Glomerular Filtration Rate (GFR)

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Chance Reaves
MSN-Ed,RN
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Included In This Lesson

Study Tools For Glomerular Filtration Rate (GFR)

Acute Kidney Injury Pathochart (Cheatsheet)
Nephrotic Syndrome Pathochart (Cheatsheet)
Glomerulonephritis Pathochart (Cheatsheet)
Types of Dialysis (Cheatsheet)
Chronic Kidney Disease Symptoms (Cheatsheet)
63 Must Know Lab Values (Cheatsheet)
Anatomy of Urinary System (Image)
63 Must Know Lab Values (Book)
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Outline

Overview

  1. Glomerular filtration rate
    1. Normal Value Range
    2. Pathophysiology
    3. Special considerations
    4. Elevations in GFR
    5. Decreases in GFR

Nursing Points

General

  1. Normal value range
    1. 90-120 mL/min/1.73m2
    2. Indication of kidney dysfunction
    3. Based on age, gender, race
  2. Pathophysiology
    1. Blood is filtered in the glomerulus
    2. Glomeruli filter waste from blood
    3. Damage to the glomeruli allows for loss of important cells
      1. RBCs
      2. WBCs
      3. Proteins
    4. Slower glomerular filtration means buildup of wastes and fluids in the body
    5. Because glomeruli are the first stage of urine formation, GFR helps to indicate current or potential kidney damage
  3. Special considerations
    1. Serum
      1. Green, red or lavender top tube
    2. Often sent with other renal labs
    3. Consider creatinine clearance
      1. 24 hour urine collection
  4. Elevations in GFR
    1. Increased GFR with albumin in urine
      1. Caused by renal disease
      2. Rarely occurring
  5. Decreases in GFR
    1. Kidney disease
      1. Injury or disease specific to the glomerulus
      2. Damage to nephrons/glomeruli from AKI
      3. Long term loss of kidney function due to CKD
    2. Kidney toxicity
    3. Diabetes
    4. Hypertension

Assessment

  1. Assess patient’s nutritional status
  2. Assess urine output
  3. Consider other causes for increase in creatinine
    1. Muscle

Therapeutic Management

  1. Treat cause of renal insufficiency
    1. Dialysis
    2. Medication
    3. Lifestyle alteration
    4. Toxicity
    5. Infection/Antibiotics

Nursing Concepts

  1. Lab Values
  2. Elimination

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Transcript

In this lesson we’re going to take a look at glomerular filtration rate.

The first thing I’m sure you’re asking is what the heck is glomerular filtration rate? Well it’s a lab test, and we use it to look at kidney dysfunction. We’re going to get into the pathophysiology of it in just a minute, but the thing you have to understand is that it is a rate and it’s based on time. So we basically want to make sure that the glomerulus, an important part of the kidney, is filtering out in 90 to 120 ml per minute based on a body mass of 1.73 meters squared. I know this is a fancy rate, but the important part is that you actually look at the number part first. So 90 to 120. Again it’s an indication of kidney dysfunction, it can also be a predictor of future kidney dysfunction.

Things that influences our age, gender and even race.

So let’s get into the patho of why we look at this. Well as you can see here you have blood supply to the kidneys, and the blood filtration happens in this area called the glomerulus. the glomerulus is responsible for the first stage of filtration of blood and getting waste products out. If there’s damage to the glomeruli, you have this decrease in glomerular filtration. This means that there’s actually an increase in a waste product in blood. The reason we look at the glomerular filtration rate, or GFR, is because the glomeruli are the first stage in filtration and getting out waste products. If we can see that there’s damage or injury to this area of the kidney we can actually make future assessments about kidney injury or disease.

So how are we going to send this lab off?

Well it’s done by serum, so we can either send a green, a red top tube or lavender top tube to the lab.

Commonly it’s going to be sent with other labs, I’m so things like your renal labs or other chemistries.

