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Any autosomal dominant polycystic kidney disease in which the cause of the disease is a mutation in the PKD1 gene.
Features include common findings: Mitral regurgitation; and sometimes findings: Mitral valve prolapse. 8 total HPO annotations.
Organ System | Phenotype Count | Example Features |
|---|---|---|
Heart and blood vessels | 4 | Hypertension, Mitral regurgitation, Cerebral berry aneurysm |
Kidneys and urinary system | 2 | Reduced kidney function (renal insufficiency), Polycystic kidney dysplasia |
Digestive system | 1 | Hepatic cysts |
Brain and nerves | 1 | Cerebral berry aneurysm |
Although all individuals with autosomal dominant polycystic kidney disease (ADPKD) develop cysts within the kidneys, there is substantial variability in the severity of kidney disease and other manifestations of the disease. Less variability is observed between affected individuals from the same family, but significant intrafamilial variability still exists. Poor prognostic factors include: diagnosis before age 30 years ; first episode of hematuria before age 30 years; onset of hypertension before age 35 years ; hyperlipidemia and high body mass index ; high urine sodium excretion ; lower kidney blood flow; lower serum high-density lipoprotein cholesterol ; large total kidney volume (TKV) ; and the presence of a truncating PKD1 variant .
Source: GeneReviews — "Polycystic Kidney Disease, Autosomal Dominant"
PKD1 function has not been fully characterized.
Polycystic kidney disease 1 is associated with mutations in the PKD1 gene on chromosome 16.
Penetrance in ADPKD is age and genotype dependent. The penetrance of multiple bilateral kidney cysts in older adults is close to 100%. However, because the disease is progressive, few cysts may be evident during childhood or young adulthood, especially in individuals with nontruncating PKD1 pathogenic variants, pathogenic variants in PKD2, or a pathogenic variant in another ADPKD-related gene.
Source: GeneReviews — "Polycystic Kidney Disease, Autosomal Dominant"
Diagnostic criteria for autosomal dominant polycystic kidney disease (ADPKD) are discussed in the executive summary of the KDIGO Controversies Conference . Suggestive Findings ADPKD should be suspected in individuals with the following: • Multiple bilateral kidney cysts and absence of manifestations suggestive of a different cystic kidney disease • Cysts in other organs, especially the liver, but also seminal vesicles, pancreas, and arachnoid membrane • Enlargement of the kidneys or liver on physical examination • Hypertension in an individual younger than age 35 years • An intracranial aneurysm • Family history consistent with autosomal dominant inheritance (e.g., affected males and females in multiple generations). Absence of a known family history does not preclude the diagnosis. Establishing the Diagnosis The diagnosis of ADPKD is established in a proband with ANY of the following: • and an affected first-degree relative with ADPKD • and an affected first-degree relative with ADPKD • in one of the genes listed in Age-Specific Ultrasound Criteria Age-specific ultrasound criteria in an individual with an affected first-degree relative : • The presence of three or more (unilateral or bilateral) kidney cysts in an individual age 15-39 years • The presence of two or more cysts in each kidney in an individual age 40-59 years • Large echogenic kidneys without distinct macroscopic cysts in an infant/child at 50% risk for ADPKD Note: (1) The positive predictive value of these criteria is described as 100%, if (a) the disorder is PKD1- or PKD2-related ADPKD and (b) the individual is age 15-59 years at the time of evaluation . Note that there are other genetic causes of kidney cysts in addition to fully penetrant pathogenic variants in PKD1 or PKD2 (see , , and ). (2) The sensitivity of ultrasound criteria is decreased in families with a pathogenic variant in PKD2, families with incompletely penetrant nontruncating PKD1 pathogenic variants, and families with pathogenic variants in less commonly associated genes. In these situations, a significant number of affected individuals may not be diagnosed using these criteria, which may pose a problem when exclusion of the diagnosis is necessary to identify potential related kidney donors . Table 1. Ultrasound Criteria for Diagnosis of ADPKD in Individuals at 50% Risk for ADPKD Based on Family History
