applied laboratory medicine
2023

Copeptin analysis in endocrine disorders.

Frontiers in endocrinology
2023

Lithium-Induced Arginine Vasopressin Resistance (AVP-R): A Case of Chronic Exposure to Lithium.

Cureus
2023

[Clinical and laboratory characteristics of arginine vasopressin resistance, caused by a new homozygous mutation p.R113C in AQP2].

Problemy endokrinologii
2022

Changing the Name of Diabetes Insipidus: A Position Statement of the Working Group for Renaming Diabetes Insipidus.

The Journal of clinical endocrinology and metabolism
2022

Changing the name of diabetes insipidus: a position statement of the working group to consider renaming diabetes insipidus.

Archives of endocrinology and metabolism

Associações

Organizações que acompanham esta doença — pra ter apoio e orientação

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Doença com base genética

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Conselhos e sociedades

Doenças relacionadas

Doenças com sintomas parecidos — ajudam quem ainda está buscando diagnóstico

Perguntas frequentes

O que as famílias mais perguntam sobre esta doença — cada resposta com a fonte de onde saiu

Respostas geradas por IA a partir das fontes citadas

É uma doença genética rara caracterizada pela incapacidade dos rins de responder à vasopressina. Isso provoca incapacidade de reter água e perda volumosa de urina diluída.

Referências

Fontes citadas no texto, publicações do grafo e bases de dados usadas neste verbete

8 publicações do grafo RarasNet (PubMed) · 7 bases de dados. Títulos, periódicos e PMIDs vêm direto da fonte, sem intermediação de IA.

  1. Phenotype and renal outcomes of patients with congenital arginine vasopressin-resistance.
    Nephrology, dialysis, transplantation : official publication of the European Dialysis and Transplant Association - European Renal Association2025PMID 41129383
  2. ORPHA:223
    Orphanet
  3. GARD:7178
    GARD (NIH)
  4. Q220551
    Wikidata

Dados compilados pelo RarasNet a partir de fontes abertas (Orphanet, OMIM, MONDO, PubMed/EuropePMC, ClinicalTrials.gov, DATASUS, PCDT/MS). Este conteúdo é informativo e não substitui avaliação médica.

Citar este verbete

Raras. (s.d.). Resistência a arginina vasopressina. Em Raras — Enciclopédia de Doenças Raras do Brasil. https://raras.org/doenca/resistencia-a-arginina-vasopressina

Formato APA. Conteúdo sob CC BY 4.0 — reuso livre com atribuição.

Conteúdo mantido por Agente Raras · Médicos e pesquisadores podem colaborar

Compêndio · Raras BR

Resistência a arginina vasopressina

ORPHA:223 · MONDO:0016383
Prevalência
1-9 / 1 000 000
Herança
Autosomal dominant, Autosomal recessive, X-linked recessive
CID-10
N25.1 · Diabetes insípido nefrogênico
CID-11
Ensaios
2 ativos
Início
Infancy, Neonatal
Prevalência
0.15 (Europe)
MedGen
UMLS
C4014484
EuropePMC
Wikidata
Wikipedia
Papers 10a

📋 Origem dos dados

Esta página agrega dados de fontes públicas e oficiais. Dados sobre cobertura no SUS (PCDT, CEAF) são verificados ativamente por agente proativo (ver badge no infobox). Demais dados têm atribuição de fonte + data da última sincronização — clique para abrir o original.

Doença rara (ontologia)
fonte: Orphanet
Identificador unificado
fonte: MONDO
Indexação biomédica
fonte: MeSH (NLM)
Dado público estruturado
fonte: Wikidata
Rara