Cystic fibrosis: Pathology review

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Cystic fibrosis: Pathology review

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STEP

Bones and joints of the thoracic wall
Muscles of the thoracic wall
Vessels and nerves of the thoracic wall
Anatomy of the breast
Anatomy of the pleura
Anatomy of the lungs and tracheobronchial tree
Anatomy of the heart
Anatomy of the coronary circulation
Anatomy of the superior mediastinum
Anatomy of the inferior mediastinum
Anatomy clinical correlates: Thoracic wall
Anatomy clinical correlates: Breast
Anatomy clinical correlates: Pleura and lungs
Anatomy clinical correlates: Heart
Anatomy clinical correlates: Mediastinum
Cranial nerve pathways
Anatomy of the abdominal viscera: Blood supply of the foregut, midgut and hindgut
Anatomy of the pelvic girdle
Anatomy of the pelvic cavity
Anatomy of the urinary organs of the pelvis
Anatomy of the gastrointestinal organs of the pelvis and perineum
Arteries and veins of the pelvis
Vessels and nerves of the vertebral column
Fascia, vessels and nerves of the lower limb
Anatomy of the anterior and medial thigh
Vessels and nerves of the gluteal region and posterior thigh
Fascia, vessels and nerves of the upper limb
Anatomy of the brachial plexus
Anatomy of the pectoral and scapular regions
Anatomy of the arm
Muscles of the forearm
Vessels and nerves of the forearm
Anatomy clinical correlates: Arm, elbow and forearm
Anatomy clinical correlates: Wrist and hand
Superficial structures of the neck: Posterior triangle
Superficial structures of the neck: Cervical plexus
Superficial structures of the neck: Anterior triangle
Anatomy of the larynx and trachea
Anatomy of the pharynx and esophagus
Bones of the cranium
Anatomy of the orbit
Anatomy of the cerebral cortex
Introduction to the cranial nerves
Anatomy of the oculomotor (CN III), trochlear (CN IV) and abducens (CN VI) nerves
Anatomy of the trigeminal nerve (CN V)
Personality disorders: Pathology review
Eating disorders: Pathology review
Selective serotonin reuptake inhibitors
Serotonin and norepinephrine reuptake inhibitors
Tricyclic antidepressants
Monoamine oxidase inhibitors
Atypical antidepressants
Typical antipsychotics
Atypical antipsychotics
Lithium
Nonbenzodiazepine anticonvulsants
Anticonvulsants and anxiolytics: Barbiturates
Anticonvulsants and anxiolytics: Benzodiazepines
Psychomotor stimulants
Glycolysis
Citric acid cycle
Electron transport chain and oxidative phosphorylation
Gluconeogenesis
Glycogen metabolism
Pentose phosphate pathway
Physiological changes during exercise
Amino acid metabolism
Nitrogen and urea cycle
Fatty acid synthesis
Fatty acid oxidation
Ketone body metabolism
Cholesterol metabolism
Type I and type II errors
Clinical trials
Cell signaling pathways
Peroxisomal disorders: Pathology review
Purine and pyrimidine synthesis and metabolism disorders: Pathology review
Human development days 1-4
Human development days 4-7
Human development week 2
Human development week 3
Autosomal trisomies: Pathology review
Miscellaneous genetic disorders: Pathology review
Necrosis and apoptosis
Inflammation
Pharmacokinetics: Drug absorption and distribution
Pharmacokinetics: Drug metabolism
Pharmacokinetics: Drug elimination and clearance
Sympathomimetics: Direct agonists
Muscarinic antagonists
Cholinomimetics: Direct agonists
Cholinomimetics: Indirect agonists (anticholinesterases)
Sympatholytics: Alpha-2 agonists
Adrenergic antagonists: Presynaptic
Adrenergic antagonists: Alpha blockers
Adrenergic antagonists: Beta blockers
Medication overdoses and toxicities: Pathology review
Development of the cardiovascular system
Fetal circulation
Pressures in the cardiovascular system
Measuring cardiac output (Fick principle)
Action potentials in myocytes
Action potentials in pacemaker cells
