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Splenectomy in hematology. Current practice and new perspectives.

BACKGROUND AND OBJECTIVE: Progress and changes in the management of blood diseases, in surgery and in video technology stimulate a critical reappraisal of splenectomy in hematology. DESIGN AND METHODS: We have collected information on the current practice of splenectomy in hematology in Italy and we have reviewed the results of a new technique of laparoscopic splenectomy (LS). RESULTS: Current splenectomy practice: the current practice in Italy is to offer splenectomy as front-line treatment for hereditary spherocytosis and as second-line for idiopathic thrombocytopenic purpura (ITP) and hemolytic anemia. Splenectomy is also offered in selected cases of leukemia and lymphoma but is going out of practice for hairy cell leukemia and Hodgkin's disease. The number of splenectomies that are performed every year is estimated to be higher than 10x10(6) persons (more than 500 cases per year). Laparoscopic splenectomy (LS): more than 700 cases of LS have been reported so far, for thrombocytopenia (470 cases) as well as for many other hematologic indications. The procedure carries a mortality of 0.8%, and a complication rate of 12%. Time spent in the operating theater ranges from 1.5 to 4 hours, blood transfusion requirement is minimal and the mean post-operative hospital stay is 3 days. INTERPRETATION AND CONCLUSIONS: Although a prospective comparison is not available, the results of LS compare favorably with the results of classic open splenectomy, so that LS is likely to become the technique of choice especially when the spleen is small, as in ITP. LS can also have some advantages in other cases of splenectomy, including splenomegaly for leukemia and lymphoma. These data and suggestions should stimulate and renew a discussion about splenectomy in hematology, with the purpose of establishing evidence-based guidelines.

Hematologic Diseases↗

Response to intravenous immunoglobulin predicts splenectomy response in children with immune thrombocytopenic purpura.

OBJECTIVE: Response to intravenous immunoglobulin (IVIG) has been shown to predict response to splenectomy in adults with immune thrombocytopenic purpura (ITP). However, reports in children have been inconsistent. We sought to determine whether response to IVIG is predictive of response to splenectomy in children. METHODS: Thirty-two assessable children were identified by a retrospective chart review. Response was graded according to previously published criteria as follows: "excellent" (platelets >150 000 within 1 week), "good" (platelets between 50 000 and 150 000), and "poor" (platelets <50 000). "Response" refers to both splenectomy and IVIG, and response to splenectomy was counted only when it was durable. RESULTS: Twenty-one of 23 patients who had a good or excellent response to IVIG also had an excellent response to splenectomy. Six of 9 patients who had a poor response to IVIG also had a poor response to splenectomy. Response to IVIG was a sensitive predictor of response to splenectomy in 88% of patients. Response to IVIG had a specificity of 75%, a positive predictive value of 91%, and a negative predictive value of 67%. Response to prednisone and length of time to splenectomy were not correlated with splenectomy response. CONCLUSIONS: These results suggest that response to IVIG is predictive of response to splenectomy in children with chronic ITP. This correlation may be of value in deciding whether a splenectomy should be performed in children with chronic ITP.

Adolescent↗

Outcomes in the treatment of thrombotic thrombocytopenic purpura with splenectomy: a retrospective cohort study.

The mainstay of treatment for thrombotic thrombocytopenic purpura (TTP) is plasma exchange (PE), but the role of splenectomy is still undefined. The records of all patients with TTP at a single center over a 20-year period were retrospectively reviewed. Response to plasma exchange was determined. The outcome of patients treated with splenectomy in the setting of TTP was evaluated. Sixty-one patients had been treated for TTP. Thirty-nine patients (64%) achieved complete remission (CR) with PE, nineteen (31%) of these achieving sustained CR and seventeen (28%) with relapsed TTP. Twenty patients (33%) had PE refractory TTP and two patients (3%) had PE dependent TTP. During this time period, 10 patients (16%) underwent splenectomy, four patients (7%) for PE dependent TTP, three (5%) for relapsed TTP, and three (5%) for refractory TTP. All of the patients achieved CR after splenectomy. Two patients who had undergone splenectomy had subsequent relapses, both with previously relapsed TTP. In relapsed patients the relapse rate after splenectomy was 0.27 events per patient year compared to 0.6 events per patient year before splenectomy. Median follow-up after splenectomy was 19 months (range 0.13-90 months). In conclusion, relapses in TTP can be managed successfully with additional PE or with splenectomy. PE dependent or refractory TTP can be successfully treated with splenectomy.