The other thing that you may want to consider doing especially if your patient is suspicious of kidney injury, is to talk about doing a creatinine clearance at the same time. We can use both GFR and creatinine clearance to determine how well the kidneys are working. Just remember that would creatinine clearance you need a 24-hour urine, so you want to disregard that first sample of urine and then start collecting every sample thereafter for the next 24 hours.

So what is a normal GFR look like?

So like we talked about, it is based on time. Anything between 90 and 120 seconds is considered a normal GFR. The only real time that you’re going to have an increased GFR, and this is really rare, is it you have some sort of a long term kidney damage, and basically your kidneys are filtering out a ton of urine, but the problem is is that you’re spilling out albumin, which is a really important protein. Again that’s rare, but as long as your patients albumin and protein levels are normal, and your GFR is maybe slightly elevated, then that’s going to be considered a normal value. The thing you want to look at with increased GFR is if your patient has any other kidney biomarkers, like BUN or creatinine, that go up or if your patient is losing protein.

We pay more attention to a decreased GFR. Another important thing about GFR is that depending on what rate the glomerulus is filtering, it helps us to tell what percentage of the kidneys are actually working. So anything 90 mL per minute is pretty much normal function. A good rule of thumb is that the number in mils per minute, is equivalent to the predicted or estimated amount of functioning kidney. So use this as an example. So let’s say you have a patient whose GFR 60, well you can predict about 60% of the kidney function is normal. So patient with a GFR of 15, you can estimate that about 15% of the kidney function is working. Now I know that that’s a really broad rule of thumb, but make sure you’re talking to your providers about what their goals are and what they consider as normal GFR rates for patients depending on how chronic their diseases.

Causes for decreased GFR or going to be injury to the glomerulus, you can actually have damage to the nephrons and the glomeruli, so something like an acute kidney injury, or you can have long-term kidney damage like chronic kidney disease. Also toxicity is going to decrease your GFR as well as diabetes and potential hypertension, because of the amount of injury that’s occurring specifically to the kidneys.

We were talking about GFR, we’re looking at our lab values in our eliminations for our nursing concept.
So let’s recap.

Normal values for your GFR are 90 to 120 mL per minute. Again that’s based on factors like age, body size, gender, and even race.

GFR is a specific value that we look at what we’re looking at the kidneys. Nothing else is going to influence it.

Increased GFR is going to be normal in most circumstances, but just take a look at your albumin.

A decreased GFR is going to help you figure out how much damage is happening in the kidneys. The lower the rate, the worse the kidney damage.

And lastly, GFR is an essential renal value. Just like with BUN and creatinine, this is going to take a look at the kidneys.

That’s it for our lesson on GFR.Make sure you check out all the resources attached to this lesson. Now, go out and be your best selves today. And, as always, happy nursing!!

