Enalapril/hydrochlorothiazide Disease Interactions
There are 18 disease interactions with enalapril / hydrochlorothiazide.
- Angioedema
- Bone marrow suppression
- Hemodialysis
- Hyperkalemia
- Hypotension
- Anuria
- Electrolyte losses
- Liver disease
- Lupus erythematosus
- Renal function disorders
- Liver disease
- Renal dysfunction
- Asthma
- Diabetes
- Hyperlipidemia
- Hyperparathyroidism
- Hyperuricemia
- Thyroid function tests
ACE inhibitors (applies to enalapril/hydrochlorothiazide) angioedema
Major Potential Hazard, Moderate plausibility.
The use of these agents is contraindicated in patients with hereditary angioedema or a history of idiopathic angioedema. Patients with a history of angioedema unrelated to ACE inhibitors may be at increased risk of angioedema while receiving an ACE inhibitor. Patients should be advised to immediately report any signs or symptoms suggestive of angioedema (swelling of face, extremities, eyes, lips, or tongue, or difficulty swallowing or breathing) and to stop taking the medication until otherwise directed by their physician. Emergency therapy and/or measures to prevent airway obstruction are required for angioedema involving the tongue, glottis, or larynx. Treatment with ACE inhibitors should be discontinued permanently if angioedema develops in association with therapy.
ACE inhibitors (applies to enalapril/hydrochlorothiazide) bone marrow suppression
Major Potential Hazard, Moderate plausibility. Applicable conditions: Collagen Vascular Disease, Renal Dysfunction, Bone Marrow Depression/Low Blood Counts
ACE inhibitors may cause bone marrow suppression, rarely in uncomplicated individuals but more frequently in patients with renal impairment, especially if they also have a collagen-vascular disease such as systemic lupus erythematosus or scleroderma. Neutropenia, agranulocytosis, aplastic anemia, hemolytic anemia, eosinophilia and thrombocytopenia have been reported, mostly with captopril. Therapy with ACE inhibitors should be administered cautiously in patients with preexisting blood dyscrasias or complications that may increase the risk of bone marrow depression during ACE inhibitor therapy. Monitoring of blood counts, particularly white blood cells, should be considered.
ACE inhibitors (applies to enalapril/hydrochlorothiazide) hemodialysis
Major Potential Hazard, Moderate plausibility.
Anaphylactoid reactions have been reported in patients undergoing hemodialysis with high-flux polyacrylonitrile membranes and treated concomitantly with an ACE inhibitor. The frequency and mechanism of this interaction have not been established, and it is not known whether the interaction occurs with other membrane types. Therapy with ACE inhibitors should be administered cautiously in patients requiring hemodialysis.
ACE inhibitors (applies to enalapril/hydrochlorothiazide) hyperkalemia
Major Potential Hazard, Moderate plausibility. Applicable conditions: Renal Dysfunction, Diabetes Mellitus
In patients with hyperkalemia, especially those associated with impaired renal function or congestive heart failure, ACE inhibitors may further raise serum potassium levels. Therapy with ACE inhibitors should be administered cautiously in patients with or predisposed to hyperkalemia, and serum potassium levels should be carefully monitored. Risk factors for the development of hyperkalemia during ACE inhibitor therapy include renal insufficiency, diabetes mellitus, and the concomitant use of potassium-sparing diuretics, potassium supplements, and/or potassium-containing salt substitutes.
ACE inhibitors (applies to enalapril/hydrochlorothiazide) hypotension
Major Potential Hazard, Moderate plausibility. Applicable conditions: Diarrhea, Vomiting, hemodialysis, Dehydration, Hyponatremia, Ischemic Heart Disease, Cerebrovascular Insufficiency
ACE inhibitors can cause symptomatic hypotension, most often during the initiation of therapy and in patients who are volume- and/or sodium-depleted or treated for congestive heart failure (CHF). Therapy with ACE inhibitors should be administered cautiously in such patients and in those predisposed to hypovolemic or hyponatremic states (e.g., patients on diuretic therapy, especially if it was recently instituted; those on dietary salt restriction; those with severe or prolonged diarrhea or vomiting; and renal dialysis patients). Volume and/or sodium depletion should be corrected prior to initiating therapy with ACE inhibitors, and the patient should be hemodynamically stable. If concomitant diuretics and/or dietary sodium restriction are employed, reducing or temporarily withholding the dosing of diuretics and/or liberalizing dietary sodium intake for 2 to 3 days in advance can help minimize the risk of severe hypotension in patients who are able to tolerate such adjustments. ACE inhibitors should also be used cautiously in patients in whom excessive hypotension may have serious consequences, such as patients with coronary or cerebrovascular insufficiency. Patients at risk for excessive hypotension should initiate ACE inhibitor therapy under very close medical supervision, and followed closely for the first 2 weeks of treatment and whenever the dosage of ACE inhibitor or diuretic is increased.