Adult↗

Splenectomy in children with idiopathic thrombocytopenic purpura: A prospective study of 134 children from the Intercontinental Childhood ITP Study Group.

BACKGROUND: Splenectomy is an effective procedure for children and adults with severe or refractory idiopathic thrombocytopenic purpura (ITP). Data regarding pediatric patients are limited. PROCEDURE: Sixty-eight Intercontinental Childhood ITP Study Group (ICIS) investigators from 57 institutions in 25 countries participated in a splenectomy registry. Data from 153 patients were submitted, of whom 134 had a splenectomy and were analyzed. RESULTS: The median age at splenectomy was 11.8 (2.7-20.7) years. The median postsplenectomy follow-up was 2.0 (0.1-4.5) years. Pre-splenectomy vaccination was not administered in 21 children (15.7%). Open and laparoscopic splenectomy procedures were performed in 67 and 65 evaluable children, respectively. Surgical technique was not reported in two children. Overall immediate platelet response to splenectomy was achieved in 113 patients (86.3%). Eighty percent of responders maintained their status of response during the following 4 years. Older age, longer duration of ITP, and male gender correlated with a complete response. Post-splenectomy sepsis was reported in seven patients without lethal outcome, although sepsis might be differently defined at participating institutions. CONCLUSIONS: Splenectomy is effective in children with ITP. Management varies greatly in different institutions. These Registry data may serve as a basis for future clinical trials to assess the indication and timing of splenectomy.

Adolescent↗

Does open surgery continue to have a role in elective splenectomy?

BACKGROUND: Since it was first reported in 1991, laparoscopic splenectomy has become the procedure of choice for elective splenectomy. However, doubts have been raised regarding the suitability of patients with splenomegaly (>1 kg) for laparoscopic resection because there have been reports of greater morbidity and higher conversion rates in this group of patients. Since 2000, patients referred to the authors' center for splenectomy with an estimated spleen weight exceeding 1 kg have undergone splenectomy by the open approach. METHODS: Between September 1995 and April 2005, 95 elective splenectomies were performed by a single surgeon. Operative data were collected prospectively. RESULTS: A comparison between the operations that took place before 2001 (n = 47) and those performed after 2000 (n = 48) for all sizes of spleen showed significant reductions in conversion rate, operative time, and hospital stay in the later group. As compared with laparoscopic splenectomy (n = 11), open splenectomy (n = 18) for cases of splenomegaly resulted in a significantly shorter operative time, less operative blood loss, and no significant difference in hospital stay. CONCLUSION: Although laparoscopic splenectomy is the treatment of choice for the majority of patients requiring elective splenectomy, the procedure for patients with significant splenomegaly requires caution and common sense. This study shows that an open splenectomy for these patients significantly reduces operative time and blood loss without increasing morbidity or hospital stay.

Adolescent↗

Conversion factors for laparoscopic splenectomy for immune thrombocytopenic purpura.

