Think of your body as a finely tuned engine. Every cell burns fuel, generates heat, and performs work. That engine needs a throttle — something that tells every cell, "speed up" or "slow down." The thyroid gland, a butterfly-shaped organ wrapped around your windpipe, makes that throttle. It produces two hormones, T4 (thyroxine) and T3 (triiodothyronine), that set the metabolic pace of almost every tissue in your body.
But the thyroid does something else too. It also makes a completely different hormone, thyrocalcitonin (calcitonin), that has nothing to do with metabolism. This one is a calcium manager — it helps keep your blood calcium from climbing too high.
So the thyroid is really two glands in one: a metabolic throttle and a calcium brake.
The Metabolic Hormones: T4 and T3
The thyroid follicle cells (the main cells of the gland) take up iodine from your blood and attach it to the amino acid tyrosine. Depending on how many iodine atoms get attached, you get either:
T4 (thyroxine) — four iodine atoms. This is the main product, about 90% of what the thyroid releases.
T3 (triiodothyronine) — three iodine atoms. This is the much more active form, about 10% of release.
Here's the key: T4 is mostly a prohormone. It circulates in the blood, but most cells convert it into T3 right where they need it. T3 then binds to receptors inside the cell nucleus and directly turns genes on or off — ramping up the production of enzymes that control oxygen consumption, heat production, and energy use.
Important
T3 is the active hormone; T4 is the circulating reservoir. Most of the T4 gets converted to T3 in the liver, kidneys, and other tissues.
What does this actually do? A higher T3 level means your cells burn more calories, produce more heat, and work faster. Your heart beats faster, your gut digests quicker, your brain stays alert. Too little (hypothyroidism) and everything slows down — fatigue, weight gain, cold intolerance. Too much (hyperthyroidism) and the engine races — weight loss, sweating, anxiety, rapid pulse.
Now switch gears entirely. Scattered between the thyroid follicles are different cells called parafollicular cells (or C-cells). These make thyrocalcitonin, often just called calcitonin.
Calcitonin's job is to lower blood calcium when it gets too high. It does this by:
Stopping bone breakdown — it tells osteoclasts (the cells that dissolve bone) to slow down, so calcium stays locked in bone.
Increasing calcium loss in urine — the kidneys excrete more calcium.
Note
| Hormone | Source | Target | Effect |
|---------|--------|--------|--------|
| T4 / T3 | Follicle cells | Almost all cells | Increases metabolic rate |
Calcitonin, known as thyrocalcitonin, is produced by the thyroid gland and plays a role in lowering and regulating the level of calcium in the blood.
The thyroid gland is best known for its two hormones, tetraiodothyronine (T4) and triiodothyronine (T3), made by its follicular cells and dependent on dietary iodine. Alongside these, the thyroid also secretes a separate protein hormone, thyrocalcitonin (TCT), whose job is distinct from that of T3 and T4. …
Same / Similar Concept — real previous-year questions on the same or a closely similar concept, not this exact question.
CBSE 2020Set ANNUAL1 mark
Q.Which hormone is synthesised by "C" cells of thyroid gland?
›Reveal solutionSolution
The thyroid gland's C-cells secrete calcitonin, a hormone that lowers blood calcium.
The thyroid gland mainly consists of follicular cells (which secrete thyroxine, T3/T4), but it also contains scattered parafollicular cells, or 'C' cells, between the follicles. These C-cells secrete calcitonin, a hormone that decreases blood calcium levels by inhibiting bone resorption (osteoclast activity) when cal …