Endometriosis

Last updated: November 01, 2022

Endometriosis

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Development of the reproductive system
Anatomy and physiology of the male reproductive system
Anatomy of the male reproductive organs of the pelvis
Anatomy of the male urogenital triangle
Precocious and delayed puberty: Clinical
Delayed puberty
Testicular cancer
Testicular tumors: Pathology review
Menstrual cycle
Gardnerella vaginalis (Bacterial vaginosis)
Pelvic inflammatory disease
Vaginal and vulvar disorders: Pathology review
Human papillomavirus
Breast cancer
Fibrocystic breast changes
Intraductal papilloma
Mastitis
Paget disease of the breast
Cervix and vagina histology
Fallopian tube and uterus histology
Mammary gland histology
Ovary histology
Penis histology
Prostate gland histology
Testis, ductus deferens, and seminal vesicle histology
Amenorrhea
Intrauterine growth restriction
Polyhydramnios
Oligohydramnios
Potter sequence
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Ectopic pregnancy
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Polycystic ovary syndrome
Ovarian sex-cord stromal tumors
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Ovarian surface epithelial tumors
Chorioamnionitis
Female sexual interest and arousal disorder
Orgasmic dysfunction
Genito-pelvic pain and penetration disorder
Cervical cancer
Endometrial cancer
Endometriosis
Uterine fibroid
Endometritis
Endometrial hyperplasia
Choriocarcinoma
Precocious puberty
5-alpha-reductase deficiency
Kallmann syndrome
Turner syndrome
Klinefelter syndrome
Androgen insensitivity syndrome
Penile cancer
Priapism
Hypospadias and epispadias
Benign prostatic hyperplasia
Prostatitis
Prostate cancer
Erectile dysfunction
Male hypoactive sexual desire disorder
Cryptorchidism
Inguinal hernia
Varicocele
Testicular torsion
Orchitis
Epididymitis
Amenorrhea: Pathology review
Benign breast conditions: Pathology review
Breast cancer: Pathology review
Cervical cancer: Pathology review
Complications during pregnancy: Pathology review
Congenital TORCH infections: Pathology review
Disorders of sex chromosomes: Pathology review
Disorders of sexual development and sex hormones: Pathology review
HIV and AIDS: Pathology review
Ovarian cysts and tumors: Pathology review
Penile conditions: Pathology review
Prostate disorders and cancer: Pathology review
Sexually transmitted infections: Vaginitis and cervicitis: Pathology review
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Testicular and scrotal conditions: Pathology review
Uterine disorders: Pathology review
Androgens and antiandrogens
Aromatase inhibitors
Estrogens and antiestrogens
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Uterine stimulants and relaxants
Adrenergic antagonists: Alpha blockers
PDE5 inhibitors
Estrogen and progesterone
Anatomy and physiology of the female reproductive system
Menopause
Puberty and Tanner staging
Breastfeeding
Oxytocin and prolactin
Testosterone
Pregnancy
Stages of labor
Hypertensive disorders of pregnancy: Clinical
Perinatal infections: Clinical
Antepartum hemorrhage: Clinical
Abnormal uterine bleeding: Clinical
Ovarian cysts, cancer, and other adnexal masses: Clinical
Placenta previa
Preeclampsia & eclampsia
Preterm labor
Postpartum hemorrhage
Postpartum hemorrhage: Clinical
Breast abscess: Clinical sciences
Mastitis: Clinical sciences
Anatomy of the breast
Hyperprolactinemia

Transcript

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Endo- means internal and -metrium means womb, so endometrium is the innermost layer of the womb, and endometriosis is where these endometrial cells grow outside of the womb.

The female internal sex organs are the ovaries, which are the female gonads; the fallopian tubes, two muscular tubes that connect the ovaries to the uterus; and the uterus, which is the strong muscular sack that a fetus can develop in.

It’s a hollow organ that sits behind the urinary bladder and in front of the rectum.

The top of the uterus above the openings of the fallopian tubes is called the fundus, and the region below the openings is called the uterine body.

The uterus tapers down into the uterine isthmus and finally the cervix, which protrudes into the vagina.

It’s is anchored to the sacrum by utero-sacral ligaments, to the anterior body wall by round ligaments, and it’s supported laterally by cardinal ligaments as well as the mesometrium, which is part of the broad ligament.

The wall of the uterus has three layers: the perimetrium, which is a layer continuous with the lining of the peritoneal cavity, the myometrium, which is made of smooth muscle that contracts during childbirth to help push the baby out, and the endometrium, a mucosal layer, that undergoes monthly cyclic changes.

In endometriosis, the cells that make up the endometrium migrate and implant themselves in other parts of the body.

Once there, they will set up camp and start growing to form a mass of endometrial tissue.

Most often, this affects the ovaries, fallopian tubes, and uterine ligaments.

But it can also affect other structures in the pelvis and abdomen like the perimetrium, the rectovaginal septum, the recto-uterine pouch, also called the pouch of Douglas, and even the intestines or bladder!

Although we are unsure of the exact cause of the endometrial cell migration, there are at least five main theories that try to explain this phenomenon.

First, retrograde menstruation theory says that during menstruation, some blood carrying endometrial cells will flow backwards into the fallopian tubes and implant into nearby tissue.

Sometimes, there could also be a patented fallopian tube, meaning there’s an opening in it, so the adventurous endometrial cells could actually escape and travel to the other pelvic and abdominal structures!

Now, because retrograde flow is much more common than endometriosis, other factors probably come into play.

So the second theory is that there’s a dysfunction with the immune system where B and T cells don’t respond to endometrial implants and allow it to grow.

Third, the metaplastic theory suggests that cells of the peritoneum, which come from the same cell line as endometrial cells, can transform spontaneously into endometrial tissue.

This theory explains how in rare cases, a woman that underwent a hysterectomy, where the uterus was surgically removed, can still develop endometriosis.

The fourth and fifth theories are especially useful for explaining how endometrial implants show up in places like the lungs or heart.

Benign metastases theory says that endometrial cells can travel to distant organs through the lymph and blood, while extrauterine stem cell theory says that stem cells in the bone marrow differentiate into endometrial cells and then travel to other parts of the body.

In addition to these proposed causes, there are some risk factors for developing endometriosis.

These include a family history of endometriosis, never having been pregnant, early menarche, and late menopause.

Now, whatever the cause, endometriosis implants are benign so they don’t grow out of control like cancerous cells.

However, because they’re functionally the same as the epithelial cells found within the uterus, they have the same estrogen receptor.

So they go through the same proliferation, secretion, and menstruation cycle just like the normal endometrial cells.

But, there are two key differences between normal endometrial cells and endometriosis implants.

First, the implanted cells contain high levels of the enzyme aromatase, which allows them to produce their own estrogen.

Second the implanted cells release pro-inflammatory factors which causes inflammation and scarring.

Sources

  1. "Robbins Basic Pathology" Elsevier (2017)
  2. "Harrison's Principles of Internal Medicine, Twentieth Edition (Vol.1 & Vol.2)" McGraw-Hill Education / Medical (2018)
  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)
  5. "Endometriosis and Infertility: How and When to Treat?" Frontiers in Surgery (2014)
  6. "Medical Management of Endometriosis" Clinical Obstetrics & Gynecology (2017)
  7. "Endometriosis" Endocrine Reviews (2019)