Osteomalacia and rickets

Last updated: November 01, 2022

Osteomalacia and rickets

Watch later

Watch later

Neuron action potential
Nervous system anatomy and physiology
Development of the nervous system
Introduction to the central and peripheral nervous systems
Introduction to the somatic and autonomic nervous systems
Sympathetic nervous system
Adrenergic receptors
Adrenergic antagonists: Beta blockers
Adrenergic antagonists: Presynaptic
Cholinergic receptors
Muscarinic antagonists
Parasympathetic nervous system
Resting membrane potential
Excitability and refractory periods
Action potentials in myocytes
Hypocalcemia
Body temperature regulation (thermoregulation)
Coagulation (secondary hemostasis)
Cellular structure and function
Cell membrane
Cell-cell junctions
Selective permeability of the cell membrane
Sympathetic nervous system
Body fluid compartments
Movement of water between body compartments
Endocytosis and exocytosis
Range, variance, and standard deviation
Cell signaling pathways
Carpal tunnel syndrome
Alzheimer disease
Neuromuscular junction and motor unit
Neuromuscular blockers
Muscular system anatomy and physiology
Muscle contraction
Sliding filament model of muscle contraction
Action potentials in pacemaker cells
Parkinson disease
Anti-parkinson medications
Muscles of the thoracic wall
Anatomy of the muscles and nerves of the posterior abdominal wall
Renal system anatomy and physiology
Anatomy of the abdominal viscera: Large intestine
Anatomy of the abdominal viscera: Small intestine
Anatomy of the abdominal viscera: Liver, biliary ducts and gallbladder
Anatomy of the abdominal viscera: Esophagus and stomach
Anatomy of the pharynx and esophagus
Anatomy of the abdominal viscera: Pancreas and spleen
Amino acids and protein folding
Proteins
Oxygen-hemoglobin dissociation curve
Antibody classes
Blood components
Platelet plug formation (primary hemostasis)
Anemia: Clinical
Introduction to the immune system
Innate immune system
Blood groups and transfusions
Erythropoietin
Anatomy and physiology of the male reproductive system
Folate (Vitamin B9) deficiency
Vitamin B12 deficiency
Vitamin D
Phosphate, calcium and magnesium homeostasis
Water-soluble vitamin deficiency and toxicity: B1-B7: Pathology review
Fat-soluble vitamin deficiency and toxicity: Pathology review
Zinc deficiency and protein-energy malnutrition: Pathology review
Carbohydrates and sugars
Glycolysis
Citric acid cycle
Gluconeogenesis
Glycogen metabolism
Amino acid metabolism
Anatomy of the anterior and medial thigh
Gastrointestinal system anatomy and physiology
Bile secretion and enterohepatic circulation
Pancreatic secretion
Gastric motility
Esophageal motility
Chewing and swallowing
Cardiovascular system anatomy and physiology
Stroke volume, ejection fraction, and cardiac output
Blood pressure, blood flow, and resistance
Cardiac conduction velocity
Measuring cardiac output (Fick principle)
Cardiac cycle
Cardiac preload
Cardiac afterload
Cardiac contractility
Frank-Starling relationship
Law of Laplace
Cardiac excitation-contraction coupling
Normal heart sounds
Cardiac work
Anatomy of the pelvic cavity
Anatomy of the pelvic girdle
Anatomy of the female reproductive organs of the pelvis
Anatomy of the female urogenital triangle
Anatomy of the male urogenital triangle
Anatomy of the urinary organs of the pelvis
Anatomy of the male reproductive organs of the pelvis
Nerves and lymphatics of the pelvis
Arteries and veins of the pelvis
Anatomy of the gastrointestinal organs of the pelvis and perineum
Anatomy of the perineum
Muscles of the gluteal region and posterior thigh
Vessels and nerves of the gluteal region and posterior thigh
Anatomy of the popliteal fossa
Anatomy of the hip joint
Anatomy of the knee joint
Anatomy of the leg
Joints of the ankle and foot
Anatomy of the foot
Fascia, vessels and nerves of the lower limb
Bones of the lower limb
Osteomalacia and rickets
Cushing syndrome
Toxic multinodular goiter
Hypothyroidism: Pathology review

Transcript

Watch video only

Bone softening caused by a faulty process of bone mineralization manifests as either rickets in children or osteomalacia in adults.

