Posted in

Diseases of the Thyroid, Hypo and HYPERTHYROIDISM- Lec # 4 P # 974 Ch # 77

Diseases of the Thyroid, Hypo and HYPERTHYROIDISM- Lec # 4 P # 974 Ch # 77
  • Hyperthyroidism means excessive thyroid hormone activity.
  • Most effects are explained by the increased actions of thyroid hormones on body tissues.
  • In many patients, the thyroid becomes 2–3 times larger than normal.
  • The thyroid follicles show marked cell growth and folding, greatly increasing the number of thyroid cells.
  • Each thyroid cell also increases its secretion several times.
  • Some hyperplastic glands can secrete thyroid hormone at 5–15 times the normal rate.
  • Graves disease is the most common form of hyperthyroidism.
  • It is an autoimmune disease in which thyroid-stimulating immunoglobulins (TSIs) form against the thyroid TSH receptor.
  • TSIs bind to the same receptors as TSH and continuously activate the cAMP system.
  • This causes continuous thyroid stimulation and excessive thyroid hormone production.
  • TSI stimulation lasts up to 12 hours, whereas TSH stimulation lasts a little over 1 hour.
  • Increased thyroid hormone then suppresses pituitary TSH secretion.
  • Therefore, TSH is usually very low or almost zero in Graves disease.
  • The antibodies are thought to result from autoimmunity against thyroid tissue, possibly after thyroid cell antigens are released.
  • Thyroid adenoma is another cause of hyperthyroidism.
  • It is a localized thyroid tumor that produces large amounts of thyroid hormone.
  • Unlike Graves disease, it is usually not associated with autoimmune disease.
  • Excess hormone from the adenoma suppresses pituitary TSH secretion.
  • Low TSH almost completely suppresses hormone secretion by the remaining normal thyroid tissue.

KEY CONCEPT

  • Hyperthyroidism → excessive thyroid hormone production/action.
  • Graves disease: TSI → TSH receptor → cAMP continuously activated → ↑ T₃/T₄ → ↓ TSH.
  • Thyroid adenoma: tumor → ↑ T₃/T₄ → ↓ TSH → normal thyroid tissue suppressed.
  • Graves: usually diffuse thyroid enlargement.
  • Adenoma: localized hormone-secreting tumor.

CONCEPTUAL EXAMPLES

  • Graves disease: TSI acts like persistent TSH → thyroid remains continuously stimulated.
  • High T₃/T₄ in Graves: negative feedback → TSH ≈ zero.
  • Adenoma: tumor produces T₃/T₄ independently → TSH falls → rest of thyroid becomes inactive.

Symptoms of Hyperthyroidism

  • Hyperthyroidism commonly causes:
    • High excitability
    • Heat intolerance
    • Increased sweating
    • Weight loss, sometimes severe
    • Diarrhea
    • Muscle weakness
    • Nervousness or psychic disorders
    • Extreme fatigue with inability to sleep
    • Hand tremor
  • Exophthalmos means protrusion of the eyeballs and is common in hyperthyroidism (Fig. 77.8).
  • Severe exophthalmos occurs in about one-third of patients.
  • Severe protrusion can stretch the optic nerve and damage vision.
  • More commonly, incomplete eyelid closure causes the eyes to become dry, irritated, infected, and sometimes ulcerated.
  • The protrusion results from swelling of tissues behind the eyes and changes in the extraocular muscles.
  • Immunoglobulins reacting with eye muscles are often present, especially when TSI levels are high.
  • Therefore, exophthalmos is likely related to an autoimmune process and usually improves when hyperthyroidism is treated.
  • The most accurate usual diagnostic test is measurement of free thyroxine (and sometimes T₃) in plasma.
  • Basal metabolic rate is usually increased by about 30–60% in severe hyperthyroidism.
  • TSH is usually almost absent because high circulating T₄ and T₃ strongly suppress pituitary TSH secretion.
  • TSI is usually high in thyrotoxicosis but low in thyroid adenoma.
  • A direct treatment is surgical removal of most of the thyroid gland.
  • Before surgery, propylthiouracil is usually given for several weeks until the basal metabolic rate becomes normal.
  • Then high concentrations of iodides are given for 1–2 weeks to reduce thyroid size and blood supply before surgery.
  • These preparations greatly reduce operative mortality.
  • Radioactive iodine can also treat a hyperplastic, toxic thyroid gland.
  • About 80–90% of injected iodide is taken up by the hyperplastic thyroid within 1 day.
  • If the iodide is radioactive, it destroys many thyroid secretory cells.
  • Usually about 5 millicuries is given, followed by reassessment after several weeks.
  • Additional doses may be given until normal thyroid function is reached.

KEY CONCEPT

Hyperthyroidism → ↑ metabolism + ↑ excitability + heat intolerance + sweating + weight loss + diarrhea + weakness + tremor.

Diagnosis:
Free T₄/T₃ ↑ + TSH ↓; TSI ↑ in Graves/thyrotoxicosis but low in thyroid adenoma.

Treatment:
PTU → high-dose iodide → surgery, or radioactive iodine.

CONCEPTUAL EXAMPLES

  • High T₃/T₄ → TSH almost zero → confirms strong negative feedback.
  • TSI high → Graves-type thyrotoxicosis.
  • TSI low → thyroid adenoma more likely.
  • Exophthalmos + hyperthyroidism → autoimmune thyroid process likely.
  • Radioactive iodine uptake by toxic thyroid → destroys secretory cells.

