Addisons Disease

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Jon Haws
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Included In This Lesson

Study Tools For Addisons Disease

Addisons Assessment (Mnemonic)
Adrenal Gland Hormones (Mnemonic)
Addisons Pathochart (Cheatsheet)
Endocrine System Study Chart (Cheatsheet)
Addison’s vs. Cushing’s (Cheatsheet)
Addison’s Disease Tan and Weight Loss (Image)
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Outline

Pathophysiology:

Addison’s occurs because there is an elevated level of serum ACTH and inadequate amounts of corticosteroids.

Overview

  1. Hyposecretion of adrenal cortex hormones
  2. Decreased levels of glucocorticoids and mineralocorticoids leads to
    1. Electrolyte imbalances
    2. Decreased vascular volume
  3. Fatal if untreated

Nursing Points

General

  1. Adrenal Cortex
    1. Glucocorticoids
      1. Cortisol
      2. Glucose & Fat Metabolism
      3. Anti-inflammatory
    2. Mineralocorticoids
      1. Aldosterone
      2. Regulate fluid and electrolytes
    3. Sex hormones (Androgens)
      1. Testosterone, Estrogen
      2. Control physical features
      3. Control hair distribution
  2. Adrenal Medulla
    1. Epinephrine (Adrenaline)
    2. Norepinephrine (Noradrenaline)
    3. Fight or Flight Response

Assessment

  1. Cardiovascular
    1. Hypotension
    2. Tachycardia
  2. Metabolic
    1. Weight loss
  3. Integumentary
    1. Hyperpigmentation (bronzing)
  4. Electrolytes
    1. Hyperkalemia
    2. Hypercalcemia
    3. Hyponatremia
    4. Hypoglycemia
  5. Addisonian Crisis
    1. Acute exacerbation
    2. Severe electrolyte disturbance

Therapeutic Management of Addisons Disease

  1. Replace adrenal hormones
    1. Corticosteroids
      1. Hydrocortisone
      2. Prednisone
  2. Addisonian Crisis
    1. Monitor electrolytes and cardiovascular status closely
    2. Administer adrenal hormones as ordered
    3. Administer electrolyte replacement as needed

Nursing Concepts

  1. Fluid & Electrolytes
    1. Monitor Vital Signs
    2. Monitor electrolytes (potassium, sodium, calcium)
    3. Replace electrolytes as needed
  2. Hormone Regulation
    1. Administer replacement adrenal hormones as needed
    2. Lifelong medication therapy needed
  3. Glucose Metabolism
    1. Monitor glucose levels
    2. Treat low blood sugar

Patient Education

  1. Increase salt and water intake if exercising
  2. S/s of Addisonian Crisis
  3. May require increased medication dosing if ill, notify provider

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Transcript

In this lesson we’re going to talk about Addison’s Disease. You’ll see that this is the opposite of Cushing’s Syndrome which we’ll talk about in the next lesson. Addison disease and cushing syndrome involve the adrenal glands.

Let’s quickly review the A&P of the adrenal glands. If you can understand what they do, it’s easier to understand what happens when something goes wrong. The adrenal glands sit on top of the kidneys. They have two parts – the outer portion is called the adrenal cortex, the inner portion is the adrenal medulla.

The adrenal cortex is responsible for secreting hormones such as glucocorticoids, mineralocorticoids, and androgens.

 

Function of the Adrenal Glands

  • Glucocorticoids help manage glucose and fat metabolism and have anti-inflammatory properties – they suppress immune response.
  • Mineralocorticoids like aldosterone help with fluid & electrolyte balance.
  • And androgens are sex hormones like testosterone and estrogen.

The adrenal medulla secretes epinephrine or adrenaline and norepinephrine, or noradrenaline. These hormones are responsible for the fight or flight response in the sympathetic nervous system.

In Addison’s Disease, we see a hyposecretion of hormones, specifically the ones from the adrenal cortex, the outside of the adrenal glands. So that’s decreased glucocorticoids like cortisol, decreased mineralocorticoids like aldosterone, and decreased androgen hormones. Start thinking about what this will look like in your patient.

