From Surf Wiki (app.surf) — the open knowledge base
Nephrogenic diabetes insipidus
Impaired renal function disease
Impaired renal function disease
| Field | Value |
|---|---|
| name | Nephrogenic diabetes insipidus |
| synonyms | arginine vasopressin resistance; AVP-R; renal diabetes insipidus |
| symptoms | Polyuria, nocturia, and polydipsia. |
| complications | Dehydration, seizures |
| diagnosis | Urine tests, blood tests, fluid deprivation test |
| differential | AVP-D (central), Diabetes mellitus |
| treatment | Drinking sufficient fluids |
| medication | thiazides, aspirin |
| frequency | 3 per 100,000 per year |
Nephrogenic diabetes insipidus, recently renamed arginine vasopressin resistance (AVP-R) and previously known as renal diabetes insipidus, is a form of diabetes insipidus primarily due to pathology of the kidney. This is in contrast to central or neurogenic diabetes insipidus, which is caused by insufficient levels of vasopressin (also called antidiuretic hormone, ADH). Nephrogenic diabetes insipidus is caused by an improper response of the kidney to vasopressin (AVP), leading to a decrease in the ability of the kidney to concentrate the urine by removing free water.
National Nephrogenic Diabetes Insipidus (NDI) Awareness Day, established in 2026 by NDIAG - Nephrogenic Diabetes Insipidus Advocacy Group, is observed annually in the United States on April 27 to raise public and medical awareness of Nephrogenic Diabetes Insipidus, a rare kidney disorder. The observance aims to improve recognition of symptoms to support earlier and more accurate diagnosis, educate healthcare professionals, and highlight ongoing medical research, advancements in care, and advocacy efforts related to NDI.
Signs and symptoms
The clinical manifestation is similar to neurogenic diabetes insipidus, presenting with polydipsia (excessive thirst) and polyuria (excretion of a large amount of dilute urine). Dehydration is common, and incontinence can occur secondary to chronic bladder distension. On investigation, there will be an increased plasma osmolarity and decreased urine osmolarity. As pituitary function is normal, antidiuretic hormone levels are likely to be abnormal or raised. Polyuria will continue as long as the patient is able to drink. If the patient is unable to drink and is still unable to concentrate the urine, then hypernatremia will ensue with its neurologic symptoms.
Causes
Acquired
Nephrogenic diabetes insipidus is most common in its acquired forms, meaning that the defect was not present at birth. These acquired forms have numerous potential causes. The most obvious cause is a kidney or systemic disorder, including amyloidosis, polycystic kidney disease, electrolyte imbalance, or some other kidney defect.
The major causes of acquired nephrogenic diabetes insipidus that produce clinical symptoms (e.g., polyuria) in the adult are lithium toxicity and high blood calcium. About 80% of lithium ingested appears to affect the proximal tubules by entering the collecting tubule cells through sodium channels, accumulating and interfering with the normal response to antidiuretic hormone in a mechanism that is not yet fully understood. High blood calcium causes natriuresis (increased sodium loss in the urine) and water diuresis, in part by its effect through the calcium-sensing receptor.
Osmotic
Other causes of acquired nephrogenic diabetes insipidus include hypokalemia (low blood potassium), post-obstructive polyuria, sickle cell disease or trait, amyloidosis, Sjögren syndrome, renal cystic disease, Bartter syndrome, and various medications (amphotericin B, orlistat, ifosfamide, ofloxacin, cidofovir, vaptans).
In addition to kidney and systemic disorders, nephrogenic diabetes insipidus can present itself as a side effect of some medications. The most common and well known of these medications is lithium, although there are many other medications that cause this effect with lesser frequency.
Hereditary
This form of diabetes insipidus can also be hereditary due to defects in the following genes:
| Type | OMIM | Gene | Locus | |
|---|---|---|---|---|
| NDI1 | {{OMIM | 304800 | none}} | *AVPR2* |
| NDI2 | {{OMIM | 125800 | none}} | *AQP2* |
Diagnosis
Differential diagnosis includes nephrogenic diabetes insipidus, neurogenic/central diabetes insipidus and psychogenic polydipsia. They may be differentiated by using the water deprivation test. Recently, lab assays for antidiuretic hormone are available and can aid in diagnosis. If the patient is able to rehydrate properly, sodium concentration should be nearer to the maximum of the normal range. This, however, is not a diagnostic finding, as it depends on patient hydration.
