Disorders of sex chromosomes: Pathology review

Last updated: March 03, 2021

Disorders of sex chromosomes: Pathology review

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Anatomy of the pelvic girdle
Anatomy of the pelvic cavity
Anatomy of the male reproductive organs of the pelvis
Anatomy of the perineum
Anatomy clinical correlates: Male pelvis and perineum
Anatomy of the female urogenital triangle
Anatomy clinical correlates: Female pelvis and perineum
Development of the reproductive system
Prostate gland histology
Testis, ductus deferens, and seminal vesicle histology
Penis histology
Anatomy and physiology of the male reproductive system
Testosterone
Hypospadias and epispadias
Priapism
Prostatitis
Penile cancer
Cryptorchidism
Varicocele
Orchitis
Testicular cancer
Epididymitis
Testicular torsion
Hernias: Clinical
Vaginal and vulvar disorders: Pathology review
Cervical cancer: Pathology review
Cervical cancer
Menstrual cycle
Anatomy and physiology of the female reproductive system
Prostate cancer
Benign prostatic hyperplasia
Inguinal hernia
Ovarian cyst
Premature ovarian failure
Polycystic ovary syndrome
Ovarian torsion
Ovarian sex-cord stromal tumors
Ovarian germ cell tumors
Ovarian surface epithelial tumors
Endometritis
Endometrial cancer
Endometriosis
Endometrial hyperplasia
Choriocarcinoma
Uterine fibroid
Testicular tumors: Pathology review
Uterine disorders: Pathology review
Ovarian cysts and tumors: Pathology review
Amenorrhea
Amenorrhea: Clinical
Amenorrhea: Pathology review
Ectopic pregnancy
Virilization: Clinical
Abnormal uterine bleeding: Clinical
Haemophilus ducreyi (Chancroid)
Treponema pallidum (Syphilis)
Herpes simplex virus
Chlamydia trachomatis
Gardnerella vaginalis (Bacterial vaginosis)
Neisseria gonorrhoeae
Candida
Trichomonas vaginalis
Arteries and veins of the pelvis
Nerves and lymphatics of the pelvis
Anatomy of the inguinal region
Anatomy of the male urogenital triangle
Anatomy of the breast
Anatomy clinical correlates: Breast
Mammary gland histology
Ovary histology
Fallopian tube and uterus histology
Cervix and vagina histology
Puberty and Tanner staging
Estrogen and progesterone
Menopause
Pregnancy
Oxytocin and prolactin
Stages of labor
Breastfeeding
Erectile dysfunction
Male hypoactive sexual desire disorder
Female sexual interest and arousal disorder
Pelvic inflammatory disease
Urethritis
Androgens and antiandrogens
Adrenergic antagonists: Alpha blockers
PDE5 inhibitors
Estrogens and antiestrogens
Progestins and antiprogestins
Aromatase inhibitors
Sexually transmitted infections: Clinical
Human development days 1-4
Human development days 4-7
Human development week 2
Human development week 3
Infertility: Clinical
Placenta previa
Development of the placenta
Turner syndrome
Klinefelter syndrome
Fragile X syndrome
Ovarian cysts, cancer, and other adnexal masses: Clinical
Galactosemia
Hyperemesis gravidarum
Complications during pregnancy: Pathology review
Vulvovaginitis: Clinical
Endometrial hyperplasia and cancer: Clinical
Cervical cancer: Clinical
Vaginal cancer: Clinical
Vulvar cancer: Clinical
Fetal circulation
Preeclampsia & eclampsia
Hypertensive disorders of pregnancy: Clinical
Uterine stimulants and relaxants
cGMP mediated smooth muscle vasodilators
Postpartum hemorrhage: Clinical
Placenta accreta
Placental abruption
Antepartum hemorrhage: Clinical
Abnormal labor: Clinical
Gestational trophoblastic disease: Clinical
Krukenberg tumor
Breast cancer: Pathology review
Benign breast conditions: Pathology review
Breast cancer
Fibrocystic breast changes
Breast cancer: Clinical
Anatomy of the female reproductive organs of the pelvis
Precocious puberty
Delayed puberty
Androgen insensitivity syndrome
5-alpha-reductase deficiency
Kallmann syndrome
Bladder exstrophy
Orgasmic dysfunction
Genito-pelvic pain and penetration disorder
Mastitis
Intraductal papilloma
Phyllodes tumor
Paget disease of the breast
Gestational hypertension
Gestational diabetes
Cervical incompetence
Oligohydramnios
Polyhydramnios
Potter sequence
Intrauterine growth restriction
Preterm labor
Postpartum hemorrhage
Chorioamnionitis
Congenital toxoplasmosis
Congenital cytomegalovirus (NORD)
Congenital syphilis
Neonatal conjunctivitis
Neonatal herpes simplex
Congenital rubella syndrome
Neonatal sepsis
Neonatal meningitis
Miscarriage
Gestational trophoblastic disease
Fetal hydantoin syndrome
Fetal alcohol syndrome
Disorders of sex chromosomes: Pathology review
Prostate disorders and cancer: Pathology review
Congenital TORCH infections: Pathology review
Disorders of sexual development and sex hormones: Pathology review
Testicular and scrotal conditions: Pathology review

Transcript

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Noam, a 33 year old male, comes to the clinic after trying to conceive a baby with his wife for more than a year, with no luck. Noam is very thin and quite tall. Upon physical examination, you notice that his testes are smaller than normal, and he has enlarged breast tissue. In addition, Noam doesn’t seem to have much facial and pubic hair. You decide to run a blood test, which reveals that Noam’s testosterone and inhibin B levels are decreased, while gonadotropin and estrogen are increased. In addition, you perform a karyotype analysis on his cells and find 47 chromosomes, among which there’s two X chromosomes and one Y chromosome.

