
High blood pressure is not always “essential” hypertension. In primary aldosteronism (PA), one or both adrenal glands produce aldosterone partly independently of the body’s normal renin control system. The result can be sodium retention, suppressed renin, persistent or resistant hypertension, and—sometimes, but not always—low potassium.
Direct answer: Primary aldosteronism screening is built around the relationship between aldosterone and renin, not potassium alone. A pattern of suppressed renin with aldosterone that is inappropriately active for that renin level—usually assessed with an aldosterone-to-renin ratio (ARR)—raises concern. Potassium, kidney function, medications, sodium intake, posture, collection time, assay method, units, and blood-pressure history all affect interpretation.
Medical note: Laboratory testing can identify a biochemical pattern that warrants evaluation, but it does not by itself determine whether PA is unilateral or bilateral, whether an adrenal nodule is the source, or whether surgery is appropriate. Medication changes, suppression testing, adrenal imaging, adrenal venous sampling, and treatment decisions should be clinician directed.
This condition-specific guide complements the Hypertension Lab Tests: What Blood and Urine Testing Can Reveal After a High Reading hub.
For broader context, see Heart Health Blood Tests, Kidney Function Tests, Endocrine Disorders: Causes, Symptoms, Lab Tests, and Management, and the Blood Biomarker Ratios Guide.
For testing fundamentals and result interpretation, use The Complete Guide to Lab Tests and Blood Work, How to Read and Understand Your Lab Results, and Direct-Access Lab Testing: How It Works and What to Expect.
| Question | What matters most | Why it changes the next step |
|---|---|---|
| Is aldosterone escaping normal renin control? | Suppressed renin + aldosterone inappropriate for that renin level + elevated ARR | This is the central screening pattern for PA. |
| Does potassium exclude PA? | No. Potassium may be normal. | Waiting for hypokalemia can miss cases; low potassium can also lower aldosterone and distort screening. |
| Can one ARR diagnose PA? | Not always. Assay, units, medicines, kidney function, sodium intake, posture, timing, and potassium matter. | Borderline or discordant results may require repeat testing or clinician-directed confirmation. |
| Does CT show which gland is responsible? | CT shows anatomy, not necessarily hormone production. | Adrenal venous sampling is often used to establish functional laterality before surgery. |
| What is monitored after treatment? | Potassium, creatinine/eGFR, renin, and blood pressure | These markers help assess physiologic response and treatment safety. |
Aldosterone is a mineralocorticoid hormone made by the adrenal cortex. It helps regulate sodium, potassium, circulating volume, and blood pressure. Under ordinary physiology, the kidneys participate in a renin–angiotensin–aldosterone system that increases aldosterone when the body needs to conserve sodium and maintain circulation.
In primary aldosteronism, aldosterone production becomes partly independent of that normal renin signal. Renin becomes suppressed while aldosterone remains inappropriately active. The kidney retains more sodium and may lose more potassium and hydrogen ions, contributing to hypertension, hypokalemia, or metabolic alkalosis in some patients.
The word primary is important. In secondary hyperaldosteronism, renin is usually activated first—for example, when the kidney senses reduced effective circulation—and aldosterone rises in response. PA is instead characterized by aldosterone production that is inappropriate for a suppressed-renin state.

PA is clinically important because it is a potentially targetable cause of hypertension. Compared with people who have otherwise similar primary hypertension, untreated PA is associated with greater cardiovascular and kidney risk. Once the biochemical disorder is recognized, treatment can be directed at the underlying mechanism rather than only at the blood-pressure reading.2

The broader cardiovascular and kidney picture still matters. The hypertension lab testing hub explains how urine albumin-to-creatinine ratio, creatinine/eGFR, glucose testing, lipid testing, and other markers help define organ effects and cardiometabolic risk without duplicating the disease-specific PA workup here.
The 2025 Endocrine Society guideline represents a major shift: it conditionally suggests screening all individuals with hypertension for PA when the health system has the resources, expertise, and follow-up capacity to do so.1 This is a conditional suggestion rather than an instruction that every person must be screened in every setting.
Even where broad screening is not feasible, the case for testing is especially compelling when the clinical pattern includes:
These features increase the pretest probability, but their absence does not rule PA out.

An isolated aldosterone value is difficult to interpret. A result can fall inside a laboratory reference interval yet still be inappropriate when renin is nearly completely suppressed. Conversely, aldosterone may be elevated in circumstances where renin is also appropriately elevated.
The screening question is therefore relational:
Is aldosterone inappropriately active despite suppressed renin?
The most direct Ulta option is the Aldosterone and Plasma Renin Activity Ratio Test. Individual Aldosterone and Plasma Renin Activity tests may also be used when clinically appropriate, but interpretation should preserve the relationship between the two measurements.
Do not use the ratio alone. A very high ARR can result from renin approaching zero even when aldosterone is not convincingly elevated. Clinicians review the ARR together with the absolute aldosterone and renin values, the assay, the units, potassium, medications, kidney function, and the clinical probability of PA.