BACKGROUND: Since 1994, 27 patients at our institution have undergone laparoscopic splenectomy for immune thrombocytopenic purpura (ITP). Laparoscopic splenectomy was completed in 22 of these patients. We sought to identify factors that precluded successful laparoscopic splenectomy in the remaining 5 patients. METHODS: Retrospective review of 27 patients with ITP undergoing laparoscopic splenectomy was performed at Duke University Medical Center from August, 1994 to September, 1997. RESULTS: Laparoscopic splenectomy was performed in 16 women and 11 men with a mean age of 47.2 years. Five (18%) of these procedures were converted to open splenectomy. There was no significant difference in age, ASA score, gender, weight, height, or splenic size between the converted and laparoscopic groups. However, preoperative and postoperative platelet counts were significantly higher in the laparoscopic group than in the converted group (p < 0.001). Operative times also were significantly longer for the laparoscopic group than for the converted group (p < 0.001). Adherent adjacent structures, associated comorbidities, and technical errors prohibited laparoscopic completion in five patients. Technical errors with subsequent bleeding required conversion in two patients. A thickened greater omentum blanketing the splenic capsule and a densely adherent pancreatic tail extending well into the splenic hilum prevented laparoscopic completion in two patients. Increased peak airway pressures greater than 60 mmHg after pneumoperitoneum necessitated conversion in the remaining patient, who had a previous history of pulmonary insufficiency. Regardless of surgical approach, all patients achieved a therapeutic response after splenectomy. Splenectomies completed laparoscopically resulted in a significantly shorter length of hospital stay (p < 0.01). CONCLUSIONS: Densely adherent adjacent structures, technical errors, and cardiopulmonary instability may preclude successful completion of laparoscopic splenectomies. Thorough preoperative evaluation with an emphasis on the cardiopulmonary system may elicit a cohort of individuals with ITP who are unlikely to undergo laparoscopic splenectomy successfully. This cohort also may include individuals with preoperative platelet counts less than 35,000 mm(-3).

Female↗

Selective use of splenectomy after liver transplantation in children.

In a series of 106 pediatric liver transplantations, five patients were identified with recurrent rejection who could not tolerate the addition of azathioprine (Aza) to their immunosuppressive therapy because of leukopenia. Splenectomy was performed posttransplantation to allow the use of Aza. The number and severity of rejection episodes were compared before and after splenectomy in these patients. In addition, presplenectomy and postsplenectomy rejection frequencies were compared with rejection frequencies in 35 patients who did not require splenectomy and had at least 1 1/2 years of follow-up. Mild, moderate, and severe rejection episodes were defined by the treatment (mild, steroid bolus only; moderate, steroid recycle; and severe, monoclonal antibodies or Minnesota antilymphocyte globulin) required to produce complete resolution. There was a mean of 342 +/- 111 days from transplantation to splenectomy and a mean of 674 +/- 109 days of follow-up after splenectomy. Follow-up in the control group was 934 +/- 44 days. After splenectomy, the average platelet count increased from 78 +/- 15 to 514 +/- 113 (P = .020) and white blood cell count increased from 3.2 +/- 0.6 to 16.7 +/- 2.7 (P = .010). Splenectomy permitted the implementation of Aza therapy in one patient who previously was not a candidate because of hypersplenism and allowed uncomplicated Aza therapy in four patients who became severely leukopenic during previous Aza trials. All five patients who underwent splenectomy demonstrated a statistically significant (P less than .05) decrease in the total number of rejection episodes. Rejection frequency after splenectomy was no different from the rejection frequency in patients who did not require splenectomy (P = .682).(ABSTRACT TRUNCATED AT 250 WORDS)

Azathioprine↗

Adverse effect of splenectomy in experimental peritonitis.