Age | PKD1 | PKD2 | Unknown ADPKD Genotype |
|---|---|---|---|
15-30 yrs | ≥3 cysts1PPV = 100%SEN = 94.3% | ≥3 cysts1PPV = 100%SEN = 69.5% | ≥3 cysts1PPV = 100%SEN = 81.7% |
30-39 yrs | ≥3 cysts1PPV = 100%SEN = 96.6% | ≥3 cysts1PPV = 100%SEN = 94.9% | ≥3 cysts1PPV = 100%SEN = 95.5% |
40-59 yrs | ≥2 cysts in each kidneyPPV = 100%SEN = 92.6% | ≥2 cysts in each kidneyPPV = 100%SEN = 88.8% | ≥2 cysts in each kidneyPPV = 100%SEN = 90% ADPKD = autosomal dominant polycystic kidney disease; PKD = polycystic kidney disease; PPV = positive predictive value; SEN = sensitivity 1. Unilateral or bilateral Age-specific MRI criteria are particularly useful when ultrasound results are equivocal . |
Source: GeneReviews — "Polycystic Kidney Disease, Autosomal Dominant"
In the absence of a family history of polycystic kidney disease and/or in the presence of atypical presentations, benign simple cysts and other cystic diseases should be considered in the differential diagnosis. Studies of potential kidney donors using contrast-enhanced CT, which detects smaller cysts (1-2 mm), showed that from age 19 to 49 years, 39%, 22%, 7.9%, and 1.6% had at least one cyst ≥2 mm, ≥5 mm, ≥10 mm, and ≥20 mm in diameter, respectively, while from age 50 to 75 years, 63%, 43%, 22%, and 7.8% had at least one cyst ≥2 mm, ≥5 mm, ≥10 mm, and ≥20 mm in diameter, respectively . Genetic disorders in the differential diagnosis of autosomal dominant polycystic kidney disease (ADPKD) are summarized in ; acquired conditions in the differential diagnosis are summarized in . Table 5a. Genetic Disorders in the Differential Diagnosis of ADPKD
Gene(s) | Disorder | MOI | Features of Differential Diagnosis |
|---|---|---|---|
SEC61B | Polycystic liver disease1 (OMIM PS174050) |
Genetic testing for PKD1 is available. Testing is considered confirmatory for diagnosis.
Biomarker and diagnostic research for polycystic kidney disease 1 has been reported in the published literature.
No approved treatments are currently available for polycystic kidney disease 1. The disease remains an area of unmet medical need.
Treatment guidelines formulated at the autosomal dominant polycystic kidney disease (ADPKD) KDIGO conference are summarized in . Evaluations Following Initial Diagnosis To establish the extent of disease and needs of an individual diagnosed with ADPKD, the evaluations summarized (if not performed as part of the evaluation that led to the diagnosis) are recommended. Table 6. Recommended Evaluations Following Initial Diagnosis in Individuals with ADPKD
System/Concern | Evaluation1 | Comment |
|---|---|---|
Hyperlipidemia | Measurement of blood lipid concentrations | Hyperlipidemia is a correctable risk factor for progressive kidney disease, incl ADPKD. |
Cardiac | Echocardiography | In persons w/murmur or systolic click to assess for valvular heart disease, mitral valve prolapse, or congenital cardiac abnormalities Echocardiography or cardiac MRI |
aneurysms | Head MRA or CT angiography3 | In persons w/family history of intracranial aneurysms; Note: Screening for intracranial aneurysms in persons w/o family history of intracranial aneurysms is usually not recommended.4 Genetic |
counseling | By genetics professionals5 | To inform affected persons their families re nature, MOI, implications of ADPKD to facilitate medical personal decision making ADPKD = autosomal dominant polycystic kidney disease; MOI = mode of inheritance; MRA = MR angiography 1. |
Source: GeneReviews — "Polycystic Kidney Disease, Autosomal Dominant"
Avoid the following:
Long-term administration of nephrotoxic agents (e.g., combination analgesics, NSAIDs)
Caffeine in large amounts. There is no evidence that low or moderate use of caffeinated beverages accelerates the progression of ADPKD.