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Study Plan Lessons

03.02 Diabetes Insipidus for CCRN Review
03.04 DKA vs HHNK for CCRN Review
09.05 Chronic Renal Failure for CCRN Review
ACE (angiotensin-converting enzyme) Inhibitors
Adult Vital Signs (VS)
Albuterol (Ventolin) Nursing Considerations
Alpha-fetoprotein (AFP) Lab Values
Amputation
Amputation Concept Map
Angiotensin Receptor Blockers
Antepartum Testing
Antidiabetic Agents
Atenolol (Tenormin) Nursing Considerations
Atypical Antipsychotics
Blood Glucose Monitoring
Blood Urea Nitrogen (BUN) Lab Values
Bloom’s Taxonomy
Brain Tumors
Breastfeeding
Bronchodilators
Cholesterol (Chol) Lab Values
Congenital Heart Defects (CHD)
Congestive Heart Failure Concept Map
Coronavirus (COVID-19) Nursing Care and General Information
Creatinine Clearance Lab Values
Cushing’s Syndrome Case Study (60 min)
Cystic Fibrosis (CF)
Day in the Life of a Med-surg Nurse
Dehydration
Dementia and Alzheimers
Diabetes Insipidus Case Study (60 min)
Diabetes Insipidus Nursing Mnemonic (DDD)
Diabetes Management
Diabetes Mellitus (DM) Module Intro
Diabetes Mellitus & Those Dang Blood Sugars! – Live Tutoring Archive
Diabetes Mellitus Case Study (45 min)
Diabetes Mellitus for Progressive Care Certified Nurse (PCCN)
Diabetes Mellitus Type 1- Signs & Symptoms Nursing Mnemonic (The 3 P’s)
Diabetic Emergencies for Certified Emergency Nursing (CEN)
Diabetic Ketoacidosis (DKA) Case Study (45 min)
Encephalopathy (Hypoxic-ischemic, Metabolic, Infectious, Hepatic) for Progressive Care Certified Nurse (PCCN)
Enteral & Parenteral Nutrition (Diet, TPN)
Enuresis
Fluid Shifts (Ascites) (Pleural Effusion)
Fluid Volume Deficit
General Anesthesia
Gestational Diabetes (GDM)
Gestational Diabetes and Why YOU Should Know About It – Live Tutoring Archive
Glipizide (Glucotrol) Nursing Considerations
Glomerular Filtration Rate (GFR)
Glucose Lab Values
Glucose Tolerance Test (GTT) Lab Values
Growth & Development – Middle Adulthood
Growth & Development -Transitioning to Adult Care
Heart Failure for Certified Emergency Nursing (CEN)
Hemoglobin A1c (HbA1C)
Hyperglycaemic Hyperosmolar Non-ketotic syndrome (HHNS)
Hypernatremia – Causes Nursing Mnemonic (MODEL)
Insulin
Insulin – Intermediate Acting (NPH) Nursing Considerations
Insulin – Long Acting (Lantus) Nursing Considerations
Insulin – Mixtures (70/30)
Insulin – Rapid Acting (Novolog, Humalog) Nursing Considerations
Insulin – Short Acting (Regular) Nursing Considerations
Key Nutrients in the Prevention of Chronic Disease
Lipase Lab Values
Maternal Risk Factors
Metabolic & Endocrine Module Intro
Metabolic Acidosis (interpretation and nursing diagnosis)
Metabolic/Endocrine Course Introduction
Metformin (Glucophage) Nursing Considerations
Multiple Myeloma
Myocardial Infarction (MI) Case Study (45 min)
Nursing Care and Pathophysiology for Diabetes Insipidus (DI)
Nursing Care and Pathophysiology for Ischemic Stroke (CVA)
Nursing Care and Pathophysiology for Male Infertility
Nursing Care and Pathophysiology of Angina
Nursing Care and Pathophysiology of Coronary Artery Disease (CAD)
Nursing Care and Pathophysiology of Diabetes Mellitus (DM)
Nursing Care and Pathophysiology of Diabetic Ketoacidosis (DKA)
Nursing Care and Pathophysiology of Glomerulonephritis
Nursing Care and Pathophysiology of Nephrotic Syndrome
Nursing Care Plan (NCP) & Interventions for Increased Intracranial Pressure (ICP)
Nursing Care Plan (NCP) for Abortion, Spontaneous Abortion, Miscarriage
