Renin Angiotensin Aldosterone System

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Tarang Patel
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Outline

Overview

  1. Renin Angiotensin Aldosterone System helps the body…
    1. Regulate blood pressure
    2. Regulate blood volume
    3. Regulate fluid and electrolytes
  2. RAAS is active when the kidneys sense…
    1. Hypotension
    2. Decreased blood volume (blood loss, severe dehydration)
    3. Lack of blood flow to the kidneys.
  3. Understanding RAAS helps better understand the following medication classes
    1. Angiotensin Converting Enzyme Inhibitors
    2. Angiotensin II Receptor Blockers (ARBS)
    3. Renin Antagonists

Nursing Points

General

  1. Goals of RAAS-
    1. Improve perfusion to the kidneys
    2. Increase blood pressure
    3. Increase blood volume
  2. How the RAAS works-
    1. Kidneys sense they are getting a decreased amount of blood flow
    2. Kidneys activate the RAAS by releasing the hormone renin
    3. Renin converts Angiotensinogen (an inactive protein) to Angiotensin I (active)
    4. Angiotensin I goes to the lungs where it is converted to Angiotensin II
      1. Converted by an enzyme called an angiotensin-converting enzyme (also known as ACE – a la ACE Inhibitor)
    5. Angiotensin II has a lot of functions in the body
      1. Increases sympathetic nervous system response causing vasoconstriction
        1. This increases blood pressure
      2. Causes kidneys to reabsorp more sodium which increases water retention
        1. This increases blood volume
      3. Causes the pituitary gland to increases secretion of Anti-diuretic Hormone (ADH)
        1. This increases water reabsorption in the kidneys
      4. Causes the adrenal gland to increase secretion of Aldosterone (another hormone)
        1. Causes the kidneys to increase their sodium and water retention

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Transcript

Okay, so we gonna talk about the RAA System in our body and the reason that we gonna talk about RAA system and covering it in our video, that it will help to better understand the Angiotensin Converting Enzyme Inhibitor medications, ARBs which is also called as Angiotensin II receptor blockers and Renin Antagonists. So, if you have a better understanding of the RAA system in our body, it will really help you to understand these 3 pharmacological classes of drugs and it will helpful to understand the side effects, why do we have the side effects and why do we use this medication for the particular diseases.

So, let’s go to the next slide and have a take a look at the RAA system. So, this diagram is basically presenting the RAA system. It may look complicated at first look, but it’s not really. So, if you look at the renin enzyme right here, we have a renin enzyme that gets secreted by the kidneys. When our kidney does not get enough blood flow or due to the blood pressure fall or if we have a blood loss, or it could be different reasons that the kidney is not getting enough blood flow. Or, if our body does not have enough sodium to reabsorb the water, kidney is not getting enough blood flow. Then, there’s a specialized cell in the kidney that’s gonna release renin. Now, what this renin gonna do, it’s gonna convert angiotensinogen protein which is in the inactive form in our blood to angiotensin I. So, the work of the renin, it’s gonna convert angiotensinogen to the angiotenisin I. Now, when the angiotensin I goes to the lungs, through the blood stream, the enzyme here, it’s called ACE inhibitor, right here in the lungs, gonna convert this angiotensin I into angiotensin II. So, this is the enzyme which is really important to remember. This is gonna help you in the ACE inhibitors. So, this is called Angiotensin Converting Enzyme which is present in the lung. Now, when angiotensin I gets converted into the angiotensin II, angiotensin II has many effects on our body. The first effect, when you take a look, it’s gonna increase the sympathetic system. Okay, so when it does increase the sympathetic system, nervous system, it’s gonna increase the vasoconstriction and if you really know your sympathetic nervous system. It’s gonna cause the vasoconstriction and it’s gonna increase the blood pressure. When there’s an increase in the blood pressure, kidneys gonna get enough blood flow. That’s how kidneys gonna get re-perfused. Now, the second action that angiotensin II have is on the kidney tubules. Well, it’s gonna increase the reabsorption of sodium and it’s gonna increase the excretion of potassium. Now, when it increases the reabsorption of sodium, it’s gonna increase the H2O retention, basically, the water retention. When that happens, it’s gonna increase a lot of volume, blood volume increases. When the blood volume increases, it’s gonna increase the blood pressure and that’s how it’s gonna cause, that’s how the kidneys get re-perfused which is the main problem why the renin got secreted. It also has effect on the adrenal gland as well. Angiotensin II is gonna go to the adrenal gland and it’s gonna increases the secretion of Aldosterone which is basically gonna do the same thing. Increase the sodium reabsorption, and it’s gonna increase the potassium excretion. Sodium reabsorption is gonna increase the water reabsorption as well as it’s gonna increase the blood volume. And, the final effect that angiotensin II has, it’s on the collecting ducts of the kidney. Our collecting ducts gonna, it’s main site where all the water excretion or the reabsorption happens. So, what it’s gonna do is it’s gonna go to the pituitary gland and gonna increase the secretion of ADH which is also called as antidiuretic hormone. What this antiduretic is gonna do, it’s gonna increase the water reabsorption in the kidney and it’s gonna increase blood volume. And that’s how kidney is gonna get re-perfused. So, this is how basically the RAA System works, so, have a better understanding of the RAA System and then we can understand ACE inhibitors, ARBs inhibitors and renin antagoist medication wear easily, which we’re gonna cover in the following presentation.

