Neurocutaneous disorders: Pathology review

Neurocutaneous disorders: Pathology review

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Shock: Clinical
Leg ulcers: Clinical
Cardiovascular system anatomy and physiology
Renal azotemia
Nephrotic syndromes: Pathology review
Nephritic syndromes: Pathology review
Urinary tract infections: Pathology review
Kidney stones: Pathology review
Renal failure: Pathology review
Peritonitis
Ludwig angina
Temporomandibular joint dysfunction
Diffuse esophageal spasm
Gastroenteritis
Tropical sprue
Intestinal adhesions
Irritable bowel syndrome
Anal fissure
Cholestatic liver disease
Alcohol-associated liver disease
Primary biliary cholangitis
Viral hepatitis
Acute cholecystitis
Chronic cholecystitis
Ascending cholangitis
Gallstone ileus
Acute pancreatitis
Chronic pancreatitis
Pancreatic pseudocyst
Gallbladder disorders: Pathology review
Viral hepatitis: Pathology review
Inflammatory bowel disease: Pathology review
Esophageal disorders: Pathology review
Gastrointestinal bleeding: Pathology review
Pancreatitis: Pathology review
Jaundice: Pathology review
Cirrhosis: Pathology review
Adrenal insufficiency: Pathology review
Hyperthyroidism: Pathology review
Diabetes mellitus: Pathology review
Hypothyroidism: Pathology review
Parathyroid disorders and calcium imbalance: Pathology review
Cushing syndrome and Cushing disease: Pathology review
Back pain: Pathology review
Seronegative and septic arthritis: Pathology review
Neuromuscular junction disorders: Pathology review
Rheumatoid arthritis and osteoarthritis: Pathology review
Myalgias and myositis: Pathology review
Muscular dystrophies and mitochondrial myopathies: Pathology review
Disorders of sex chromosomes: Pathology review
Testicular tumors: Pathology review
Ovarian cysts and tumors: Pathology review
Vaginal and vulvar disorders: Pathology review
Breast cancer: Pathology review
Congenital TORCH infections: Pathology review
Prostate disorders and cancer: Pathology review
Uterine disorders: Pathology review
Cervical cancer: Pathology review
Benign breast conditions: Pathology review
Complications during pregnancy: Pathology review
Pigmentation skin disorders: Pathology review
Papulosquamous and inflammatory skin disorders: Pathology review
Skin cancer: Pathology review
Acneiform skin disorders: Pathology review
Vesiculobullous and desquamating skin disorders: Pathology review
Eye conditions: Refractive errors, lens disorders and glaucoma: Pathology review
Eye conditions: Inflammation, infections and trauma: Pathology review
Nasal, oral and pharyngeal diseases: Pathology review
Eye conditions: Retinal disorders: Pathology review
Vertigo: Pathology review
Thyroid nodules and thyroid cancer: Pathology review
Immunodeficiencies: T-cell and B-cell disorders: Pathology review
Immunodeficiencies: Combined T-cell and B-cell disorders: Pathology review
Microcytic anemia: Pathology review
Intrinsic hemolytic normocytic anemia: Pathology review
Macrocytic anemia: Pathology review
Coagulation disorders: Pathology review
Mixed platelet and coagulation disorders: Pathology review
Lymphomas: Pathology review
Plasma cell disorders: Pathology review
Non-hemolytic normocytic anemia: Pathology review
Extrinsic hemolytic normocytic anemia: Pathology review
Heme synthesis disorders: Pathology review
Platelet disorders: Pathology review
Thrombosis syndromes (hypercoagulability): Pathology review
Leukemias: Pathology review
Myeloproliferative disorders: Pathology review
Congenital neurological disorders: Pathology review
Seizures: Pathology review
Traumatic brain injury: Pathology review
Dementia: Pathology review
Movement disorders: Pathology review
Demyelinating disorders: Pathology review
Headaches: Pathology review
Cerebral vascular disease: Pathology review
Spinal cord disorders: Pathology review
Central nervous system infections: Pathology review
Adult brain tumors: Pathology review
Pediatric brain tumors: Pathology review
Neurocutaneous disorders: Pathology review
Acyanotic congenital heart defects: Pathology review
Atherosclerosis and arteriosclerosis: Pathology review
Peripheral artery disease: Pathology review
Cardiomyopathies: Pathology review
Supraventricular arrhythmias: Pathology review
Heart blocks: Pathology review
Pericardial disease: Pathology review
Hypertension: Pathology review
Vasculitis: Pathology review
Dyslipidemias: Pathology review
Coronary artery disease: Pathology review
Valvular heart disease: Pathology review
Heart failure: Pathology review
Ventricular arrhythmias: Pathology review
Shock: Pathology review
Cardiac and vascular tumors: Pathology review
Neonatal respiratory distress syndrome
Acute respiratory distress syndrome: Clinical
Respiratory acidosis
Respiratory syncytial virus
Choanal atresia
Laryngomalacia
Laryngitis
Bacterial epiglottitis
Respiratory distress syndrome: Pathology review
Deep vein thrombosis and pulmonary embolism: Pathology review
