Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “ADRENALECTOMY”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 685 records · Page 38Linked to original sources

Assessment of serum catecholamine concentrations in patients with pheochromocytoma undergoing videolaparoscopic adrenalectomy.

INTRODUCTION: We analyzed the changes in serum catecholamine concentrations, i.e. adrenaline and noradrenaline, in response to surgical stress in patients with pheochromocytoma who undergone videolaparoscopic adrenalectomy. MATERIALS AND METHODS: Between January 1998 and March 2002, 11 patients underwent 12 videolaparoscopic adrenalectomies. In one case, the adrenalectomy was bilateral. Serum catecholamines were measured at 6 surgical times: T0: control before induction; T1: following the induction, laryngoscopy and intubation sequence; T2: after installing the pneumoperitoneum; T3: during manipulation-exeresis of the pheochromocytoma; T4: following ablation of the pheochromocytoma; T5: in the recovery room following intervention when the patient was extubated and was hemodynamically stable. RESULTS: Mean concentrations of serum noradrenaline were significantly different when the T0 and T2 surgical times were compared (T0: 3161 pg/mL; T2: 40440 pg/mL; p < 0.01), T0 and T3 (T0: 3161 pg/mL; T3: 46021 pg/mL; p < 0.001), T1 and T3 (T1: 5531 pg/mL; T3: 46021 pg/mL; p < 0.01), T2 and T4 (T2: 40440 pg/mL; T4: 10773 pg/mL; p < 0.01) and T3 and T5 (T3: 46021 pg/mL; T5: 2549 pg/mL; p < 0.001). Mean concentrations of serum adrenaline were significantly different when the T0 and T3 surgical times were compared (T0: 738 pg/mL; T3: 27561 pg/mL; p < 0.01). CONCLUSION: The pneumoperitoneum significantly increases serum noradrenaline concentrations, manipulation of the adrenal gland significantly increases the serum concentrations of noradrenaline and adrenaline, and the pheochromocytoma ablation significantly decreases serum noradrenaline concentrations.

Adrenal Gland Neoplasms↗

Long term follow-up of Cushing's disease treated with reserpine and pituitary irradiation followed by subtotal adrenalectomy.

Subtotal adrenalectomy was given to 10 adult patients with Cushing's disease, concurrently with or following therapeutic regimen by long term reserpine administration and pituitary irradiation. In the present study, we describe long term follow-up results. Two patients died after the operation due to acute adrenal crisis and pneumonia, respectively. The other 8 patients achieved clinical and biochemical remissions and were followed for long term. Three patients relapsed 9, 14 or 17 years after achieving remission, two patients developed hypopituitarism 12 or 20 years after and one died of cerebral vascular accident at 64 years, 5 years after the remission. The remaining 2 patients maintained remission for 10 or 18 years, respectively. During the remission periods of 0.5 to 20 years with a mean of 10.1 +/- 6.7 years, 6 of 7 patients examined by 1 mg overnight dexamethasone test showed normal suppressibility of plasma cortisol. Provocative tests of plasma GH by l-arginine infusion and/or insulin-induced hypoglycemia were performed in 6 patients in the early remission period. All of 5 patients in the arginine infusion test and 3 of 5 in the insulin-induced hypoglycemia test showed normal responses. Furthermore, to facilitate prediction of long term response or failure to our therapeutic regimen, long term reserpine administration and pituitary irradiation, pretreatment clinical and biochemical characteristics were analyzed retrospectively in 3 divided groups; the present 10 patients treated with reserpine and pituitary irradiation followed by subtotal adrenalectomy, 11 patients achieving long term remission treated by our regimen alone, and 7 patients failed with our regimen alone. There were no significant factors predictive of response to our regimen. These findings suggest that subtotal adrenalectomy does not lead favorable outcome, however, reserpine administration shows usefulness to improve pituitary functions in treating Cushing's disease.

Adolescent↗

Effect of bilateral adrenalectomy and corticosteroid therapy on the secretion of corticotrophin-releasing factor activity from the hypothalamus of the rat in vitro.

The rat hypothalamus in vitro preparation was used to investigate the effect of bilateral adrenalectomy, with and without replacement therapy, on the release of corticotrophin-releasing factor(CRF). Corticotrophin-releasing factor was estimated using 48 h basal hypothalamic lesioned assay rats and corticosterone production of excised adrenals was used as the end point. Bilateral adrenalectomy resulted in depletion of hypothalamic CRF content within the first 2 h after the operation but this effect was prevented by replacement therapy with corticosterone. Thereafter, the hypothalamic CRF content returned to values not significantly different from the intact control level. Bilateral adrenalectomy caused an increase in both basal and acetylcholine-induced release of CRF and it is suggested that corticosteroids exert a negative feedback effect on the hypothalamus.