  • Cortisol is responsible for storing fat and it increases glucose levels, so what happens if we don’t have that?
  • Aldosterone is responsible for retaining sodium and water, what happens if we don’t have that?

Those effects are going to be seen throughout the body. In the cardiovascular system, we’re going to see hypotension – why? Because there’s not enough aldosterone holding onto fluids – so our intravascular volume goes down. Remember from the hemodynamics lesson that when the blood pressure goes down, the heart rate increases to try to compensate, right? So we see tachycardia as well. Remember that cortisol is responsible for storing fats, so without enough cortisol, we see weight loss.

Patients with Addison’s disease also have this hyperpigmentation or bronzing of the skin. We may even say they have a persistent tan. Sometimes these initial symptoms are ignored – they’ve got tan, they’re losing weight – they won’t recognize that as a bad thing – but then they’ll start to get tired and fatigued from the low blood pressure and that’s when they’ll start to seek help.

Then, since we know that our mineralocorticoids are affected, we’re going to see electrolyte abnormalities. Remember that aldosterone is responsible for retaining sodium and water….so if we don’t have enough, we see sodium levels drop. And any time the kidneys are excreting sodium, they are retaining potassium, so we’re gonna start to see hyperkalemia. Both of these conditions are dangerous for patients because of their effects on the cardiovascular and neurological systems. We’ll also see hypercalcemia – because normally glucocorticoids help bones absorb calcium – and hypoglycemia because the glucocorticoids aren’t present to increase glucose levels. These patients could get quite hypoglycemic, so we need to monitor their sugars closely and treat low blood sugars.

Patients with Addison’s Disease can also have what’s called Addisonian Crisis. This is essentially an acute exacerbation of their disease. We see extreme symptoms, severe hypoglycemia, severe electrolyte abnormalities, and ultimately we can see cardiovascular collapse because of the lack of those hormones. This is a medical emergency, they need to be on a cardiac monitor and likely in an ICU until their condition is under control.

Addison’s Disease Treatment

Now….what kinds of things would we do for them? Well – we know this is a lack of secretion of hormones, right?

So the #1 treatment is to replace those hormones!

Primarily we will give these patients corticosteroids like Prednisone. They may also get mineralocorticoids like Fludrocortisone to help replace the functions of aldosterone. We will also replace their electrolytes as needed, usually this looks like encouraging them to increase their salt and water intake, especially before exercise. These patients will need to be on these medications for the rest of their lives. It can be a big adjustment, but they’ll feel so much better afterwards. This image is the same lady from the previous slide, except after treatment. You can see her cheeks have filled out, she no longer has the hyperpigmentation of her skin, and she just overall looks healthier. She will stay on these medications for the rest of her life.

When we have these patients in the hospital, especially those in Addisonian crisis, we want to monitor their vital signs and EKG closely, monitor their electrolytes, and monitor their blood sugar. We need to make sure we have a plan for treating their blood sugar levels. We’ll talk more about this in the Diabetes lesson, but the general rule when treating a low blood sugar is the 15-15 rule. Give 15g of sugar (Usually juice works great) and re-check in 15 minutes. If they have a decreased LOC and can’t take anything by mouth, we’ll usually give ½ amp or an amp of D50 IV or we could even give glucagon IM to get their sugars up.

Our priority concepts for a patient with Addison’s Disease are going to be Fluid & Electrolytes, Hormone Regulation, and Glucose Metabolism. Make sure you check out the care plan attached to this lesson to see more detailed nursing interventions and rationales.

So let’s do a quick recap. Addison’s disease is hyposecretion of hormones from the adrenal cortex – so decreased glucocorticoids, decreased mineralocorticoids, and decreased androgens. The androgen effects don’t play as much of a role in Addison’s as they do in Cushing’s as you’ll see. We see alterations in their fluid and electrolytes. A decreased vascular volume causes hypotension, they are excreting sodium and retaining potassium, and will have a high calcium and low blood sugar levels. Left untreated, patients can experience cardiac arrhythmias and lead into an acute exacerbation called Addisonian crisis. That leads to severe electrolyte abnormalities and potentially cardiovascular collapse and is an emergent situation. So make sure you advocate to get your patient to a higher level of care if needed.