Excitability and refractory periods
Cardiac excitation-contraction coupling
ECG basics
ECG rate and rhythm
ECG intervals
ECG QRS transition
ECG axis
ECG normal sinus rhythm
Acyanotic congenital heart defects: Pathology review
Cyanotic congenital heart defects: Pathology review
Peripheral artery disease: Pathology review
Valvular heart disease: Pathology review
Cardiomyopathies: Pathology review
Supraventricular arrhythmias: Pathology review
Ventricular arrhythmias: Pathology review
Heart blocks: Pathology review
Endocarditis: Pathology review
Shock: Pathology review
Calcium channel blockers
Class I antiarrhythmics: Sodium channel blockers
Class II antiarrhythmics: Beta blockers
Class III antiarrhythmics: Potassium channel blockers
Class IV antiarrhythmics: Calcium channel blockers and others
Pharyngeal arches, pouches, and clefts
Oxytocin and prolactin
Thyroid hormones
Testosterone
Estrogen and progesterone
Phosphate, calcium and magnesium homeostasis
Parathyroid hormone
Vitamin D
Calcitonin
Development of the face and palate
Optic pathways and visual fields
Auditory transduction and pathways
Vestibular transduction
Vestibulo-ocular reflex and nystagmus
Taste and the tongue
Eye conditions: Retinal disorders: Pathology review
Platelet plug formation (primary hemostasis)
Coagulation (secondary hemostasis)
Role of Vitamin K in coagulation
Clot retraction and fibrinolysis
Heme synthesis disorders: Pathology review
Coagulation disorders: Pathology review
Platelet disorders: Pathology review
Mixed platelet and coagulation disorders: Pathology review
Thrombosis syndromes (hypercoagulability): Pathology review
Anticoagulants: Heparin
Anticoagulants: Warfarin
Anticoagulants: Direct factor inhibitors
Thrombolytics
Antiplatelet medications
Ribonucleotide reductase inhibitors
Topoisomerase inhibitors
Platinum containing medications
Anti-tumor antibiotics
Microtubule inhibitors
DNA alkylating medications
Monoclonal antibodies
Antimetabolites for cancer treatment
Thymus histology
Spleen histology
Lymph node histology
Introduction to the immune system
Cytokines
Innate immune system
Complement system
T-cell development
B-cell development
MHC class I and MHC class II molecules
T-cell activation
B-cell activation, differentiation, and contraction
Cell-mediated immunity of CD4 cells
Cell-mediated immunity of natural killer and CD8 cells
Antibody classes
Somatic hypermutation and affinity maturation
VDJ rearrangement
Contracting the immune response and peripheral tolerance
B- and T-cell memory
Anergy, exhaustion, and clonal deletion
Vaccinations
Type I hypersensitivity
Type II hypersensitivity
Type III hypersensitivity
Type IV hypersensitivity
Immunodeficiencies: T-cell and B-cell disorders: Pathology review
Immunodeficiencies: Combined T-cell and B-cell disorders: Pathology review
Immunodeficiencies: Phagocyte and complement dysfunction: Pathology review
Glucocorticoids
Acneiform skin disorders: Pathology review
Papulosquamous and inflammatory skin disorders: Pathology review
Vesiculobullous and desquamating skin disorders: Pathology review
Skin cancer: Pathology review
Cartilage structure and growth
Neuromuscular junction and motor unit
Sliding filament model of muscle contraction
Slow twitch and fast twitch muscle fibers
Muscle contraction
Back pain: Pathology review
Rheumatoid arthritis and osteoarthritis: Pathology review
Seronegative and septic arthritis: Pathology review
Gout and pseudogout: Pathology review
Systemic lupus erythematosus (SLE): Pathology review
Scleroderma: Pathology review
Sjogren syndrome: Pathology review
Bone disorders: Pathology review
Bone tumors: Pathology review
Myalgias and myositis: Pathology review
Neuromuscular junction disorders: Pathology review
Acetaminophen (Paracetamol)
Non-steroidal anti-inflammatory drugs
