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Deep endometriosis conundrum: evidence in favor of a peritoneal origin.

OBJECTIVE: To determine whether the depth and volume of the pouch of Douglas differs in patients with endometriosis with and without deep lesions and to compare them with subjects with a healthy pelvis or with diseases other than endometriosis. DESIGN: Prospective, comparative study. SETTING: Tertiary care and referral center for patients with endometriosis. PATIENT(S): Women undergoing laparoscopy for infertility, pelvic pain, or adnexal anomalies (deep endometriotic rectovaginal lesions in 16 cases, endometriosis without deep lesions in 127 cases, miscellaneous anomalies in 35 cases, and normal pelvis in 26 cases). INTERVENTION(S): Douglas pouch depth measurement from the upper border of uterosacral ligaments to its base with a calibrated probe and volume assessment by a fluid-filling technique. MAIN OUTCOME MEASURE(S): Douglas pouch depth and volume. RESULT(S): Mean (+/-SD) Douglas pouch depth and volume measurements were 3.6 +/- 1.6 cm and 41.6 +/- 19.3 mL in women with deep endometriosis, 5.3 +/- 0.8 cm and 67.2 +/- 18.1 mL in those with peritoneal and ovarian lesions only, 5.2 +/- 0.9 cm and 67.6 +/- 12.6 mL in those with miscellaneous conditions, and 5.5 +/- 0.8 cm and 65.8 +/- 10.9 mL in those with normal pelvis. CONCLUSION(S): Reduced Douglas pouch depth and volume in women with deep endometriosis suggest that such lesions develop not in the rectovaginal septum but intraperitoneally and that burial by anterior rectal wall adhesions creates a false bottom, giving an erroneous impression of extraperitoneal origin.

Adult↗

Radiological detection and diagnosis of pouch of Douglas lesions.

The pouch of Douglas (cul-de-sac) represents the caudal extension of the peritoneal cavity. It is the rectovaginal pouch in the female and the rectovesical pouch in the male. The cul-de-sac is in a dependent position when either upright or supine; it is, therefore, a frequent location for seeded lesions. Abnormalities in the cul-de-sac include metastases, abscesses, and endometriosis. These lesions may be detected by multiple modalities, including barium enema, computed tomography, and ultrasound. Examples of numerous cul-de-sac lesions are presented as they appear with different imaging modalities.

Diagnosis, Differential↗

[Removal of Douglas's pouch - a review of 50 cases].

The authors demonstrate the innocuousness of the method of removal of the Pouch of Douglas after a critical analysis of 50 cases followed up for between 6 months and 5 years. They believe that simple removal of the pelvic peritoneum is sufficient to overcome the condition of a pathological fold of peritoneum, but not sufficient on the other hand to correct the condition of retroverted uterus because two new peritoneal fossae form lateral to the viscerae easily because of the morphology of the pelvic cavity. They therefore stress that, at the time of the operation, it is important to suture the utero-sacral ligaments together in the sagittal plane.

Adult↗

Aspiration cytology from the pouch of Douglas at hysteroscopy.

Eighty-seven fine needle aspiration cytological samples from 29 patients suffering from irregular perimenopausal uterine bleeding were evaluated. Aspiration cytology was performed prior to hysteroscopy, after distension of the uterine cavity and finally after uterine curettage. In this paper, cytological examination of fluid from the pelvic content in women with benign endometrial findings is compared with that of patients with adenocarcinoma. Endometrial curettage influenced the cell content of the cytologica specimens.

Adenocarcinoma↗

Characterization and identification of cytochrome P450 metabolites of arachidonic acid released by human peritoneal macrophages obtained from the pouch of Douglas.

Cytochrome P450 metabolism of arachidonic acid (AA) was investigated in human peritoneal macrophages which play a central role in chronic pelvic diseases in women (for example in endometriosis). The formation of eicosanoids other than prostaglandins (PGs) by these cells is still unknown. In non-activated macrophages obtained from women in the reproductive age, the main [(3)H]-AA metabolites coeluted with epoxyeicosatrienoic acids, dihydroxyeicosatrienoic acids (DHETs) and hydroxyeicosatetraenoic acids (HETEs) in reverse-phase HPLC. After zymosan activation a shift to PGs pathway was observed. Treatment with low doses of 2,3,7,8-tetrachlorodibenzo- p -dioxin increased the formation of a metabolite coeluting with 5,6-DHET. By gas chromatography/mass spectrometry 5,6-DHET (after beta-naphthoflavone induction), and 14,15-DHET as well as 11,12-DHET (after AA stimulation) were identified as major epoxygenase metabolites, respectively. The enantioselective formation of 12(S)-HETE was demonstrated by chiral-phase HPLC. Our findings demonstrate that non-activated peritoneal macrophages produce substantial amounts of bioactive cytochrome P450 metabolites of AA.

Arachidonic Acid↗