So those are the basics of Addison’s Disease. Make sure you check out all the resources attached to this lesson to learn more. Now, go out and be your best selves today. And, as always, happy nursing!

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Final Exam

Concepts Covered:

  • Terminology
  • Urinary System
  • Respiratory Disorders
  • Acute & Chronic Renal Disorders
  • Disorders of the Adrenal Gland
  • Oncology Disorders
  • Integumentary Disorders
  • Preoperative Nursing
  • Musculoskeletal Trauma
  • Integumentary Disorders
  • Respiratory Emergencies
  • Disorders of the Posterior Pituitary Gland
  • Hematologic Disorders
  • Renal Disorders
  • Labor Complications
  • Immunological Disorders
  • Upper GI Disorders
  • Neurological Emergencies
  • Disorders of Pancreas
  • Musculoskeletal Disorders
  • Cardiac Disorders
  • Disorders of the Thyroid & Parathyroid Glands
  • Integumentary Important Points
  • Pregnancy Risks
  • Urinary Disorders
  • Vascular Disorders
  • Central Nervous System Disorders – Brain
  • Nervous System
  • Lower GI Disorders
  • Intraoperative Nursing
  • Eating Disorders
  • Circulatory System
  • Postoperative Nursing
  • Liver & Gallbladder Disorders
  • Emergency Care of the Cardiac Patient
  • Female Reproductive Disorders
  • Shock
  • Respiratory System
  • Substance Abuse Disorders
  • Fetal Development
  • Proteins
  • Noninfectious Respiratory Disorder
  • Newborn Care
  • Statistics
  • Emergency Care of the Neurological Patient
  • Basics of Sociology
  • Bipolar Disorders
  • Infectious Respiratory Disorder