Desmopressin can also be used; if the patient is able to concentrate urine following administration of desmopressin, then the cause of the diabetes insipidus is neurogenic diabetes insipidus; if no response occurs to desmopressin, then the cause is likely to be nephrogenic.
Treatment
Persons with nephrogenic diabetes insipidus must consume enough fluids to equal the amount of urine produced. Any underlying cause such as high blood calcium must be corrected to treat nephrogenic diabetes insipidus. The first line of treatment is hydrochlorothiazide and amiloride. Patients may also consider a low-salt and low-protein diet.
Thiazide diuretics cause a mild decrease in extracellular fluid volume through natriuresis and diuresis which in turn increases the proximal absorption of sodium and water, lowering urine output.
High serum osmolarity stimulates polydipsia in an attempt to dilute the serum back to normal and provide free water for excreting the excess serum solutes. However, since the patient is unable to concentrate urine to excrete the excess solutes, the resulting urine fails to decrease serum osmolarity and the cycle repeats itself, hence polyuria.
Etymology
The name of the disease comes from:
- diabetes: from , from diabḗtēs "a passer-through; siphon", from Greek διαβαίνειν diabaínein "to pass through", from δια- dia- "through" + βαίνειν baínein "to go".
- insipidus: from Late Latin: insipidus "tasteless," from Latin in- "not" + sapidus "tasty", from sapere "to taste".
This is because patients experience polyuria (an excretion of over 2.5 liters of urine per day), and the urine does not have an elevated glucose concentration, as opposed to diabetes mellitus. The two diseases were named (in ancient times) for the fact that one features polyuria in which the urine tastes sweet, whereas the other features polyuria in which the urine tastes unremarkable.
Although they share part of their names, diabetes mellitus and diabetes insipidus are two separate conditions. Both cause excessive urination (hence the similarity in name), but whereas diabetes insipidus is a problem with the production of antidiuretic hormone (neurogenic diabetes insipidus) or the kidneys' response to antidiuretic hormone (nephrogenic diabetes insipidus), diabetes mellitus causes polyuria via osmotic diuresis, due to the high blood sugar leaking into the urine, taking excess water along with it.
References
References
- "Diabetes Insipidus. Diabetes symptoms and information".
- Wildin, Robert. (2006). "What is NDI?". The Diabetes Inspidus Foundation.
- "Diabetes Insipidus". National Institute of Diabetes and Digestive and Kidney Diseases.
- (April 1996). "Hypokalemia-induced downregulation of aquaporin-2 water channel expression in rat kidney medulla and cortex". Journal of Clinical Investigation.
- (October 1976). "A study in vitro of the concentrating defect associated with hypokalaemia and hypercalcaemia". Pflügers Archiv.
- (2018-09-24). "Lithium and nephrotoxicity: Unravelling the complex pathophysiological threads of the lightest metal". Wiley.
- (June 1985). "Pathogenesis of nephrogenic diabetes insipidus due to chronic administration of lithium in rats". Journal of Clinical Investigation.
- {{OMIM. 304800. Diabetes Insipidus, Nephrogenic, X-linked
- {{OMIM. 125800. Diabetes Insipidus, Nephrogenic, Autosomal
- (June 1999). "Treatment of nephrogenic diabetes insipidus with hydrochlorothiazide and amiloride". Archives of Disease in Childhood.
- (November 30, 2022). "Mechanism of action of diuretics".
This article was imported from Wikipedia and is available under the Creative Commons Attribution-ShareAlike 4.0 License. Content has been adapted to SurfDoc format. Original contributors can be found on the article history page.
Ask Mako anything about Nephrogenic diabetes insipidus — get instant answers, deeper analysis, and related topics.
Research with MakoFree with your Surf account
Create a free account to save articles, ask Mako questions, and organize your research.
Sign up freeThis content may have been generated or modified by AI. CloudSurf Software LLC is not responsible for the accuracy, completeness, or reliability of AI-generated content. Always verify important information from primary sources.
Report