Acetylcholine↗

Immunoreactive vasopressin and oxytocin in hypothalamo-hypophysial portal blood of the Brattleboro and Long-Evans rat: effect of adrenalectomy and dexamethasone.

Immunoreactive vasopressin and oxytocin were measured in the hypothalamo-hypophysial portal blood of both Long-Evans and homozygous Brattleboro rats. Adrenalectomy caused an increase in vasopressin immunoreactivity in portal blood in the Long-Evans strain, whilst administration of dexamethasone to these adrenalectomized animals resulted in a reduction in portal vasopressin immunoreactivity to levels below those seen in sham-operated animals. This vasopressin immunoreactivity co-eluted with synthetic vasopressin on high-pressure liquid chromatography (HPLC), and diluted in parallel in radio-immunoassay. In Brattleboro rats, however, although vasopressin-like immunoreactivity was detected, the portal concentration did not vary with the adrenal status of the animal, nor did it show the characteristics of standard vasopressin on HPLC or in immunoassay. Oxytocin was present in the portal blood of both Long-Evans and Brattleboro rats at similar very high concentrations, but did not vary in response to adrenalectomy. These results are consistent with a role for vasopressin, but not oxytocin, in the hypothalamic response to adrenalectomy and glucocorticoid feedback. Neither vasopressin immunoreactivity nor oxytocin appear to subserve this role in the homozygous Brattleboro rat.

Adrenalectomy↗

Effects of hyperosmotic stimulation and adrenalectomy on vasopressin mRNA levels in the paraventricular and supraoptic nuclei of the hypothalamus: in situ hybridization histochemical analysis using a synthetic oligonucleotide probe.

The effects of salt loading and adrenalectomy on arginine vasopressin (AVP) mRNA levels in the paraventricular nucleus (PVN) and the supraoptic nucleus (SON) of the hypothalamus were studied by semiquantitative in situ hybridization histochemistry, using a synthetic oligonucleotide probe and a computer-assisted image analysis system. Salt loading (2% NaCl) for 7 days produced marked increases in AVP mRNA levels in the magnocellular neurons of the PVN, SON, and accessory nuclei. Adrenalectomy caused an increase in AVP mRNA expression in the magnocellular part of the PVN and the expansion of hybridization signals into its medial parvocellular region, where the cell bodies of corticotropin-releasing hormone (CRH) neurons are located. No apparent alteration of AVP mRNA levels was observed in the SON following adrenalectomy. These results indicate that hyperosmotic stimulation and the loss of circulating glucocorticoids had differential effects on AVP gene expression in the PVN and SON, and that the magnocellular PVN and SON neurons responded in different manners to the loss of feedback signals.

Adrenalectomy↗

Effect of uni-adrenalectomy on blood pressure in a patient with excessive adrenal 18-hydroxy-11-deoxycorticosterone production bilaterally.

A 46-year-old woman was presented with mineralocorticoid excess syndrome and a large mass originating from the right adrenal gland. Clinical examination before right adrenalectomy revealed elevated serum concentrations of 18-hydroxy-11-deoxycorticosterone (18-OH-DOC) both systemically and in the adrenal veins bilaterally. Histopathological and immunohistochemical analyses of the surgical specimen demonstrated adrenal hyperplasia of outer fasciculata cells, and the presence of cystic mass. The adrenalectomy ameliorated her blood pressure (BP) from 156/96 mmHg to 148/87 mmHg with a concomitant increase of serum potassium concentration from 3.1 mEq/l to 3.5 mEq/l. These results suggest that uni-adrenalectomy is, at least in part, effective in ameliorating not only BP but also potassium concentration in a patient of adrenal hyperplasia with excessive bilateral 18-OH-DOC production.

18-Hydroxydesoxycorticosterone↗

Adrenalectomy improves diabetes in A-ZIP/F-1 lipoatrophic mice by increasing both liver and muscle insulin sensitivity.