High-salt diet, smoking, and obesity
Use of estrogens and possibly progestogens in individuals with severe polycystic liver disease
Source: GeneReviews — "Polycystic Kidney Disease, Autosomal Dominant"
Significant advances in the understanding of the genetics of ADPKD and the mechanisms of cyst growth have revealed additional likely targets for therapeutic intervention. Somatostatin analogs. Octreotide, a long-acting form of somatostatin, has been shown to slow the enlargement of polycystic kidneys and livers in an animal model of PKD and of polycystic kidneys and liver in a small randomized, placebo-controlled, crossover study . Two randomized, placebo-controlled trials of octreotide and lanreotide for polycystic kidney and liver disease have shown that the administration of these somatostatin analogs causes a moderate but significant reduction in liver volume and decreases the growth velocity of polycystic kidneys compared to placebo .
Source: GeneReviews — "Polycystic Kidney Disease, Autosomal Dominant"
View trials for polycystic kidney disease 1
Guidance on surveillance is available in . Table 7. Recommended Surveillance for Individuals with ADPKD
System/Concern | Evaluation | Frequency |
|---|---|---|
dissection | Echocardiography or chest MRI | Every 2-3 yrs in 1st-degree adult relatives of persons w/thoracic aortic dissection; Note: If aortic root dilatation is found, refer to cardiologist. Cardiac valvular |
abnormalities | No surveillance recommended in persons w/o signs/symptoms | Intracranial aneurysms |
carcinoma | No surveillance recommended in persons w/o concerning signs/symptoms | Colon |
diverticulosis | No surveillance recommended in persons w/o concerning signs/symptoms | MRA is the diagnostic imaging modality of choice for presymptomatic screening because it is noninvasive and does not require intravenous contrast material. |
Source: GeneReviews — "Polycystic Kidney Disease, Autosomal Dominant"
Phenotype severity distribution: 1 common feature.
No clinical trials have been registered for polycystic kidney disease 1.
137 publications have been identified in PubMed for polycystic kidney disease 1. Research spans Basic Science / Preclinical (41%), Review / Meta-Analysis (18%), and Epidemiology / Natural History (14%).
Research Type | Count | % of Total |
|---|---|---|
Laboratory research | 55 | 41% |
Research summaries | 24 | 18% |
Disease patterns and progression | 19 | 14% |
New treatment approaches | 14 | 10% |
Testing and diagnosis research | 9 | 7% |
Patient case studies | 8 | 6% |
Clinical study results | 4 | 3% |
Other research | 1 | 1% |
Wang X (2026). [PMID: 41772913](https://pubmed.ncbi.nlm.nih.gov/41772913/). *IUBMB Life*. [Review / Meta-Analysis]
Gargalionis AN (2026). [PMID: 42003915](https://pubmed.ncbi.nlm.nih.gov/42003915/). *Int J Biol Sci*. [Basic Science / Preclinical]
Lakhia R (2026). [PMID: 41558825](https://pubmed.ncbi.nlm.nih.gov/41558825/). *Nucleic Acids Res*. [Diagnostic / Biomarker]
Perez-Prado S (2026). [PMID: 42186768](https://pubmed.ncbi.nlm.nih.gov/42186768/). *Turk J Gastroenterol*. [Review / Meta-Analysis]
Pang X (2026). [PMID: 41528614](https://pubmed.ncbi.nlm.nih.gov/41528614/). *Discov Oncol*. [Epidemiology / Natural History]
Zhang W (2026). [PMID: 42193072](https://pubmed.ncbi.nlm.nih.gov/42193072/). *Curr Issues Mol Biol*. [Review / Meta-Analysis]
Bou Antoun MT (2026). [PMID: 41212622](https://pubmed.ncbi.nlm.nih.gov/41212622/). *J Am Soc Nephrol*. [Review / Meta-Analysis]
Serafin A (2026). [PMID: 42182145](https://pubmed.ncbi.nlm.nih.gov/42182145/). *bioRxiv*. [Basic Science / Preclinical]
Hasan NS (2026). [PMID: 41354137](https://pubmed.ncbi.nlm.nih.gov/41354137/). *Steroids*. [Review / Meta-Analysis]
Varughese S (2026). [PMID: 40810452](https://pubmed.ncbi.nlm.nih.gov/40810452/). *Nephrol Dial Transplant*. [Epidemiology / Natural History]
Data assembled from 6 of 12 sources · Last updated Sep 20, 2026, 11:15 AM UTC
Online Mendelian Inheritance in Man
Genetic and Rare Diseases Info Center
AD |
Liver cysts occasional kidney cysts |
COL4A1 | Hereditary angiopathy w/nephropathy, aneurysms, muscle cramps (See COL4A1-Related Disorders.) | AD | Kidney cysts |