Opioid agonists, mixed agonist-antagonists and partial agonists
Antigout medications
Osteoporosis medications
Development of the nervous system
Central nervous system histology
Peripheral nervous system histology
Neuron action potential
Cerebral circulation
Blood brain barrier
Cerebrospinal fluid
Ascending and descending spinal tracts
Motor cortex
Pyramidal and extrapyramidal tracts
Muscle spindles and golgi tendon organs
Spinal cord reflexes
Sensory receptor function
Somatosensory receptors
Somatosensory pathways
Sympathetic nervous system
Adrenergic receptors
Parasympathetic nervous system
Cholinergic receptors
Enteric nervous system
Body temperature regulation (thermoregulation)
Hunger and satiety
Cerebellum
Basal ganglia: Direct and indirect pathway of movement
Memory
Sleep
Consciousness
Learning
Stress
Language
Emotion
Attention
Congenital neurological disorders: Pathology review
Headaches: Pathology review
Seizures: Pathology review
Cerebral vascular disease: Pathology review
Traumatic brain injury: Pathology review
Spinal cord disorders: Pathology review
Dementia: Pathology review
Central nervous system infections: Pathology review
Movement disorders: Pathology review
Demyelinating disorders: Pathology review
Adult brain tumors: Pathology review
Pediatric brain tumors: Pathology review
Neurocutaneous disorders: Pathology review
Migraine medications
General anesthetics
Local anesthetics
Neuromuscular blockers
Anti-parkinson medications
Medications for neurodegenerative diseases
Opioid antagonists
Development of the renal system
Proximal convoluted tubule
Loop of Henle
Distal convoluted tubule
Sodium homeostasis
Potassium homeostasis
Osmoregulation
Antidiuretic hormone
Kidney countercurrent multiplication
Plasma anion gap
Congenital renal disorders: Pathology review
Renal tubular defects: Pathology review
Renal tubular acidosis: Pathology review
Acid-base disturbances: Pathology review
Electrolyte disturbances: Pathology review
Renal failure: Pathology review
Nephrotic syndromes: Pathology review
Nephritic syndromes: Pathology review
Urinary incontinence: Pathology review
Urinary tract infections: Pathology review
Kidney stones: Pathology review
Renal and urinary tract masses: Pathology review
Osmotic diuretics
Carbonic anhydrase inhibitors
Loop diuretics
Thiazide and thiazide-like diuretics
Potassium sparing diuretics
Development of the reproductive system
Menstrual cycle
Menopause
Disorders of sex chromosomes: Pathology review
Prostate disorders and cancer: Pathology review
Testicular tumors: Pathology review
Uterine disorders: Pathology review
Ovarian cysts and tumors: Pathology review
Cervical cancer: Pathology review
Vaginal and vulvar disorders: Pathology review
Benign breast conditions: Pathology review
Breast cancer: Pathology review
Complications during pregnancy: Pathology review
Congenital TORCH infections: Pathology review
Development of the respiratory system
Lung volumes and capacities
Anatomic and physiologic dead space
Alveolar surface tension and surfactant
Ventilation
Zones of pulmonary blood flow
Regulation of pulmonary blood flow
Pulmonary shunts
Ventilation-perfusion ratios and V/Q mismatch
Airflow, pressure, and resistance
Diffusion-limited and perfusion-limited gas exchange
Alveolar gas equation
Oxygen binding capacity and oxygen content
Oxygen-hemoglobin dissociation curve
Carbon dioxide transport in blood
Respiratory distress syndrome: Pathology review
Cystic fibrosis: Pathology review
Deep vein thrombosis and pulmonary embolism: Pathology review
Obstructive lung diseases: Pathology review
Restrictive lung diseases: Pathology review
Lung cancer and mesothelioma: Pathology review
Antihistamines for allergies
Bronchodilators: Beta 2-agonists and muscarinic antagonists
Bronchodilators: Leukotriene antagonists and methylxanthines