Inadequate bone mineralization could be due to a deficient or impaired metabolism of vitamin D, phosphate or calcium.

But first, a bit about bones. Now, long bones, like the femur, are made up of two epiphyses, which are its ends, and the diaphysis, which is the shaft.

Between each epiphysis and the diaphysis, there’s a region called the metaphysis.

And the metaphysis contains the epiphyseal plate, or the growth plate, which is the part of the bone that grows during childhood.

Once growth stops, the growth plate is replaced by an epiphyseal line, and this is known as epiphyseal closure.

Now, for bones to grow and develop properly, special bone cells, called osteoblasts, are hard at work.

To build bone, osteoblasts secrete osteoid, which is an organic matrix made of type 1 collagen.

These collagen fibers are the framework for the osteoblasts' work.

Osteoblasts then deposit calcium and phosphate crystals into the framework.

This process is called bone mineralization, and it confers strength to the growing bones.

Bone mineralization is dependent on an enzyme called alkaline phosphatase - which increases in response to osteoblast activity.

So, at the end of the day, bones are like a storage warehouse for calcium and phosphate.

Now, the levels of calcium and phosphate in the bone, but also in the blood, are regulated by vitamin D and parathyroid hormone, or PTH.

Vitamin D-wise, two steps are necessary for optimal metabolism: first, there must be enough vitamin D in the body, either from food, or created in the skin in response to sunlight exposure.

Secondly, vitamin D must become metabolically active, and this process also has two steps.

First one happens in the liver, where inactive vitamin D is converted into 25-hydroxy-vitamin D by the enzyme 25-Hydroxylase.

25-hydroxy-vitamin D then travels to the kidneys, where the enzyme 1-alpha-hydroxylase converts it to 1,25 hydroxy-vitamin D, or calcitriol, which is the active form of vitamin D.

Calcitriol increase renal tubular reabsorption of calcium which reduces the loss of calcium in the urine.

Calcitriol also increases the intestinal absorption of calcium and phosphate.

Ok, now let’s have a quick look at parathyroid hormone. Parathyroid hormone is secreted in response to low blood calcium levels, and it stimulates the resorption of calcium and a small amount of phosphate from the bone and into the bloodstream.

Additionally, parathyroid hormone can boost 1-alpha-hydroxylase activity, which forms more active vitamin D, increasing gut absorption of calcium.

Lastly, parathyroid hormone increases calcium reabsorption and reduces the reabsorption of phosphate from the kidneys, so more phosphate is excreted through the urine.

Now, when there's not enough active vitamin D, calcium or phosphate, there's inadequate mineralization.

This means that osteoblasts don’t have enough calcium and phosphate to deposit into the organic matrix.

In children, because the growth plates haven’t closed yet, this leads to softening of the bones, impaired growth of bones, and bone malformations.

Whereas, in adults, where the epiphyseal plates have already closed, it only causes weakening and softening of bones which makes them easier to fracture.

Ok, now vitamin D deficiency is the most common cause of both rickets and osteomalacia.

Key Takeaways

Rickets and osteomalacia are conditions characterized by bone softening due to a calcium deficiency or lack of vitamin D. The main difference between the two is the age at which they occur. Osteomalacia affects adults, whereas rickets affects children.

The key symptoms are diffuse bone and joint pain, proximal muscle weakness, bone fragility, and increased risk of fractures with minimal trauma. For rickets, there may also be craniotabes( softening and thinning of skull bones). The treatment typically involves vitamin D supplementation and treating the underlying cause.

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. "The Developmental Basis of Skeletal Cell Differentiation and the Molecular Basis of Major Skeletal Defects" Biological Reviews (2008)
  6. "Triradiate deformity of the pelvis in Paget's disease of bone." Postgraduate Medical Journal (1980)
  7. "Vitamin D supplementation in pregnancy: a systematic review" Health Technology Assessment (2014)