The 2025 guideline provides practical guidance for commonly used assays. In its framework, a positive screen generally requires suppressed renin, aldosterone that is sufficiently high for the assay and physiologic context, and an elevated aldosterone-to-renin relationship.1
Examples include:
These are guidance thresholds, not universal biological dividing lines. Laboratories may use different assays, units, reference information, and validated cutoffs. Interpretation should use the method and reference information on the actual laboratory report.1
Plasma renin activity and direct renin concentration are different measurements and are not numerically interchangeable. Aldosterone measured by immunoassay and aldosterone measured by liquid chromatography–tandem mass spectrometry can also produce systematically different values. In the 2025 guideline framework, the ARR threshold associated with LC-MS/MS aldosterone is approximately 25% lower than the immunoassay threshold.2
Practical rule: Never copy an ARR cutoff from an online chart without first knowing how aldosterone and renin were measured and which units appear on the report.
The older stereotype of PA was “high blood pressure plus low potassium.” That misses many patients. Most people with PA do not need to be hypokalemic for the condition to be present.
Potassium still matters for two reasons:
When suspicion remains high and potassium is low, correction into the laboratory reference range and repeat aldosterone-renin testing may be appropriate under clinician guidance.1
Direct answer: Normal potassium does not exclude PA. Low potassium can paradoxically make aldosterone look falsely low, so potassium is both a clinical clue and an interpretation variable.

The highest-value starting set is intentionally focused. Broader diabetes, lipid, thyroid, anemia, or autoimmune testing belongs in a general hypertension or symptom-directed evaluation rather than being presented as if it confirms PA.
| Test and quick facts | What it shows and how it is used | Preparation, influences, and limitations |
|---|---|---|
| CORE Aldosterone and Plasma Renin Activity Ratio Test Blood | Measures aldosterone and plasma renin activity and calculates the ARR. Helps identify a suppressed-renin/inappropriate-aldosterone screening pattern. | Strongly affected by medication classes, potassium, sodium intake, posture, collection time, kidney function, and assay method. A positive screen does not establish unilateral disease. |
| CORE Aldosterone Test Blood | Measures circulating aldosterone. The value is most meaningful when interpreted with renin rather than alone. | Assay method and collection conditions matter. Hypokalemia can lower aldosterone and cause a misleading result. |
| CORE Plasma Renin Activity Test Blood | Shows renin activity. Marked renin suppression is central to the PA pattern and can later become a treatment-response marker. | Diuretics, MRAs, ACE inhibitors, ARBs, beta blockers, central alpha-2 agonists, sodium intake, kidney disease, and posture can shift renin substantially. |
| CORE Potassium Test Blood | Identifies hypokalemia or hyperkalemia, supports aldosterone interpretation, and helps assess treatment safety. | Normal potassium does not exclude PA. Low potassium may suppress aldosterone. Supplements and medication changes should be clinician directed. |
| SUPPORTING Comprehensive Metabolic Panel or Basic Metabolic Panel Blood | Adds sodium, potassium, carbon dioxide/bicarbonate, creatinine, glucose, and other kidney and electrolyte context. | Does not diagnose PA. Serum sodium is not a measurement of dietary sodium intake. |
| SUPPORTING Creatinine with eGFR Blood | Estimates kidney filtration. Kidney function affects screening interpretation and becomes central to treatment safety. | CKD can alter renin and aldosterone physiology. Creatinine is also influenced by muscle mass, acute illness, hydration, and some medicines. |
| SUPPORTING Sodium Test Blood | Adds electrolyte context and may be included in a metabolic panel. | Serum sodium does not show how much salt a person eats. Intentional sodium restriction before PA screening can alter renin-aldosterone physiology. |
| SUPPORTING Magnesium Test Blood | May be useful when cramps, arrhythmia, diuretic use, or multiple electrolyte abnormalities are present. | Not a PA screening test and should not be interpreted as evidence for or against PA. |
| SUPPORTING CARDIORENAL Urine Albumin-to-Creatinine Ratio Urine | Assesses albumin leakage and kidney/cardiovascular risk in a person with hypertension. | Does not diagnose PA. Temporary illness, exercise, infection, urinary bleeding, or menstrual bleeding can raise UACR. |
Collection conditions matter because the renin-aldosterone system responds quickly to volume, sodium, potassium, posture, and medication effects. Current guidance favors morning screening with the person seated, potassium measured at the same time, and no deliberate dietary sodium restriction during the preceding few days.1
Modern PA evaluation recognizes that medication withdrawal is not always safe or practical. The Endocrine Society provides no-withdrawal, minimal-withdrawal, and fuller-withdrawal strategies that clinicians can choose based on safety and the probability of disease.1
| Medication pattern | Possible effect on screening | What the patient should do |
|---|---|---|
| Mineralocorticoid receptor antagonists, amiloride, triamterene, and other diuretics | Can raise renin and make a PA pattern less obvious, creating a possible false-negative-looking result. | Do not stop independently. Record the drug and dose and review the result with the clinician who manages blood pressure. |
| ACE inhibitors and ARBs | Can raise renin and/or lower aldosterone, potentially reducing the ARR. | Do not change therapy solely for a direct-access test without clinician guidance. |
| Beta blockers and centrally acting alpha-2 agonists | Can suppress renin and make the ARR appear higher, creating a possible false-positive-looking pattern. | Interpret aldosterone, renin, and ARR in the context of medication exposure. |
The practical takeaway is not “stop the interfering drug.” It is:
Know the medication pattern before interpreting the laboratory pattern.