Study Plan Lessons

Diagnostic Testing Course Introduction
Fluid & Electrolytes Course Introduction
X-Ray (Xray)
X-Ray (Xray)
X-Ray (Xray)
Nursing Care and Pathophysiology of Acute Kidney (Renal) Injury (AKI)
Addisons Disease
Computed Tomography (CT)
Computed Tomography (CT)
Computed Tomography (CT)
Fluid Pressures
Informed Consent
Nursing Care and Pathophysiology for Cushings Syndrome
Fluid Shifts (Ascites) (Pleural Effusion)
Magnetic Resonance Imaging (MRI)
Magnetic Resonance Imaging (MRI)
Magnetic Resonance Imaging (MRI)
Preoperative (Preop)Assessment
Pressure Ulcers/Pressure injuries (Braden scale)
CT & MR Angiography
CT & MR Angiography
Nursing Care and Pathophysiology for Diabetes Insipidus (DI)
Nursing Care and Pathophysiology for Disseminated Intravascular Coagulation (DIC)
Nursing Care and Pathophysiology of Glomerulonephritis
Isotonic Solutions (IV solutions)
Nursing Care and Pathophysiology of Osteoarthritis (OA)
Nursing Care and Pathophysiology for Pancreatitis
Preoperative (Preop) Education
Cerebral Angiography
Cerebral Angiography
Cerebral Angiography
Hypotonic Solutions (IV solutions)
Nursing Care and Pathophysiology of Osteoporosis
Nursing Care and Pathophysiology for Peptic Ulcer Disease (PUD)
Preoperative (Preop) Nursing Priorities
Thrombocytopenia
Blood Transfusions (Administration)
Cardiovascular Angiography
Cardiovascular Angiography
Cardiovascular Angiography
Fractures
Nursing Care and Pathophysiology for Hyperthyroidism
Hypertonic Solutions (IV solutions)
Integumentary (Skin) Important Points
Preload and Afterload
Nursing Care and Pathophysiology of Urinary Tract Infection (UTI)
Echocardiogram (Cardiac Echo)
Echocardiogram (Cardiac Echo)
Echocardiogram (Cardiac Echo)
Nursing Care and Pathophysiology for Hypothyroidism
Performing Cardiac (Heart) Monitoring
Ultrasound
Ultrasound
Interventional Radiology
Interventional Radiology
Nuclear Medicine
Cardiac Stress Test
Cardiac Stress Test
Pulmonary Function Test
Pulmonary Function Test
Endoscopy & EGD
Endoscopy & EGD
Colonoscopy
Colonoscopy
Mammogram
Biopsy
Biopsy
Electroencephalography (EEG)
Electroencephalography (EEG)
Electromyography (EMG)
Electromyography (EMG)
Nursing Care and Pathophysiology of Angina
Nursing Care and Pathophysiology for Appendicitis
Nursing Care and Pathophysiology of Chronic Kidney (Renal) Disease (CKD)
Nursing Care and Pathophysiology of Diabetes Mellitus (DM)
General Anesthesia
Leukemia
Sodium-Na (Hypernatremia, Hyponatremia)
Calcium-Ca (Hypercalcemia, Hypocalcemia)
Diabetes Management
Dialysis & Other Renal Points
Local Anesthesia
Lymphoma
Nursing Care and Pathophysiology of Myocardial Infarction (MI)
Chloride-Cl (Hyperchloremia, Hypochloremia)
Nursing Care and Pathophysiology of Diabetic Ketoacidosis (DKA)
Moderate Sedation
Oncology Important Points
Nursing Care and Pathophysiology of Coronary Artery Disease (CAD)
Hyperglycaemic Hyperosmolar Non-ketotic syndrome (HHNS)
Nursing Care and Pathophysiology for Inflammatory Bowel Disease (IBD)
Magnesium-Mg (Hypomagnesemia, Hypermagnesemia)
Malignant Hyperthermia
Phosphorus-Phos
Nursing Care and Pathophysiology for Ulcerative Colitis(UC)
Nursing Care and Pathophysiology for Crohn’s Disease
Normal Sinus Rhythm
Post-Anesthesia Recovery
Nursing Care and Pathophysiology for Acquired Immune Deficiency Syndrome (AIDS)
Nursing Care and Pathophysiology for Cholecystitis
Nursing Care and Pathophysiology for Heart Failure (CHF)
Postoperative (Postop) Complications
Sinus Bradycardia
Nursing Care and Pathophysiology for Anaphylaxis
Nursing Care and Pathophysiology for Hepatitis (Liver Disease)
Sinus Tachycardia
Nursing Care and Pathophysiology for Cirrhosis (Liver Disease, Hepatic encephalopathy, Portal Hypertension, Esophageal Varices)
Discharge (DC) Teaching After Surgery
Pacemakers
Atrial Fibrillation (A Fib)