The virtually fatless A-ZIP/F-1 mouse is profoundly insulin resistant, diabetic, and a good model for humans with severe generalized lipoatrophy. Like a number of other mouse models of diabetes, the A-ZIP/F-1 mouse has elevated serum corticosterone levels. Leptin infusion lowers the corticosterone levels, suggesting that leptin deficiency contributes to the hypercorticosteronemic state. To test the hypothesis that the increased glucocorticoids contribute to the diabetes and insulin resistance, we examined the effect of adrenalectomy on A-ZIP/F-1 mice. Adrenalectomy significantly decreased the blood glucose, serum insulin, and glycated hemoglobin levels. Hyperinsulinemic-euglycemic clamps were performed to characterize the changes in whole-body and tissue insulin sensitivity. The adrenalectomized A-ZIP/F-1 mice displayed a marked improvement in insulin-induced suppression of endogenous glucose production, indicating increased hepatic insulin sensitivity. Adrenalectomy also increased muscle glucose uptake and glycogen synthesis. These results suggest that the chronically increased serum corticosterone levels contribute to the diabetes of the A-ZIP/F-1 mice and that removal of the glucocorticoid excess improves the insulin sensitivity in both muscle and liver.

Adrenalectomy↗

[A case report of Cushing's syndrome due to adrenocortical nodular dysplasia, with remission period of 6 years after unilateral adrenalectomy].

A 29 y.o. female had been associated with Cushing's syndrome, gradually, from 1977. She was advised to get further examination at our hospital on September 1980. A pre-operative diagnosis of Cushing's syndrome due to bilateral adrenocortical tumors was made and right adrenalectomy was performed on December 22, 1980, as the 1st of two stage operation. The right adrenal, 1.8 cm in diameter, had a pigmented nodule and multiple pigmented micronodules, which were diagnosed pathologically as primary adrenocortical nodular dysplasia. It was not necessary for this patient to maintain steroid therapy, but after 3 months she complained of the withdrawal syndrome and was administered dexamethasone. Since July, 1981, she had no symptom without adrenocortical steroid administration. In November 1986, she became cushingoid and on June 1, 1987, we performed left adrenalectomy on her. The appearance of the left adrenal was similar to the right. We have found no reports of the cases of adrenocortical nodular dysplasia such as delayed appearance of withdrawal syndrome after unilateral adrenalectomy. In this case, plasma ACTH had relatively poor correlation with cortisol. Her plasma ACTH was not always suppressed and sometimes within normal range. Her adrenals had not only autonomy but also pituitary dependency. It is concluded that in this case there may have been a pituitary-adrenal dual control.

Adrenal Glands↗

[A case report of laparoscopic adrenalectomy].

Laparoscopic left adrenalectomy was performed on a 47 years old male patient with primary aldosteronism. Subcutaneous steel traction method was utilized in addition to intraperitoneal CO2 insufflation method. The combined use of steel traction method reduced CO2 insufflation pressure below 12 mmHg and might reduce possibility of CO2-related complications. A left adrenal gland was approached by a resection of phrenic colic ligament and a traction of a transverse and descending colon. Laparoscopic adrenalectomy has distinct advantages over open adrenalectomy in terms of avoidance of skin and muscle incision and rib resection, and early convalescence. This less invasive method might prevail in near future.

Adrenal Gland Neoplasms↗

[Laparoscopic adrenalectomy. A critical review of the literature].

Open adrenalectomy needs surgical incisions often large and traumatic, with a not negligible morbidity. Laparoscopic adrenalectomy, according to the experiences reported in the literature, certainly initial, but nevertheless considerable, seems to offer a sound option and will probably become one of the strongest indications of the minimal-access surgery of the retroperitoneal space. Operative times are certainly longer initially than in open surgery but morbidity is very low and mortality almost nil. The authors make a review of the literature about laparoscopic adrenalectomy with about 400 operations collected, analyzing the results and the technical details. The collected data support the conclusion that the adrenal pathology, with the exception of the malignant tumors, will be treated in the future mainly laparoscopically. Even the size of the tumor, in case of a not malignant mass, can not be considered probably a true contraindication.

Adrenal Gland Neoplasms↗

[Laparoscopic transabdominal adrenalectomy].

Adrenalectomy is an operation, which is particularly suitable for minimally-invasive techniques. In several surgical departments with special interest in endocrine disorders laparoscopic adrenalectomy has become the procedure of choice in the surgical treatment of benign adrenal lesions. In transabdominal laparoscopic adrenalectomy the adrenal region is exposed by mobilizing the liver or the spleen respectively. The inferior vena cava and the left renal vein are the most important landmarks for further dissection and orientation. Different retroperitoneoscopic approaches have been described besides the transperitoneal techniques.