Thiazides (applies to enalapril/hydrochlorothiazide) anuria
Major Potential Hazard, High plausibility.
The use of thiazide diuretics is contraindicated in patients with anuria.
Thiazides (applies to enalapril/hydrochlorothiazide) electrolyte losses
Major Potential Hazard, High plausibility. Applicable conditions: Hypokalemia, Diarrhea, Electrolyte Abnormalities, Hyperaldosteronism, Hyponatremia, Magnesium Imbalance, Malnourished, Vomiting, Ventricular Arrhythmia, Dehydration
The use of thiazide diuretics is commonly associated with loss of electrolytes, most significantly potassium but also sodium, chloride, bicarbonate, and magnesium. The loss of other electrolytes such as phosphate, bromide and iodide is usually slight. Potassium and magnesium depletion may lead to cardiac arrhythmias and cardiac arrest. Other electrolyte-related complications include metabolic alkalosis and hyponatremia, which are rarely life-threatening. Therapy with thiazide diuretics should be administered cautiously in patients with or predisposed to fluid and electrolyte depletion, including patients with primary or secondary aldosteronism (may have low potassium levels); those with severe or prolonged diarrhea or vomiting; and those with poor nutritional status. Fluid and electrolyte abnormalities should be corrected prior to initiating therapy, and blood pressure as well as serum electrolyte concentrations monitored periodically and maintained at normal ranges during therapy. Patients should be advised to immediately report signs and symptoms of fluid or electrolyte imbalance, including dry mouth, thirst, weakness, lethargy, drowsiness, restlessness, muscle pains or cramps, muscular fatigue, hypotension, oliguria, tachycardia, arrhythmia, or gastrointestinal disturbances such as nausea and vomiting. Digitalized patients and patients with a history of ventricular arrhythmias should be monitored carefully, since development of hypokalemia may be particularly dangerous in these patients. The risk of hypokalemia may be minimized by slow diuresis, a lower thiazide dosage, potassium supplementation, or combined use with a potassium-sparing diuretic.
Thiazides (applies to enalapril/hydrochlorothiazide) liver disease
Major Potential Hazard, High plausibility.
Patients with severe liver disease or cirrhosis are very susceptible to thiazide-induced hypokalemic hypochloremic alkalosis. Blood ammonia concentrations may be further increased in patients with previously elevated concentrations. Hepatic encephalopathy and death have occurred secondary to the electrolyte alterations accompanying diuretic use. Therapy with thiazide diuretics should be administered cautiously in patients with impaired hepatic function or progressive liver disease, and discontinued promptly if signs of impending hepatic coma appear (e.g., tremors, confusion, and increased jaundice).
Thiazides (applies to enalapril/hydrochlorothiazide) lupus erythematosus
Major Potential Hazard, Moderate plausibility.
The use of thiazide diuretics has been reported to possibly exacerbate or activate systemic lupus erythematosus. Reported cases have generally been associated with chlorothiazide and hydrochlorothiazide. Therapy with thiazide diuretics should be administered cautiously in patients with a history or risk of SLE.
Thiazides (applies to enalapril/hydrochlorothiazide) renal function disorders
Major Potential Hazard, High plausibility. Applicable conditions: Renal Dysfunction
Thiazide diuretics may be ineffective when the glomerular filtration rate is low (GFR < 25 mL/min) because they are not expected to be filtered into the renal tubule, their site of action. In addition, thiazide diuretics decrease the GFR and may precipitate azotemia in renal disease. Cumulative effects may also develop because most of these drugs are excreted unchanged in the urine by glomerular filtration and active tubular secretion. Therapy with thiazide diuretics should be administered cautiously at reduced dosages in patients with renal impairment. If renal function becomes progressively worse, as indicated by rising BUN or serum creatinine levels, an interruption or discontinuation of thiazide therapy should be considered.
ACE inhibitors (applies to enalapril/hydrochlorothiazide) liver disease
Moderate Potential Hazard, Moderate plausibility.
Rarely, elevations of liver enzymes and/or serum bilirubin have occurred with the use of ACE inhibitors. Patients receiving ACE inhibitors who develop jaundice or marked elevations of hepatic enzymes should discontinue the ACE inhibitor and receive appropriate medical follow-up.