Premature Ventricular Contraction (PVC)
Ventricular Tachycardia (V-tach)
Ventricular Fibrillation (V Fib)
Nursing Care and Pathophysiology for Pelvic Inflammatory Disease (PID)
Nursing Care and Pathophysiology of Hypertension (HTN)
Nursing Care and Pathophysiology for Endometriosis
Nursing Care and Pathophysiology for Menopause
Nursing Care and Pathophysiology for Cardiomyopathy
Nursing Care and Pathophysiology for Thrombophlebitis (clot)
Nursing Care and Pathophysiology for Hypovolemic Shock
Nursing Care and Pathophysiology for Cardiogenic Shock
Nursing Care and Pathophysiology for Distributive Shock
ABG (Arterial Blood Gas) Interpretation-The Basics
ABG (Arterial Blood Gas) Oxygenation
ABG Course (Arterial Blood Gas) Introduction
ABGs Nursing Normal Lab Values
ABGs Tic-Tac-Toe interpretation Method
Absolute Neutrophil Count (ANC) Lab Values
Absolute Reticulocyte Count (ARC) Lab Values
Alanine Aminotransferase (ALT) Lab Values
Albumin Lab Values
Alkaline Phosphatase (ALK PHOS) Lab Values
Alpha-fetoprotein (AFP) Lab Values
Ammonia (NH3) Lab Values
Anion Gap
Antinuclear Antibody Lab Values
Base Excess & Deficit
Beta Hydroxy (BHB) Lab Values
Bicarbonate (HCO3) Lab Values
Blood Urea Nitrogen (BUN) Lab Values
Brain Natriuretic Peptide (BNP) Lab Values
C-Reactive Protein (CRP) Lab Values
Carbon Dioxide (Co2) Lab Values
Carboxyhemoglobin Lab Values
Cardiac (Heart) Enzymes
Cholesterol (Chol) Lab Values
Coagulation Studies (PT, PTT, INR)
Congestive Heart Failure (CHF) Labs
COPD (Chronic Obstructive Pulmonary Disease) Labs
Cortisol Lab Vales
Creatine Phosphokinase (CPK) Lab Values
Creatinine (Cr) Lab Values
Creatinine Clearance Lab Values
Cultures
Cyclic Citrullinated Peptide (CCP) Lab Values
D-Dimer (DDI) Lab Values
Direct Bilirubin (Conjugated) Lab Values
Dysrhythmias Labs
Erythrocyte Sedimentation Rate (ESR) Lab Values
Fibrin Degradation Products (FDP) Lab Values
Fibrinogen Lab Values
Fluid Compartments
Free T4 (Thyroxine) Lab Values
Gamma Glutamyl Transferase (GGT) Lab Values
Glomerular Filtration Rate (GFR)
Glucagon Lab Values
Glucose Lab Values
Glucose Tolerance Test (GTT) Lab Values
Growth Hormone (GH) Lab Values
Hematocrit (Hct) Lab Values
Hemodynamics
Hemoglobin (Hbg) Lab Values
Hemoglobin A1c (HbA1C)
Hepatitis B Virus (HBV) Lab Values
Homocysteine (HCY) Lab Values
Ionized Calcium Lab Values
Iron (Fe) Lab Values
Ischemic (CVA) Stroke Labs
Lab Panels
Lab Values Course Introduction
Lactate Dehydrogenase (LDH) Lab Values
Lactic Acid
Lipase Lab Values
Lithium Lab Values
Liver Function Tests
Mean Corpuscular Volume (MCV) Lab Values
Mean Platelet Volume (MPV) Lab Values
Metabolic Acidosis (interpretation and nursing diagnosis)
Metabolic Alkalosis
Methemoglobin (MHGB) Lab Values
Myoglobin (MB) Lab Values
Order of Lab Draws
Pediatric Bronchiolitis Labs
Phosphorus (PO4) Blood Test Lab Values
Platelets (PLT) Lab Values
Pneumonia Labs
Potassium-K (Hyperkalemia, Hypokalemia)
Prealbumin (PAB) Lab Values
Pregnancy Labs
Procalcitonin (PCT) Lab Values
Prostate Specific Antigen (PSA) Lab Values
Protein (PROT) Lab Values
Protein in Urine Lab Values
Red Blood Cell (RBC) Lab Values
Red Cell Distribution Width (RDW) Lab Values
Renal (Kidney) Failure Labs
Respiratory Acidosis (interpretation and nursing interventions)
Respiratory Alkalosis
ROME – ABG (Arterial Blood Gas) Interpretation
Sepsis Labs
Shorthand Lab Values
Nursing Care and Pathophysiology for SIADH (Syndrome of Inappropriate antidiuretic Hormone Secretion)
Thyroid Stimulating Hormone (TSH) Lab Values
Thyroxine (T4) Lab Values
Total Bilirubin (T. Billi) Lab Values
Total Iron Binding Capacity (TIBC) Lab Values
Triiodothyronine (T3) Lab Values
Troponin I (cTNL) Lab Values
Urinalysis (UA)
Urine Culture and Sensitivity Lab Values
Vitamin B12 Lab Values
Vitamin D Lab Values
White Blood Cell (WBC) Lab Values