Patients undergoing splenectomy have increased operative morbidity and mortality, especially when associated with gastrointestinal surgery or injury. This present study was designed to assess the effect of splenectomy on mortality in a polymicrobial fecal peritonitis model and evaluate therapy with antibiotic (cefoxitin) or immunomodulation (glucan). Human stool-barium (0.15 cc) was placed in the peritoneum of Sprague-Dawley rats at the time of splenectomy or sham surgery. Splenectomy animals were then treated with 5% dextrose, cefoxitin (60 mg im q 6 hr), glucan (7.5 mg ip prior to surgery), or cefoxitin plus glucan. Splenectomy resulted in decreased survival (5% vs 30%, P less than 0.05). Treatment with cefoxitin (90%) or glucan (47%) significantly improved survival. Combined glucan-cefoxitin therapy had no improvement over cefoxitin alone. Peritoneal and blood cultures were performed 12 hr postoperatively. There were no significant differences in growth of bacteria between sham and splenectomy animals. Cefoxitin treatment resulted in lower growth of bacteria from both blood and peritoneum (P less than 0.05). Glucan treatment caused a significant decrease in the number of bloodborne bacteria (P less than 0.05). Intravascular colloidal carbon clearance and leucocyte counts were performed at 12 hr postoperatively. Presence of peritonitis significantly enhanced intravascular clearance, while splenectomy had no effect. Addition of glucan or cefoxitin therapy to splenectomy animals did not enhance intravascular clearance. Leucocyte counts were significantly lower (P less than 0.05) when splenectomy was added to peritonitis animals. Glucan and cefoxitin therapy did not increase leucocyte counts. Based on these studies we conclude that (1) splenectomy increases mortality in fecal peritonitis, (2) antibiotic and immunomodulator afford some protection, and (3) exact mechanism of protection remains unclear.

Adjuvants, Immunologic↗

A comparison of laparoscopic and traditional open splenectomy in childhood.

This study aimed to determine whether laparoscopic splenectomy is more advantageous than open splenectomy in pediatric patients. Data from 61 patients treated between June 1983 and September 1994 were reviewed. Length of hospitalization, hospital costs, operating time, and postoperative complications were evaluated. Forty-seven patients had open splenectomy. Nineteen of these underwent concomitant procedures. Fourteen patients had laparoscopic splenectomy, and four had concomitant cholecystectomy. The data show a trend toward a 1-day reduction in hospital stay associated with laparoscopic splenectomy (P < .02). Operating time was 83% longer for the laparoscopic approach (P < .001), and operating costs were almost $3,000 more (P < .001) than for open splenectomy. The total hospital cost also was greater for laparoscopic procedures (P < .1), primarily reflective of a more than $3,000 difference for splenectomy alone (P < .02). Two of the fourteen laparoscopic patients (14%) had complications. One patient with Evan's syndrome had pneumonia that required antibiotics. Another patient required conversion to an open procedure because of poorly controlled hemorrhage from a short gastric vessel. Twelve of the open splenectomy patients (25%) had complications: atelectasis (3), fever (4), wound infection (2), pneumonia (1), laryngospasm (1), and pancreatitis (1). The authors conclude that laparoscopic splenectomy is a safe but currently more expensive alternative to open splenectomy, primarily because of the use of disposable instruments. Benefits include a shorter hospital stay, no greater risk of postoperative complications, and subjective improvement in the cosmetic result. Disadvantages include increased operating time and cost. Evaluation of larger series will be needed to determine the significance of the difference in complication rates between the two procedures.

Adolescent↗

Role of splenectomy in chronic lymphocytic leukemia.