Alport syndrome | ADARXL3 | Kidney cysts | Thinning of glomerular basement membrane, microhematuria; Occasionally, kidney cysts are part of phenotype.4 FLCN |
Birt-Hogg-Dub syndrome | AD | Kidney cysts | Hair follicle hamartomas, kidney tumors, spontaneous pneumothorax, lung cysts; FLCN pathogenic variant was described in person w/"ADPKD" lung cysts.5 |
HNF1B | HNF1B-related kidney disease | AD | Cystic kidney disease |
ADTKD-MUC1 | AD | Kidney cysts | Kidney function w/o in TKV; no liver cysts; Fibrosis rather than cysts is the major kidney phenotype. |
NOTCH2 | Hajdu-Cheney syndrome (OMIM 102500) | AD | Kidney enlargement w/cortical medullary cysts |
Oral-facial-digital syndrome type 1 | XL | Kidney cysts in affected females | Hyperplastic frenula, cleft tongue, cleft lip or palate, malpositioned teeth, broad nasal root w/hypoplasia of nasal alae malar bone, digital abnormalities; Usually male lethal during gestation PKHD1 |
ARPKD | AR | ... | — |
Source: GeneReviews — "Polycystic Kidney Disease, Autosomal Dominant"
AI-curated news mentioning polycystic kidney disease 1
Updated Aug 5, 2026
Securing funding from such a high-caliber syndicate is a strong validator of our approach to treating kidney diseases such as ADPKD. This financing will allow us to progress the clinical development of our lead candidate, bringing us closer to transforming the treatment landscape for patients with rare ... Securing funding from such a high-caliber syndicate is a strong validator of our approach to treating kidney diseases such as ADPKD. This financing will allow us to progress the clinical development of our lead candidate, bringing us closer to transforming the treatment landscape for patients with rare kidney diseases.” Paul Callaghan, Investment Director, Scottish National Investment Bank: “Our investment in Mironid reflects our commitment to backing impactful Scottish businesses with high-growth potential. Mironid exemplifies Scotland’s growing reputation for biotech innovation, developing a new treatment approach that could improve options for people living with kidney disease. Scottish National Investment Bank joins existing investors Roche Venture Fund, Epidarex Capital, Sofinnova Partners and BioGeneration Ventures · Glasgow, Scotland, August 5, 2026 – Mironid, a biopharmaceutical company developing small molecule therapeutics for the treatment of Autosomal Dominant Polycystic Kidney Disease (ADPKD), a life-threatening hereditary kidney disease, today announces it has raised $46 million in a Series B funding round. Preclinical data shows significant efficacy and a favourable safety profile across all disease endpoints, including a reduction in cyst number and kidney volume. The ability of cAMP modulators to prevent new cyst formation and arrest the growth of existing cysts is indicative of the potential to offer an effective and durable treatment option with an improved side-effect profile for all ADPKD patients. The funding round was supported by new investor the Scottish National Investment Bank and existing investors the Roche Venture Fund, Epidarex Capital, Sofinnova Partners, BioGeneration Ventures and the University of Strathclyde.
HR 9169 has been introduced to support research on polycystic kidney disease. The bill is currently referred to the House Committee on Energy and Commerce for further consideration.
A recent study highlights a patient with both aortic dilation and polycystic kidney disease, providing insights into the potential connections between these conditions. This case may inform future research on the genetic and clinical implications of co-occurring rare diseases.
A recent case study highlights a patient with autosomal dominant polycystic kidney disease experiencing multiple bilateral spontaneous retroperitoneal hemorrhages. This case contributes to the understanding of complications associated with the disease.
Mayo Clinic's research demonstrates the effectiveness of CRISPR-based gene editing in targeting the PKD1 gene mutation responsible for polycystic kidney disease. This breakthrough offers a potential shift in treatment, moving beyond merely slowing disease progression to directly correcting the genetic cause.