Transcript

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A newborn was delivered two days ago at home without any complications. Today, he was brought in for examination. The baby has a fever and a distended abdomen that's rigid on palpation. The mother mentions her son started vomiting a green fluid and that he has yet to pass his first stool. She also says she didn’t have access to prenatal care throughout the pregnancy. An x-ray was performed, and it showed air-fluid levels and dilated bowel loops, along with a “soap bubble” appearance. A pilocarpine-induced sweat test was done which showed a Cl- level over 60.

Now, the newborn seems to have cystic fibrosis. But first, a little physiology. Normally, elements like ions and water come in and out of the cell through specific channels located on the cell’s membrane. A very high yield fact you need to know is that there’s this particular channel called “cystic fibrosis transmembrane conductance regulator” or the CFTR protein, which is an ATP-gated channel, meaning it works by using ATP for energy. It transports negatively charged Cl-. In cells that produce mucus, it secretes the ion out of the cell, and in cells of the sweat glands, it reabsorbs Cl- back into the cell. Now, normally, cells in mucus membranes pump out chloride ions into the thick mucus, which helps attract water and make it less viscous. This mucus will protect the lining of organs and tissues like the airways, digestive system, and reproductive system. For example, the mucus produced by the glands in the airways allows the tiny cilia to sweep back and forth. This sweeping motion helps move the mucus and the bacteria or foreign particles trapped in it, out of the airways. Additionally, the CFTR protein also regulates the function of other channels, such as those that transport positively charged sodium ions. Now, cystic fibrosis, or CF, is an autosomal recessive disorder where there’s a mutation in the CFTR gene, and it is considered to be the most common lethal genetic disease in the Caucasian population. Keep in mind that the defective gene is located on chromosome 7 and that the defect itself is usually represented by ∆F508, an abbreviation which indicates that there’s a deletion of three nucleotides that code for phenylalanine at amino acid position 508. Another thing to know is that the ∆F508 mutation results in impaired post-translational processing. This means that the protein will be misfolded and it will not be glycosylated, so it’ll be retained in the endoplasmic reticulum, where it is degraded instead of being released to the cell membrane.

Without the CFTR protein on the epithelial surface, cells can’t transport chloride ions. In the mucus-secreting cells, the defect prevents chloride from being secreted, which causes intracellular levels to increase. It also leads to a compensatory sodium reabsorption via the epithelial sodium channels, or ENaC, because the inhibitory effect of the CFTR protein on ENaC is missing. Interestingly, this increase in sodium reabsorption causes a negative transepithelial potential difference, which basically means the epithelial surfaces with mucus producing glands have a significantly more negative electrical charge. This is important because the negative transepithelial potential difference can be measured intranasally, and thus it can be used as a diagnosis test for CF. Ok so going back to chloride ions, a high yield concept is that because they are trapped inside the cell, water won’t be attracted to the mucus to thin it out. As a result, the mucus secreted by these cells will be abnormally thick, so it builds up and obstructs the organs where it is secreted, causing extensive damage. In parallel, in sweat-producing cells, the defect prevents chloride ions from being reabsorbed, thus it accumulates in the sweat.

Now, this leads to a wide range of signs and symptoms, which mostly depend on the individual’s age. In a newborn baby, the thick secretions can affect the baby’s meconium or first stool. The meconium can get so thick and sticky that it gets stuck in the baby’s intestines and can cause small bowel obstruction. This is called a meconium ileus, and it is considered a surgical emergency because the obstruction can lead to bowel perforation and peritonitis. On examination, babies initially present a distended and rigid abdomen, and they might look mottled and lethargic. Another sign of obstruction is bilious vomiting, which is when the vomit has a green color due to a high bile content. If bowel perforation occurs, it can lead to septic shock, which can ultimately cause organ failure and death. If a baby is septic, the vital signs might show temperature instability, either a fever or hypothermia, tachycardia, tachypnea, and hypotension. Something to keep in mind is if a newborn survives meconium ileus, without proper management, they will most likely die of cardiorespiratory complications like pneumonia or bronchiectasis, which account for more than 80% of deaths due to CF.