BACKGROUND: The benefit of splenectomy, performed for complications of chronic lymphocytic leukemia (CLL) including autoimmune hemolytic anemia, thrombocytopenia, hypersplenism, and symptomatic splenomegaly, has not been clearly demonstrated. The objective of this study was to determine if splenectomy achieves a predictable hematologic and survival advantage over conventional chemotherapy in patients with CLL. STUDY DESIGN: A retrospective review was performed of 77 consecutive patients with CLL who underwent splenectomy between 1970 and 1994 at the University of Texas M. D. Anderson Cancer Center. Indications for splenectomy, pre- and postoperative hematologic profiles, response to splenectomy, and time to progression and death were recorded. Kaplan-Meier life tables were constructed, and a comparison to an age- and gender-matched cohort of CLL patients treated with fludarabine and no splenectomy was performed using log rank statistical analysis. RESULTS: Seventy-six percent of the patients studied were Rai stage III/IV. Twenty of 29 patients with hemoglobin counts (Hb) < or = 10 g/dL and 11 of 18 patients with platelet counts (plt) < 50 x 10(9)/L achieved an excellent hematologic response to splenectomy. Splenectomy significantly improved survival in patients with Hb < or = 10 g/dL or plt < or = 50 x 10(9)/L (p = 0.025). Thrombocytopenia did not significantly increase postoperative morbidity, and mortality rate was not significantly different between treatment groups. CONCLUSIONS: Splenectomy significantly improves survival in selected subgroups of patients with advanced-stage CLL over that achieved with conventional chemotherapy. Based on these results, splenectomy should be performed early in the course of the disease in CLL patients with either an Hb < or = 10 g/dL or plt < or = 50 x 10(9)/L.

Antineoplastic Agents↗

Risk factors for splenectomy in children with blunt splenic trauma.

BACKGROUND/PURPOSE: Nonoperative management and splenic preservation have become standards of care for management of pediatric blunt splenic trauma. However, review of the Pennsylvania Trauma Outcome Study (PTOS) registry found that 15% of children with blunt splenic injury still underwent splenectomy. The authors sought to determine the factors that predisposed to splenectomy in this population. METHODS: Between 1993 and 1997, 754 children, ages 0 to 16 years, who sustained blunt splenic trauma were entered in the PTOS database. These patients were stratified into groups according to the mode of management: nonoperative, splenorrhaphy, or splenectomy. Logistic regression was performed to determine factors associated with splenectomy. RESULTS: Overall, 15.1% of patients underwent splenectomy, 7.4% underwent splenorrhaphy, and 77.5% were treated nonoperatively. Spleen injury grade, nonspleen abdominal injuries, Glasgow Coma Scale 3 to 8, and age 15 to 16 years were significant determinants of splenectomy by multivariate analysis. Children treated at pediatric trauma centers (PTC) underwent significantly fewer splenectomies. CONCLUSIONS: Injury grade, but not hemodynamic instability, was a significant independent determinant of splenectomy in children with blunt splenic trauma. Children treated at PTC are less likely to undergo splenectomy. Ongoing analysis of the management of blunt pediatric splenic injury and reduction of unnecessary splenectomies are needed to optimize care for injured children.

Accidents, Traffic↗

[Introduction of laparoscopic splenectomy for the treatment of immune thrombocytopenic purpura].