Next, you see Hadas, a 17 year old girl who’s worried because she hasn’t gotten her first menstrual period yet. The first thing you notice is that Hadas is quite short for her age. Upon physical examination, she has a webbed neck, a broad chest, and poorly developed breasts with widely spaced nipples. In addition, you notice her ring fingers are very short. A blood test shows low estrogen levels and high gonadotropins, and a karyotype analysis reveals only 45 chromosomes, with one X chromosome.

Okay, based on their presentation, both Hadas and Noam seem to have some sort of disorder of sex chromosomes. Now, humans typically have 23 pairs of chromosomes, so 46 total; out of which 22 pairs are autosomal, and 1 pair consists of sex choromosomes, which can be X or Y. Generally, an individual with two X chromosomes, or 46,XX is considered to be genetically female. However, only one X chromosome gets expressed and the other is inactivated through a process called X inactivation or lyonization, becoming a Barr body. On the other hand, an individual with one X and one Y chromosome, or 46,XY is genetically male. And since there’s only one X chromosome to begin with, there’s generally no Barr body.

Now, individuals with sex chromosome disorders have aneuploidy, meaning that there’s a missing or extra sex chromosome. Most often, this results from nondisjunction, which can occur in the egg or sperm cell during meiosis 1 or 2, where a chromosome pair or sister chromatid respectively doesn’t split apart. So the child of this individual could either receive two chromosomes from that parent and one more from the other parent, resulting in trisomy; or no chromosome from that parent and one from the other parent, resulting in monosomy. Less frequently, nondisjunction may occur during mitosis, where a sister chromatid doesn’t separate.

Now, sex chromosome disorders may result in hormonal imbalance and abnormalities in sexual development, which is normally under control of the hypothalamus-pituitary-gonadal axis. First, the hypothalamus secretes gonadotropin-releasing hormone, or GnRH for short, which goes to the anterior pituitary to stimulate the release of gonadotropic hormones, which are luteinizing hormone or LH, and follicle-stimulating hormone or FSH. LH and FSH then stimulate the gonads to produce sex hormones; in males, LH stimulates the Leydig cells of the testes to secrete testosterone, and FSH stimulates the Sertoli cells to secrete inhibin B.

Testosterone and inhibin B are responsible for the development of male primary sexual characteristics, which are the changes necessary for reproduction like enlargement of the penis and testes; as well as male secondary sexual characteristics that aren’t required for reproduction, like a deepening of the voice, and increased muscle mass, and a male pattern of hair growth on the face, chest, axillae, and genital areas.

On the other hand, in females, LH and FSH stimulate the ovaries to secrete estrogen and progesterone, which are responsible for the female primary sexual characteristics like ovulation, menstruation, and uterine development; as well as female secondary characteristics like breast development, hip widening, and hair growth mainly on the axillae and genital areas. Now, once sex hormones have done their job, they signal the hypothalamus and pituitary to turn off the secretion of GnRH, FSH, and LH.

All right, now back to sex chromosome disorders, which include Turner syndrome, Klinefelter syndrome, and XYY syndrome.

Let’s begin with Turner syndrome, which is characterized by having 45 chromosomes with only one X chromosome, so individuals are genetically females. In most cases, this happens when a nondisjunction event occurs during meiosis of the paternal gamete, so that the sperm cell lacks a sex chromosome. An important thing to note is that, since there’s only one X chromosome, there’s no Barr body. Conversely, if the nondisjunction occurs after formation of the zygote during mitosis, the result is a mosaic karyotype, meaning that some cells are 45,X and others are 46,XX, or in a few cases even 46,XY!

For your exams, you should recognize some clinical features that are characteristic for Turner syndrome. Firstly, infants may have a variety of congenital malformations. These can include a horseshoe kidney, which is when the two kidneys fuse at the bottom, forming a U shape; as well as cardiovascular abnormalities, like bicuspid aortic valve and coarctation or narrowing of the aorta, which are the most common causes of death in childhood. Another very common finding in infants are lymphatic defects, such as lymphedema or swelling of the hands and feet.

Many also develop a cystic hygroma, which is an abnormal swelling on the back of the baby’s neck due to lymphatic fluid build up, which eventually decreases as they age. This often leaves extra skin on the neck, called a webbed neck that’s wider than normal. Additionally, mosaic individuals with some 46,XY cells are at increased risk for gonadoblastoma, which is a complex neoplasm of gonadal components.

Now, the X chromosome also carries genes that are important for growth and development of tissues throughout the body. One of these is the short stature homeobox - SHOX for short - gene. So having a single copy of the SHOX gene results in, you guessed it, short stature. Other characteristic features include a shield-like or broad chest, and extensively spaced nipples. Additional features include shortened fourth metacarpals or ring fingers, low set ears, and arms that turn outward at the elbows, also called cubitus valgus.

During puberty, there’s minimal pubic hair, breast, and uterine development, as well as ovarian dysgenesis or abnormal development, leading to streak ovaries, which develop white atrophic fibrous strands. As a result, females with Turner syndrome produce decreased levels of estrogen, which leads to increased levels of both LH and FSH. Because of this, Turner syndrome is the most common cause of primary amenorrhea or absence of menstruation, and thus individuals are said to reach ‘menopause before menarche’. As a consequence, many females with Turner syndrome are infertile. Keep in mind though that pregnancy may be possible in some cases through in-vitro fertilization or treatment with exogenous estradiol-17β and progesterone.

Sources

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  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)
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  7. "Consensus Statement on Management of Intersex Disorders" PEDIATRICS (2006)
  8. "Androgens in Congenital Adrenal Hyperplasia" Frontiers of Hormone Research (2019)
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