In early childhood, the most prominent and high yield complication of CF is pancreatic insufficiency. This happens because thick secretions block the pancreatic ducts, preventing digestive enzymes from making it into the small intestine. Without those pancreatic enzymes, fat isn’t absorbed, causing steatorrhea or an abnormal amount of fat in a person’s stools. Over time, this can lead to poor weight gain and failure to thrive because most of the nutrients and fat-soluble vitamins like vitamin A, D, E, and K, are lost through stool.

Something that you might encounter on your test is avitaminosis A, which is important since it leads to squamous metaplasia of the epithelial lining of pancreatic exocrine ducts. This is particularly problematic because there’s already pancreatic damage, usually from the backed-up digestive enzymes that will start digesting the pancreas, causing pancreatitis. Sometimes, the destruction of pancreatic tissue can also reduce the endocrine function of the pancreas, causing insulin-dependent diabetes mellitus.

As the child grows, their lungs can also be affected, usually because the mucus in their airways are so thick that the cilia can’t move them out. So they get repeatedly colonized by bacteria, which causes chronic bacterial infection and inflammation. Sometimes, the mucus can get compacted and it starts acting as a mucus plug, which alongside chronic bacterial infection and inflammation, leads to bronchiectasis. Bronchiectasis represents damage to the airway walls that causes permanent dilation of the bronchi. This causes respiratory symptoms like cough with lots of sputum, and if the damage extends to the blood vessels, it can lead to hemoptysis.

Individuals can also develop recurrent pneumonia, especially when there’s chronic lower respiratory infections. There are a couple of high yield bacteria you need to remember! In infants and children, the pneumonia-causing pathogens are often gram positive bacteria, like Staphylococcus aureus or methicillin-resistant Staphylococcus aureus, whereas in teens and adults, it’s usually gram negative bacteria, like Pseudomonas aeruginosa. The recurrence of Pseudomonas aeruginosa pneumonia in CF has been linked, in part, to the bacteria’s ability to form biofilms. Biofilms are defined as communities of microorganisms that are attached to a surface, and in Pseudomonas cases, this is possible due to its mucoid polysaccharide capsule which makes it sticky.

Another thing to look out for is and allergic bronchopulmonary aspergillosis, or ABPA, which is a hypersensitivity reaction to the fungus Aspergillus fumigatus that can live in the sinus or lung cavity. Sometimes pulmonary symptoms can increase rapidly, causing a CF exacerbation. This usually includes worsening productive cough with sputum, dyspnea with exertion, fatigue, decreased appetite, and fever. Over time, repeated cystic fibrosis exacerbations can lead to irreversible respiratory failure and death.

Sources

  1. "Robbins Basic Pathology" Elsevier (2017)
  2. "Harrison's Principles of Internal Medicine, Twentieth Edition (Vol.1 & Vol.2)" McGraw-Hill Education / Medical (2018)
  3. "Pathophysiology of Disease: An Introduction to Clinical Medicine 8E" McGraw-Hill Education / Medical (2018)
  4. "CURRENT Medical Diagnosis and Treatment 2020" McGraw-Hill Education / Medical (2019)
  5. "Fishman's Pulmonary Diseases and Disorders, 2-Volume Set, 5th edition" McGraw-Hill Education / Medical (2015)
  6. "Dyspnea" CRC Press (2014)
  7. "Toward inclusive therapy with CFTR modulators: Progress and challenges" Pediatric Pulmonology (2017)
  8. "Newborn Screening for Cystic Fibrosis: A Lesson in Public Health Disparities" The Journal of Pediatrics (2008)
  9. "Gastrointestinal Disorders in Cystic Fibrosis" Clinics in Chest Medicine (2016)