Nursing Care Plan (NCP) for Angina
Nursing Care Plan (NCP) for Anxiety
Nursing Care Plan (NCP) for Arterial Disorders
Nursing Care Plan (NCP) for Atrial Fibrillation (AFib)
Nursing Care Plan (NCP) for Brain Tumors
Nursing Care Plan (NCP) for Celiac Disease
Nursing Care Plan (NCP) for Cellulitis
Nursing Care Plan (NCP) for Cholecystitis
Nursing Care Plan (NCP) for Chorioamnionitis
Nursing Care Plan (NCP) for Chronic Kidney Disease
Nursing Care Plan (NCP) for Cleft Lip / Cleft Palate
Nursing Care Plan (NCP) for Congenital Heart Defects
Nursing Care Plan (NCP) for Congestive Heart Failure (CHF)
Nursing Care Plan (NCP) for Cushing’s Disease
Nursing Care Plan (NCP) for Cystic Fibrosis
Nursing Care Plan (NCP) for Dehydration & Fever
Nursing Care Plan (NCP) for Diabetes
Nursing Care Plan (NCP) for Diabetes Insipidus
Nursing Care Plan (NCP) for Diabetes Mellitus (DM)
Nursing Care Plan (NCP) for Diabetic Ketoacidosis (DKA)
Nursing Care Plan (NCP) for Fluid Volume Deficit
Nursing Care Plan (NCP) for Gestational Diabetes (GDM)
Nursing Care Plan (NCP) for Glaucoma
Nursing Care Plan (NCP) for Hashimoto’s Thyroiditis
Nursing Care Plan (NCP) for Hyperosmolar Hyperglycemic Nonketotic Syndrome (HHNS)
Nursing Care Plan (NCP) for Hypoglycemia
Nursing Care Plan (NCP) for Hypovolemic Shock
Nursing Care Plan (NCP) for Mastitis
Nursing Care Plan (NCP) for Meconium Aspiration
Nursing Care Plan (NCP) for Myocardial Infarction (MI)
Nursing Care Plan (NCP) for Neonatal Jaundice | Hyperbilirubinemia
Nursing Care Plan (NCP) for Nephrotic Syndrome
Nursing Care Plan (NCP) for Neural Tube Defect, Spina Bifida
Nursing Care Plan (NCP) for Newborns
Nursing Care Plan (NCP) for Nutrition Imbalance
Nursing Care Plan (NCP) for Omphalocele
Nursing Care Plan (NCP) for Polycystic Ovarian Syndrome (PCOS)
Nursing Care Plan (NCP) for Pressure Ulcer / Decubitus Ulcer (Pressure Injury)
Nursing Care Plan (NCP) for Preterm Labor / Premature Labor
Nursing Care Plan (NCP) for Schizophrenia
Nursing Care Plan (NCP) for Sepsis
Nursing Care Plan (NCP) for Transient Tachypnea of Newborn
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Nursing Care Plan for Amputation
Nursing Care Plan for Coronary Artery Disease (CAD)
Nursing Case Study for Cardiogenic Shock
Nursing Case Study for Diabetic Foot Ulcer
Nursing Case Study for Type 1 Diabetes
Nutrition (Diet) in Disease
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Nutrition-related Diseases
Peripheral Vascular Assessment
Phenobarbital (Luminal) Nursing Considerations
Pituitary Gland
Potassium-K (Hyperkalemia, Hypokalemia)
Propranolol (Inderal) Nursing Considerations
Protein in Urine Lab Values
Red Cell Distribution Width (RDW) Lab Values
Renal Calculi for Certified Emergency Nursing (CEN)
Renal Failure- Acute Kidney Injury (AKI), Chronic Kidney Disease (CKD) for Progressive Care Certified Nurse (PCCN)
SBAR Practice Scenarios
Science of Nutrition
Stroke (CVA) Management in the ER
Stroke Concept Map
Stroke for Certified Emergency Nursing (CEN)
Sympathomimetics (Alpha (Clonodine) & Beta (Albuterol) Agonists)
Tenet 3 Why Behind the What
Trauma Surgery – Medical History Nursing Mnemonic (AMPLE)
Urinalysis (UA)
Vascular disease – Raynaud’s symptoms Nursing Mnemonic (COLD HAND)
Vasopressin
Vasopressin (Pitressin) Nursing Considerations
What the Heck is Antepartum Testing? – Live Tutoring Archive
Wounds (Infectious, Surgical, Trauma) for Progressive Care Certified Nurse (PCCN)