Hypothyroidism

  • Hypothyroidism generally produces effects opposite to hyperthyroidism.
  • It is often caused by autoimmunity against the thyroid gland (Hashimoto disease).
  • In Hashimoto disease, autoimmunity destroys the thyroid instead of stimulating it.
  • Autoimmune thyroiditis causes inflammation → progressive deterioration → fibrosis → decreased or absent thyroid hormone secretion.
  • Goiter means a greatly enlarged thyroid gland.
  • Endemic colloid goiter occurs when the diet lacks enough iodine.
  • About 50 mg of iodine/year is needed to make adequate thyroid hormones.
  • Iodine deficiency → T₄/T₃ ↓ → less negative feedback → TSH ↑.
  • High TSH continuously stimulates thyroid cells → large amounts of thyroglobulin colloid accumulate → thyroid enlarges.
  • Because iodine is lacking, T₄/T₃ still cannot be adequately formed.
  • The follicles may enlarge so much that the thyroid becomes 10–20 times normal size.
  • Idiopathic nontoxic colloid goiter can occur even without iodine deficiency.
  • The thyroid may produce normal or, more commonly, reduced amounts of thyroid hormone.
  • Mild thyroiditis may cause slight hypothyroidism → TSH ↑ → growth of remaining thyroid tissue.
  • This may produce a nodular thyroid, with some areas growing while others are damaged.
  • Some colloid goiters result from abnormalities in thyroid hormone formation:
    • ↓ iodide trapping → inadequate iodide enters thyroid cells.
    • ↓ peroxidase activity → iodide is not properly oxidized.
    • ↓ coupling of iodinated tyrosines → T₄/T₃ cannot form.
    • ↓ deiodinase activity → iodine cannot be efficiently recycled.
  • Some foods contain goitrogenic substances with antithyroid activity, especially certain varieties of turnips and cabbages.
  • These substances can reduce thyroid hormone formation → TSH ↑ → thyroid enlargement.
  • The physiological effects of hypothyroidism are generally:
    • Fatigue and extreme sleepiness, sometimes sleeping 12–14 hours/day
    • Muscular sluggishness
    • Slow heart rate
    • ↓ cardiac output
    • ↓ blood volume
    • Sometimes ↑ body weight
    • Constipation
    • Mental sluggishness
    • Reduced hair growth and scaly skin
    • Husky, frog-like voice
    • Severe cases → myxedema
  • Myxedema occurs with almost total loss of thyroid hormone function (Fig. 77.9).
  • Excess hyaluronic acid and chondroitin sulfate bound to protein accumulate in tissue spaces.
  • This increases interstitial fluid, but the fluid becomes gel-like and mainly immobile.
  • Therefore, the edema is nonpitting.
  • Lack of thyroid hormone increases blood cholesterol because of altered fat metabolism and reduced liver cholesterol excretion into bile.
  • Increased cholesterol can promote atherosclerosis.
  • This can contribute to peripheral vascular disease, deafness, and coronary artery disease.
  • In hypothyroidism, free T₄ is low.
  • In myxedema, the basal metabolic rate falls about 30–50%.
  • After a test dose of TRH, TSH usually increases greatly.
  • This response is reduced in the rare cases where the pituitary responds poorly to TRH.
  • Thyroxine treatment can maintain a steady thyroid hormone effect because its action lasts more than 1 month (Fig. 77.4).
  • Therefore, daily oral thyroxine can maintain thyroid hormone activity at a steady level.
  • Proper treatment can restore hypothyroid patients to near-normal function.
  • Severe hypothyroidism during fetal life, infancy, or childhood causes failure of body growth and intellectual disability.
  • Causes include congenital absence of the thyroid, genetic defects in thyroid hormone production, or iodine deficiency.
  • A newborn without a thyroid may initially appear normal because some thyroid hormone was supplied by the mother before birth.
  • After a few weeks, movements become sluggish and physical and mental growth become severely impaired.
  • Early treatment with adequate iodine or thyroxine can restore normal physical growth.
  • If treatment is delayed for more than a few weeks, mental development may remain permanently impaired because thyroid hormone is needed for neuronal growth, branching, and myelination.
  • Skeletal growth is affected more than soft-tissue growth, producing an obese, stocky, short appearance.
  • The tongue may become disproportionately large and can interfere with swallowing and breathing.

KEY CONCEPT

Hypothyroidism → T₃/T₄ ↓ → metabolism ↓ + TSH usually ↑ → thyroid enlargement may occur.

Iodine deficiency → T₃/T₄ ↓ → TSH ↑ → goiter.

Severe thyroid hormone deficiency → myxedema in adults; impaired growth and brain development in children.

CONCEPTUAL EXAMPLES

  • Iodine ↓ → T₃/T₄ ↓ → TSH ↑ → thyroid grows → goiter.
  • Hashimoto disease → thyroid destruction → T₃/T₄ ↓ → hypothyroidism.
  • Hypothyroidism → metabolism ↓ → fatigue + cold/slow body functions + weight gain tendency.
  • Severe deficiency → hyaluronic acid/chondroitin sulfate ↑ → gel-like tissue fluid → nonpitting myxedema.
  • Childhood hypothyroidism untreated early → impaired brain development + poor growth.

Leave a Reply

Your email address will not be published. Required fields are marked *