AIM OF THE STUDY: Was to evaluate retrospectively the outcomes and efficacy of the laparoscopic splenectomies for ITP patients, performed at our institution over a period of 7 years and to compare these results with those after open splenectomies. PATIENTS AND METHODS: We collected and analyzed data of 22 consecutive adult patients with ITP who underwent either laparoscopic (LS gr., n = 9) or open (OS gr., n = 13) splenectomy at Hospital of Kaunas University of Medicine between the years 1996 and 2002. The indications for splenectomy in these patients were unsuccessful treatment with corticosteroids or other medications and/or the requirement of high dosages of steroids for prolonged periods of time to maintain platelet count > 50 G/L before operation. Prior to surgery, all patients were treated with corticosteroids and/or intravenous immunoglobulin to raise the platelet count and to minimize the risk of intraoperative bleeding. The efficacy of the operation was evaluated by counting platelets one day before surgery and on the first and fifth postoperative day. Data chosen for analysis included age, gender, weight, height, American Society of Anaesthesiologists (ASA) score, number of converted patients, estimated blood loss during operation, operating time, postoperative secretion through the drains, morbidity, mortality and postoperative hospital stay. RESULTS: There were no significant differences between LS and OS groups according patients age, weight, height, gender and ASA score. The mean operative time was 138.8 +/- 50.1 min in LS group and was significantly longer than operative time in OS group (102.3 +/- 21.3 min). One patient was converted to open splenectomy because of severe bleeding from splenic hilum. Postoperative complications occurred in one patient from each group. The mean intraoperative blood loss was 460 +/- 125 ml in LS group and 510 +/- 140 ml in OS group (p > 0.05). Postoperative secretion through the drains and postoperative secretion time in LS group was significantly lower and shorter than in OS group. Postoperative hospital stay in LS group (5 +/- 1.1 days) was significantly shorter than in OS group (8 +/- 1.4 days). After splenectomy, there was an immediate increase in the platelet count of all patients in both groups. Between the day before surgery and the first postoperative day, the mean platelet count rose significantly from 75 +/- 57.0 G/L to 117 +/- 84.2 G/L in LS group and from 64 +/- 60.1 G/L to 122 +/- 79.3 G/L in OS group. Between the first postoperative day and the fifth postoperative day, the mean platelet count also rose significantly in both groups: from 117 +/- 84.2 G/L to 259 +/- 151.0 G/L in LS group and from 122 +/- 79.3 G/L to 258 +/- 158.4 G/L in OS group. In the immediate postoperative period (five days after operation), all LS group and OS group patients responded to the splenectomy. CONCLUSIONS: Laparoscopic or open splenectomy are equally efficacious in patients with ITP, with an immediate response rate of 100 % in our study. Our study results show that open splenectomy appears superior to laparoscopic procedure in terms of shorter operative time. Laparoscopic splenectomy appears superior to open procedure in terms of postoperative hospital stay, postoperative drainage time, less postoperative secretion through the drains. These two approaches are similar with regard to blood loss during operations and the rate of postoperative complications.

Adrenal Cortex Hormones↗

Splenectomy in children with haematological disease.

During the years 1969-1980 elective splenectomy for haematological disease was performed in 31 children, of which 17 had haemolytic anaemia (HA), 11 thrombocytopenic purpura (TP) and 3 hypersplenism (HS). The indications for splenectomy in the HA series were haemolytic crises in 6 children, constant anaemia in 4, hyperbilirubinaemia in 5 and abdominal pain in 2 children. Among children with TP there were 8 cases of idiopathic thrombocytopenic purpura, 2 cases combined TP with haemolytic anaemia and idiopathic pancytopenia in 1 child. In all patients the indication for splenectomy was therapy-resistant thrombocytopenia. In the HS series the underlying disease was Morbus Gaucher, thyrosinosis and cysta lienalis. Indication for splenectomy was thrombocytopenia in all children. In the HA series the results of splenectomy were good in all patients. The haemoglobin value rose. The increased reticulocyte count returned to normal values. Splenectomy was considered to be still indicated in all patients with hereditary spherocytosis. In the TP series good results were obtained in 6 children, 2 were markedly improved, but 3 showed no change. Splenectomy plays an important role in the management of chronic thrombocytopenia when medical treatment is without effect. In the HS series thrombocytes reached normal values in all patients. Failure of splenectomy to relieve the haematologic process is usually due to remaining accessory spleens. Splenectomy in children increases the risk of severe infections and the polyvalent pneumococcal vaccine should therefore be administered prior to splenectomy.

Anemia, Hemolytic↗

Splenectomy for primary and recurrent immune thrombocytopenic purpura (ITP). Current criteria for patient selection and results.

Of 565 patients with thrombocytopenia admitted to Duke University Hospital between 1975 and 1985, 100 had splenectomy. Ninety-eight patients had failed chronic immunosuppressive therapy and three patients had acute intracranial bleeding or total absence of platelets in the peripheral blood smear, and had urgent splenectomy. At primary splenectomy, accessory spleens were identified and resected in 18% of patients. There was no operative mortality. Fifty-eight patients had an excellent response to splenectomy and their steroids were tapered off within 3 weeks. Thirteen patients had a poor response to primary splenectomy of whom eight remitted spontaneously and five required accessory splenectomy resulting in complete remission in three patients. Twenty-nine patients were considered nonresponders, 25 of whom had radionuclide scanning for accessory spleens. Seven of these patients had accessory spleens identified but only four consented to accessory splenectomy. In three of the four patients, a complete remission was achieved. Neither platelet antibody titers nor measurements of platelet survival or turnover predicted platelet response to splenectomy. However, immune thrombocytopenic purpura (ITP) in older patients was significantly less likely to respond to splenectomy. These data support continuing use of splenectomy in selected patients with ITP and an aggressive search for accessory spleens in patients who relapse since they are easily localized at operation by hand-held isotope detector probe.

