DiGeorge syndrome

Last updated: February 22, 2023

DiGeorge syndrome

6100

6100

Anatomy of the thyroid and parathyroid glands
Endocrine system anatomy and physiology
Hunger and satiety
Oxytocin and prolactin
Growth hormone and somatostatin
Antidiuretic hormone
Thyroid hormones
Pituitary adenoma
Gigantism
Acromegaly
Constitutional growth delay
Pituitary adenomas and pituitary hyperfunction: Clinical
Hypopituitarism
Hypopituitarism: Clinical
Hypopituitarism: Pathology review
Pituitary apoplexy
Sheehan syndrome
Diabetes insipidus
Prolactinoma
Pituitary gland histology
Somatostatin
Hyperprolactinemia
Diabetes insipidus and SIADH: Pathology review
Achondroplasia
Growth hormone deficiency
Pharyngeal arches, pouches, and clefts
Thyroid and parathyroid gland histology
Development of the tongue
Fascia and spaces of the neck
Superficial structures of the neck: Cervical plexus
Deep structures of the neck: Root of the neck
Superficial structures of the neck: Anterior triangle
Deep structures of the neck: Prevertebral muscles
Superficial structures of the neck: Posterior triangle
Parathyroid hormone
Hyperthyroidism: Clinical
Hypothyroidism: Pathology review
Hyperthyroidism: Pathology review
Graves disease
Hypothyroidism
Hyperthyroidism
Toxic multinodular goiter
Hypothyroidism and thyroiditis: Clinical
Iodine deficiency
Hashimoto thyroiditis
Riedel thyroiditis
Thyroid nodules and thyroid cancer: Clinical
Thyroid nodules and thyroid cancer: Pathology review
Thyroid cancer
Subacute granulomatous thyroiditis
Postpartum thyroiditis
Euthyroid sick syndrome
Cell signaling pathways
Pituitary tumors: Pathology review
Parathyroid conditions and calcium imbalance: Clinical
Hyperthyroidism medications
Hypothyroidism medications
Parathyroid disorders and calcium imbalance: Pathology review
Hypoparathyroidism
Hypocalcemia
DiGeorge syndrome
Hyperparathyroidism
Bone remodeling and repair
Insulins
Insulin
Glucagon
Diabetes mellitus: Pathology review
Tubular reabsorption of glucose
Vitamin D deficiency
Vitamin D
Chronic kidney disease: Clinical
Hypermagnesemia
Osteoporosis medications
Hypomagnesemia
Pancreas histology
Diabetic retinopathy
Diabetic nephropathy
Diabetes mellitus
Diabetes mellitus: Clinical
Gestational diabetes
Pancreatic cancer
Pancreatic neuroendocrine neoplasms
Zollinger-Ellison syndrome
Multiple endocrine neoplasia
MEN syndromes: Clinical
Synthesis of adrenocortical hormones
Adrenocorticotropic hormone
Cholesterol metabolism
Adrenal gland histology
Primary adrenal insufficiency
Adrenal insufficiency: Clinical
Adrenal insufficiency: Pathology review
Waterhouse-Friderichsen syndrome
Cushing syndrome and Cushing disease: Pathology review
Cushing syndrome
Cushing syndrome: Clinical
Congenital adrenal hyperplasia: Clinical
Congenital adrenal hyperplasia
Cortisol
Adrenal masses: Pathology review
Conn syndrome
Hyperaldosteronism
Miscellaneous hypoglycemics
Hypoglycemics: Insulin secretagogues
Mineralocorticoids and mineralocorticoid antagonists
Adrenal hormone synthesis inhibitors
Testosterone
Estrogen and progesterone
Precocious puberty
Virilization: Clinical
Neuroblastoma
Pheochromocytoma
Multiple endocrine neoplasia: Pathology review
Adrenal masses and tumors: Clinical
Kallmann syndrome
Amenorrhea
Polycystic ovary syndrome
Androgens and antiandrogens
Adrenergic antagonists: Alpha blockers
PDE5 inhibitors
Estrogens and antiestrogens
Progestins and antiprogestins
Aromatase inhibitors
Delayed puberty

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Content Reviewers

The name DiGeorge syndrome isn’t the most descriptive name, which is why it’s often also referred to as 22q11.2 deletion syndrome, which is actually pretty descriptive, and describes a condition in which a small portion of chromosome 22 is deleted, which causes a bunch of developmental abnormalities and complications.

Alright so our chromosomes are composed of genes, right?

Which are essentially instructions for everything from development to day-to-day survival, and these genes are spread out across 23 pairs of chromosomes.

22q11.2 is like an address, so 22 stands for chromosome 22, with q designating the long arm of the chromosome, then it’s on region 1, band 1, and sub-band 2.

This portion of dna, 22q11.2, spans about 30 genes and 1.5 to 3 million base pairs, which classifies it as a microdeletion since it’s less than 5 million base pairs.

Even though this region is relatively small, it encodes for some really important genes, one of which is the TBX1 gene, which is thought to play a big role in the disease.

The TBX1 gene is involved in normal development of the pharyngeal pouches, specifically pouch 3 and 4, which are fetal structures that develop into parts of the head and neck.

The third pharyngeal pouch goes on to develop into the thymus and the inferior parathyroid gland, the fourth pouch goes on to develop into the superior parathyroid gland.

So with a 22q11.2 deletion and therefore no TBX1 gene, the thymus and parathyroid gland both end up underdeveloped, called hypoplasia.

T lymphocytes or T cells are immune cells that’re super important for the adaptive immune response, and are produced in the bone marrow but mature in the thymus.

If someone has thymic hypoplasia and thymic dysfunction, the T cells don’t mature, and so these people often have a deficiency in mature T cells.

It turns out, though, that most people with DiGeorge syndrome have mild to moderate thymic dysfunction, called partial DiGeorge syndrome, which means that the immunodeficiency isn’t life-threatening.