Suppressed renin together with aldosterone that is inappropriately high and an elevated ARR supports renin-independent aldosterone secretion. The strength of that conclusion depends on the assay, units, potassium, medications, kidney function, and clinical probability.
A negative screen is more reassuring when potassium is normal, preparation was appropriate, the medication pattern does not strongly favor a false negative, and pretest probability is low. It is less reassuring when resistant hypertension, hypokalemia, or a strongly interfering medication is present.
Examples include suppressed renin with aldosterone near the laboratory decision range, an elevated ARR driven almost entirely by extremely low renin, or a negative ratio while taking a medicine known to raise renin. These situations often call for clinical review rather than a simple yes/no interpretation from one calculation.
A single negative ARR does not always end the evaluation. Repeat aldosterone-renin testing may be reasonable when:
A useful sequence is:
Identify the possible confounder → correct or account for it safely → repeat under better-defined conditions → compare the full aldosterone-renin pattern.

Screening is only the first layer. The next question is whether the evidence is strong enough to proceed directly to subtype and treatment planning or whether a clinician-directed aldosterone-suppression test would clarify the diagnosis.
Examples include saline suppression, oral sodium suppression, and the captopril challenge. These procedures have defined protocols and safety restrictions. Salt-loading or saline-suppression experiments should not be attempted independently, particularly in people with uncontrolled hypertension, heart failure, substantial kidney disease, or risk of fluid overload.2
Under the 2025 guideline, suppression testing is not automatically required after every positive ARR. It is most useful when the probability of lateralizing PA remains intermediate and the patient is considering surgery. It may be bypassed when the biochemical evidence is very strong or when the person will pursue PA-specific medical treatment rather than surgery.1
One example of overt biochemical evidence described by the guideline is resistant hypertension or hypertension with hypokalemia together with:
These values are not stand-alone self-diagnostic cutoffs. They are part of a clinician-directed decision about whether suppression testing adds useful information.1
After PA is established, treatment depends heavily on whether aldosterone excess comes predominantly from one adrenal gland or from both.
Adrenal CT identifies anatomy, but a visible nodule is not automatically the aldosterone-producing source. Nonfunctioning adrenal nodules become more common with age. For patients considering surgery, adrenal venous sampling is generally used with CT to establish functional laterality.1
A limited exception may apply to a younger patient—roughly under age 35—with marked PA, hypokalemia, and a clear unilateral adrenal adenoma larger than 1 cm, after specialist review. This is not a rule for self-selection; it is an expert-level decision.1

Some adrenal adenomas can participate in more than one hormonal abnormality. The 2025 guideline suggests a 1-mg overnight dexamethasone suppression test when PA coexists with an adrenal adenoma.1
In the guideline protocol, dexamethasone is taken late at night and serum cortisol is measured the next morning. A post-dexamethasone cortisol above 1.8 µg/dL suggests autonomous cortisol secretion and warrants further endocrine evaluation.1
A stand-alone Cortisol Total Test is not equivalent to a clinician-directed dexamethasone suppression protocol. Medication timing, cortisol timing, and interpretation are part of the protocol.
Follow-up commonly centers on potassium, creatinine/eGFR, blood pressure, medication requirements, and—when clinically appropriate—aldosterone and renin. The goal is correction of the renin-independent aldosterone state and its physiological consequences, not simply removal of a nodule.
For bilateral PA, uncertain laterality, or nonsurgical care, a mineralocorticoid receptor antagonist such as spironolactone or a more selective alternative may be used under medical supervision. Monitoring includes potassium, kidney function, renin, and blood pressure.1
Untreated PA usually suppresses renin. With adequate mineralocorticoid receptor blockade, renin often rises. In patients whose hypertension remains uncontrolled and whose renin remains suppressed, current guidance suggests clinician-directed intensification of PA-specific therapy to produce a rise in renin when potassium, kidney function, and blood pressure allow. The guideline does not specify one universal numerical renin target.1
A useful treatment-response pattern is:
Blood pressure improving + potassium safe + renin no longer fully suppressed + kidney function stable.