Adolescent↗

Laparoscopic splenectomy for Evans syndrome.

Evans syndrome is a rare, chronic, sometimes fatal immunologic disorder defined as Coombs' positive hemolytic anemia and immune thrombocytopenia without an underlying etiology. This syndrome has a variable clinical course, and the benefit of splenectomy is unknown. This report reviews the clinical outcome of laparoscopic splenectomy for Evans syndrome. A retrospective review was conducted of patients undergoing laparoscopic splenectomy for autoimmune hemolytic anemia and concomitant immune thrombocytopenic purpura at the Cleveland Clinic Foundation from August 1995 through August 2001. Data were collected in a prospective database and included demographic characteristics of the patients, surgical indications, operative details, and postoperative follow-up information. Five patients underwent laparoscopic splenectomy for Evans syndrome. At mean follow-up of 18 months (range, 1-31) after laparoscopic splenectomy, two patients had normal platelet counts (>100,000/microL) and required no further medical therapy. Two patients did not respond to laparoscopic splenectomy and are still undergoing medical therapy. One patient initially responded to laparoscopic splenectomy but became thrombocytopenic at 18 months and required further medical therapy. After 2 months of further medical treatment, this patient is currently (at month 10) in remission. Laparoscopic splenectomy for Evans syndrome is safe and technically feasible. The clinical outcome of splenectomy for patients with Evans syndrome is unpredictable. This select cohort of patients requires extensive long-term follow-up to determine the merits of splenectomy.

Adolescent↗

The incidence of splenectomy is decreasing: lessons learned from trauma experience.

Over the past decade, splenic preservation has become a well-reported and accepted principle in trauma management. The reasons for splenic preservation may have influenced nontraumatic surgical management as well. To investigate the changing incidence and indications for splenectomy, we conducted a 10-year review of all splenectomies at our institution. During this time, between January 1, 1986, and December 31, 1995, 896 patients underwent splenectomy. Hospital charts and records were examined to determine the etiology and incidence of splenectomy. Indications were classified as: 1) trauma, i.e., performed for blunt or penetrating injury; 2) hematologic malignancy, i.e., therapy or staging of underlying leukemia, Hodgkin's lymphoma, or non-Hodgkin's lymphoma; 3) cytopenia, i.e., treatment of thrombocytopenia, anemia, or leukopenia; 4) iatrogenic, i.e., injury during another procedure; 5) incidental, i.e., required for adjacent organ resection; 6) portal hypertension, i.e., left-sided portal hypertension or during shunting procedure; 7) diagnostic, i.e., uncertainty excluding hematologic malignancy; or 8) other, i.e., miscellaneous indications. Trauma accounted for 41.5 per cent of all splenectomies during this time period, hematologic malignancy 15.4 per cent, cytopenia 15.6 per cent, incidental 12.3 per cent, iatrogenic 8.1 per cent, portal hypertension 2.3 per cent, diagnostic 2.0 per cent, and other 2.7 per cent. Comparing the first and second 5-year time periods, the following increases/decreases in average annual incidence were noted: splenectomy for all indications, -36.9 per cent; trauma, -32.9 per cent; hematologic malignancy, -51.4 per cent; cytopenia, 35.1 per cent; incidental, -35.9 per cent; iatrogenic, -30.2 per cent; diagnostic, +4.9 per cent, and other, -57 per cent. Traumatic injury to the spleen remains the most common indication for splenectomy, but the incidence has decreased dramatically over the past 10 years. Splenectomies for treatment of hematologic malignancies and cytopenia, as well as incidental and iatrogenic splenectomies, have also decreased significantly. Only the incidence of diagnostic splenectomy has remained stable. Although initiated within the field of trauma, the advantages of splenic preservation now appear to be well recognized beyond that field.