Adrenalectomy↗

Surgical treatment of Cushing's disease caused by adrenocortical hyperplasia: experiences with bilateral adrenalectomy.

Experience with the surgical treatment of hypercorticism caused by bilateral adrenocortical hyperplasia in 16 patients is discussed. The treatment of choice is bilateral total adrenalectomy. Following subtotal adrenalectomy recurrence occurred in three of six patients; a third operation was needed in two cases, while permanent hypadrenia developed in the third. There was no operative mortality. One patient died 9 years after surgery, but the death was not related to the original disease. The clinical symptoms of hypercorticism subsided in every totally adrenalectomized patient. Indication and contraindication of adrenalectomy, the surgical method, and the problems of pre- and postoperative treatment are discussed.

Adolescent↗

Influence of gonadotropins on adrenalectomy induced changes in the testis of albino mouse.

Effects of adrenalectomy and administration of gonadotropins on cell counts of different cell types of spermatogenesis and morphology of the Leydig cells were studied in 30 day old mice. Adrenalectomy (duration, 12 days; age at autopsy 42 days) caused a significant decrease in the diameters of seminiferous tubules and Leydig cell nucleus and, cell counts of intermediate spermatogonia, round and elongated spermatids. Administration of FSH (75 micrograms/0.1 ml saline) + LH (25 micrograms/0.1 ml saline) everyday for 12 days to adrenalectomized mice restored testicular activity as revealed by significant increases in mean diameter of the Leydig cell nuclei and cell counts of intermediate spermatogonia and elongated spermatids over those of adrenalectomized mice. The results indicate that (i) testis of adrenalectomized mouse responds to gonadotropin treatment and (ii) impairment in gonadotropin secretion is possibly a major factor in inducing testicular regression following adrenalectomy.

Adrenalectomy↗

Laparoscopic robot-assisted right adrenalectomy and left ovariectomy (case reports).

BACKGROUND: Laparoscopic robot-assisted surgery has been created to reduce the patient risk of inappropriate scope movements by an assistant and to perform operations quicker and with greater ease. The Authors report their experience in laparoscopic robot-assisted right adrenalectomy for Conn's syndrome and right ovariectomy for benign ovarian mass. MATERIAL AND METHODS: Case 1. CT scan: solid right adrenal mass (diam. 2 cm). An anterior transperitoneal approach was used to perform the right adrenalectomy. The surgeon was placed at the ventral side of the patient and robotic-device was placed at the backside. HISTOLOGY: adrenocortical adenoma (diam. 3 x 2.5 x 1.5 cm). Case 2. CT scan: left iliac mass (diam. 3.5 cm) with origin in the left ovary. The patient was positioned in the gynecological position. The surgeon was positioned on right side of the patient and robot-device on left side. Left ovariectomy was performed. HISTOLOGY: ovarian serous cyst. RESULTS: Operating time was 180 min. for the adrenalectomy and 25 min. for the ovariectomy. No blood loss or complications for both operations were encountered. Image was steady and lens cleaning was unnecessary. CONCLUSIONS: The robot device (AESOP 2000) facilitated the procedures by enhancing stability of the image and reducing the need for lens cleaning. We believe that this method is feasible and could be advantageous especially for cholecystectomy, Nissen funduplication or ovariectomy but at the moment there are no comparative studies to establish the real value of this device.

Adrenalectomy↗

[Minimally invasive adrenalectomy with posterior retroperitoneoscopy].

Authors report a total of 14 adrenalectomies performed from a posterior (lumbotomy) approach, using minimally invasive retroperitoneoscopic technique. The "UltraCision" scalpel, an ultrasound activated cutter-coagulation device has been used for operative tissue dissection. Two cases were converted. The mean operating time of the successful 12 cases were 128 minutes. No mortality and no septic complication occurred. The mean operative blood loss of the 12 procedures were less than 100 ml. The mean hospitalisation was 3-5 days, and the complete recovery needed 2-3 weeks. On the basis of our own experiences and the ones of prospective, randomized clinical studies of the literature, the retroperitoneoscopic adrenalectomy from a posterior approach is recommended for the surgical treatment of benign tumours of the suprarenal gland with a size less than 5 cm diameter. The low conversion- and complication-rate, the minimal operative blood loss, the short hospitalization and quick recovery time all are the advantages of this method. It can be performed after previous abdominal operation and in cases with morbid obesity. The technique is suitable for bilateral adrenalectomies as well. This method is not justified for the removal of malignant and/or larger than 5 cm adrenal tumours. Coagulopathies are contraindications.