If you have any question about RAA System, then you can e-mail us or contact us. Thanks.

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Concepts Covered:

  • Noninfectious Respiratory Disorder
  • Test Taking Strategies
  • Respiratory Disorders
  • EENT Disorders
  • Prenatal Concepts
  • Studying
  • Prefixes
  • Suffixes
  • Acute & Chronic Renal Disorders
  • Disorders of the Adrenal Gland
  • Integumentary Disorders
  • Oncology Disorders
  • Preoperative Nursing
  • Musculoskeletal Trauma
  • Bipolar Disorders
  • Disorders of the Posterior Pituitary Gland
  • Hematologic Disorders
  • Community Health Overview
  • Immunological Disorders
  • Renal Disorders
  • Childhood Growth and Development
  • Labor Complications
  • Upper GI Disorders
  • Medication Administration
  • Neurological Emergencies
  • Adulthood Growth and Development
  • Disorders of Pancreas
  • Musculoskeletal Disorders
  • Cardiac Disorders
  • Disorders of the Thyroid & Parathyroid Glands
  • Integumentary Important Points
  • Pregnancy Risks
  • Urinary Disorders
  • Vascular Disorders
  • Eating Disorders
  • Learning Pharmacology
  • Anxiety Disorders
  • Basics of NCLEX
  • Factors Influencing Community Health
  • Lower GI Disorders
  • Intraoperative Nursing
  • Integumentary Disorders
  • Neurologic and Cognitive Disorders
  • Trauma-Stress Disorders
  • Central Nervous System Disorders – Brain
  • Somatoform Disorders
  • Dosage Calculations
  • Depressive Disorders
  • Personality Disorders
  • Cognitive Disorders
  • Substance Abuse Disorders
  • Psychological Emergencies
  • Circulatory System
  • Postoperative Nursing
  • Hematologic Disorders
  • Liver & Gallbladder Disorders
  • Infectious Respiratory Disorder
  • Central Nervous System Disorders – Spinal Cord
  • Emergency Care of the Cardiac Patient
  • Concepts of Population Health
  • Peripheral Nervous System Disorders
  • Note Taking
  • Female Reproductive Disorders
  • Oncologic Disorders
  • Postpartum Complications
  • Endocrine and Metabolic Disorders
  • Fetal Development
  • Shock
  • Emergency Care of the Neurological Patient
  • Respiratory Emergencies
  • Labor and Delivery
  • Gastrointestinal Disorders
  • EENT Disorders
  • Postpartum Care
  • Cardiovascular Disorders
  • Newborn Care
  • Renal and Urinary Disorders
  • Newborn Complications
  • Urinary System
  • Musculoskeletal Disorders
  • Infectious Disease Disorders
  • Nervous System
  • Psychotic Disorders

Study Plan Lessons

Nursing Care and Pathophysiology of COPD (Chronic Obstructive Pulmonary Disease)
12 Points to Answering Pharmacology Questions
ABGs Nursing Normal Lab Values
Care of the Pediatric Patient
Glaucoma
Menstrual Cycle
Time Management
X-Ray (Xray)
54 Common Medication Prefixes and Suffixes
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Nursing Care and Pathophysiology for Pancreatitis
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6 Rights of Medication Administration
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Health Promotion & Disease Prevention
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Nursing Care and Pathophysiology of Osteoporosis
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Nephrotic Syndrome
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Renin Angiotensin Aldosterone System
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Meningitis
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ACE (angiotensin-converting enzyme) Inhibitors
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Rubeola – Measles
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Hydralazine (Apresoline) Nursing Considerations
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Nursing Care and Pathophysiology of Acute Kidney (Renal) Injury (AKI)
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Asthma
Pediatric Gastrointestinal Dysfunction – Diarrhea
Postpartum Hemorrhage (PPH)
Preeclampsia: Signs, Symptoms, Nursing Care, and Magnesium Sulfate
Proton Pump Inhibitors
Schizophrenia
Nursing Care and Pathophysiology for SIADH (Syndrome of Inappropriate antidiuretic Hormone Secretion)