Apnea, hypoventilation and pulmonary hypertension: Pathology review
Cystic fibrosis: Pathology review
Tuberculosis: Pathology review
Restrictive lung diseases: Pathology review
Lung cancer and mesothelioma: Pathology review
Otitis externa
Otitis media
Pseudomonas aeruginosa
Delirium
Osteoarthritis
Renal tubular acidosis: Pathology review
Electrolyte disturbances: Pathology review
Renal tubular defects: Pathology review
Acid-base disturbances: Pathology review
Renal and urinary tract masses: Pathology review
Anatomy of the coronary circulation
Anatomy clinical correlates: Heart
Blood pressure, blood flow, and resistance
Laminar flow and Reynolds number
Compliance of blood vessels
Pressures in the cardiovascular system
Resistance to blood flow
Control of blood flow circulation
Microcirculation and Starling forces
Measuring cardiac output (Fick principle)
Stroke volume, ejection fraction, and cardiac output
Cardiac contractility
Frank-Starling relationship
Cardiac preload
Cardiac afterload
Law of Laplace
Cardiac cycle
Cardiac work
Pressure-volume loops
Changes in pressure-volume loops
Physiological changes during exercise
Normal heart sounds
Abnormal heart sounds
Action potentials in myocytes
Action potentials in pacemaker cells
Excitability and refractory periods
Cardiac excitation-contraction coupling
Cardiac conduction system
Cardiac conduction velocity
ECG basics
ECG rate and rhythm
ECG intervals
ECG QRS transition
ECG axis
ECG normal sinus rhythm
ECG cardiac infarction and ischemia
ECG cardiac hypertrophy and enlargement
Baroreceptors
Chemoreceptors
Renin-angiotensin-aldosterone system
Anatomic and physiologic dead space
Alveolar surface tension and surfactant
Compliance of lungs and chest wall
Combined pressure-volume curves for the lung and chest wall
Airflow, pressure, and resistance
Gas exchange in the lungs, blood and tissues
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
Reading a chest X-ray
Lung volumes and capacities
Ventilation
Zones of pulmonary blood flow
Regulation of pulmonary blood flow
Ventilation-perfusion ratios and V/Q mismatch
Pulmonary shunts
Breathing cycle
Hydration
Body fluid compartments
Movement of water between body compartments
Renal clearance
Glomerular filtration
Measuring renal plasma flow and renal blood flow
Regulation of renal blood flow
Tubular secretion of PAH
Tubular reabsorption of glucose
Urea recycling
Proximal convoluted tubule
Distal convoluted tubule
Loop of Henle
Sodium homeostasis
Potassium homeostasis
Phosphate, calcium and magnesium homeostasis
Osmoregulation
Vitamin D
Erythropoietin
Physiologic pH and buffers
Buffering and Henderson-Hasselbalch equation
The role of the kidney in acid-base balance
Acid-base map and compensatory mechanisms
Metabolic acidosis
Respiratory alkalosis
Metabolic alkalosis
Plasma anion gap
Nervous system anatomy and physiology
Neuron action potential
Cerebral circulation
Blood brain barrier
Cerebrospinal fluid
Pyramidal and extrapyramidal tracts
Muscle spindles and golgi tendon organs
Spinal cord reflexes
Somatosensory receptors
Somatosensory pathways
Sympathetic nervous system
Adrenergic receptors
Parasympathetic nervous system
Cholinergic receptors
Enteric nervous system
Body temperature regulation (thermoregulation)
Cerebellum
Basal ganglia: Direct and indirect pathway of movement
Skeletal system anatomy and physiology
Bone remodeling and repair
Cartilage structure and growth
Fibrous, cartilage, and synovial joints
Gastrointestinal system anatomy and physiology
Anatomy and physiology of the teeth
Liver anatomy and physiology
Esophageal motility
Gastric motility
Chewing and swallowing
Carbohydrates and sugars
Fats and lipids
Proteins
Vitamins and minerals
Intestinal fluid balance
Pancreatic secretion
Bile secretion and enterohepatic circulation
Prebiotics and probiotics
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
Contracting the immune response and peripheral tolerance
B- and T-cell memory
VDJ rearrangement
Vaccinations
Type I hypersensitivity
Type II hypersensitivity
Type III hypersensitivity
Type IV hypersensitivity
Anatomy and physiology of the eye
Photoreception
Optic pathways and visual fields
Anatomy and physiology of the ear
Auditory transduction and pathways
Vestibular transduction
Vestibulo-ocular reflex and nystagmus
Olfactory transduction and pathways
Taste and the tongue
Blood components
Blood groups and transfusions
Platelet plug formation (primary hemostasis)
Coagulation (secondary hemostasis)
Role of Vitamin K in coagulation
Clot retraction and fibrinolysis
Anatomy and physiology of the male reproductive system
Puberty and Tanner staging
Testosterone
Anatomy and physiology of the female reproductive system
Estrogen and progesterone
Menstrual cycle
Menopause
Endocrine system anatomy and physiology
Adrenocorticotropic hormone
Oxytocin and prolactin
Growth hormone and somatostatin
Antidiuretic hormone
Thyroid hormones