Adrenalectomy↗

Adrenalectomy for isolated adrenal metastases from non-adrenal cancer.

Adrenalectomy for metastatic cancer is rarely performed. The survival benefit for patients undergoing resection of isolated adrenal metastases is not clear. The goal of this study was to compile a series of such cases from national and international sources and examine patient survival. The patient series was derived from published series and case reports, plus eight new cases from an international registry of patients. We found 77 patients. We examined the effect of primary tumor site, metastasis size, and disease-free interval on postoperative survival duration, including only cases where complete resection with negative margins was achieved. We compared these patients with a large series from Memorial Sloan-Kettering Cancer Center (N=37). The median survival time after adrenalectomy was 23 months, with an operative mortality rate of 3.9%. There was a significant difference in survival duration depending on primary tumor site. A longer disease-free interval from time of primary cancer therapy to adrenal metastasis was associated with a longer postoperative survival after adrenalectomy. Metastasis size did not affect survival. Survival times for USA and non-USA patients were similar. Survival duration of the 77 analytical patients was similar to that of the 37 non-analytical patients from Memorial Sloan-Kettering Cancer Center. Selected patients, particularly those with long disease-free intervals and favorable tumor biology, should be offered resection for isolated adrenal metastases.

Adrenal Gland Neoplasms↗

[Laparoscopic adrenalectomy].

Constant advances and increasing experience in laparoscopic surgery renders it applicable for adrenal surgery. The wide exposure required for open adrenal surgery makes this minimally invasive procedure an attractive and advantageous alternative. Between 1996-1999, we performed 35 laparoscopic adrenalectomies in 30 patients 20-72-years old. Indications included: Conn's syndrome--14, pheochromocytoma--11, Cushing's syndrome--6, nonfunctioning adenoma--3, and metastatic sarcoma--1. 5 underwent bilateral laparoscopic adrenalectomy. In 3 (8.5%) the procedures were converted to open operations. Overall morbidity was 13% and there was no mortality. Mean operative time was 188 minutes, but only 130 in our last 10 cases. Mean hospital stay was 4 days and they returned to normal activity an average of 2 weeks later. According to our study and previous reports, laparoscopic adrenalectomy is feasible and safe and it may soon become the procedure of choice for adrenal tumors.

Adenoma↗

Thoracoscopic transdiaphragmatic adrenalectomy: the initial experience.

PURPOSE: We introduce the technique of thoracoscopic transdiaphragmatic adrenalectomy. MATERIALS AND METHODS: Initially in 4 human cadavers bilateral thoracoscopic nephrectomy was performed to develop the technique of diaphragmatic incision, retroperitoneal control of renal artery and vein, circumferential mobilization of the kidney and adrenal gland, and suture repair of the diaphragm. Subsequently, 3 select patients underwent thoracoscopic transdiaphragmatic adrenalectomy (2 right side and 1 left side). All 3 patients had significant prior abdominal scarring after either partial or total radical nephrectomy, thereby precluding efficient transabdominal laparoscopic access to the adrenal gland. After double lumen endotracheal intubation, a 4 port transthoracic approach without pneumo-insufflation was performed with the patient in the prone position. The diaphragm was incised under real-time laparoscopic ultrasound guidance. The adrenal gland was visualized high in the retroperitoneum, the vasculature controlled, and the specimen entrapped and extracted intact through a thoracic port site. The diaphragm was suture repaired with freehand laparoscopic suturing and intracorporeal knot tying. A chest tube was inserted in the initial 2 patients. RESULTS: There were no intraoperative or postoperative complications. Operating time was 4.5, 6.5 and 2.5 hours, and blood loss was 150, 500 and 50 cc, respectively. Mean narcotic analgesic requirement was 27 mg. morphine sulfate equivalent. Hospital stay was 2 days for all 3 patients. Pathology revealed metastatic renal cell carcinoma in 2 patients and myelolipoma in 1. CONCLUSIONS: In select patients with significant concomitant intraperitoneal and retroperitoneal scarring from prior major abdominal or renal surgery laparoscopic adrenalectomy can be safely performed with the transthoracic transdiaphragmatic approach. We present our initial experience.

Adrenal Gland Neoplasms↗