Direct-access testing is not an emergency pathway. Prompt or urgent medical evaluation is appropriate for:
A blood-pressure reading above 180/120 mm Hg together with new chest pain, shortness of breath, weakness, numbness, vision change, difficulty speaking, or another concerning symptom requires emergency assessment.4
Ulta Lab Tests offers direct access, where available, to focused testing that can make the PA biochemical pattern visible. The Aldosterone and Plasma Renin Activity Ratio Test is the most directly aligned single order.
Individual Aldosterone, Plasma Renin Activity, Potassium, Comprehensive Metabolic Panel, Creatinine with eGFR, and Urine Albumin-to-Creatinine Ratio tests can add specific context when clinically appropriate.
Direct access does not turn screening into a complete diagnosis. A qualified healthcare professional—often a primary-care clinician, hypertension specialist, endocrinologist, nephrologist, or adrenal specialist—should interpret a positive, negative, or discordant pattern in the context of medications, kidney function, collection conditions, and treatment goals.
Explore high blood pressure testing options at Ulta Lab Tests or review hormone testing options.
The appropriate test selection depends on the individual’s blood-pressure pattern, medications, potassium level, kidney function, symptoms, previous results, and healthcare-provider guidance.
Aldosterone and renin are interpreted together, usually through the aldosterone-to-renin ratio. Potassium is measured at the same time because low potassium can make aldosterone appear falsely low.
CMP or BMP, creatinine with eGFR, sodium, potassium, and magnesium provide kidney, electrolyte, and treatment-safety context. These tests do not diagnose primary aldosteronism by themselves.
UACR evaluates albumin leakage and cardiorenal risk in people with hypertension. It provides useful health context but does not diagnose primary aldosteronism.
When primary aldosteronism coexists with an adrenal adenoma, a clinician may recommend a formal 1-mg overnight dexamethasone suppression test. A stand-alone cortisol measurement is not equivalent to that protocol.
Yes. Normal potassium does not rule PA out. Potassium is important for interpretation and safety, but the core screening relationship is aldosterone relative to renin.
Screening generally uses aldosterone and renin together with an ARR. The Aldosterone and Plasma Renin Activity Ratio Test is designed around that relationship. The result still requires interpretation of the absolute hormone values, potassium, medications, kidney function, and collection conditions.
No. Aldosterone can rise for reasons in which renin is also appropriately active. PA is specifically a pattern of aldosterone production that is inappropriate for a suppressed-renin state.
No. The ratio can be distorted by very low renin, medication effects, assay methodology, kidney disease, potassium, sodium intake, posture, and timing. A positive-looking screen may need repeat or confirmatory evaluation depending on the clinical context.
Not on your own. Some medicines can cause false-positive- or false-negative-looking patterns, but stopping them can be unsafe. Modern guidelines allow different medication strategies based on safety and the likelihood of PA.
Repeat testing can help when low potassium, interfering medication, nonstandard collection conditions, borderline results, or high clinical probability makes the first screen less reliable.
Usually not. CT shows adrenal anatomy. In many surgical candidates, AVS is used to determine whether aldosterone production is functionally lateralized to one gland.
Monitoring commonly includes blood pressure, potassium, kidney function, and renin. Aldosterone may also be reassessed when clinically appropriate.
Primary aldosteronism is a renin-independent adrenal aldosterone disorder that can drive hypertension even when potassium is normal. Screening is based on aldosterone and renin together, usually expressed as an aldosterone-to-renin ratio. Interpretation requires the absolute aldosterone and renin results, potassium, kidney function, medication exposure, sodium intake, posture, timing, units, and assay method. Low potassium can falsely lower aldosterone.
A positive ARR does not establish which adrenal gland is responsible; subtype testing and treatment planning are clinician directed. During treatment, blood pressure, potassium, kidney function, and renin are important monitoring markers.
Primary aldosteronism is a hormone-driven cause of high blood pressure that is best recognized by reading aldosterone and renin together.
The highest-value screening question is whether renin is suppressed while aldosterone remains inappropriately active. Potassium and kidney function provide essential context, while medication effects and assay methods can change the apparent ARR.
A practical pathway is:
Hypertension → aldosterone + renin + ARR + potassium/kidney function → identify the suppressed-renin pattern → repeat when confounded → decide whether clinician-directed confirmation is needed → determine unilateral vs. bilateral disease when treatment planning requires it → monitor blood pressure, potassium, kidney function, and renin after treatment.
For the broader workup around a high reading—including UACR, glucose, lipids, thyroid, kidney testing, and medication safety—continue with the Hypertension Lab Tests hub.

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