Humans↗

Portal vein thrombosis following splenectomy: identification of risk factors.

Portal vein thrombosis (PVT) following splenectomy is a potentially life-threatening complication, and the true incidence of PVT in splenectomized patients is unknown. The objective of this study was to determine the incidence of symptomatic PVT after splenectomy. The hospital database was searched to identify cases of PVT associated with splenectomy from January 1990 to May 2002. Six hundred eighty-eight patients underwent splenectomy during this period, 321 of them for hematologic diseases. Eleven of the 688 patients had PVT associated with splenectomy, and the charts of these patients were reviewed. Six patients developed PVT after splenectomy. Five had hematologic diseases. Symptoms were abdominal pain (6), ileus (5), fever (3), or diarrhea (2). Diagnosis was confirmed by computed tomography (CT) (4), duplex ultrasonography (1), and magnetic resonance imaging (1). The indications for splenectomy included hemolytic anemia (3), thalassemia (1), and myelofibrosis (1). One patient had an incidental splenectomy during gastrectomy. There were four laparoscopic and two open splenectomies. The median interval between splenectomy and diagnosis of PVT was 40 days (range, 13-741). One patient died of pulmonary embolism. Five of six patients with postsplenectomy PVT had splenomegaly and hemolysis. We conclude that the risk of PVT is higher in patients with hematologic conditions associated with splenomegaly and hemolysis.

Adult↗

Changes of immune function in patients with liver cirrhosis after splenectomy combined with resection of hepatocellular carcinoma.

OBJECTIVE: To study the changes of immune function in liver cirrhosis patients after splenectomy combined with resection of hepatocellular carcinoma (HCC). METHODS: Sixteen patients with HCC associated with liver cirrhosis were divided into two groups: splenectomy combined with hepatectomy (splenectomy group n=7) and hepatectomy (non-splenectomy group, n=9). T lymphocyte subsets such as CD4, CD8, CD4/CD8 and Th lymphocyte cytokines such as interferon gamma (IFN-gamma), IL-2, IL-10 in 7 ml peripheral venous blood before operation and 2 months after operation were examined and compared between the two groups. RESULTS: There was no significant difference in pre-operative CD4, CD8, CD4/CD8, IL-2, IFN-gamma, IL-10 levels in the two groups. Two months after operation, the levels of CD4 (38.2%+/-3.7%), CD4/CD8 (1.7+/-0.3), IFN-gamma (104.4+/-14.9 pg/ml), IL-2 (98.6+/-18.6 pg/ml) were increased and those of CD8 (23.7+/-3.7 pg/ml), IL-10 (55.5+/-11.2 pg/ml) levels were decreased in the splenectomy group. The levels of CD4 (32.5%+/-4.0%), CD4/CD8 (1.1+/-0.1), IFN-gamma (70.5+/-12.6 pg/ml), IL-2 (80.9+/-13.5 pg/ml) in the non-splenectomy group were much lower than those in the splenectomy group, but the levels of CD8 (29.4%+/-4.0%), IL-10 (89.4+/-10.0 pg/ml) in the non-splenectomy group were significantly higher than those in the splenectomy group (P<0.05). CONCLUSIONS: Splenectomy combined with hepatectomy for HCC patients associated with liver cirrhosis does not decrease but promote the recovery of T lymphocyte subsets and Th1/Th2 cytokines from imbalance and improve anti-tumor immune function of the patients.

CD4-CD8 Ratio↗