ACE inhibitors (applies to enalapril/hydrochlorothiazide) renal dysfunction
Moderate Potential Hazard, Moderate plausibility.
With the exception of fosinopril, ACE inhibitors (and/or their active metabolites in some cases) are primarily eliminated by the kidney and may accumulate in patients with renal impairment. ACE inhibitors can also worsen renal function in some patients by blocking the effect of angiotensin II-mediated efferent arteriolar vasoconstriction, thereby decreasing glomerular filtration. Therapy with ACE inhibitors should be administered cautiously in patients with preexisting renal dysfunction, particularly those with renovascular disease. Patients with moderate to severe renal impairment usually require lower or less frequent doses and smaller increments in dose. In addition, a dosage reduction or discontinuation of any concomitantly administered diuretics may be helpful. Fosinopril probably does not require dosage adjustments unless hepatic function is also significantly impaired.
In patients with bilateral renal artery stenosis or renal artery stenosis in a solitary kidney, ACE inhibitors may reduce renal perfusion to a critically low level. Renal function should be monitored closely for the first few weeks of therapy.
Thiazides (applies to enalapril/hydrochlorothiazide) asthma
Moderate Potential Hazard, Moderate plausibility.
Thiazide diuretics should be used with caution in patients with history of bronchial asthma as sensitivity reactions may occur.
Thiazides (applies to enalapril/hydrochlorothiazide) diabetes
Moderate Potential Hazard, Moderate plausibility. Applicable conditions: Diabetes Mellitus, Abnormal Glucose Tolerance
Thiazide diuretics may cause hyperglycemia and glycosuria in patients with diabetes. They may also precipitate diabetes in prediabetic patients. These effects are usually reversible following discontinuation of the drugs. Therapy with thiazide diuretics should be administered cautiously in patients with diabetes mellitus, glucose intolerance, or a predisposition to hyperglycemia. Patients with diabetes mellitus should be monitored more closely during thiazide therapy, and their antidiabetic regimen adjusted accordingly.
Thiazides (applies to enalapril/hydrochlorothiazide) hyperlipidemia
Moderate Potential Hazard, Moderate plausibility.
Thiazide diuretics may increase serum triglyceride and cholesterol levels, primarily LDL and VLDL. Whether these effects are dose-related and sustained during chronic therapy are unknown. Patients with preexisting hyperlipidemia may require closer monitoring during thiazide therapy, and adjustments made accordingly in their lipid-lowering regimen
Thiazides (applies to enalapril/hydrochlorothiazide) hyperparathyroidism
Moderate Potential Hazard, Moderate plausibility.
Urinary calcium excretion is decreased by thiazide diuretics during chronic administration. Pathologic changes in the parathyroid gland with hypercalcemia and hypophosphatemia have been reported during prolonged therapy. However, the common complications of hyperparathyroidism such as renal lithiasis, bone resorption, and peptic ulceration have not been seen. Clinicians should be cognizant of these effects when prescribing or administering thiazide therapy to patients with hyperparathyroidism. These drugs should be discontinued before carrying out tests for parathyroid function.
Thiazides (applies to enalapril/hydrochlorothiazide) hyperuricemia
Moderate Potential Hazard, High plausibility. Applicable conditions: Gout
Thiazide diuretics decrease the rate of uric acid excretion. Hyperuricemia occurs frequently but is usually asymptomatic and rarely leads to clinical gout except in patients with a history of gout or chronic renal failure. Therapy with thiazide diuretics should be administered cautiously in such patients.
Thiazides (applies to enalapril/hydrochlorothiazide) thyroid function tests
Moderate Potential Hazard, Moderate plausibility. Applicable conditions: Thyroid Disease
Thiazide diuretics may decrease serum PBI (protein-bound iodine) levels without associated thyroid disturbance. Clinicians should be cognizant of this effect when prescribing or administering thiazide therapy to patients with thyroid disorders.
Enalapril/hydrochlorothiazide drug interactions
There are 610 drug interactions with enalapril / hydrochlorothiazide.
Enalapril/hydrochlorothiazide alcohol/food interactions
There are 3 alcohol/food interactions with enalapril / hydrochlorothiazide.
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Drug Interaction Classification
Highly clinically significant. Avoid combinations; the risk of the interaction outweighs the benefit. | |
Moderately clinically significant. Usually avoid combinations; use it only under special circumstances. | |
Minimally clinically significant. Minimize risk; assess risk and consider an alternative drug, take steps to circumvent the interaction risk and/or institute a monitoring plan. | |
No interaction information available. |
Further information
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