Transcript

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At the family medicine clinic, a 17 year old male named Heath came in because of lower back pain. Clinical examination reveals lots of small growths on the face, light flat patches throughout his body, and a darker raised patch on his forehead. Heath was adopted early in his life and his family history is unknown. Abdominal ultrasound reveals an angiomyolipoma of the left kidney. Next to Heath, there’s an 8 year old child named Sylvia. Sylvia complains of difficulty seeing what the teacher is writing in school. She also has a purple mark that covers the forehead and her right upper eyelid. Eye examination reveals increased intraocular pressure in the right eye. Her medical history includes an episode of seizure when she was 5 years old. A brain MRI is ordered and reveals brain atrophy. Finally, there’s a 45 year old male named Austin who came in because of a ringing sound in his ears and a gradual loss of hearing. Brain MRI reveals bilateral masses on the cerebellopontine angle.

Okay, so all of them have a neurocutaneous syndrome. Neurocutaneous syndromes primarily affect the nervous system and the skin. They include Sturge-Weber syndrome, tuberous sclerosis, neurofibromatosis type I and II, and Von Hippel-Lindau disease. For the exams remember that Sturge-Weber occurs due to sporadic mutations, while tuberous sclerosis, neurofibromatosis type I and II, and Von Hippel-Lindau disease are autosomal dominant conditions.

Alright, now let’s take a closer look at these different disorders, starting with Sturge-Weber syndrome, which is also known as encephalotrigeminal angiomatosis. During week 6 of development, as the cephalic portion of the neural tube grows, a network of tiny blood vessels called a vascular plexus develops. There’s a gene called the GNAQ gene which codes for a guanine nucleotide-binding protein that is involved in the development of that plexus. Normally, around week 9, the GNAQ gene stops getting expressed, leading to the regression of the vascular plexus. But in Sturge-Weber syndrome, a sporadic mutation occurs that let some cells keep making GNAQ proteins. The mutated cell then replicates over and over, so all of the cells that descend from it have the mutation.

The earlier the mutation arises in embryological development, the more tissues will be affected, since more tissues will originate from the mutant cells. This is an example of somatic mosaicism. This means the individuals have some cells in their body with the mutation and others with the normal gene. Now as the GNAQ proteins accumulate, it results in the excessive growth of capillaries in tissues that derive from the ectoderm, especially the brain, eyes, and facial skin. The most common presentation is unilateral and complete disease, meaning it affects both the brain and the face on the same side, and most often the eye is not involved.

Okay, moving onto tuberous sclerosis. This disorder occurs when there’s a mutation in either the TSC1 gene on chromosome 9, or TSC2 on chromosome 16. TSC1 encodes for the protein hamartin and TSC2 for the protein tuberin. These two proteins combine to form hamartin-tuberin complex, which binds to and inhibits another protein called mechanistic target of rapamycin, or mTOR. Normally, mTOR increases cell proliferation and so the hamartin-tuberin protein complex acts as a tumor suppressor.

So when there’s a mutation in the TSC genes, it causes an altered hamartin-tuberin protein complex that’s unable to switch off mTOR. As a result, benign tumors and growths made of a variety of cell types, called hamartomas, form throughout the body. Also, the lifetime risk of cancer is increased. The brain and the skin are usually affected the most, along with the kidneys, heart, lungs, and eyes.

