Thyroid and parathyroid gland histology

Last updated: June 19, 2025

Thyroid and parathyroid gland histology

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Acutely ill patient

Focused chief complaint

Anatomy clinical correlates: Anterior and posterior abdominal wall
Anatomy clinical correlates: Inguinal region
Anatomy clinical correlates: Other abdominal organs
Anatomy clinical correlates: Peritoneum and diaphragm
Anatomy clinical correlates: Viscera of the gastrointestinal tract
Appendicitis: Pathology review
Diverticular disease: Pathology review
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Inflammatory bowel disease: Pathology review
Pancreatitis: Pathology review
Anatomy clinical correlates: Anterior blood supply to the brain
Anatomy clinical correlates: Cerebellum and brainstem
Anatomy clinical correlates: Cerebral hemispheres
Anatomy clinical correlates: Posterior blood supply to the brain
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Anatomy clinical correlates: Mediastinum
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Aortic dissections and aneurysms: Pathology review
Coronary artery disease: Pathology review
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GERD, peptic ulcers, gastritis, and stomach cancer: Pathology review
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Diabetes mellitus: Pathology review
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Hyperthyroidism: Pathology review
Anatomy clinical correlates: Viscera of the gastrointestinal tract
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Anatomy clinical correlates: Bones, fascia and muscles of the neck
Anatomy clinical correlates: Skull, face and scalp
Anatomy clinical correlates: Temporal regions, oral cavity and nose
Anatomy clinical correlates: Trigeminal nerve (CN V)
Anatomy clinical correlates: Vessels, nerves and lymphatics of the neck
Headaches: Pathology review
Anatomy clinical correlates: Anterior blood supply to the brain
Anatomy clinical correlates: Cerebellum and brainstem
Anatomy clinical correlates: Cerebral hemispheres
Anatomy clinical correlates: Posterior blood supply to the brain
Cerebral vascular disease: Pathology review
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Anatomy clinical correlates: Heart
Anatomy clinical correlates: Mediastinum
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Apnea, hypoventilation and pulmonary hypertension: Pathology review
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Drug misuse, intoxication and withdrawal: Alcohol: Pathology review
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Environmental and chemical toxicities: Pathology review
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Non-cardiac chest pain and shortness of breath

Anatomy of the abdominal viscera: Blood supply of the foregut, midgut and hindgut
Anatomy of the abdominal viscera: Esophagus and stomach
Anatomy of the abdominal viscera: Innervation of the abdominal viscera
Anatomy of the diaphragm
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Bones and joints of the thoracic wall
Muscles of the thoracic wall
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Anatomy clinical correlates: Mediastinum
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ECG axis
ECG basics
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ECG intervals
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ECG rate and rhythm
Bronchioles and alveoli histology
Esophagus histology
Trachea and bronchi histology
Aortic dissections and aneurysms: Pathology review
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Pleural effusion, pneumothorax, hemothorax and atelectasis: Pathology review
Alveolar surface tension and surfactant
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Breathing cycle and regulation
Diffusion-limited and perfusion-limited gas exchange
Gas exchange in the lungs, blood and tissues
Lung volumes and capacities
Pulmonary shunts
Regulation of pulmonary blood flow
Respiratory system anatomy and physiology
Ventilation
Ventilation-perfusion ratios and V/Q mismatch
Zones of pulmonary blood flow
Chewing and swallowing
Enteric nervous system
Esophageal motility
Gastric motility
Gastrointestinal system anatomy and physiology