Now, let’s move onto neurofibromatoses. There are two types, type I and type II, and they’re caused by mutations in the NF1 or NF2 gene, which are found on chromosomes 17 and 22, respectively. For the test, remember, NF1 goes with chromosome 17 and NF2 goes with chromosome 22. Normally, these are tumor suppressor genes that code for neurofibromin and merlin proteins. Merlin is a protein found in the cytoskeleton of neurons and its tumor inhibitory mechanism isn’t fully understood. You’re much more likely to be asked about the mechanism of type I neurofibromtaosis and neurofibromin, which inactivates the RAS pathway. The RAS pathway takes part in many other signaling pathways responsible for cell growth, so dysregulation leads to the growth of neurofibromas which are benign, fibrous tumors that originate from neurons. For neurofibromatosis type II, a high yield fact is that it mainly causes schwannomas which arise from schwann cells.

Finally, Von-Hippel-Lindau disease is caused by a mutation of the von-Hippel-Lindau or VHL gene that is located on the short arm of chromosome 3. The VHL gene is a tumor suppressor gene that codes for proteins in charge of degrading a transcription factor called hypoxia-inducible-factor, or HIF. HIF is responsible for up-regulating genes that code for platelet-derived and vascular endothelial growth factors, or PDGF and VEGF, both of which promote new blood vessel formation and cell growth. In VHL disease, this tumor suppressor gene is mutated or deleted, causing an increase in hypoxia-inducible-growth factor, which increases the levels of PDGF and VEGF and ultimately the risk of tumor formation. So, VHL disease is characterized by the development of benign and malignant tumors in various organs, such as the eyes, kidneys, adrenal glands, CNS, and pancreas.

Alright, now all neurocutaneous syndromes typically present with skin lesions, neurological signs, and formation of various tumors. But each of the neurocutaneous syndromes have symptoms that are special to them and can help you identify them. Let’s start with Sturge-Weber syndrome. The first high yield symptoms is the characteristic nevus flammeus, which is a non-neoplastic birthmark. This is also known as a port wine stain, and it’s a purple mark on the face in the areas innervated by the trigeminal nerve. The trigeminal nerve, especially the ophthalmic and maxillary distributions, are involved because during embryological development, it’s one of the first cranial nerves to develop from neural crest cells. Typically, the port wine stain covers the forehead and upper eyelid on one side of the face, but in some individuals, it covers the whole face.

Now, in the brain, some individuals develop leptomeningeal angiomas, which are vascular malformations in the meninges that lead to pooling of blood, impaired venous drainage, and brain ischemia. Ischemia causes brain atrophy which relates to the extent of neurological deficits. These include developmental delay, seizures, and muscle weakness (or hemiplegia) on the side opposite of the port-wine stain or on both sides if the disease is bilateral. The brain can also develop areas of calcification on brain gyri. This type of brain calcification takes on a tram-track pattern because it literally looks like tramway tracks.

Now, some individuals also have congenital trabeculodysgenesis, which is when the part of the eye responsible for draining the aqueous humor is underdeveloped. That leads to increased intraocular pressure and glaucoma that can cause reduced vision or even blindness in the affected eye. It is thought that the presence of episcleral hemangioma can also lead to glaucoma.

Okay, moving onto tuberous sclerosis. So in the brain, the most common growths are glioneuronal hamartomas, also known as cortical tubers, and subependymal nodules. These lesions can cause neurological problems like seizures. Also, there’s an increased risk of developing a subependymal giant cell astrocytoma, or SEGA, which is a type of cancer that can arise from the subependymal nodules. In the eye, hamartomas can also develop in the retina causing vision problems.

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. "Rook's Textbook of Dermatology" Wiley-Blackwell (2004)
  4. "Ophthalmology" Elsevier Health Sciences (2009)
  5. "Practical Surgical Neuropathology" Elsevier Health Sciences (2010)
  6. "Adams and Victor's Principles of Neurology, Ninth Edition" McGraw Hill Professional (2009)
  7. "Fundamentals of Pathology" H.A. Sattar (2011)
  8. "von Hippel–Lindau disease: A clinical and scientific review" European Journal of Human Genetics (2011)
  9. "Sturge-Weber syndrome: A review" Pediatric Neurology (2004)
  10. "Genotype-Phenotype Correlation in von Hippel-Lindau Disease With Retinal Angiomatosis" Archives of Ophthalmology (2007)