Trauma

Anatomy of the abdominal viscera: Blood supply of the foregut, midgut and hindgut
Anatomy of the axilla
Anatomy of the pelvic cavity
Anatomy of the urinary organs of the pelvis
Anatomy of the vessels of the posterior abdominal wall
Arteries and veins of the pelvis
Deep structures of the neck: Root of the neck
Fascia, vessels and nerves of the upper limb
Introduction to the cranial nerves
Superficial structures of the neck: Anterior triangle
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Vessels and nerves of the forearm
Vessels and nerves of the gluteal region and posterior thigh
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Anatomy clinical correlates: Arm, elbow and forearm
Anatomy clinical correlates: Axilla
Anatomy clinical correlates: Bones, fascia and muscles of the neck
Anatomy clinical correlates: Cerebral hemispheres
Anatomy clinical correlates: Clavicle and shoulder
Anatomy clinical correlates: Eye
Anatomy clinical correlates: Female pelvis and perineum
Anatomy clinical correlates: Heart
Anatomy clinical correlates: Hip, gluteal region and thigh
Anatomy clinical correlates: Male pelvis and perineum
Anatomy clinical correlates: Mediastinum
Anatomy clinical correlates: Pleura and lungs
Anatomy clinical correlates: Skull, face and scalp
Anatomy clinical correlates: Spinal cord pathways
Anatomy clinical correlates: Thoracic wall
Anatomy clinical correlates: Vertebral canal
Anatomy clinical correlates: Vessels, nerves and lymphatics of the neck
Anatomy clinical correlates: Viscera of the neck
Anatomy clinical correlates: Wrist and hand
Eye conditions: Inflammation, infections and trauma: Pathology review
Pleural effusion, pneumothorax, hemothorax and atelectasis: Pathology review
Spinal cord disorders: Pathology review
Traumatic brain injury: Pathology review

Communication of bad news

Transcript

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The thyroid gland is a butterfly-shaped endocrine gland with average weight of 25-30 grams, and located anterior and inferior to the larynx.

It produces two types of hormones; the iodine-containing hormones tri-iodothyronine or T3, thyroxine or T4, and calcitonin.

The parathyroid glands consist of four small ovoid glands weigh 30 milligrams each and are located on the posterior surface of the thyroid gland.

They are responsible for secreting parathyroid hormone, or PTH for short.

Let’s first look at the thyroid gland, which has a thin capsule of connective tissue surrounding it that can be seen in this low power image, mostly on the right side.

The connective tissue extends inward along with blood vessels, lymphatics, and nerves.

Although there aren’t any nerves clearly visible in this image.

The thyroid gland is unique because it’s the only endocrine gland that stores its inactive hormones extracellularly in follicles.

The follicles can vary in size quite a lot, from 50 to 500 um.

Each follicle is filled with a gel-like mass called colloid, which stains dark pink with H&E.

The colloid consists mostly of thyroglobulin and thyroid hormones that are bound to the colloid.

We can see that some follicles have colloid with a “scalloped” pale edge.

This is where the follicle has extracted some of the stored colloid in preparation for hormone activation and secretion.

On the other hand, the clear space around the colloid is just an artifact that was caused by the colloid shrinking in comparison to the follicular wall.

The follicular epithelium is made of a single layer of simple cuboidal cells with round central nuclei and dark chromatin.

These cells are responsible for secreting thyroid hormones when needed.

The nuclear features of these cells are particularly important because they are the main feature looked at when diagnosing papillary thyroid carcinoma.

In papillary thyroid carcinoma, the nuclei will be large and irregular with light chromatin, similar to this image, which has pale intranuclear inclusions.

Still at 40x magnification, this image has an example of a parafollicular cell, also called a C cells, near the center.

These pale-stained cells have a granular cytoplasm and are responsible for secreting calcitonin.

They are larger than follicular cells, but there are fewer of them.

They can usually be found in the periphery within the follicular lining, or in the interstitial space between follicles.

Key Takeaways

The thyroid gland and parathyroid glands are two distinct endocrine glands located in the neck. The thyroid gland is a butterfly-shaped endocrine gland located anterior and inferior to the larynx. It produces hormones like triiodothyronine, thyroxine, and calcitonin. The parathyroid glands consist of four small ovoid glands located on the posterior surface of the thyroid gland. They are responsible for secreting parathyroid hormone (PTH).

The thyroid is composed of numerous spherical sacs called thyroid follicles. Each follicle is lined by a single layer of follicular cells that synthesize, store, and secrete thyroid hormones (T3 and T4). The colloid, which fills the lumen of the follicles, is composed of thyroglobulin, a glycoprotein that serves as a precursor for the synthesis of thyroid hormones. Parafollicular cells, also called C cells, are located between the follicles and produce the hormone calcitonin, which helps regulate blood calcium levels.

The parathyroid glands are composed of chief cells and oxyphil cells, both of which are responsible for the synthesis and secretion of PTH. PTH helps regulate blood calcium levels by promoting the release of calcium from bones and increasing the reabsorption of calcium by the kidneys. The chief cells are the most numerous and are responsible for most hormone production. Oxyphil cells are larger and less numerous and their function is not well understood.